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Homology
BLAST of mRNA_P-fluviatile_contig9.15028.1 vs. uniprot
Match: D7G6M4_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G6M4_ECTSI) HSP 1 Score: 916 bits (2367), Expect = 2.730e-314 Identity = 476/596 (79.87%), Postives = 513/596 (86.07%), Query Frame = 3
Query: 948 FYAPKSVGSFVFRIYDASDPVETLATSHAWQVDAQGKDVELSLRFVLNQLRSSDGKGSVLGALAQLAHLLEHLETAPPQRYNRSVGSALWNAVTSARNQLSGVKLPSGSGKNGGSGQV----DRERDAAADDRKLRAVHGAVWCVLNAIVTNPAAGALLADAPPQIDPFNKN--GASLPCLALCRLWQSTFCPFEEHYFDKPQALAKHYQDDFGFAPSAARVEDIDPAVLRDLTGQMSSLLPTLLPSADFDESRERVRRSLERNLMRQLPEMIPKDSTLRVFGSSSNGFGNDSADLDMCIEYPNGAKYPDDAGALIESIADKLKAAGMIEVDSRPTARIPIVIFKDSGSGLDCDISVMNPLALRNTQLLKAYSVADPRVRELAYVVKHWAKRRWVNNASEGTLSSYGYLLCLVHFLQTRDPPVVPNLQALPPDWAGDEIPQEAPKYLNLPKVMTRQPTDGIDYNTYFYDPLAPGRDGERRAAVLREFGARNKASSGELLAGFFRYFACELDCRTSVVSVRLGGLAIRERKAEACCWSMHTRLSLEDPFETWYDVAHVLKWSRFKHVRMEFARAYALLS---HSSSTSSLLETICSQ 2708
FYA VGSFVFRIYDASDPV TLATSHAWQVDAQG+DVELSLRFVLNQLRS+DGKGSV+GALAQL+HLL HLETAPPQRYNRSVGSALWNAVTSAR QL GVKL S SGK +R++D+AADDRKLRAVHGAVWCVLNAIV NPAAGALLA+APPQ+DPFN N GASLPC+A+CRLWQ ALAKHY+DDFGF PS AR+EDID AVL LT QMS+LLPTLLPS DF E RE+VR SLER LM+QLP+MIPK STLRVFGSSSNGFGND ADLDMCIEY G ++PDDAGALIESIA+KLKAAGM +VDSRPTARIPIVIF D SGLDCDISVMNPLA+RNT+L+KAYSVADPRV+ELAYV+K WAKRRWVNNASEGTLSSYGYLLCL+HFLQTR+PPVVPNLQALPPDWAG+ + P+ LP VMT+QPTDG+D +TYFYDPL PGRDGERRAAVLREFG+RN ASSGELLAGFFRYFA ELDCRTSVVSVRLGGLA RERKAEACCWSMHTRLSLEDPFET YDVAHVLKWSRFKHVRMEFARAYALL+ SSLLETICSQ
Sbjct: 71 FYA--QVGSFVFRIYDASDPVGTLATSHAWQVDAQGRDVELSLRFVLNQLRSTDGKGSVMGALAQLSHLLGHLETAPPQRYNRSVGSALWNAVTSARKQLKGVKLTS-SGKGXXXXXXXXXXNRDKDSAADDRKLRAVHGAVWCVLNAIVKNPAAGALLAEAPPQMDPFNINRKGASLPCVAVCRLWQ---------------ALAKHYKDDFGFTPSEARLEDIDQAVLSSLTDQMSALLPTLLPSPDFGEKREKVRASLERTLMKQLPKMIPKGSTLRVFGSSSNGFGNDGADLDMCIEYARGVQHPDDAGALIESIAEKLKAAGMTKVDSRPTARIPIVIFNDGASGLDCDISVMNPLAVRNTRLMKAYSVADPRVKELAYVLKRWAKRRWVNNASEGTLSSYGYLLCLLHFLQTRNPPVVPNLQALPPDWAGEPL-HGVPR---LPVVMTKQPTDGLDCDTYFYDPLTPGRDGERRAAVLREFGSRNTASSGELLAGFFRYFALELDCRTSVVSVRLGGLADRERKAEACCWSMHTRLSLEDPFETSYDVAHVLKWSRFKHVRMEFARAYALLAGXXXXXDASSLLETICSQ 644
BLAST of mRNA_P-fluviatile_contig9.15028.1 vs. uniprot
Match: W7TXG0_9STRA (PAP/25A-associated n=1 Tax=Nannochloropsis gaditana TaxID=72520 RepID=W7TXG0_9STRA) HSP 1 Score: 470 bits (1210), Expect = 3.280e-141 Identity = 294/737 (39.89%), Postives = 409/737 (55.50%), Query Frame = 3
Query: 606 PKRSVKNQFGLLYLMYPNGAGRGPCGTQRVRPGAHLTVRWELPAGCIDVVGRPRRDRESGGGGVRGVEPQRLMVGLFRLGVGTNTAGIISKKMFER--APRGPFRDPREMLFGTVLFYAPKSVGSFVFRIYDASDPVETLATSHAWQVDAQGKDVELSLRFVLNQLRSSDGKGSVLGALAQLAHLLEHLETAPPQRYNRSVGSALWNAVTSARNQLSGVKLPSGSGKNGGSGQVDRERDAAADDRKLR-AVHGAVWCVLNAIVTNPAAGALLADAPPQIDPFNKNGASLPCLALCRLWQSTFCPFEEHYFDKPQALAKHYQDDFGFAPSAARVEDIDPAVLRDLTGQMSSLLPTLLPSADFDESRERVRRSLERNLMRQLPEMIPKDSTLRVFGSSSNGFGNDSADLDMCIEYPNGAKYP-DDAGALIESIADKLKAAGMIEVDSRPTARIPIVIFKDSGSGLDCDISVMNPLALRNTQLLKAYSVADPRVRELAYVVKHWAKRRWVNNASEGTLSSYGYLLCLVHFLQTRDP------------PVVPNLQALPPDWAGDEIP--QEAPKYLNLPKVMTRQPTDGIDYNTYFYDPLAPGRDGERRA--AVLREFGARNKASSGELLAGFFRYFACELDCRTSVVSVRLGGLAIRERKAEACCWSMHTRLSLEDPFETWYDVAHVLKWSRFKHVRMEFARAYALL--------SHSSSTSSLLETICSQADPPPFTK 2732
P+R ++Q G ++++ +RP A L +WE PA + + +P V LFRLGV +NT IISK + + P P ++ GTV FYAP+S G FVFR++DA DPV T ATS + V+ + ++VE +LR + +QL+ + +++ L+Q A LL + P +R + S LW + QLS ++ G+ + G G +D + R V V VL+A + N + L GA + L Q+ +C F E ++ HY+D +G A I P V LT ++ SLLP LLPS ++RE VR +E L + P P + LRVFGSS+N FGND+ADLDMC+ +P+ + P +G +IE++A L+A GM +V +RPTARIPIV+F++ G+GLDCDISV NPLALRNTQLL YS DPRVR LAY+VKHWA+ R +NNAS GTLSSY Y+L ++HFLQT P+VPNLQ LPPDW G+E+ ++ LP+ + P +G+D +TYFY G+ ++LRE+ ARNKAS GELL FF Y++ E D R V+SVRLGG +ERKAE W++++RL++EDPFETWY+V H LK + +H+R EFARAYAL + + LL IC +A PP K
Sbjct: 172 PRRVTRDQQGRIWVLDSFSKQASV-----IRPKAGLLAKWEAPAALFETLSQPE-------------------VALFRLGVPSNTTAIISKAVQGKRVTPAASSSSPA-LVHGTVSFYAPRSAGVFVFRLFDAKDPVRTHATSQVFLVEVRDREVEGNLRLISSQLKE---RKTLVAGLSQFAFLLRGMAPYAP---SRQLQSLLWTCL-----QLSVQQIKDGAEEGGREGDEGEGIAGGSDKPRSRYPVIIGVAAVLHAALQNRFVLSCL------------EGAQVATLEEA---QARWCLFNEEFYPSEADKLAHYRDQWGLAFRPVPPPSILPKVANALTEEIESLLPALLPSQACFQTRENVRERVEALLPSRGPTTFPDGTRLRVFGSSANNFGNDAADLDMCVTFPDSSPLPAGSSGEMIEALASLLEANGMEDVVARPTARIPIVLFREPGTGLDCDISVENPLALRNTQLLHEYSRVDPRVRALAYIVKHWARARKINNASGGTLSSYAYILMVLHFLQTAAAAVPSTPDTPCYAPLVPNLQLLPPDWKGNEMDRREQMQGQRQLPRQLVTHPLEGMDVDTYFYTEPPSEEQGQPNGQRSLLREYAARNKASVGELLVAFFWYYSWEFDYRDLVLSVRLGGAMKKERKAEEDGWAVNSRLAIEDPFETWYNVTHFLKEGKHRHIRQEFARAYALCVEEAMGEGATEAGAEGLLARICEEAPDPPARK 857
BLAST of mRNA_P-fluviatile_contig9.15028.1 vs. uniprot
Match: A0A4D9DCB2_9STRA (Uncharacterized protein n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9DCB2_9STRA) HSP 1 Score: 472 bits (1214), Expect = 1.670e-137 Identity = 295/737 (40.03%), Postives = 411/737 (55.77%), Query Frame = 3
Query: 606 PKRSVKNQFGLLYLMYPNGAGRGPCGTQRVRPGAHLTVRWELPAGCIDVVGRPRRDRESGGGGVRGVEPQRLMVGLFRLGVGTNTAGIISKKMFER--APRGPFRDPREMLFGTVLFYAPKSVGSFVFRIYDASDPVETLATSHAWQVDAQGKDVELSLRFVLNQLRSSDGKGSVLGALAQLAHLLEHLETAPPQRYNRSVGSALWNAVTSARNQLSGVKLPSGSGKNGGSGQVDRERDAAADDRKLR-AVHGAVWCVLNAIVTNPAAGALLADAPPQIDPFNKNGASLPCLALCRLWQSTFCPFEEHYFDKPQALAKHYQDDFGFAPSAARVEDIDPAVLRDLTGQMSSLLPTLLPSADFDESRERVRRSLERNLMRQLPEMIPKDSTLRVFGSSSNGFGNDSADLDMCIEYPNGAKYPDD-AGALIESIADKLKAAGMIEVDSRPTARIPIVIFKDSGSGLDCDISVMNPLALRNTQLLKAYSVADPRVRELAYVVKHWAKRRWVNNASEGTLSSYGYLLCLVHFLQTR---------DP---PVVPNLQALPPDWAGDEIP--QEAPKYLNLPKVMTRQPTDGIDYNTYFYDPLAPGRDGERRA--AVLREFGARNKASSGELLAGFFRYFACELDCRTSVVSVRLGGLAIRERKAEACCWSMHTRLSLEDPFETWYDVAHVLKWSRFKHVRMEFARAYALL--------SHSSSTSSLLETICSQADPPPFTK 2732
P+R ++Q G ++++ +RP A L +WE PA + + +P V LFRLGV +NT IISK + + P P ++ GTV FYAP+S G FVFR++DA DPV T ATS + V+ +G+DVE +LR + +QL+ + +++ L+Q A LL + P +R + S LW + LS ++ G+ + G G+ +D + R V V VL A + N + L GA + L Q+ +C F E ++ HY+D +G A I P V LT ++ SLLP LLPS ++RE VR +E L Q P P + LRVFGSS+N FGND+ADLDMC+ +P+ + P +G +IE++A L+A GM +V +RPTARIPIV+F++ G+GLDCDISV NPLALRNTQLL YS DPRVR LAY+VKHWA+ R +NNAS GTLSSY Y+L ++HFLQT +P P+VPNLQ LPPDW G+E+ ++ +LP+ + P +G+D +TYFY G+ ++LRE+ ARNKA GELL FF Y++ E D R V+SVR+GG +ERKAE W++++RL++EDPFETWY+V H LK + +H+R EFARAYAL + + LL IC +A PP K
Sbjct: 601 PRRVTRDQQGRIWVLDSFSKQASV-----IRPKAGLLAKWEAPAALFETLSQPE-------------------VALFRLGVASNTTAIISKAVQGKRVTPAASSSSPA-LVHGTVSFYAPRSAGVFVFRLFDAKDPVRTHATSQVFLVEVRGRDVEGNLRLISSQLKE---RKTLVAGLSQYAFLLRGMAPHAP---SRQLQSLLWTCLL-----LSVQQIKDGAEEGGREGEEGEGIAGGSDKPRSRYPVIIGVAAVLQAALQNRFVLSCL------------EGAQVETLEEA---QARWCLFNEEFYPSEADKLAHYRDQWGLAFRPVPPPSILPKVANALTEEIESLLPALLPSQACFQTRENVRARVEALLPSQGPTTFPDGTRLRVFGSSANNFGNDAADLDMCVTFPDSSPLPAGRSGEMIEALASLLEANGMEDVVARPTARIPIVLFREPGTGLDCDISVENPLALRNTQLLHEYSRVDPRVRALAYIVKHWARARKINNASGGTLSSYAYILMVLHFLQTAAAAVSSTPDNPCYAPLVPNLQLLPPDWKGNEMDRREQMQGQRHLPRQLVTHPLEGMDVDTYFYTEAPSEEQGQPNGQRSLLREYAARNKACVGELLVAFFWYYSWEFDYRDLVLSVRMGGAMKKERKAEEDGWAVNSRLAIEDPFETWYNVTHFLKEGKHRHIRQEFARAYALCVEEAMGEGATEAGAEGLLARICEEAPDPPARK 1286
BLAST of mRNA_P-fluviatile_contig9.15028.1 vs. uniprot
Match: A0A835YMU6_9STRA (WW domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YMU6_9STRA) HSP 1 Score: 425 bits (1093), Expect = 1.600e-118 Identity = 323/863 (37.43%), Postives = 403/863 (46.70%), Query Frame = 3
Query: 603 SPKRSVKNQFGLLYLM-YPNGAGRGPCGTQRVRPGAHLTVRWELPAGCIDVVGRPRRDRESGGGGVRGVEPQRLMVGLFRLGVGTNTAGIISKKMFERAPRGPFRDPREMLFGTVLFYAPKSVGSFVFRIY-DASDPVE---------TLATSHAWQVDAQGKDVELSLRFVLNQLRSS--DGKGSVLGALAQLAHLLEHLETAPPQRYNRSVGSALWNAVTSARNQLSGVKLPSGSGKNGGSGQVDRERDAAADDRKLRAVHGAVWCVLNAIVTNPAAGAL---LADAPPQIDPFNKNGASLPCLA-LCRL--------------------WQSTFCPFEEHYFDKPQALAKHYQDDFGFAPSAARVED-IDPAVLRDLTGQMS----------------SLLPTLLPSADF----------------------------------DESRERVRRSLERNLMRQ------------LPEMIPKDSTLRVFGSSSNGFGNDSADLDMCIEYPNGAKYPDDAGALIESIADKLKAAGMIEVDSRPTARIPIVIFKDSGSGLDCDISVMNPLALRNTQLLKAYSVADPRVRELAYVVKHWAKRRWVNNASEGTLSSYGYLLCLVHFLQTRDPPVVPNLQALPPDWAGDEIPQEAPKYLNLPKVMTRQPTDGIDYNTYFYDPLAPGRDGERRAAVLR---------EFGARNKASSGEL--------------------LAGFFRYFACELDCRTSVVSVRLGGLAIRERKAEACCWSMHTRLSLEDPFETWYDVAHVLKWS-----------------RFKHVRMEFARAYALLSHSSS-----------TSSLLETICSQADPP 2720
+P+R+ Q G+L L Y V A L+V W+LPA + GGGV +GLFR G +N II+K++ +G G V F+AP+SVG+FVFR Y D + E TLA S W VDA G+D E + RF L +S PP R A W A +A Q++ P G A+D +RAVHGAV VL+A VTNP L L DAP P S+P L +CR W S +CPFEEH++ Q L H +++ GF P + + VL+ L Q L L P +DF R+ +R LE ++ Q +P + LRVFGSS+NGFG DS+DLDMC+ YP G + + A A+IE++A L A GM +VD RPTARIPIV+FKD GL+CDISVMNPLA+RNT LL+ Y++ADPRVR LA+VVKHWAK+R +N SEGTLSSYGYLL L+H+LQTR+PPVVPNLQALPPDW G LP+ T +DG NTYF+ P G D RR A L +FG N+ S E+ LAGFFRY+A ELD RT VVS+R GG + KAEA W HTRLS+EDPFETWYDVAHVLKWS R K + EFARAY LL ++ S LL+T+C QA PP
Sbjct: 1004 APRRTTHMQVGVLLLEGYEPQHAAEAAPEISVPARADLSVFWDLPADLVR------------GGGVS--------IGLFREGAPSNRNAIIAKRV--TVGKGXXXXXXARAHGRVPFFAPRSVGAFVFRAYVDGAGKSEKAAAALSAATLAASRRWCVDAHGRDAEAAARFATGLLTTSADXXXXXXXXXXXXXXXXXXXXXRPPPPRLAXXXXXAAWAAAEAAWAQVAAAGAPGG-----------------AEDHHVRAVHGAVLDVLSAAVTNPMIKDLIGHLPDAPLSTAP----SLSMPPLEQVCRXXXXXXXXXXXXXXXXXXIRTWLSLWCPFEEHFYRTRQQLLDHNKEELGFTPLKLALSTLVHSGVLKALDEQXXXXXXXXXXXXXXXXAIGLAQQLRPFSDFYSRASSCFEVFRSPPFEVVQXXXXXXXXXXXXXXXXXRDALRTRLEDMIVAQRGVPXXXXXXXXXXXXVPLGTVLRVFGSSANGFGLDSSDLDMCLMYPPGNEPAEPASAVIEAVAAALSAQGMEDVDCRPTARIPIVLFKDPAYGLECDISVMNPLAVRNTDLLRTYALADPRVRPLAFVVKHWAKQRQINCPSEGTLSSYGYLLLLLHYLQTRNPPVVPNLQALPPDWPGPPAAAPTRPGRGLPERSTAHASDGRLCNTYFFVP-PQGSDCLRRFAALNTESYAQSYAQFG--NELSLKEVFVEPSMXXXXXXXXXXXXXXLAGFFRYYAWELDMRTRVVSLRSGGTLPKAGKAEADAWGTHTRLSIEDPFETWYDVAHVLKWSSNLXXXXXXXXXXXXXXRHKLLHTEFARAYTLLCEAAQRTTNPGGGGGDASDLLQTLC-QAAPP 1819
BLAST of mRNA_P-fluviatile_contig9.15028.1 vs. uniprot
Match: K8YXG6_NANGC (Nucleotidyltransferase-like protein n=1 Tax=Nannochloropsis gaditana (strain CCMP526) TaxID=1093141 RepID=K8YXG6_NANGC) HSP 1 Score: 363 bits (933), Expect = 9.220e-109 Identity = 196/390 (50.26%), Postives = 254/390 (65.13%), Query Frame = 3
Query: 1638 MSSLLPTLLPSADFDESRERVRRSLERNLMRQLPEMIPKDSTLRVFGSSSNGFGNDSADLDMCIEYPNGAKYP-DDAGALIESIADKLKAAGMIEVDSRPTARIPIVIFKDSGSGLDCDISVMNPLALRNTQLLKAYSVADPRVRELAYVVKHWAKRRWVNNASEGTLSSYGYLLCLVHFLQTRDP------------PVVPNLQALPPDWAGDEIP--QEAPKYLNLPKVMTRQPTDGIDYNTYFYDPLAPGRDGERRAA--VLREFGARNKASSGELLAGFFRYFACELDCRTSVVSVRLGGLAIRERKAEACCWSMHTRLSLEDPFETWYDVAHVLKWSRFKHVRMEFARAYALL--------SHSSSTSSLLETICSQADPPPFTK 2732
M SLLP LLPS ++RE VR +E L + P P + LRVFGSS+N FGND+ADLDMC+ +P+ + P +G +IE++A L+A GM +V +RPTARIPIV+F++ G+GLDCDISV NPLALRNTQLL YS DPRVR LAY+VKHWA+ R +NNAS GTLSSY Y+L ++HFLQT P+VPNLQ LPPDW G+E+ ++ LP+ + P +G+D +TYFY G+ +LRE+ ARNKAS GELL FF Y++ E D R V+SVRLGG +ERKAE W++++RL++EDPFETWY+V H LK + +H+R EFARAYAL + + LL IC +A PP K
Sbjct: 1 MESLLPALLPSQACFQTRENVRARVEALLPSRGPTTFPDGTRLRVFGSSANNFGNDAADLDMCVTFPDSSPLPAGSSGEMIEALASLLEANGMEDVVARPTARIPIVLFREPGTGLDCDISVENPLALRNTQLLHEYSQVDPRVRALAYIVKHWARARKINNASGGTLSSYAYILMVLHFLQTAAAAVPSTPDTPCYAPLVPNLQLLPPDWKGNEMDRREQMQGQRQLPRQLVTHPLEGMDVDTYFYTEPPSEEQGQPNGQRNLLREYAARNKASVGELLVAFFWYYSWEFDYRDLVLSVRLGGAMKKERKAEEDGWAVNSRLAIEDPFETWYNVTHFLKEGKHRHIRQEFARAYALCVEEAMGEGATEAGAEGLLARICEEAPDPPARK 390
BLAST of mRNA_P-fluviatile_contig9.15028.1 vs. uniprot
Match: A0A7S2CLX1_9STRA (Hypothetical protein n=2 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2CLX1_9STRA) HSP 1 Score: 331 bits (849), Expect = 6.100e-96 Identity = 209/506 (41.30%), Postives = 288/506 (56.92%), Query Frame = 3
Query: 1317 AAADDRKLRAVHGAVWCVLNAIVTNPAAGALLADAPPQIDPFNKNGAS--LPCLAL----CRL-WQSTFCPFEEHYFDKPQA----LA------KHYQDDFGFAPSAARVEDIDPAVLRDLTGQMSSLLPTLLPSADFDESRERVRRSLERNLMRQLPEMIPKDSTLRVFGSSSNGFGNDSADLDMCIEYPN---------GAKYPDDAGALIESIADKLK-AAGMIEVDSRPTARIPIVIFKDSGSGLDCDISVMNPLALRNTQLLKAYSVADPRVRELAYVVKHWAKRRWVNNASEGTLSSYGYLLCLVHFLQTRDPPVVPNLQALPPDWAGDEIPQEAPKYLNLPKVMTRQPTD-GIDYNTYFYDPLAPGRDGERRAAVLREFGARNKASSGELLAGFFRYFACELDCRTSVVSVRLGGLAIRERKAEACCWSMHT-RLSLEDPFETWYDVAHVLKWSRFKHVRMEFARAYALLSHSS----------STSSLLETICSQADP 2717
A RK R +H A+ +L I+ P A + + + ++N S P L C L W+ +C E YF QA LA K Y+ P A +++ +D + +T ++S+LLP+LLPS DF RE RR LE ++ LP++ +TL++FGSS NGFG+DSADLDMC+ + + GA P D AL +S+A L+ + EV++R TARIPIV+F+D+ SGLDCDIS+ NPLA+RNT LL AY+ DPRV+ LA+ VKHWA+RR +N+ S+GTLSSYGYLLC++HFLQTR PPV+PNLQ P + Q + P+V+ P + G+ +TYFYD APG E R F RN + GELL GFFRYF E D + VSVR G + KAE W ++T RL +EDP E WYDV H ++ +R EF RA+ +L+ ++ S ++ IC++A P
Sbjct: 40 AKLKQRKQREMHAALHWLLGTILAPPWASSSSSASFGLSSSSSENNISNEKPLLTAEQRACALRWEELYCTASESYFPSIQARDAYLAELLGEEKLYEGRLNLLPPA-QIKALDKDLAAAVTAELSTLLPSLLPSTDFTSVREEARRRLESRILEALPDLAAHGTTLQIFGSSRNGFGSDSADLDMCLCFDSTHGNQSSSPGAP-PMDPEALCQSVAGALENISDTEEVEARSTARIPIVMFQDTVSGLDCDISIFNPLAVRNTNLLAAYARIDPRVKALAFTVKHWARRRHINSPSQGTLSSYGYLLCVIHFLQTRSPPVIPNLQRPPESIIA--LQQRGDR--KQPQVLVPHPVEQGVICDTYFYDDEAPGD--EVMMPTARWFMQRNTETDGELLVGFFRYFVTEFDSARNAVSVRHAGPVSKALKAETDFWPLYTWRLGIEDPLEPWYDVGHFMRQRNHDRLRREFLRAHTILTQAAVGAAGSKGTDSFKDVVAKICTEAMP 537
BLAST of mRNA_P-fluviatile_contig9.15028.1 vs. uniprot
Match: A0A6V1RBI5_HETAK (Hypothetical protein n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A6V1RBI5_HETAK) HSP 1 Score: 299 bits (766), Expect = 2.460e-87 Identity = 172/339 (50.74%), Postives = 212/339 (62.54%), Query Frame = 3
Query: 1746 IPKDSTLRVFGSSSNGFGNDSADLDMCIEYPNGAKYPDDAGALIESIADKLKAAGMIEVDSRPTARIPIVIFKDSGSGLDCDISVMNPLALRNTQLLKAYSVADPRVRELAYVVKHWAKRRWVNNASEGTLSSYGYLLCLVHFLQTRD-PPVVPNLQALPPDWAGDEIPQEAPKYLNLPKVMTRQPTDGIDYNTYFYDPLAPGRDGERRAAVLREFGARNKASSGELLAGFFRYFACELDCRTSVVSVRL---GGLAIRERKAEACCWSMHTRLSLEDPFETWYDVAHVLKWSRFKHVRMEFARAYALLSH----------SSSTSSLLETICSQADPP 2720
+P L VFGSS+NGFG SADLDMC+ +P G P D +++E A+ L+A GM +V RPTARIPIV F D SGL D+S+ N LAL NT LL AYS D RVR LA+V+KHWA+RR +N A+EGTLSSYGYLL L+ FLQ R PV+PNLQALPP W ++ LP V T Q DG NTYFY P PG D +A+ F RN + G+LL F+ + A LD R SVVSVR GG +E KAEA CW +RLS+EDPFETWYDVAHVLK ++ ++VR EF RAY L+ + +LL+ IC ++ P
Sbjct: 13 LPSGVRLAVFGSSANGFGGPSADLDMCLVWPRGVPLPADPASVVERTAEALRAEGMTDVACRPTARIPIVSFTDPQSGLQGDVSLQNALALANTALLHAYSRVDARVRALAHVIKHWARRRRMNCAAEGTLSSYGYLLLLIQFLQQRPGAPVLPNLQALPPGW------EQGGPARPLPTVETPQLADGRPANTYFYTP--PGGD---YSALSAAFARRNTETVGQLLLAFWHHVAHRLDTRKSVVSVRTSSPGGTLPKEYKAEADCWGQPSRLSIEDPFETWYDVAHVLKTTKDQYVRGEFHRAYTLIVQVHGNLGRGMPPEALENLLDEICKESPVP 340
BLAST of mRNA_P-fluviatile_contig9.15028.1 vs. uniprot
Match: A0A3R7J4K8_9STRA (Uncharacterized protein n=4 Tax=Phytophthora kernoviae TaxID=325452 RepID=A0A3R7J4K8_9STRA) HSP 1 Score: 301 bits (771), Expect = 7.090e-83 Identity = 236/678 (34.81%), Postives = 336/678 (49.56%), Query Frame = 3
Query: 819 LMVGLFRLGVGTNTAGIISKK-MFERAPRGPFRDPREMLFGTVLFYAPKSVGSFVFRIY-------------------DASDPVETLATSHAWQVDAQGKDVELSLRF--VLNQLRSSDGK----------GSVLGALAQLAHLLEHLETAPPQRYNRSVGSALWNAVTSARNQLSGVKLPSGSGKNGGSGQVDRERDAAADD---RKLRAVHGAVWCVLNAIVTNPAAGALLADAPPQIDPFNKNGASLPCLALCRLWQSTFCPFEEHYFDKPQALAKHYQDDFGFAP-----SAARVEDIDPAVLRD-------LTGQMSSLLPTLLPS-ADFDESRERVRRSLERNLMRQLPEMIPKDSTLRVFGSSSNGFGNDSADLDMCIEYPNG-AKYPDDAGALIESIADKLKAAGMI--EVDS-RPTARIPIVIFKDSGSGLDCDISVMNPLALRNTQLLKAYSVADPRVRELAYVVKHWAKRRWVNNASEGTLSSYGYLLCLVHFLQTRDPPVVPNLQALPPDWAGDEIPQEAPKYLNLPKVMTRQPTDGID----------YNTYFYDPLAPGRDGERRAAVLREFGARNKASSGELLAGFFRYFACELDCRTSVVSVRL--GGLAIRERKAEACCWSMHTRLSLEDPFETWYDVAHVLKWSRFKHVRMEFARAYALL 2660
L+VGLFRLG TN I K+ +FE +R L + F AP+S G F FR++ D D S++ A+ +++ L + ++ LR++ K G VL AL L L++ +ET G AL + A +L + D R AA + + HG + VLNA+ N L+ D + R+ + FC YF + + + FGFAP S R+ D + +L+ L+ + TL+P A F SR+ + L ++ +LP D VFGSS+N FGN+++D+DMC+ P G A ++ ++ + +L++ + VD+ R TARIPIV+F SG++CD+ V N LA RNT LL+AY+ ADPRVR LAYV+K + K+R +N A+EGTLSSYGYLL L+H+LQ +DPPV+P LQALPP+W + PQE +P V+ P++ +D TYFYDP A R+ +++ A L E+ RN S GELL GF RYF + D VVSVR G ++ K +C W TRLS+EDPFE YDVAHVLK SR K++R +F RAY +L
Sbjct: 100 LLVGLFRLGQPTNDKPIFVKQVLFENKLHRNYR----YLNTRITFRAPRSPGEFEFRVFEDKSGHSHQLNGKRHLPNDDHHDGHHHGKVSYSNVTIARSNRLKVCLEYSHFIDTLRATHDKFQQGVVDGDAGLVLSALLALMRLVDQVETVFLH------GHALLGDLLEACLRLLERRAE------------DITRSFAATETIPHPMETFHGTLRNVLNAVEANKYVRELVVDDQ--------------LADISRIQRERFCQVSGLYFANDADRSAFWLEHFGFAPVKFGPSEVRI-DAESKILQSSSFVTCGLSRWVEREAETLMPDRAAFRASRQSIYDQLHAEVISKLPFSCELD----VFGSSANEFGNENSDMDMCLVLPEGTAPIVEEKQRMLLEVVARLESRPDLFTSVDTTRLTARIPIVMFVSRASGIECDLCVENRLAQRNTSLLRAYARADPRVRMLAYVMKRFVKQRRMNCAAEGTLSSYGYLLLLIHYLQRQDPPVLPVLQALPPNWPDE--PQE-----KMPSVLCHGPSEELDPSAANDGHNGIETYFYDPFA-FREPKQKLAALHEYCERNTQSVGELLLGFLRYFGLQFDATRDVVSVRRKDAGTMTKDEKRHSCQWRFTTRLSIEDPFEVGYDVAHVLKGSRDKYIRQQFVRAYVML 728
BLAST of mRNA_P-fluviatile_contig9.15028.1 vs. uniprot
Match: D0NHG9_PHYIT (Uncharacterized protein n=11 Tax=Phytophthora TaxID=4783 RepID=D0NHG9_PHYIT) HSP 1 Score: 305 bits (781), Expect = 1.590e-82 Identity = 243/674 (36.05%), Postives = 332/674 (49.26%), Query Frame = 3
Query: 819 LMVGLFRLGVGTNTAGIISKK-MFERAPRGPFRDPREMLFGTVLFYAPKSVGSFVFRIY---------------DASDPVETLATSHAWQVDAQGKDVELSLRF--VLNQLRSSDGK----------GSVLGALAQLAHLLEHLETAPPQRYNRSVGSALWNAVTSARNQLSGVKLPSGSGKNGGSGQVDRERDAAADD---RKLRAVHGAVWCVLNAIVTNPAAGALLADAPPQIDPFNKNGASLPCLALCRLWQSTFCPFEEHYFDKPQALAKHYQDDFGFAPSAARVED----IDPAVLRDLTGQMSSLLPTLLPS-ADFDESRERVRRSLERNLMRQLPEMIPKDSTLRVFGSSSNGFGNDSADLDMCIEYPNGAKYP-DDAGALIESIADKLKAAGMI--EVDS-RPTARIPIVIFKDSGSGLDCDISVMNPLALRNTQLLKAYSVADPRVRELAYVVKHWAKRRWVNNASEGTLSSYGYLLCLVHFLQTRDPPVVPNLQALPPDWAGDEIPQEAPKYLNLPKVMTRQPTDGID-------YNTYFYDPLAPGRDGERRAAVLREFGARNKASSGELLAGFFRYFACELDCRTSVVSVRL--GGLAIRERKAEACCWSMHTRLSLEDPFETWYDVAHVLKWSRFKHVRMEFARAYALL-----SHSSST 2678
L+VGLFRLG TN I K+ +FE +R L + F AP+S G F FR++ D D S++ A+ +++ L + ++ LR++ K G VL AL L L++ +ET G AL + A L + D R A + + HG + VLNAI N L+AD + R+ + FC YF + + FGFAP ED V R LT + L+P F SR+ + L ++ +L D VFGSS+N FGN+ +D+DMC+ P A +D ++ + L+A + VD+ R TARIPIV+F SG++CD+ V N LA RNT LL+AY+ ADPRVR LAYV+K + K+R +N A+EGTLSSYGYLL L+HFLQ +DPPV+P LQALPP+W E+P E LP V++R P++ +D +TYFYDP A ++ + + AVLRE+ +RN + GELL GF RY+ + D VVSVR G ++ K C W TRLS+EDPFE YDVAHVLK SR K++R +F RAY LL H SST
Sbjct: 335 LLVGLFRLGQPTNDKPIFVKQVLFENKLHRNYR----YLNTRITFRAPRSPGEFEFRVFEDKSHGHQSGKRPGDDHHDSHHHGKVSYSNVTIARSNRLKVCLEYSHFIDTLRATHDKFQQGVVDGDAGLVLSALLALMRLVDQVETVFLH------GHALLGDLLEACLGLLERRAE------------DIARSFTATETIPHPMETFHGTLRNVLNAIEANKYVRELVADDQ--------------LADIARIQRERFCQVSGLYFANSADRCAFWLEHFGFAPIEMGSEDGVLHSCEFVTRALTQWVEREAAVLMPDRTTFRASRQSIYDQLHAEVISKLSFTCELD----VFGSSANEFGNEHSDMDMCLVLPEVATPTVEDKQRMLMEVVACLEARPDLFTSVDTTRLTARIPIVMFVSRASGIECDLCVENRLAQRNTSLLRAYASADPRVRMLAYVLKQFVKQRRMNCAAEGTLSSYGYLLLLIHFLQRQDPPVLPVLQALPPNWP--ELPSEP-----LPTVLSRGPSEELDPSDGKSGIDTYFYDPFA-FQEPKEKLAVLREYCSRNTQTVGELLLGFLRYYGLQFDATRDVVSVRRPDAGTVTKDDKRHTCQWRFTTRLSIEDPFEVGYDVAHVLKGSRDKYIRQQFVRAYVLLMDGAIQHESST 960
BLAST of mRNA_P-fluviatile_contig9.15028.1 vs. uniprot
Match: K3W949_GLOUD (Uncharacterized protein n=1 Tax=Globisporangium ultimum (strain ATCC 200006 / CBS 805.95 / DAOM BR144) TaxID=431595 RepID=K3W949_GLOUD) HSP 1 Score: 306 bits (783), Expect = 1.840e-82 Identity = 237/687 (34.50%), Postives = 338/687 (49.20%), Query Frame = 3
Query: 819 LMVGLFRLGVGTNTAGIISKK-MFERAPRGPFRDPREMLFGTVLFYAPKSVGSFVFRIYD--------------ASDPV-ETLATSHAWQVDAQGKDVELSLRF--VLNQLRSSDGK----------GSVLGALAQLAHLLEHLETAPPQRYNRSVGSALWNAVTSARNQLSGVKLPSGSGKNGGSGQVDRERDAAADD--RKLRAVHGAVWCVLNAIVTNPAAGALLADAPPQ-IDPFNKNGASLPCLALCRLWQSTFCPFEEHYFDKPQALAKHYQDDFGFAPSAARVEDI-------DPAVLRDLTGQMSSLLPTLLPSADFDESRERVRRSLERNLMRQLPEMIPKDSTLRVFGSSSNGFGNDSADLDMCI--EYPNGAKYPDDAGALIESIADKLKAAGMIEVD-SRPTARIPIVIFKDSGSGLDCDISVMNPLALRNTQLLKAYSVADPRVRELAYVVKHWAKRRWVNNASEGTLSSYGYLLCLVHFLQTRDPPVVPNLQALPPDWAGD--------------EIPQ----EAPKYLNLPKVMTRQPTDGIDYN----------TYFYDPLAPGRDGERRAAVLREFGARNKASSGELLAGFFRYFACELDCRTSVVSVRLGGLAIRERKAEACCWSMHTRLSLEDPFETWYDVAHVLKWSRFKHVRMEFARAYALLSHSS 2672
LMVGLFR G TN I K+ +FE +R L + F AP+S G F FR+++ A D E+ ++S++ A+ +++S+ + + LRS+ K G+ + +L + L+E +ET G+AL++ + QL +K ER A D + A HG++ VLN I NP L++D Q +D F + +C YF +Q FGF P + D P V ++ + L+P E+ R R+++ Q+ +P + L VFGSS+N FG +D+DMC+ E P + ++ + ++ +++D SR TARIPI++FK SG++CD+ V N LA RNT L+AY+ AD RVR LAYV+K + K+R +N A+EGTLSSYGYLL L+HFLQ +DPPV+P LQALPP W G + PQ E + LP V+ + P + + TYF+DP A +D ++ VLREFG RN AS+GELL GFF YF + D VVSVR+ +E K W MHTRLS+EDPFE YDVAHVLK SR K++R +FA AY+LL + S
Sbjct: 337 LMVGLFRAGQMTNERPIFVKQVLFENKLNRNYR----FLNTRITFRAPRSPGEFEFRVFENKRNNNGGTSQHQGAGDADRESSSSSYSNVTLARSNKLKVSMEYSHFIETLRSTHDKFRNAVKDGDVGATMSSLLSILRLIEQVETVFLH------GNALFSEFVDSCLQLISLKE-----------LTILERFTATDSVPNAMEAFHGSMRNVLNGIQANPFVKELISDDVLQRVDVFQRE---------------LYCQVSGFYFQSKDDRRAFWQKHFGFEPLDFALGDDTGHGLLQSPFVREAVSDWIVKEAHELIPDK---ETFRRTRQAIYNVFHAQVISKLPIKADLDVFGSSANDFGTIESDMDMCLVLEKPATTEEKQQILRIVVLLLERQPDL-FVDIDVSRLTARIPIIMFKMKDSGIECDLCVENVLAQRNTSFLRAYANADERVRILAYVIKRFVKKRRMNCAAEGTLSSYGYLLMLIHFLQRQDPPVLPVLQALPPAWDGSRRCDCTPSRVWCSLQSPQCALSERHPEMQLPSVLCKGPAGDNEASSSNGNSGKVETYFFDPFA-FQDPPQKLQVLREFGKRNSASAGELLIGFFEYFGLQFDASRQVVSVRMARNLSKEEKKRESQWRMHTRLSIEDPFEIAYDVAHVLKGSRDKYIRQQFAWAYSLLMNGS 982
The following BLAST results are available for this feature:
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Taxonomic scope | Eukaryota |
| Seed ortholog score | 921.4 |
| Seed ortholog evalue | 3.3e-265 |
| Seed eggNOG ortholog | 2880.D7G6M4 |
| KEGG ko | ko:K13291 |
| GOs | GO:0003674,GO:0003676,GO:0003723,GO:0003729,GO:0003824,GO:0005488,GO:0006139,GO:0006378,GO:0006396,GO:0006397,GO:0006725,GO:0006807,GO:0008150,GO:0008152,GO:0009893,GO:0009987,GO:0010467,GO:0010468,GO:0010604,GO:0010628,GO:0016070,GO:0016071,GO:0016073,GO:0016074,GO:0016180,GO:0016740,GO:0016772,GO:0016779,GO:0019219,GO:0019222,GO:0031123,GO:0031124,GO:0031126,GO:0031323,GO:0031325,GO:0034470,GO:0034641,GO:0034660,GO:0043144,GO:0043170,GO:0043628,GO:0043629,GO:0043631,GO:0044237,GO:0044238,GO:0045935,GO:0046483,GO:0048518,GO:0048522,GO:0048583,GO:0048584,GO:0050265,GO:0050789,GO:0050794,GO:0051171,GO:0051173,GO:0051252,GO:0051254,GO:0060147,GO:0060148,GO:0060255,GO:0060964,GO:0060966,GO:0060968,GO:0065007,GO:0070569,GO:0070920,GO:0071050,GO:0071076,GO:0071704,GO:0080090,GO:0090065,GO:0090304,GO:0097159,GO:0140098,GO:1900368,GO:1900370,GO:1901360,GO:1901363,GO:1903705 |
| EggNOG free text desc. | RNA uridylyltransferase activity |
| EggNOG OGs | COG5260@1,KOG2277@2759 |
| EC | 2.7.7.52 |
| COG Functional cat. | L |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko01000 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | Uridyltransferase |
| Ec32 ortholog | Ec-00_010010.1 |
| Exons | 16 |
| Model size | 5251 |
| Cds size | 2742 |
| Stop | 1 |
| Start | 1 |
Relationships
The following polypeptide feature(s) derives from this mRNA:
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817306.7675653-UTR-P-fluviatile_contig9:250339..250413 | 1622817306.7675653-UTR-P-fluviatile_contig9:250339..250413 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig9 250340..250413 + |
| 1693572007.600265-UTR-P-fluviatile_contig9:250339..250413 | 1693572007.600265-UTR-P-fluviatile_contig9:250339..250413 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig9 250340..250413 + |
| 1622817306.984089-UTR-P-fluviatile_contig9:264393..266828 | 1622817306.984089-UTR-P-fluviatile_contig9:264393..266828 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig9 264394..266828 + |
| 1693572007.9938142-UTR-P-fluviatile_contig9:264393..266828 | 1693572007.9938142-UTR-P-fluviatile_contig9:264393..266828 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig9 264394..266828 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817306.7800887-CDS-P-fluviatile_contig9:250413..250521 | 1622817306.7800887-CDS-P-fluviatile_contig9:250413..250521 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 250414..250521 + |
| 1693572007.684835-CDS-P-fluviatile_contig9:250413..250521 | 1693572007.684835-CDS-P-fluviatile_contig9:250413..250521 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 250414..250521 + |
| 1622817306.7939067-CDS-P-fluviatile_contig9:251714..252161 | 1622817306.7939067-CDS-P-fluviatile_contig9:251714..252161 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 251715..252161 + |
| 1693572007.6999218-CDS-P-fluviatile_contig9:251714..252161 | 1693572007.6999218-CDS-P-fluviatile_contig9:251714..252161 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 251715..252161 + |
| 1622817306.8081708-CDS-P-fluviatile_contig9:252493..252829 | 1622817306.8081708-CDS-P-fluviatile_contig9:252493..252829 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 252494..252829 + |
| 1693572007.7102396-CDS-P-fluviatile_contig9:252493..252829 | 1693572007.7102396-CDS-P-fluviatile_contig9:252493..252829 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 252494..252829 + |
| 1622817306.8189046-CDS-P-fluviatile_contig9:253613..253817 | 1622817306.8189046-CDS-P-fluviatile_contig9:253613..253817 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 253614..253817 + |
| 1693572007.7242544-CDS-P-fluviatile_contig9:253613..253817 | 1693572007.7242544-CDS-P-fluviatile_contig9:253613..253817 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 253614..253817 + |
| 1622817306.835107-CDS-P-fluviatile_contig9:254323..254507 | 1622817306.835107-CDS-P-fluviatile_contig9:254323..254507 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 254324..254507 + |
| 1693572007.7359674-CDS-P-fluviatile_contig9:254323..254507 | 1693572007.7359674-CDS-P-fluviatile_contig9:254323..254507 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 254324..254507 + |
| 1622817306.8476577-CDS-P-fluviatile_contig9:255013..255153 | 1622817306.8476577-CDS-P-fluviatile_contig9:255013..255153 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 255014..255153 + |
| 1693572007.744794-CDS-P-fluviatile_contig9:255013..255153 | 1693572007.744794-CDS-P-fluviatile_contig9:255013..255153 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 255014..255153 + |
| 1622817306.8592958-CDS-P-fluviatile_contig9:256142..256286 | 1622817306.8592958-CDS-P-fluviatile_contig9:256142..256286 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 256143..256286 + |
| 1693572007.7570426-CDS-P-fluviatile_contig9:256142..256286 | 1693572007.7570426-CDS-P-fluviatile_contig9:256142..256286 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 256143..256286 + |
| 1622817306.8716016-CDS-P-fluviatile_contig9:256628..256813 | 1622817306.8716016-CDS-P-fluviatile_contig9:256628..256813 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 256629..256813 + |
| 1693572007.883705-CDS-P-fluviatile_contig9:256628..256813 | 1693572007.883705-CDS-P-fluviatile_contig9:256628..256813 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 256629..256813 + |
| 1622817306.884569-CDS-P-fluviatile_contig9:257630..257727 | 1622817306.884569-CDS-P-fluviatile_contig9:257630..257727 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 257631..257727 + |
| 1693572007.8949766-CDS-P-fluviatile_contig9:257630..257727 | 1693572007.8949766-CDS-P-fluviatile_contig9:257630..257727 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 257631..257727 + |
| 1622817306.898843-CDS-P-fluviatile_contig9:258798..258918 | 1622817306.898843-CDS-P-fluviatile_contig9:258798..258918 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 258799..258918 + |
| 1693572007.9084053-CDS-P-fluviatile_contig9:258798..258918 | 1693572007.9084053-CDS-P-fluviatile_contig9:258798..258918 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 258799..258918 + |
| 1622817306.913442-CDS-P-fluviatile_contig9:259729..259903 | 1622817306.913442-CDS-P-fluviatile_contig9:259729..259903 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 259730..259903 + |
| 1693572007.9220438-CDS-P-fluviatile_contig9:259729..259903 | 1693572007.9220438-CDS-P-fluviatile_contig9:259729..259903 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 259730..259903 + |
| 1622817306.9246354-CDS-P-fluviatile_contig9:261093..261222 | 1622817306.9246354-CDS-P-fluviatile_contig9:261093..261222 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 261094..261222 + |
| 1693572007.9336128-CDS-P-fluviatile_contig9:261093..261222 | 1693572007.9336128-CDS-P-fluviatile_contig9:261093..261222 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 261094..261222 + |
| 1622817306.9371672-CDS-P-fluviatile_contig9:261541..261676 | 1622817306.9371672-CDS-P-fluviatile_contig9:261541..261676 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 261542..261676 + |
| 1693572007.9427843-CDS-P-fluviatile_contig9:261541..261676 | 1693572007.9427843-CDS-P-fluviatile_contig9:261541..261676 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 261542..261676 + |
| 1622817306.9480786-CDS-P-fluviatile_contig9:262489..262593 | 1622817306.9480786-CDS-P-fluviatile_contig9:262489..262593 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 262490..262593 + |
| 1693572007.9518948-CDS-P-fluviatile_contig9:262489..262593 | 1693572007.9518948-CDS-P-fluviatile_contig9:262489..262593 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 262490..262593 + |
| 1622817306.961283-CDS-P-fluviatile_contig9:263426..263553 | 1622817306.961283-CDS-P-fluviatile_contig9:263426..263553 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 263427..263553 + |
| 1693572007.9614565-CDS-P-fluviatile_contig9:263426..263553 | 1693572007.9614565-CDS-P-fluviatile_contig9:263426..263553 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 263427..263553 + |
| 1622817306.9729064-CDS-P-fluviatile_contig9:264285..264393 | 1622817306.9729064-CDS-P-fluviatile_contig9:264285..264393 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 264286..264393 + |
| 1693572007.9742746-CDS-P-fluviatile_contig9:264285..264393 | 1693572007.9742746-CDS-P-fluviatile_contig9:264285..264393 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 264286..264393 + |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig9.15028.1 >prot_P-fluviatile_contig9.15028.1 ID=prot_P-fluviatile_contig9.15028.1|Name=mRNA_P-fluviatile_contig9.15028.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=914bp
MPQRHLQEHQEPQPQFQPGLMRAVDPVEAAHRSNLQPQAGLDEASKPPQQ QQQQQVNNNHQPHGQQGNASQVSALHAMQAEAVGEHLRQEYQQTLMQRQQ QSPQRSREGRANGLQQERGGKQPSPSPALNQPQRNEHGGAPEGGEGAGAN LPTEAGEGGGEGHQAEDKDKAKAGKFSPKRSVKNQFGLLYLMYPNGAGRG PCGTQRVRPGAHLTVRWELPAGCIDVVGRPRRDRESGGGGVRGVEPQRLM VGLFRLGVGTNTAGIISKKMFERAPRGPFRDPREMLFGTVLFYAPKSVGS FVFRIYDASDPVETLATSHAWQVDAQGKDVELSLRFVLNQLRSSDGKGSV LGALAQLAHLLEHLETAPPQRYNRSVGSALWNAVTSARNQLSGVKLPSGS GKNGGSGQVDRERDAAADDRKLRAVHGAVWCVLNAIVTNPAAGALLADAP PQIDPFNKNGASLPCLALCRLWQSTFCPFEEHYFDKPQALAKHYQDDFGF APSAARVEDIDPAVLRDLTGQMSSLLPTLLPSADFDESRERVRRSLERNL MRQLPEMIPKDSTLRVFGSSSNGFGNDSADLDMCIEYPNGAKYPDDAGAL IESIADKLKAAGMIEVDSRPTARIPIVIFKDSGSGLDCDISVMNPLALRN TQLLKAYSVADPRVRELAYVVKHWAKRRWVNNASEGTLSSYGYLLCLVHF LQTRDPPVVPNLQALPPDWAGDEIPQEAPKYLNLPKVMTRQPTDGIDYNT YFYDPLAPGRDGERRAAVLREFGARNKASSGELLAGFFRYFACELDCRTS VVSVRLGGLAIRERKAEACCWSMHTRLSLEDPFETWYDVAHVLKWSRFKH VRMEFARAYALLSHSSSTSSLLETICSQADPPPFTKVEERSAHEMAEDEA EQLRLLHPDMHAL* back to topmRNA from alignment at P-fluviatile_contig9:250340..266828+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig9.15028.1 ID=mRNA_P-fluviatile_contig9.15028.1|Name=mRNA_P-fluviatile_contig9.15028.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=16489bp|location=Sequence derived from alignment at P-fluviatile_contig9:250340..266828+ (Porterinema fluviatile SAG_2381) GGATCCCGAGGGGAAAAGAGCGCGGTGGTGGCGGGGAAGGGGTCGGTGCG
GGCAGTTCTCCCGCTAATTGGGGTATGCCTCAAAGACATCTTCAGGAGCA
TCAGGAGCCGCAGCCGCAGTTCCAGCCTGGGCTGATGCGGGCCGTCGATC
CTGTCGAGGCTGCACACCGCTCAAACTTGCAGGTGGGAACAATGCCAACC
CTTGGCCTCACACCAGTCGCTGAGGGCCTTAGAGCATCGCCGACGGCTTG
TCCTGCAGCGGTGTACCCCGGTGTTAGCTCCCGGGGCTATTTTGGTGTGC
GGTCGGTTGGGCTTGATCTTGCGCGTTTTCTTTGTTTTTTGGTTGTTGAT
GAGAGGGTGGACAAGCTTCATCCTTCTCAACGGTGTTATCGTTTGAAATC
CACATGATGCGTCCATCGGTAGCCCTGGCCGGCTTCTACCGTGTCGCTCA
CTGCTGCCGACCCTCGCGTTGTCGCGGGCACGGTCGGGCTAGCCTTCAAT
TTGTCCAAAACTTTTGTTCTGTTGTTCGGCATTGGGATGTAGCTCGTTGA
AGGGGAGGCAAACAGTATCCCTCGGTCGCCAAAAAAGCCCTGTAACTTTG
ACGTGCTTACCACAATGTCGTTCTTGACGTTTTTGCGTGTTGCCTGCAGA
AGCCGCGAAGCGAAAAACCGTCACACATGTTTTAACTACGCCCCCCCCGG
CCGTTCTCCCCAACACCCCGGCTCTCACCTCGGTGTTTGCCATCGGGATT
GGGTTTTCGTCGCTTGGCAACGACATTGTAAAACAAGCCAACTCGCTTCG
TGAACTCGGCAACCTGGTTACCGTCTTATTTTTTGCCTCTGTTTTTTTTT
TGGCGGTAACCATAATGGTGGTCAAGAAGAACATGTTGTGCGGAGTGGAG
AACCCTCACTCCGCGCGAGGGGGGTGATCGCACCACGTTGTGTTAAAATG
GTCAAGCACCCTCGAGGCGGTTACACAGTGCTTACAGCTGTCTCTGGAAG
TGAAAGCACCAGAAAATAAATTAAGCCATACGCAGCTGTCATCCGTATGC
AAGGAAGTAACCACAAGATGCCGAACACCCTTAGCAGGATGCAGCGCACC
CTTCATGCGACTCGCCGAATATCTCACGGCGCTTCGCGCTTGGTGGTGTG
AGAGCCTGGTCCGGTGAGAACCCGGCGTGCTCCGTCCCGGCTTTGTGGGG
ATGCGAGGTCAATGGTCTAACGACTACCGCATGCACGACTATGAGTACAC
CCCCCCCCCGGCCGTTCTCCCGCCGCCCCAAAAACGAAGCGCGCGCTGCA
TTCAACCTGATGCGTTTCCTTTCGAATCTGTTGGTGGCTTTTTGCGCGGA
CGTGCTGCCGCCGGCCACATATTAGCCGCAGGCGGGGCTTGACGAGGCCT
CCAAGCCACCGCAGCAGCAGCAGCAGCAGCAAGTCAACAACAACCACCAA
CCGCACGGGCAACAGGGCAACGCCAGCCAGGTCAGCGCCCTCCACGCCAT
GCAGGCTGAGGCGGTGGGGGAGCATCTCCGCCAGGAGTACCAGCAAACCC
TCATGCAGAGGCAGCAGCAGTCGCCGCAGCGGAGCCGAGAGGGCAGGGCG
AACGGCCTGCAGCAGGAGAGGGGAGGGAAACAACCCTCCCCGTCACCCGC
GCTAAACCAACCCCAGCGAAACGAGCACGGCGGCGCGCCGGAGGGGGGGG
AGGGCGCGGGCGCAAACTTGCCCACGGAGGCGGGAGAAGGAGGGGGAGAA
GGACACCAGGCCGAGGATAAGGACAAGGCGAAGGCGGGCAAATTTTCGCC
GAAGAGGAGCGTCAAGAATCAGGTGTGCGGCGTTTTCTGTTGGGGGGCGC
GCCACTAGGGGAAGCGGAGGGAAGGCTGTGTGAGGGAATGGTTTGGTGTC
GGCTTTTGCCCCAGTCCGCAGAGGGCTCCGGTAATGGTGACTGCCGGCAG
AGAAGCCAGTACACACGTAACAGGGGATCCCCCACCACATGCACCTGCTG
TGTCCTTTCTTTACCACATTGTCCCTCACCATCTAGACAACCAACGACTG
ACCAGCACTGAAACCCTCACGCATGTTGTTCATGTTATTTCTTCAGTGAC
ACCGGAGATATTGTTCTAATAATTACTTTCCTGTGCCCCCGCGTGCACGT
GCAGTTCGGCCTGCTATACCTCATGTACCCGAACGGCGCCGGCCGCGGCC
CCTGCGGCACGCAGAGGGTCCGCCCCGGCGCCCACCTCACCGTGCGCTGG
GAACTCCCCGCGGGCTGCATCGACGTGGTCGGAAGGCCCCGCCGTGATCG
TGAGAGCGGGGGGGGGGGCGTGCGCGGGGTCGAGCCCCAACGGCTGATGG
TGGGGCTATTCCGCCTCGGGGTAGGGACGAACACCGCGGGCATCATCTCC
AAGAAGATGTTCGAGAGGGCTCCGCGGGGCCCCTTCCGCGACCCGAGAGA
GATGCTCTTCGGGACTGTGCTTTTCTACGCACCCAAGTCCGTGAGTTTCT
TACTTGAGACGGGGGGGGAGGGGCGAAGCTTGATTCCATCACCTTGCGAT
ACCCCCCCCCGCATGGCAGGGTTGGGCGAGGCGGGAATCGGGGGGCGAAG
GTCGAGGCGGTGCAGAGAAATAGCGGAGCGGGGGATGCTCGGCTTTTTTC
CTTGCGTTTTTTTTAGTGTGCGCGGGAGAGTTTAGAGGACGCGTTTGATA
CTTCGTCCACCAGGGAAGCAAGCAAAGCTCAGTCCGACTCAGGGTTGTTT
TTCATCTCTTCGGGAGTGTTGCCTCTTGCCAGTCACCGCTGCTGCTGTGT
GTTGGTCCTTGTCTTGCGAATCGAGCGAGTGCTGAGCAGCGCATCGTGCA
GTCGGGTCTGTCGATCTGGCGTAGCAACGGTTTTTCACAGCTGACGGTCT
GTCCGGCACGTGATTCCCCTTAAGATCGTCTTGTTCTTGGCGGATTGTAT
AGAATTCTTTGCCTTTTTTGGCCTTTTCCCGTCCTTCCTGCGTTAAACAG
CCGACCGGGCCTGGAGAAGTGGGCCCGATCAGACCGGACCACCGCACGCA
TGAATTGTGAAGGTTCAGGATCTTGGCACCCCGCTTGTTTCTCAAACCAA
TTTTTCTGTGACCGTTACTCGTCCCATGATCATCCAACAACAGCAGCGTC
GGCACTCCTCCGCCTTCGCCTGCCGTTCTCCTTTGCCTCCCCGAGCATCA
TTCCACTCTAATCCCGCCTGATGACCAACCTCACGCACCCCTCGTTACCC
CCCTTCCCCCTCCTCACAAAAAAGGTGGGATCCTTCGTGTTCCGCATCTA
CGACGCGAGCGACCCCGTGGAAACCCTGGCCACGAGCCATGCGTGGCAGG
TTGACGCGCAGGGCAAGGACGTCGAGCTGAGCCTGCGCTTCGTGCTGAAC
CAGCTCCGCAGCTCCGATGGCAAGGGATCGGTCTTGGGGGCCCTTGCGCA
GCTGGCGCACCTGCTCGAGCACCTCGAGGTGGGCGAGGCAAAGGAAACCT
GGGGGGCGCGAGGGGGAAGGGTAATAACGGATTGTTGAGGGGGCGAGGGG
GGAACCAGTAGTCATGCACGACGTAGTTATGAAGCAATTGGATGGAATGC
GGGGGGTTCGGCCTCGAGCGGCTCTGTCTGTGTGTTTCGTGGTTTGAATC
GTCGGGTGCTTTGCGGAGCCGGCGCATGGAAGCCGCAACAAAAGGACGGG
TAGTGGGAGGATCATGTCACGGGGGCATGAATGGAAGTGTTGTTGGTGTT
GTTGTTGTTGTTGCTGTTGTTCTTGTTCTTGTTCTTGTTCTTGTTGTTGC
TGCTGCTGCTGTCATTCTGCGATGCCTTGCGCGACTCGTATCACTTCACG
TACCAAGATGATTGTGCCCTTGTTAACGCGTGCCGATTGTTCATCAGAAT
GATACAAAAGGATCCGACAACTCCCCCGTTTTACCAAACCTGTCGGCGTC
TCTCCCACCTGCCGCCGCCGGCCCTTCCCCGCAGACCGCCCCTCCCCAGC
GCTACAACCGGTCCGTCGGGAGCGCGCTCTGGAACGCCGTGACCTCGGCG
CGCAACCAGCTGAGCGGTGTGAAGCTCCCCTCTGGTTCGGGCAAAAACGG
CGGCAGCGGCCAGGTGGACCGGGAGCGGGACGCCGCGGCCGACGACCGCA
AGCTAAGAGCTGTTCACGGTGTGTGATGAGGGCCGTAACGATCAGGGAAC
AGAAGGGGGAGGGGGGTGAAACTGAGAGGAGGGAACGGGAAGGGAGGGGA
GAAGGCGGGGGCGGGGCACCCTCCGCACGAGGACAAATTAGGTTGTGCGT
GGCTTAGTTGTTTTCTGTTTGCTAAGACCACTTGGCGGATCATTAGGGCG
GAGGGATGGACCTTTGTCGGTTGTCAGCCACGGTCTCGGGGGCCAAGTTC
CTTTCGTGTGCATGGGAACACAGCGTCCCAGCCGCACAAATCGGGACGAA
TTAGCCTTGATCGCCACTGCTTCACCATACCTTCCCAACGTCACGCTCTG
CTGCTGCATATTGAAAGCCAAGCCCTCCGCATAGATTACTGAGAAGGCGC
ATGCACGAGAAGGTCGTGGAACATGCACCGACCCCCTTGTCAGGTCGCAT
TCTGTCGTCAGACTGCCGGAGAGCAACTTCCCGCTCTGCCCTCTCCGCGT
TGGTCGTAAACATGTTGCTACCAGGTGCGGTGTGGTGCGTGTTGAACGCC
ATCGTCACGAACCCGGCGGCCGGTGCCCTCCTGGCGGATGCCCCGCCCCA
AATAGACCCGTTCAACAAGAATGGCGCCAGCTTGCCGTGCTTGGCGTTGT
GCCGGCTCTGGCAGGTACTATGTGCGTTCTTCATTCCTATACATGGTCAT
CGCTTTTGGGGGCATGAAGGGGGAGGGAGAAGCAACCGGTGACCGTGCAA
TTCTTTTGCAGAGTCGAGAGGGAGGGGGAGAGAGAGAGAAGTGTGGTGTC
CCTCTGCGTGTTTCGTCCGATCTTCTTTTGTTCCGCTTTCGCTTTTCTTT
TCTTGGAATCAGCATGCTTTGTTCATGTCATCCCCCGCCCTTCCTTCCGG
CCGGATTAGTTTCAGCTTGTTCCCACCGCCCTTCGGCCGCACGAAAAAAT
GTGCACATCGCTCGATGCTTGAAATTTGGTTGAGCAACGGTCCGCTTTGG
GTTTGGAGATTTTCGCAGCCTAGTCAATCAGTTCTACACCGCAGCCTGAA
CCGGCGGCAGCCTTTGCATCAGCGGCCGCGAGAGAGTGCTTGGGTTCCTT
GCGCGCCGGGTGCCGCGGTATGGTTCATATGTGCGTTTTTTCTCTTCCGT
GCTCGGGCATGAAGTGTTCTTCGGCAGCGTGCATTTCGCCCGTCACTCGC
TTGCGATACAGGAACCGTGTTTGTTTTTTGTCGTCTGTGTTGTTGTTGTT
GTTGCTGCTGCTGTTGTTGTTGTTGTTGTTGTTGTTGTTGCTGCTGCTGT
TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG
TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGGGTCTTGGCAT
TAAAACCTTCCCGACCACCTCCAGTACTTTTCAATGTCCATACCCTATCC
TACCGAAAGTTGATCTTCTATTTTGGCTGTGGATTTTCGGAGGGAGCGAC
CCTCGTCATGCTCCGGACGCTCCATGCCCACTGATTTGCCGAAGCCCCTC
TCGCATCTAACTTGCTTTTCGTTTGACCAGCGCCGGAATCGTGTCTGCTG
CGTTCGCCTCGCCTCCCCAACGCTTGTCTCATTGTTTGATTTCACGTCCT
CAGAGCACCTTCTGTCCGTTCGAGGAGCACTACTTCGACAAACCCCAGGC
CCTCGCCAAACACTACCAGGACGACTTCGGATTCGCCCCGAGCGCGGCGC
GCGTGGAAGACATCGACCCGGCCGTGCTGCGCGATCTCACGGGCCAGGTG
GGTAACTCCCCCCCCGTGACATGCTTCATGTCATTTCCTCCGTCCTCCTG
CCCCCCTGGCACCCCTGGTGCGCTATGCGTGCTGTGCGTCCTTCCACTCA
CATGAGTTTTCCCTCTCCACTCCCCGTTGCCCCACTACCTCCCTATCCTT
GTTTCCGCGGTGCGCGACCCCCGCCCCGTTCGTTCATCTTACTGTCCCGA
TCCTTTCACAGCGCCTTGCTCCGCAGCAGCCTTCCACCCCCCTGTCCCCC
ACCCCCGATCCACTTCTGCTCCCGTTGTCGTTCATACCCTACCCGCCCGT
GCCCCCTCCCTCCCCATTCTACTGCTACTCTTGTCGCAGATGAGCTCCTT
ACTCCCCACGCTTCTCCCTTCGGCTGACTTCGACGAAAGCCGAGAGCGTG
TGCGGCGGTCCCTGGAGCGGAACCTGATGAGACAGCTACCGGAGATGATC
CCCAAGGACAGCACGCTCAGAGTGTTCGGCTCCAGTAGCAACGGATTCGG
GAATGACAGCGCGGACCTGGACATGTGAGGATCCTCGGGAGAAGTGAGGT
CGGGGTGGTAGAGGGCGAAGGCCGGGGGCGGCCCGGGTGGACCTCTTCGA
CTTCGAACGTCATTGGTGTCGTTGGTATTGATGTTGCTGCTGCTCATGTT
GTCAGTGTTGTCGTTGTCTTTGCTGTTGATTTAGATGCTTGTTTTCGTTT
CCGGTTGGTGGGGCACAGCGAGGTTGTTGGAGGAAAAACGGACGGGTAGG
GAAAGTAAACCACGGGCTGTTGCAATGGAGGTGCCACAGCGCCGGGTCCA
ACTCGAGGCAGCGGAACCAAAAATACCGTGGAGTTTTTTTTGAACAATTG
TTCCGCCTGCGTCTGCCTTTGTTGTTGTCGTTCTTATGTTCCGCGTGCGC
ATCATTGCTCGGCTTGCAACCACCTTGGATTCTGTCGTCTGCGACACGTT
CTTTTTGCGAAAACATGCTCCTCTCCCATGTTTCTATCGATTAGGGTGAG
TTTCGTTCGGCATTCATTTTGTTTGCTTTCTTCACTGGCAGCGCGACAAT
CCGCAGTCTTCACTTCCTCACTTCAGACGGCGCCCCTCGGCATCATTTTC
GTGGCCTACCACCGCTCCCTTCAAACCTCCGCTGCTACCTTGTTTCACGA
TTCCCGTCCTTGCTCCCTCACGCCGCCTGAAGACAAACTTAACACGAAAG
ATGTGCCCTGCACGTGTACGAGTGCGTGTTTTGTCAGCTGCTCAAGGGAA
GTTGCGGGATGTGATTCGTGTTCACCCCCCTCCTCCTTTCTCGACTTTCA
TCGCCTCGCCTCGCCTTGCTTGCCTTGCCTTGCCTTGCCAGGTGCATCGA
GTATCCCAACGGGGCGAAGTATCCGGACGACGCCGGGGCCTTGATTGAAT
CCATCGCCGACAAACTCAAGGCCGCAGGCATGATTGAGGTGCGAGTTCGT
TCCTGTTGTTGTTGTCGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG
TTGTTGTTGTTGTGGCCGTATTCGTACGTGCCCTGTATCTAGTCTCGAAC
TTGGTTTCATTTTCGCCTCAACCTACCTCCCCTCTGGAGCCAGAATATTT
CTCACCATGAGCGCCCCGGTCCCATCACCCTGCGGATACGTAGTCTCCCT
TCTACAGGCTTTTCACCAGATCATCCGCTTCGTCGCCCACGCCTTCCGCA
AAGCTGTCTCGTTTTGCCGGCGAATATATGAACGACGCTCAGCCCAGCCA
GGCTGAGCGTACAAAGAGAATGAAATCAAGGAATCCGTTGCCAATTTTCG
ACTCCAGATCGGACGTAGGCTGAAAGGCCCGCGGGTAGCGACCCCTTCGT
GGAGGGTCGGGGTAAAAACCAAGCACGGGCGGGCGAAGCGGTGACAGCGT
GTGCGTTTGTTTTGAGCGCGCATAGGGGGAAAACGGTCAAGCCTGTCGTA
CGGCACGTTGAGGCTCTTTCGCGCGACAACTTGTGTGTCTGCTGCGTGTC
TGGCGCGTACACTGTGACAGCTGGGGCATTTGCATCCGCGGATAGTGGAA
GGTAGAATTCGTGTCGAGGGCTGCTGGAGGGCTTCTCCAGCATCGAGCAT
CTTTGTCGCTGAGCGTCTGACTTCGCCTTTCGCGGGACCTTCTCACATGT
CTCTCCGCCAGGGTTGATATCCTAACTCGTTGGTTTCGCCGCCGAAATGC
GCGCAAGCATCGGCTGCGTGCAAGCTTCGCACATGTTGCATTTTCGTATG
ATTTTCCTTTCTGCCTATCCCGAATCGACTGGAGGTGACGAACACCAATC
AAAGTCGGCGGAAGGTCGGCTTGAACTTCATTCGGCCTCGCCCTTCGCCC
ACTACAAGCAGACAGTGAACGATTTCTCTCACGTCTCGACGCGCTCGCTC
TTCTCTCCACCTCCATGACTTCCCACCCGCCTTTGGTGAAACTCGCTTGC
TTGTTGCATGGCACCACACTTCTTTATGTACAACAAAAATGCGCGTTTCC
CCCAACAAGGTGGACAGCCGGCCAACGGCGCGCATCCCGATCGTGATATT
CAAGGACAGCGGGTCCGGGCTTGACTGCGACATCTCGGTCATGAACCCCT
TGGCCCTGCGCAACACGCAGCTCCTCAAGGTGATTTTGGCTCTGGCGCTG
CTGACTGCTGTGGTTGGTCGTCGTGCTTGGCCCCTGTAGATGCGGCGGTG
GTGGTTCTAAAACTTCGCTAAAGGCGAGAGCTGTTTCCCGACCTTTGGAT
CCCTAGGAATTTTCCGGCTGATTCTCTCAGCTGCAAAGAAGCTAAGCCGT
CAAATCCGCGAGAAATAATCTCCGATTTGCAGCGATTTATCATGATTTGA
AGACTACCGCTAGAGTGACGCTGCCCCCCTCCCCGTTCCCGCTGGCTCTC
ACCTCGGTGTTTGCAATCGGGATTGGGTTTTCGTCGCTTGGCAACGACGT
TGTAAAACAAGCCATTTCACTTCGTGAACTCGGCAACCAGGTTACCGTCT
TTTTTTTCCCTCTGGTTTTTTTGGCGGTAACCATAATGGTGGTCGAGAAG
ATCATGTTGTGCGGGGTGGAGAACCCTCGAGGTCACTCACTCCGCGCAAG
GGGGATGATCGCACCACGTTGTGTTAAAATGGTCAAGCACCCTCGAGGCG
GTTACACAGTGCTTACAACTGTCTCTGGAAGTGAAAGCACCAGAAAATAA
ATTAACCCATACGCAGCTGTCATCCGTATGCAAGGAAGTAAGCACAAGAT
GCCGAACACCCTTAGCAGGATGCAGCGCACCCTTCATGCGACTCGCCGAA
TACCTCACGGCGCTTCGCGCTTGGTGGTGTGAGAGCCTGGTCCGGTGAGA
ACCCGGCGTGCTCCGTCCCGGCTTTGTAGGGATGCGAGGTCAATGGTCTA
ACGACTACGGCATGCACGACTATGAGTACCCCCAAACCAGGCGTACTCCG
TGGCGGATCCCCGCGTTAGGGAGCTAGCGTACGTGGTGAAGCACTGGGCC
AAGCGGCGGTGGGTGAACAACGCAAGCGAGGGGACCCTGTCGTCGTACGG
GTACCTGCTTTGCCTCGTCCACTTCCTCCAGACGAGGGACCCGCCCGTCG
TACCGAACCTGCAGGTCAGCTAGTTGTGCAGCACATGGCGCGTTGTTTTT
AATGTTTATGTTAATATTGGTCGGTGGTGTTGGTGTTAGTGCTGGTTGGG
GTGTTGGTGTTGTTGCTGGTTGTTGTTGTTATTGGCGTAGTTGTTTCCGT
TTCTAGTGTTATTTCTCCTCCTTTTCTGCTCCTGTTGTTGTTGTTGTTGT
TGTTGTTGTTGTTGGTATCGTTATCGTCGTTGCTGTTGTTGTTGTTGTTG
GTATCGTTATCGTCGTTGCTGTTGTTGTTGTTGTTGTTGGTATCGTTATC
GTCGATGCTGTTGTTGTTGTTGTTGGTATCGTTATCGTCGTTGCTGTTGT
TGCTGTTGTTGGTATCGTTATCGTCGTTGCTGTTGTTGCTGTTGTTGGTA
TCGTTATCGTTGCTGTTGTTGTTGTTGTTGTTGTTGTTGTTGGTATCGTT
ATCGTCGTTGCTGTTGTTGTTGTTGTTGGTATCGTTATCGTCGTTGCTGT
TGTTGTTGGTATCGTTATCGTCGTTGTCGTTGTCGTTGTTGTTGTTGTTG
TTGTTGTTGTTGGTATCGTTATCGTCGTTGCTGTTATTGCTGTCGTTGTT
CCTGTCGTCGTCGTTGTTTCTCGCGCTTGCTCCGTCCTAGAATGAGAAAC
GGGGGCGCTAAATATGCTTCGAGGATAAACAGAAATGCGTACCCGCGGAC
ACAAAAGTGACGCCCGGGGGGGGCCGTCTGGGCGAAGGTCCTCTGTTCTC
ATGTACGCGAAGAATTCGGCATGTCTTCATTGAGGGCGAGCCAGACCTAG
TCAGGTAGCTCCATGCCATTGCCGTTGTTTCTCGTTCGGTGGATGTGCAT
GCGTACGTGCGTGGGCAGTGTGTTTGCTCCGCTACAATTATTCCGCCGCA
CTCTTTTGTAGCGCTCGTTCTTCCCCACTACATCGTGTCGGCATTTTGAG
CTCCTTGGGGTTCGTCGGACGGGCTCTACAAGATACTCCGACCGAATGAG
CATGGTTTCTTCCTCGCGTACCTTTGCTGACGAGCTGTGCCAACGTCGGC
TTCGGTGGCTGCTGGGTTCAAGCGAGAGCACAGCGACGAATGGTAAATCA
TATGTGTTCGTCGTCATTTTGTCGGCGTCATCTTTAGGGCCTGCTCTCCA
GAGTAGTCTTTCCTTTTTTCTTTCCTTTCTTCTTTCGCCTCGCACCACCA
ACAGGCGCTTCCGCCAGACTGGGCAGGAGATGAAATCCCGCAGGAAGCGC
CGAAGTATCTCAATCTGCCGAAGGTCATGACCAGGCAGCCGACGGATGGG
ATTGACTACAACACATACTTCTACGACCCCTTGGTGAGGTTGACGTTATT
TTTCACGGGCGGAGGAATCAGGGAGACGGGAGCACTAGTGCGGGCGTACG
CGCGTGCTTCGAGTGTGTTTTGCGGCCGTGTTTGTCTGATGAGTCGTAAA
ATGCAGCCGCATTCTTTTGCGCTCGTGCAGCCTTTCTTTTTCCCGCGGTG
GCCACCTTCTGTCTCCCCTGCATGTGTGTTTCCTGACGGATGCATCGTTG
TCCCCGTGGGTGCCCCCCTCATCCTCTGGTGCGTGCTCCCCTCCTCTACT
TTCGCCCTGTCGTGGATCCCGCCGCCGGTTTTGGCCAACGTTTTTTGCGT
AGGCGCCGGGCAGGGATGGGGAGCGGAGGGCGGCGGTCCTACGGGAATTC
GGGGCTCGTAACAAGGCCTCCTCCGGGGAACTCCTGGCCGGGTTCTTCCG
CTACTTCGCCTGCGAGCTGGACTGCAGGACCAGCGTGGTCCGTTCACGAC
CCTTTTGTCGGCCGTGGTTTTGGTTTGTTACTCGCATGCACCTGTACGAA
ATACATAGTTAGCCGGCGGTGAGTGCGACTTCCTTAGGCAAGCAAGGCAC
GTGCGAGCGCGCATGCGTTCGTGTGTATGTATGTGTGCTTGCCCGCGAAG
GTTTTTAACTTACCTTGGTTTGTCGTGAGCGTGAGATTCACGCAGCACTG
GGTTACAGCGCAGACCGCTCGCCTGCGTCCGACGAAAGCTTTCTATTGCT
GAATGCCCCTCTCCAAAGGGATGAGGGTGGTGCATACCCTGAAGGATGAG
GTATTATCTTATCAACGTGCGGGGTTGGGGTTACTTGAAAAATCCAAACA
ACAACTTGAATACCCCCGAAATATTAGTCGCACGTGTTTGCAAGGCCACG
TGCAAAATGTAGCCCCCGTCAGCTTTCGGCAGCTAGTCTACCTGCTGAGT
ACTTTGCCCCTGTTGGACTCAAAGGATAACTCGGGAAAATTTTGAACACT
CATTTTGCCACTTTAGATCGCCCACTTGCAAAATTGAAACAAACTCGAGG
TCTACATGTGTGAAACAGCAGGACCAGCCCCAACTGTGCGTCTAGAAAAA
TGCGTCACTGTCGACGCACGTTTGCCCTCGTCCACTGTTGTCGTCCCTCC
TGCTTCCTACCCTCGTCCTCCCCGAACAGCAAAACTCGAGTGTTCACGCT
GCTACTCGCCGTAACGTTTTACCTCCCTCTCTCGCCCTAGCTTCGTCTCT
CTCTGCTCGTTTGATAAGCTTTTTGCGCTGCCCCGTTTTCTGTGGCAAAG
GTGAGCGTCCGTCTTGGAGGCCTGGCCATCCGCGAGCGGAAGGCAGAGGC
GTGTTGCTGGAGCATGCACACCCGCCTCAGCCTCGAGGACCCATTCGAAA
CCTGGTGAGTTGGTTGGAGCATCCGTGGCGAGAGGCAGGGGCACGGGTTG
ATGTCAGGGGTACCAGATGATATCAGGGGTATCGATTGATTTTCAAGGGT
AGACTGAGCTTAGAGGCAACGGTGGATGCTAGAGGTACCGGTGGATCTCA
CGCGCATACCGGGATGCCGGTCGATGTCAGCGGCACCGGTTTCATGTCAG
GAGAAGCTGTTGATGTAGAGGTCATCGGTTGATCACGGGTGTGCTGGTTG
AGGCGCACCGGCTGATGGCAAGGCACTGGTTGATGTTAGAGGCACCGGTT
GATATCAGGAGCACGGGTTGATGTCAAGGGGGAACCAGTTGGTATCAGGA
GCATAGGTTGATAAGAGGGGCATCGCTAGATGTCAGAGGCATCGGTTGAT
CATAGGGCACTGGTTGACACAAGGGGCACTGATTGTCAGGGCACAGGCTA
ACGTCAAGGCACCGGTAGACGTAAGGGTTTATACTCTGACGCTTCGTCCG
AGTTCCGGTCAGATAGGATGCTGGCCAAAACTTAAAAGGCGAACGTCAAC
CATGCGAAGGCTTCCGCGAGGATGGGTCCTGAAGCAGGCGGTCCTGGCGC
ACACGGATGATATTGTCTCGAGCGGCTGCCGAACGTCGTTGTGAGGAGGC
AAGTCATGAGATTATCATGCTGTTGATGAAGCCGAAGGTTCACTACAAGA
AAAAAAAGCTTGCACCCACGGGCCCGCTAGACCGCGCTTGCCCCCCCCCA
CTTCCATGCATTCCACCCTTACGCATCCCCTGCCTCTGCGACGCGACGAT
TGGAACAATCGGACGCATGATGTGTTTTCTTGTGAAGGTACGACGTCGCC
CATGTGCTCAAGTGGTCTCGATTCAAGCACGTGCGGATGGAGTTCGCCAG
GGCCTACGCCCTGCTGTCCCACTCGTCGTCGACCTCCTCCCTGCTGGAGA
CGATCTGCAGTCAGGTCAGCAAAAATGTGGAGGCGAAGAGCGTGAAAGAT
CCTTGCCGTGATTTTTTTCTGGCATTTTGCAAACGCAGCTGAAGCTTACG
GCTCATCCTGGCTGCTCGCCGGCGCCAAATTGCCGACTCATGTGCCGCAA
GGTGGCGAGAATGTAATGTTGGGCGATTTATTTTGGTTTGAAACATGTTT
TTTGGCGGGAAGCATGGAGGGGGAGCCGAGAACACGTTTGCGGATGGGGC
GTGGAGATCGGGGGCGATAACTTCGCGTGGGTTTGGTTCAGTGCGTGCGG
GGTACTCGGATTTTGCCTCGTTTCGTCCGCCCAGAGACAAGCCCGGCAGG
GGGCGCCTCTCGTCGTTTTCGATGGTCATCACATTTGACGGTTCTTGGGA
CGGTGTGCCTTTGTTGATCGATCGTTTTCTCCGACGGCGACGGTCATCGC
TCGCTGCTTTCTTGAGCTGACGCCTGCCGACTCCCTGGTCGCCCCCGTTT
CCGAGCGTGTCCAAGATAAAGGTGATGGCTCGAATAGGTTACTTGTTCTG
CAGACAAGCGAAGCTCCTCAATCGCCAGTTCCCGTATCTAAATCCTCCCC
TCCCACAAAAAACTCGCCCCCCTTCCTCTCCCCGCCACGAACGTTCCGTT
GTCGTGTATTTCGGATTATTCTTCGCTGCCGTTTGAAAACGAAAACCGCC
GGGTTTCTCCTCGTTCGCTTTCTTGTTGTGATGGAAAAAAATGCAGGCCG
ACCCGCCCCCTTTCACCAAGGTGGAGGAGCGCTCGGCCCACGAGATGGCC
GAGGATGAGGCGGAGCAGCTTAGACTTCTCCACCCGGACATGCACGCCCT
CTAGACGGGCCTCGTCGAAACCGACGACCTGGAACGAAACTCTGCCGACT
TGCGGCTTGATTTTTCCGAACCCAAGGCGGCGTTGCGGGGCGTTTGCTCG
TCTGCCTGACATCGGTCTAGACGAAGATCGGGGCGAAGTGCGGTCTGATA
GAGGTTTTCCGACGGTTCGTAGAAGCAGCGCGGGGGGACGTTTTTTCGAA
GGAGAATGGGGCTTGTCGACCATCGCCCGGTCAAGGCATGGACCGGAGAG
CGAGAACGTTGACATAATATATTCCTTTGGTCGAACGCGCCATTTGCGAG
TCTCGTCCCTCGGGCAGCGCTTGGTTGAGGTCTCGGAGCCAGTACGGAGC
CCAGATGCCATTTTTTGTCGGGCGCCGATTAGAGCGGGGAACAGTCGGCT
CACCTCTTGTCTAGTAGGAGGCTGTAATCCCAGTCGATTGTTCTCTGTTC
TGGTCGGCAGCTCCCGGCGTAGAGACGCGGTACAACACCGACTCGTTCTT
GTACCACGAAATTTGTAGGAAGGAAGCAAGACTTCGCCAAGTCCGGTGTC
GCTTGTTTCAGGTAATGTTAATGTGAATTCCGTCTTAAAAACGTGCAGCT
TGCTGGCTGAGGGCGTTTGTGTGCGTGCGCGTGTGAGTAGCCTTCCAAGT
GTCGTCGAGTGTCGTCGTCGAGTGTCGATGCGGTTCTAAGGTACCTTGGG
CTTTTACGTGGACGGCGGCGAATCGGTCGGCACGCAAGATCGATGTCGAC
GGGCCGAGGCTTCGGCGGATGCTCGGGAGCATCGCCAATCCATGTCATAT
TCCCTACGGTAGATTCCGTGCTGCAAGAGACTCGGCAGGCCTCGGCTGCT
GCTGTGGGAGTGTTTCGTCTATCCAAGTTACCTACCGCATGAGGCCGCTT
GTTTCAAGAGGACGGATACTTTACGCGGGTGGAGATGAGAGGACGAGAAC
AGGGAGCCCGTGGGCGGCACGCCTGGACACACGGCGTGGAATGGGGCGGT
CCTAATTTATTGGCCGAGTTGGTTTTTGAAGTGAAATAATTTCCAGGAGA
GATCGTCTTTTTTAGGGGGCGAACGGAATGACGAGGGCAGCGGAGGGGAA
GGCGTGATCGGGGGGCGGGGGCTGGGAGTGAATGGCGGTGAATGGAGCAG
GTGGTTGGCTTTTGTGTCCACGGGCGGCCCCCTTATCCCTTGGCTTCCTG
GTCGACGGAGGGAAGTGCGTTTAGCTTCTTGTCGCCCAGGACATTCTTCG
AAACATCTGGTGGTGGGTCTTTTCCACTAAAAAAGGTCCACCCACGGTGC
GCGCATAAGATAACGGCATGCATACGAAGGGCGCGGAGGGGGGGAGTTTT
TTCTGCTTGGGGGGGATAGGCAGCTCCCGCGCCGAGCATGAACGGCAGAA
ATGGTGTTTTTTCATATTTGCTGGAATGAGAGTGGGGTGAAATGGAGAAT
GAACAAAGGTTCGGTTCGGTAGCATGCGAGGAAAGAATGCTCATCTTCCG
TCCTGGGGCGAAGCAAGGGCCTGGCAAGCGCGTGAGCATGGAGATGGTCG
GCATCATTTTGAGTTTGGACAGCAAGAAAGAGCCTGGCGACGGTGCCGGG
GAGTTGCAGCGGGGTTGAAGAGGGCGAGGGTGTTGGTTGAAGTTCCACAT
TTTTGAGCTTGGACATCATGAAAGCCTGGCAAGTGCGGAGCCCTATTAAT
GCGGGAAGTAAGGAGGGGATTGAGTAGCACTTGGAAGTGAATACTTTGAG
CTTGGACATGACAGAGCCGAGCAAGTTGCATTGGGGAATGGGGGTCGAGT
TAGTCACCACGGACGTGAATCACGACGTTAGGGTTGATGGGTAAGATATC
GCACATTTTGACGTACGACATCTTGAGAGCCTAGCAAATTCGTGGTGATT
TGCACGGAGACAGGGGGTTAGCGGCGGAGGGGCCGAAGGTGAAGGACGAG
CAACGTTGAGCTGGGACATCATAGAACCTAGCGTGTGGAGGAGGAGAGTG
GATGGGGGCGGGCGAGGTGCAGAGGGCACATTATGGCGAGGGGGGCTCGC
CGTACAGCATCCCATAAAAACTGGTGCTGTGTTTCGGGAGAAGAAGAGGA
ACGGTTGAAATTTCCGTAGAATACACTTGAGGAACTACAGGAGTGAGGGT
GAAGCGGAAGAGAATAATCAGCAGAGCGAGTGTGAGAAGAAGACGCAGCG
ATGGGAGCAAATCATCAGGAGGGGTGGTGGCGGAGGGGGAGGCCGAAAAT
TTGCGATCAATGCAATTGTTCAATGCGTTACTTTGTGTGCCTGGAGTATT
CTAAATAGTGGAGTTTTTTATTGCCAGTTCGCGGCTGCCACGAATCAGGA
ATCTGTTGGAAGAGGTTTAGAGATTCTTTCATGAAAACAAAGGCGCGCGA
GGGGTTCGCGACCTGTTGGTTCGAGCCGTTGCACAAGGC back to topCoding sequence (CDS) from alignment at P-fluviatile_contig9:250340..266828+ >mRNA_P-fluviatile_contig9.15028.1 ID=mRNA_P-fluviatile_contig9.15028.1|Name=mRNA_P-fluviatile_contig9.15028.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=5484bp|location=Sequence derived from alignment at P-fluviatile_contig9:250340..266828+ (Porterinema fluviatile SAG_2381) ATGCCTCAAAGACATCTTCAGGAGCATCAGGAGCCGCAGCCGCAGTTCCA GCCTGGGCTGATGCGGGCCGTCGATCCTGTCGAGGCTGCACACCGCTCAA ACTTGCAGATGCCTCAAAGACATCTTCAGGAGCATCAGGAGCCGCAGCCG CAGTTCCAGCCTGGGCTGATGCGGGCCGTCGATCCTGTCGAGGCTGCACA CCGCTCAAACTTGCAGCCGCAGGCGGGGCTTGACGAGGCCTCCAAGCCAC CGCAGCAGCAGCAGCAGCAGCAAGTCAACAACAACCACCAACCGCACGGG CAACAGGGCAACGCCAGCCAGGTCAGCGCCCTCCACGCCATGCAGGCTGA GGCGGTGGGGGAGCATCTCCGCCAGGAGTACCAGCAAACCCTCATGCAGA GGCAGCAGCAGTCGCCGCAGCGGAGCCGAGAGGGCAGGGCGAACGGCCTG CAGCAGGAGAGGGGAGGGAAACAACCCTCCCCGTCACCCGCGCTAAACCA ACCCCAGCGAAACGAGCACGGCGGCGCGCCGGAGGGGGGGGAGGGCGCGG GCGCAAACTTGCCCACGGAGGCGGGAGAAGGAGGGGGAGAAGGACACCAG GCCGAGGATAAGGACAAGGCGAAGGCGGGCAAATTTTCGCCGAAGAGGAG CGTCAAGAATCAGCCGCAGGCGGGGCTTGACGAGGCCTCCAAGCCACCGC AGCAGCAGCAGCAGCAGCAAGTCAACAACAACCACCAACCGCACGGGCAA CAGGGCAACGCCAGCCAGGTCAGCGCCCTCCACGCCATGCAGGCTGAGGC GGTGGGGGAGCATCTCCGCCAGGAGTACCAGCAAACCCTCATGCAGAGGC AGCAGCAGTCGCCGCAGCGGAGCCGAGAGGGCAGGGCGAACGGCCTGCAG CAGGAGAGGGGAGGGAAACAACCCTCCCCGTCACCCGCGCTAAACCAACC CCAGCGAAACGAGCACGGCGGCGCGCCGGAGGGGGGGGAGGGCGCGGGCG CAAACTTGCCCACGGAGGCGGGAGAAGGAGGGGGAGAAGGACACCAGGCC GAGGATAAGGACAAGGCGAAGGCGGGCAAATTTTCGCCGAAGAGGAGCGT CAAGAATCAGTTCGGCCTGCTATACCTCATGTACCCGAACGGCGCCGGCC GCGGCCCCTGCGGCACGCAGAGGGTCCGCCCCGGCGCCCACCTCACCGTG CGCTGGGAACTCCCCGCGGGCTGCATCGACGTGGTCGGAAGGCCCCGCCG TGATCGTGAGAGCGGGGGGGGGGGCGTGCGCGGGGTCGAGCCCCAACGGC TGATGGTGGGGCTATTCCGCCTCGGGGTAGGGACGAACACCGCGGGCATC ATCTCCAAGAAGATGTTCGAGAGGGCTCCGCGGGGCCCCTTCCGCGACCC GAGAGAGATGCTCTTCGGGACTGTGCTTTTCTACGCACCCAAGTCCTTCG GCCTGCTATACCTCATGTACCCGAACGGCGCCGGCCGCGGCCCCTGCGGC ACGCAGAGGGTCCGCCCCGGCGCCCACCTCACCGTGCGCTGGGAACTCCC CGCGGGCTGCATCGACGTGGTCGGAAGGCCCCGCCGTGATCGTGAGAGCG GGGGGGGGGGCGTGCGCGGGGTCGAGCCCCAACGGCTGATGGTGGGGCTA TTCCGCCTCGGGGTAGGGACGAACACCGCGGGCATCATCTCCAAGAAGAT GTTCGAGAGGGCTCCGCGGGGCCCCTTCCGCGACCCGAGAGAGATGCTCT TCGGGACTGTGCTTTTCTACGCACCCAAGTCCGTGGGATCCTTCGTGTTC CGCATCTACGACGCGAGCGACCCCGTGGAAACCCTGGCCACGAGCCATGC GTGGCAGGTTGACGCGCAGGGCAAGGACGTCGAGCTGAGCCTGCGCTTCG TGCTGAACCAGCTCCGCAGCTCCGATGGCAAGGGATCGGTCTTGGGGGCC CTTGCGCAGCTGGCGCACCTGCTCGAGCACCTCGAGGTGGGATCCTTCGT GTTCCGCATCTACGACGCGAGCGACCCCGTGGAAACCCTGGCCACGAGCC ATGCGTGGCAGGTTGACGCGCAGGGCAAGGACGTCGAGCTGAGCCTGCGC TTCGTGCTGAACCAGCTCCGCAGCTCCGATGGCAAGGGATCGGTCTTGGG GGCCCTTGCGCAGCTGGCGCACCTGCTCGAGCACCTCGAGACCGCCCCTC CCCAGCGCTACAACCGGTCCGTCGGGAGCGCGCTCTGGAACGCCGTGACC TCGGCGCGCAACCAGCTGAGCGGTGTGAAGCTCCCCTCTGGTTCGGGCAA AAACGGCGGCAGCGGCCAGGTGGACCGGGAGCGGGACGCCGCGGCCGACG ACCGCAAGCTAAGAGCTGTTCACGACCGCCCCTCCCCAGCGCTACAACCG GTCCGTCGGGAGCGCGCTCTGGAACGCCGTGACCTCGGCGCGCAACCAGC TGAGCGGTGTGAAGCTCCCCTCTGGTTCGGGCAAAAACGGCGGCAGCGGC CAGGTGGACCGGGAGCGGGACGCCGCGGCCGACGACCGCAAGCTAAGAGC TGTTCACGGTGCGGTGTGGTGCGTGTTGAACGCCATCGTCACGAACCCGG CGGCCGGTGCCCTCCTGGCGGATGCCCCGCCCCAAATAGACCCGTTCAAC AAGAATGGCGCCAGCTTGCCGTGCTTGGCGTTGTGCCGGCTCTGGCAGGT GCGGTGTGGTGCGTGTTGAACGCCATCGTCACGAACCCGGCGGCCGGTGC CCTCCTGGCGGATGCCCCGCCCCAAATAGACCCGTTCAACAAGAATGGCG CCAGCTTGCCGTGCTTGGCGTTGTGCCGGCTCTGGCAGAGCACCTTCTGT CCGTTCGAGGAGCACTACTTCGACAAACCCCAGGCCCTCGCCAAACACTA CCAGGACGACTTCGGATTCGCCCCGAGCGCGGCGCGCGTGGAAGACATCG ACCCGGCCGTGCTGCGCGATCTCACGGGCCAGAGCACCTTCTGTCCGTTC GAGGAGCACTACTTCGACAAACCCCAGGCCCTCGCCAAACACTACCAGGA CGACTTCGGATTCGCCCCGAGCGCGGCGCGCGTGGAAGACATCGACCCGG CCGTGCTGCGCGATCTCACGGGCCAGATGAGCTCCTTACTCCCCACGCTT CTCCCTTCGGCTGACTTCGACGAAAGCCGAGAGCGTGTGCGGCGGTCCCT GGAGCGGAACCTGATGAGACAGCTACCGGAGATGATCCCCAAGGACAGCA CGCTCAGAGTGTTCGGCTCCAGTAGCAACGGATTCGGGAATGACAGCGCG GACCTGGACATATGAGCTCCTTACTCCCCACGCTTCTCCCTTCGGCTGAC TTCGACGAAAGCCGAGAGCGTGTGCGGCGGTCCCTGGAGCGGAACCTGAT GAGACAGCTACCGGAGATGATCCCCAAGGACAGCACGCTCAGAGTGTTCG GCTCCAGTAGCAACGGATTCGGGAATGACAGCGCGGACCTGGACATGTGC ATCGAGTATCCCAACGGGGCGAAGTATCCGGACGACGCCGGGGCCTTGAT TGAATCCATCGCCGACAAACTCAAGGCCGCAGGCATGATTGAGGTGCATC GAGTATCCCAACGGGGCGAAGTATCCGGACGACGCCGGGGCCTTGATTGA ATCCATCGCCGACAAACTCAAGGCCGCAGGCATGATTGAGGTGGACAGCC GGCCAACGGCGCGCATCCCGATCGTGATATTCAAGGACAGCGGGTCCGGG CTTGACTGCGACATCTCGGTCATGAACCCCTTGGCCCTGCGCAACACGCA GCTCCTCAAGGTGGACAGCCGGCCAACGGCGCGCATCCCGATCGTGATAT TCAAGGACAGCGGGTCCGGGCTTGACTGCGACATCTCGGTCATGAACCCC TTGGCCCTGCGCAACACGCAGCTCCTCAAGGCGTACTCCGTGGCGGATCC CCGCGTTAGGGAGCTAGCGTACGTGGTGAAGCACTGGGCCAAGCGGCGGT GGGTGAACAACGCAAGCGAGGGGACCCTGTCGTCGTACGGGTACCTGCTT TGCCTCGTCCACTTCCTCCAGACGAGGGACCCGCCCGTCGTACCGAACCT GCAGGCGTACTCCGTGGCGGATCCCCGCGTTAGGGAGCTAGCGTACGTGG TGAAGCACTGGGCCAAGCGGCGGTGGGTGAACAACGCAAGCGAGGGGACC CTGTCGTCGTACGGGTACCTGCTTTGCCTCGTCCACTTCCTCCAGACGAG GGACCCGCCCGTCGTACCGAACCTGCAGGCGCTTCCGCCAGACTGGGCAG GAGATGAAATCCCGCAGGAAGCGCCGAAGTATCTCAATCTGCCGAAGGTC ATGACCAGGCAGCCGACGGATGGGATTGACTACAACACATACTTCTACGA CCCCTTGGCGCTTCCGCCAGACTGGGCAGGAGATGAAATCCCGCAGGAAG CGCCGAAGTATCTCAATCTGCCGAAGGTCATGACCAGGCAGCCGACGGAT GGGATTGACTACAACACATACTTCTACGACCCCTTGGCGCCGGGCAGGGA TGGGGAGCGGAGGGCGGCGGTCCTACGGGAATTCGGGGCTCGTAACAAGG CCTCCTCCGGGGAACTCCTGGCCGGGTTCTTCCGCTACTTCGCCTGCGAG CTGGACTGCAGGACCAGCGTGGCGCCGGGCAGGGATGGGGAGCGGAGGGC GGCGGTCCTACGGGAATTCGGGGCTCGTAACAAGGCCTCCTCCGGGGAAC TCCTGGCCGGGTTCTTCCGCTACTTCGCCTGCGAGCTGGACTGCAGGACC AGCGTGGTGAGCGTCCGTCTTGGAGGCCTGGCCATCCGCGAGCGGAAGGC AGAGGCGTGTTGCTGGAGCATGCACACCCGCCTCAGCCTCGAGGACCCAT TCGAAACCTGGTGAGCGTCCGTCTTGGAGGCCTGGCCATCCGCGAGCGGA AGGCAGAGGCGTGTTGCTGGAGCATGCACACCCGCCTCAGCCTCGAGGAC CCATTCGAAACCTGGTACGACGTCGCCCATGTGCTCAAGTGGTCTCGATT CAAGCACGTGCGGATGGAGTTCGCCAGGGCCTACGCCCTGCTGTCCCACT CGTCGTCGACCTCCTCCCTGCTGGAGACGATCTGCAGTCAGGTACGACGT CGCCCATGTGCTCAAGTGGTCTCGATTCAAGCACGTGCGGATGGAGTTCG CCAGGGCCTACGCCCTGCTGTCCCACTCGTCGTCGACCTCCTCCCTGCTG GAGACGATCTGCAGTCAGGCCGACCCGCCCCCTTTCACCAAGGTGGAGGA GCGCTCGGCCCACGAGATGGCCGAGGATGAGGCGGAGCAGCTTAGACTTC TCCACCCGGACATGCACGCCCTCTAGGCCGACCCGCCCCCTTTCACCAAG GTGGAGGAGCGCTCGGCCCACGAGATGGCCGAGGATGAGGCGGAGCAGCT TAGACTTCTCCACCCGGACATGCACGCCCTCTAG back to top
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