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Homology
BLAST of mRNA_P-fluviatile_contig11.1066.1 vs. uniprot
Match: A0A6H5JJI7_9PHAE (Protein kinase domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JJI7_9PHAE) HSP 1 Score: 762 bits (1967), Expect = 2.080e-257 Identity = 496/768 (64.58%), Postives = 541/768 (70.44%), Query Frame = 1
Query: 226 VLAALSLESSEGVMAEPSKHSRQRSKTHEEEMDENKVVVHTRRGSTAVGVTPSDPSAIVDLFQEVESIGSIYPGHDSDESEHATGGEXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSQRRTSANSQASACTQPLSACSRDGDXXXXXXKNPTPSSATPXXXXXXXXXXXXXGTQQIQQQRSKGWGMAGKLWTQLSSQKKQPRTPPQP---ADGGA-VFEPALGTSVGAPQAAPQPYW-PSKATAADVTTEGGVGAVAMPGGSGGA---------------------------------AQSTEGNQKSXXXXXXXAQEV--------YPP---SSSALPTASVSDSVESQSNQKAPFRRKTSMGSFQKGMGESLTGRLRKQLDIPKTPKREINTDISIAEIQNLSYLAQGAMCVAYTALLNGQMVVLKTPLPNTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLSEVLREHQAEPMGISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFAADGTLKVIDFGLGKIIKRRFRVKAEKYQMTGGTGSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFYNRVVDQGERPPLNPDWPLPIRNLLESCWRTNLDERLSFREVAGILKVCAEEENRRSFSEEKRKSLVGLSSIRRSRMWTTTGARPDLDEISADPQYKPKFKISSLLSSHHSTGGVRSTMERLRGTYKHGGKGRAEESSVFRTTSDDT 2382
VLAALS+E+SEG + +PSKH RQRSK HE EMDENKVV+HTRRGSTAVGVTPSDPSAIVDLFQEVESIGS Y D +SE XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX XXXX K+ G+AGKLW Q +D A + EPA G+ G PQA P+PYW P+ AA V + G VA+ G GG + T+ Q A V PP SSSAL SVS+S + AP RRKTSMGSFQKGMGESLTGRLRKQLDIP PKREI+T+I + +IQ+L YLAQGAMCVAYTALLNGQ VVLKTPLP+TSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLS +LREH+ +PM ISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFA DGTLK+IDFGLGKIIKR+FRV+AEKY MTGGTGSLRYMAPEIA+HQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFY+RVVD+GERPPLNP+WP P+R+LLESCWRTNLDERLSFREVAGILKVCAEEENRRSF+EEKRKSL + RRSR+WTTTGARPDLDEIS DP YKPKFKISS LSSH STGG +S ME+LR + G KG + SV R +SD T
Sbjct: 29 VLAALSMETSEGSIPDPSKHVRQRSKMHEVEMDENKVVMHTRRGSTAVGVTPSDPSAIVDLFQEVESIGSTYLPPDETDSEXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSQKHRV--------------------------------GVAGKLWAQQEXXXXXXXXXXXXXXXSDSPAQMVEPAWGSG-GDPQA-PKPYWRPTDEEAAGVASGEGGAVVALGGTEGGGEANRKSGEPAGAEARLKLGLGGMRRAEAAWKLTSSETQSQQPGHHQEQAAAAGVPELPVRPGLPPPRGSSSALQATSVSESAQ------APLRRKTSMGSFQKGMGESLTGRLRKQLDIPDAPKREIDTNIPVKQIQSLKYLAQGAMCVAYTALLNGQKVVLKTPLPDTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLSSLLREHREKPMRISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFAQDGTLKLIDFGLGKIIKRKFRVRAEKYHMTGGTGSLRYMAPEIANHQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFYSRVVDEGERPPLNPEWPQPVRHLLESCWRTNLDERLSFREVAGILKVCAEEENRRSFTEEKRKSLRLPN--RRSRLWTTTGARPDLDEISVDPHYKPKFKISSFLSSHQSTGGRKSKMEKLRNVAR-GNKG--NQGSVRRASSDST 751
BLAST of mRNA_P-fluviatile_contig11.1066.1 vs. uniprot
Match: D8LJM0_ECTSI (Serine/threonine-protein kinase CTR1 n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LJM0_ECTSI) HSP 1 Score: 603 bits (1556), Expect = 7.410e-197 Identity = 307/358 (85.75%), Postives = 327/358 (91.34%), Query Frame = 1
Query: 1309 QGAMCVAYTALLNGQMVVLKTPLPNTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLSEVLREHQAEPMGISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFAADGTLKVIDFGLGKIIKRRFRVKAEKYQMTGGTGSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFYNRVVDQGERPPLNPDWPLPIRNLLESCWRTNLDERLSFREVAGILKVCAEEENRRSFSEEKRKSLVGLSSIRRSRMWTTTGARPDLDEISADPQYKPKFKISSLLSSHHSTGGVRSTMERLRGTYKHGGKGRAEESSVFRTTSDDT 2382
+GAMCVAYTALLNGQ VVLKTPLP+TSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLS +LREH+ +PM ISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFA DGTLK+IDFGLGKIIKR+FRV+AEKY MTGGTGSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAG KPFLGLKRPDFYNRVVD+GERPPLNP+WP P+RNLLESCWRTNLDERLSFREVAGILKVCAEEENRRSF+EEKRKS + RRSR+WTTTGARPDLDEIS DPQYKPKFKISS LSSH T G +S MERLR + G KG+ + SV R +SD+T
Sbjct: 352 RGAMCVAYTALLNGQKVVLKTPLPDTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLSSLLREHREKPMRISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFAQDGTLKLIDFGLGKIIKRKFRVRAEKYHMTGGTGSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAGIKPFLGLKRPDFYNRVVDEGERPPLNPEWPQPVRNLLESCWRTNLDERLSFREVAGILKVCAEEENRRSFTEEKRKSFRLPN--RRSRLWTTTGARPDLDEISVDPQYKPKFKISSFLSSHQGTDGGKSKMERLRNVAR-GNKGK--QGSVRRASSDNT 704
BLAST of mRNA_P-fluviatile_contig11.1066.1 vs. uniprot
Match: A0A7S2LC32_9STRA (Hypothetical protein n=2 Tax=Leptocylindrus danicus TaxID=163516 RepID=A0A7S2LC32_9STRA) HSP 1 Score: 252 bits (644), Expect = 3.890e-71 Identity = 129/280 (46.07%), Postives = 179/280 (63.93%), Query Frame = 1
Query: 1261 NTDISIAEIQNLSYLAQGAMCVAYTALLNGQMVVLKTPLPNTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLSEVL-----------REHQAEPMGISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFAADGTLKVIDFGLGKIIKRRFRVKAEKYQMTGGTGSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFYNRVVDQGERPPLNPDWPLPIRNLLESCWRTNLDERLSFREV 2067
N ++ +QN+ YL G +TA++NG+ VV+KT P A+A N++E E+ + L H+NIV+L+GAG G RFV LE L GGTL++VL R + + + +VL+ + +L +AL Y H AVPG +V HRD+KPDNIGF DGTLK+IDFGL K++ + Y ++G TGSLRYMAPE+AD++ YN K DVYSF +I+WEMLA KP+ GL R FY R+VD GERPP+N WP + +L+ CW ++++R SF V
Sbjct: 43 NLNMKWNSLQNIEYLTDGGNSWIHTAVVNGKSVVVKTLKPECQDMAMAINEIEAELDVHARLSHENIVALVGAGLTSKGVRFVVLERLDGGTLTQVLGYDTRIRDRRRRFFKRKQLSYLEVLNHARSLADALGYCHGKAVPGTLVLHRDVKPDNIGFTIDGTLKLIDFGLAKVVDNATPDCNDVYSLSGETGSLRYMAPEVADNRPYNHKADVYSFGIILWEMLAYKKPYDGLNRESFYVRIVDGGERPPVNKKWPKELVSLVTDCWSADIEQRPSFSAV 322
BLAST of mRNA_P-fluviatile_contig11.1066.1 vs. uniprot
Match: A0A6H5LAW2_9PHAE (Protein kinase domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5LAW2_9PHAE) HSP 1 Score: 244 bits (622), Expect = 4.060e-67 Identity = 133/316 (42.09%), Postives = 178/316 (56.33%), Query Frame = 1
Query: 1252 REINTDISIAEIQNLSYLAQGAMCVAYTALLNGQMVVLKTPLPNTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFL------PDG------------------RRFVALEYLSGGTLSE----------------VLREHQAEPMGISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFAADGTLKVIDFGLGKIIKRRFRVKAEKYQMTGGTGSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFYNRVVDQGERPPLNPDWPLPIRNLLESCWRTNLDERLSFREVAGIL 2079
++++ ++ E++++ YL G MC YTA G+ VV+K P + + VA DLE E+ +L+ L H NIV +LGAGF+ PDG +RFV LEYL GGTL+E V R Q K +D +L L +AL YLH A+ G V HRDLKP+NI F+ DG LK+ DFGL KI++RR +++Y+MTG TGS RYM PE+A YNEK DVYSF LI+WEML+ +PF GL R +F V+ G RPPL +W +R L+ CW ++D R F EV L
Sbjct: 34 QQVDLNLDFEELRDVQYLTNGGMCSIYTAEWRGRRVVVKMPRDDCAQPEVARKDLETEIDILQRLQHPNIVEMLGAGFVNPLDVGPDGGGGERGEFRDLDQANAESKRFVLLEYLVGGTLTESMLTRNPPADGMMSSVVRRWQQNWQFPTKKAIDSALQLASALSYLHGRAIEGSFVVHRDLKPENIAFSGDGRLKLFDFGLAKIVRRRGGRLSQRYEMTGETGSTRYMCPEVAMQLPYNEKADVYSFGLILWEMLSLRRPFEGLNRKEFVQSVIKGGRRPPLQQEWSAALRELMRRCWDEDMDTRPEFEEVEDTL 349
BLAST of mRNA_P-fluviatile_contig11.1066.1 vs. uniprot
Match: A0A7S2S189_9STRA (Hypothetical protein n=1 Tax=Eucampia antarctica TaxID=49252 RepID=A0A7S2S189_9STRA) HSP 1 Score: 241 bits (615), Expect = 1.060e-63 Identity = 130/317 (41.01%), Postives = 187/317 (58.99%), Query Frame = 1
Query: 1234 IPKTPKREINTDISIAEIQNLSYLAQGAMCVAYTALLNGQMVVLKTPLPNTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLSEVL-----------REHQAEPMGISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFAADGTLKVIDFGLGKIIKRRFRVKAEKYQMTGGTGSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFYNRVVDQGERPPLNPDWPLPIRNLLESCWRTNLDERLSFREVAGIL-KVCAEEENRRSFSEEKRKSLVGL 2148
IP+ + D+ + + N+ YL G +TA+LN VV+K P AVA N++E E+ + +L H +IVSL GAG G RF+ LE L GG+L++VL R + + +VL + ++ A+EYLH A+PG +V HRDLKPDNIGF DGT+K+IDFGL ++++ E Y+M+G TGSLRYMAPE+AD Q YN K DVYSF +I+WEMLA KPF G+ + F+ RV GERP +N WP ++++SCW + + R +F+ V L K+ +E+ S + RK + +
Sbjct: 362 IPRFSVTGTSLDLRWSNLSNVEYLTDGGNSWIHTAVLNRHPVVVKWLKPECQDLAVAINEIEAELDIHAQLQHSHIVSLCGAGLTSKGSRFMVLERLDGGSLTQVLGYDTRIRDRRRRFWKKKHFTYVEVLKCARSIAEAMEYLHSDAIPGCMVLHRDLKPDNIGFTLDGTIKLIDFGLARVVENSSPDTDELYEMSGETGSLRYMAPEVADGQPYNHKADVYSFGIILWEMLAHKKPFDGMDKEQFFERVTYGGERPTINKKWPTEFTDIMKSCWSYDSESRPNFQTVVAKLNKILTKEKVAVSEKKNVRKRITAM 678
BLAST of mRNA_P-fluviatile_contig11.1066.1 vs. uniprot
Match: B5Y4X7_PHATC (Predicted protein n=1 Tax=Phaeodactylum tricornutum (strain CCAP 1055/1) TaxID=556484 RepID=B5Y4X7_PHATC) HSP 1 Score: 238 bits (608), Expect = 8.490e-63 Identity = 124/282 (43.97%), Postives = 169/282 (59.93%), Query Frame = 1
Query: 1267 DISIAEIQNLSYLAQGAMCVAYTALLNGQMVVLKTPLPNTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLSEVL-----------REHQAEPMGISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFAADGTLKVIDFGLGKIIKRRFRVKAEKYQMTGGTGSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFYNRVVDQGERPPLNPDWPLPIRNLLESCWRTNLDERLSFREVAGIL 2079
D+ ++ N+ YL G +TA+ G+ VV+KT P +A N++E E+ + L+H NIV+L+GAG G RFV LE L GGTL+++L R + + VL ++ ++ +A+ Y H A+PG +V HRDLKPDNIGF DGT+K+IDFGL KI++ + Y M+G TGSLRYMAPE+AD YN DVYSF +I+WEM A KPF GL R FY RVV GERP LN WP + +L+ CW ++ R F+E+ G L
Sbjct: 371 DLQWRQLHNVEYLTDGGNSWIHTAVFQGKPVVVKTLKPECQDVVLAINEIEGELAVHSRLYHTNIVALIGAGTTSKGVRFVVLERLDGGTLTQMLGYDTRIRDRRRRFWRRKQFSYVDVLRVARSIADAMSYCHQEAIPGCMVLHRDLKPDNIGFTLDGTVKIIDFGLAKIVENASVDSDDIYTMSGETGSLRYMAPEVADALPYNAAADVYSFGIILWEMNATKKPFEGLNRELFYERVVHGGERPSLNRKWPSQLTSLISECWDADMHNRPRFKEIVGRL 652
BLAST of mRNA_P-fluviatile_contig11.1066.1 vs. uniprot
Match: A0A7S2E226_9STRA (Hypothetical protein n=2 Tax=Helicotheca tamesis TaxID=374047 RepID=A0A7S2E226_9STRA) HSP 1 Score: 238 bits (607), Expect = 1.540e-62 Identity = 127/303 (41.91%), Postives = 185/303 (61.06%), Query Frame = 1
Query: 1282 EIQNLSYLAQGAMCVAYTALLNGQMVVLKTPLPNTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLSEVL-----------REHQAEPMGISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFAADGTLKVIDFGLGKIIKRRFRVKAEKYQMTGGTGSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFYNRVVDQGERPPLNPDWPLPIRNLLESCWRTNLDERLSFREVAGILKVCAEEENRRSFSEEKRKSLVGLSSI 2157
++ N+ YL G +TA+LNG+ VV+KT P A+A N++E+E+ + +L H I L+GAG G RF+ LE L GGTLS++L R + + +VL + + +AL+Y H +A+PG + HRDLKPDNIGFA DGT+K++DFGL +I+K E YQM+G TGSLRYMAPE+A YN+K DVYSF +I+WE+ A KP+ G+ + +FY RVV+ ERP +N WP + L++ CW +++D R SFR + L +E S EK+++ +SS+
Sbjct: 394 QLNNVEYLTDGGNNWIHTAVLNGRAVVVKTLKPECQDVALAINEIELELDIHSKLDHPFICGLVGAGTTSKGVRFIVLERLDGGTLSQMLGYDNRIRDRRRRFWRKKQFAYVEVLKFARCIADALDYCHRLAIPGAMCLHRDLKPDNIGFAIDGTVKILDFGLARIVKYSDLNSNEVYQMSGQTGSLRYMAPEVAKCLPYNQKADVYSFGIILWELNAYKKPYDGMNKEEFYERVVEGNERPMINKKWPEELVQLMQDCWSSDMDVRPSFRVIVERLDEMLSKEKGGS---EKKRTKGRISSL 693
BLAST of mRNA_P-fluviatile_contig11.1066.1 vs. uniprot
Match: A0A7S2LY51_9STRA (Hypothetical protein n=1 Tax=Skeletonema marinoi TaxID=267567 RepID=A0A7S2LY51_9STRA) HSP 1 Score: 240 bits (612), Expect = 1.790e-62 Identity = 133/321 (41.43%), Postives = 197/321 (61.37%), Query Frame = 1
Query: 1243 TPKREINT-----DISIAEIQNLSYLAQGAMCVAYTALLNGQMVVLKTPLPNTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLSEVL-----------REHQAEPMGISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFAADGTLKVIDFGLGKIIKRRFRVKAEKYQMTGGTGSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFYNRVVDQGERPPLN-PDWPLPIRNLLESCWRTNLDERLSFREVAGILK--VCAEEENRRSFSEEK--RKSLV 2142
TP+R I+ ++ ++N+ YL G +TA+L G+ VV+KT P A+A N++E E+ + L H NIV L+GAGF P G RFV LE L GGTL+++L R + + VL + +L AL Y H A+P +V HRDLKPDN+GF DGT+K+IDFGL + ++ + + Y+M+G TGSLRYMAPE+AD Q YN+K DVYSF +I+WE++A KP+ G+ R +FY+RVV GERP +N WP+ + L+++CW T++ +R F ++ L + E++ + +++K RKSLV
Sbjct: 470 TPQRLISVTGAQLNLQWESLRNVEYLTDGGNNWIHTAVLQGKSVVVKTLKPECQDVALAINEIEGELEIHSRLDHPNIVKLIGAGFTPRGVRFVVLERLDGGTLTQLLGYDTRIRDRRRRFWAKKKISYMDVLKCARSLAEALAYCHGRAIPNAMVLHRDLKPDNVGFTLDGTVKLIDFGLARTVENA-TISNDVYEMSGETGSLRYMAPEVADCQPYNQKADVYSFGIILWELVANKKPYDGMNRDEFYSRVVHGGERPVINNKKWPVDLIELMKNCWDTDIAKRPDFADIVDALDGMLSGEKDGHGNNNKKKKPRKSLV 789
BLAST of mRNA_P-fluviatile_contig11.1066.1 vs. uniprot
Match: A0A6V2JN82_9STRA (Hypothetical protein n=6 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A6V2JN82_9STRA) HSP 1 Score: 237 bits (604), Expect = 2.290e-62 Identity = 127/304 (41.78%), Postives = 181/304 (59.54%), Query Frame = 1
Query: 1279 AEIQNLSYLAQGAMCVAYTALLNGQMVVLKTPLPNTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLSEVL-----------REHQAEPMGISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFAADGTLKVIDFGLGKIIKRRFRVKAEKYQMTGGTGSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFYNRVVDQGERPPLNPDWPLPIRNLLESCWRTNLDERLSFREVAGILKVCAEEENRRSFSEEKRKSLVGLSSI 2157
A++ N+ YL G +TA+LNG+ VV+KT P AVA N++E+E+ + +L H NI SL+GAG G RF+ LE L GGTL+++L R + + +V+ + + +AL Y H A+PG + HRDLKPDNIGF DG +K++DFGL +I+K + Y M+G TGSLRYMAPE+A YN+K DVYSF +I+WE+ A KP+ G+ + +FY RVV+ ERPP+N WP + L++ CW + R SF E+ L +E S EK+KS +SS+
Sbjct: 366 AQLNNVEYLTDGGNNWIHTAVLNGRPVVVKTLKPECQDVAVAINEIELELDIHSKLDHANICSLVGAGTTSKGVRFIVLERLDGGTLTQMLGYDNRIRDRRRRFWRKKQFAFVEVMRFARCIADALNYCHSQAIPGNMCLHRDLKPDNIGFTLDGKVKLLDFGLARIVKNSDSDSNDVYHMSGQTGSLRYMAPEVAKSLPYNQKADVYSFGIILWELNAYKKPYEGMNKDEFYMRVVEGKERPPINKKWPEELVQLMQECWSFDARLRPSFHEIVERLDAMLSKEKGGS---EKKKSKNRISSL 666
BLAST of mRNA_P-fluviatile_contig11.1066.1 vs. uniprot
Match: A0A7R9WTW5_9STRA (Hypothetical protein n=1 Tax=Craspedostauros australis TaxID=1486917 RepID=A0A7R9WTW5_9STRA) HSP 1 Score: 232 bits (591), Expect = 3.600e-62 Identity = 123/284 (43.31%), Postives = 168/284 (59.15%), Query Frame = 1
Query: 1282 EIQNLSYLAQGAMCVAYTALLNGQMVVLKTPLPNTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGRRFVALEYLSGGTLSEVL-----------REHQAEPMGISKVLDLSLALCNALEYLHDVAVPGRIVCHRDLKPDNIGFAADGTLKVIDFGLGKIIKRRFRVKAEKYQMTGGTGSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFYNRVVDQGERPPLNPDWPLPIRNLLESCWRTNLDERLSFREVAGILKVCAEEE 2100
+++++ YL G +TA+ NG+ VV+KT P VA N++E E+ + L+H N+V L+GAG G RFV LE L GG+L+++L R + + + VL + ++ +A+ Y H+ AVPG V HRDLKPDNIGFA DGTLKV DFGL ++++ EKY M+G TGSLRYMAPE+A YN K DVYSF +I+WEM AG KPF R FY+ V+ GER N WP + +L+ +CW N D R SF E+ + E E
Sbjct: 202 QLRHVEYLTDGGNSWVHTAIFNGKPVVVKTLKPECQDVVVAINEIESEVAIHARLNHLNVVELIGAGTTSKGVRFVVLERLDGGSLTQLLGYDTRIRDRRRRFWKKKSIAYVDVLRYARSIASAMRYCHEDAVPGSTVLHRDLKPDNIGFALDGTLKVFDFGLARLLENSNAKTDEKYSMSGETGSLRYMAPEVARSFPYNYKADVYSFGVILWEMNAGKKPFADYDRDTFYDSVIHGGERMKCNKKWPEELSDLITACWHENPDLRPSFAEIIDKIDALLEHE 485
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 | 247.3 |
| Seed ortholog evalue | 2.3e-62 |
| Seed eggNOG ortholog | 2880.D7FUV9 |
| KEGG ko | ko:K14304 |
| KEGG TC | 1.I.1 |
| KEGG Pathway | ko03013,map03013 |
| KEGG Module | M00427 |
| GOs | GO:0000323,GO:0000902,GO:0000904,GO:0003674,GO:0003824,GO:0004672,GO:0004674,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005764,GO:0005765,GO:0005768,GO:0005770,GO:0005773,GO:0005774,GO:0005794,GO:0005795,GO:0006464,GO:0006468,GO:0006793,GO:0006796,GO:0006807,GO:0006810,GO:0006897,GO:0006914,GO:0006928,GO:0006935,GO:0006950,GO:0006979,GO:0006996,GO:0007005,GO:0007017,GO:0007018,GO:0007154,GO:0007165,GO:0007275,GO:0007399,GO:0007409,GO:0007411,GO:0007528,GO:0008088,GO:0008104,GO:0008150,GO:0008152,GO:0009056,GO:0009267,GO:0009605,GO:0009653,GO:0009894,GO:0009987,GO:0009991,GO:0010008,GO:0010506,GO:0010721,GO:0010769,GO:0010771,GO:0010941,GO:0010970,GO:0010975,GO:0010977,GO:0012505,GO:0016020,GO:0016043,GO:0016049,GO:0016192,GO:0016197,GO:0016241,GO:0016301,GO:0016310,GO:0016482,GO:0016740,GO:0016772,GO:0016773,GO:0017016,GO:0017137,GO:0018105,GO:0018193,GO:0018209,GO:0019222,GO:0019538,GO:0019899,GO:0022008,GO:0022603,GO:0022604,GO:0023052,GO:0030030,GO:0030100,GO:0030154,GO:0030182,GO:0030424,GO:0030425,GO:0030705,GO:0031090,GO:0031175,GO:0031267,GO:0031323,GO:0031329,GO:0031344,GO:0031345,GO:0031410,GO:0031594,GO:0031667,GO:0031668,GO:0031669,GO:0031902,GO:0031982,GO:0031984,GO:0032418,GO:0032501,GO:0032502,GO:0032879,GO:0032886,GO:0032989,GO:0032990,GO:0033036,GO:0033043,GO:0033267,GO:0033554,GO:0034613,GO:0034976,GO:0035556,GO:0036211,GO:0036465,GO:0036477,GO:0040007,GO:0040011,GO:0042147,GO:0042221,GO:0042330,GO:0042594,GO:0042995,GO:0043005,GO:0043025,GO:0043170,GO:0043195,GO:0043198,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043412,GO:0043679,GO:0044087,GO:0044088,GO:0044237,GO:0044238,GO:0044248,GO:0044260,GO:0044267,GO:0044297,GO:0044306,GO:0044422,GO:0044424,GO:0044431,GO:0044433,GO:0044437,GO:0044440,GO:0044444,GO:0044446,GO:0044456,GO:0044463,GO:0044464,GO:0045202,GO:0045595,GO:0045596,GO:0045664,GO:0045665,GO:0046907,GO:0048311,GO:0048312,GO:0048468,GO:0048488,GO:0048489,GO:0048519,GO:0048523,GO:0048588,GO:0048589,GO:0048666,GO:0048667,GO:0048675,GO:0048699,GO:0048731,GO:0048812,GO:0048814,GO:0048846,GO:0048856,GO:0048858,GO:0048869,GO:0050767,GO:0050768,GO:0050773,GO:0050774,GO:0050789,GO:0050793,GO:0050794,GO:0050803,GO:0050807,GO:0050808,GO:0050896,GO:0051020,GO:0051049,GO:0051093,GO:0051128,GO:0051129,GO:0051179,GO:0051234,GO:0051239,GO:0051241,GO:0051493,GO:0051640,GO:0051641,GO:0051645,GO:0051646,GO:0051648,GO:0051649,GO:0051650,GO:0051656,GO:0051683,GO:0051716,GO:0051960,GO:0051961,GO:0060284,GO:0060341,GO:0060548,GO:0060560,GO:0060627,GO:0061174,GO:0061564,GO:0061845,GO:0061919,GO:0065007,GO:0065008,GO:0070507,GO:0070727,GO:0071212,GO:0071496,GO:0071704,GO:0071840,GO:0090128,GO:0097447,GO:0097458,GO:0097479,GO:0097480,GO:0097485,GO:0097708,GO:0098588,GO:0098657,GO:0098693,GO:0098791,GO:0098793,GO:0098805,GO:0098852,GO:0099003,GO:0099111,GO:0099174,GO:0099504,GO:0120025,GO:0120035,GO:0120036,GO:0120038,GO:0120039,GO:0140096,GO:0150034,GO:1900242,GO:1901214,GO:1901215,GO:1901564,GO:1902115,GO:1902284,GO:1903421,GO:1990033,GO:1990138,GO:2000026,GO:2000171,GO:2000331,GO:2000785 |
| EggNOG free text desc. | protein kinase activity |
| EggNOG OGs | COG0515@1,KOG0192@2759 |
| COG Functional cat. | KLT |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko03019,ko03036 |
| Hectar predicted targeting category | other localisation |
| Exons | 13 |
| Model size | 4083 |
| Cds size | 2280 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815445.546565-UTR-P-fluviatile_contig11:977065..978718 | 1622815445.546565-UTR-P-fluviatile_contig11:977065..978718 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 977066..978718 - |
| 1693561887.9860086-UTR-P-fluviatile_contig11:977065..978718 | 1693561887.9860086-UTR-P-fluviatile_contig11:977065..978718 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 977066..978718 - |
| 1622815445.7026134-UTR-P-fluviatile_contig11:992052..992202 | 1622815445.7026134-UTR-P-fluviatile_contig11:992052..992202 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 992053..992202 - |
| 1693561888.6250486-UTR-P-fluviatile_contig11:992052..992202 | 1693561888.6250486-UTR-P-fluviatile_contig11:992052..992202 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 992053..992202 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815445.5635228-CDS-P-fluviatile_contig11:978718..978877 | 1622815445.5635228-CDS-P-fluviatile_contig11:978718..978877 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 978719..978877 - |
| 1693561888.000788-CDS-P-fluviatile_contig11:978718..978877 | 1693561888.000788-CDS-P-fluviatile_contig11:978718..978877 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 978719..978877 - |
| 1622815445.5732136-CDS-P-fluviatile_contig11:979665..979854 | 1622815445.5732136-CDS-P-fluviatile_contig11:979665..979854 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 979666..979854 - |
| 1693561888.0217242-CDS-P-fluviatile_contig11:979665..979854 | 1693561888.0217242-CDS-P-fluviatile_contig11:979665..979854 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 979666..979854 - |
| 1622815445.5827632-CDS-P-fluviatile_contig11:980754..980915 | 1622815445.5827632-CDS-P-fluviatile_contig11:980754..980915 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 980755..980915 - |
| 1693561888.0339763-CDS-P-fluviatile_contig11:980754..980915 | 1693561888.0339763-CDS-P-fluviatile_contig11:980754..980915 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 980755..980915 - |
| 1622815445.594528-CDS-P-fluviatile_contig11:981412..981506 | 1622815445.594528-CDS-P-fluviatile_contig11:981412..981506 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 981413..981506 - |
| 1693561888.0466187-CDS-P-fluviatile_contig11:981412..981506 | 1693561888.0466187-CDS-P-fluviatile_contig11:981412..981506 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 981413..981506 - |
| 1622815445.6049275-CDS-P-fluviatile_contig11:982055..982139 | 1622815445.6049275-CDS-P-fluviatile_contig11:982055..982139 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 982056..982139 - |
| 1693561888.2809305-CDS-P-fluviatile_contig11:982055..982139 | 1693561888.2809305-CDS-P-fluviatile_contig11:982055..982139 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 982056..982139 - |
| 1622815445.615651-CDS-P-fluviatile_contig11:982595..982751 | 1622815445.615651-CDS-P-fluviatile_contig11:982595..982751 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 982596..982751 - |
| 1693561888.2893627-CDS-P-fluviatile_contig11:982595..982751 | 1693561888.2893627-CDS-P-fluviatile_contig11:982595..982751 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 982596..982751 - |
| 1622815445.6247513-CDS-P-fluviatile_contig11:983380..983452 | 1622815445.6247513-CDS-P-fluviatile_contig11:983380..983452 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 983381..983452 - |
| 1693561888.2980578-CDS-P-fluviatile_contig11:983380..983452 | 1693561888.2980578-CDS-P-fluviatile_contig11:983380..983452 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 983381..983452 - |
| 1622815445.6336868-CDS-P-fluviatile_contig11:984076..984172 | 1622815445.6336868-CDS-P-fluviatile_contig11:984076..984172 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 984077..984172 - |
| 1693561888.3067138-CDS-P-fluviatile_contig11:984076..984172 | 1693561888.3067138-CDS-P-fluviatile_contig11:984076..984172 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 984077..984172 - |
| 1622815445.6426444-CDS-P-fluviatile_contig11:984702..984810 | 1622815445.6426444-CDS-P-fluviatile_contig11:984702..984810 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 984703..984810 - |
| 1693561888.3168716-CDS-P-fluviatile_contig11:984702..984810 | 1693561888.3168716-CDS-P-fluviatile_contig11:984702..984810 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 984703..984810 - |
| 1622815445.6539927-CDS-P-fluviatile_contig11:985422..985695 | 1622815445.6539927-CDS-P-fluviatile_contig11:985422..985695 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 985423..985695 - |
| 1693561888.5644002-CDS-P-fluviatile_contig11:985422..985695 | 1693561888.5644002-CDS-P-fluviatile_contig11:985422..985695 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 985423..985695 - |
| 1622815445.6674137-CDS-P-fluviatile_contig11:986783..987391 | 1622815445.6674137-CDS-P-fluviatile_contig11:986783..987391 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 986784..987391 - |
| 1693561888.5803907-CDS-P-fluviatile_contig11:986783..987391 | 1693561888.5803907-CDS-P-fluviatile_contig11:986783..987391 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 986784..987391 - |
| 1622815445.678545-CDS-P-fluviatile_contig11:987795..987931 | 1622815445.678545-CDS-P-fluviatile_contig11:987795..987931 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 987796..987931 - |
| 1693561888.5993803-CDS-P-fluviatile_contig11:987795..987931 | 1693561888.5993803-CDS-P-fluviatile_contig11:987795..987931 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 987796..987931 - |
| 1622815445.6933672-CDS-P-fluviatile_contig11:991908..992052 | 1622815445.6933672-CDS-P-fluviatile_contig11:991908..992052 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 991909..992052 - |
| 1693561888.614649-CDS-P-fluviatile_contig11:991908..992052 | 1693561888.614649-CDS-P-fluviatile_contig11:991908..992052 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 991909..992052 - |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig11.1066.1 >prot_P-fluviatile_contig11.1066.1 ID=prot_P-fluviatile_contig11.1066.1|Name=mRNA_P-fluviatile_contig11.1066.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=760bp
MALTTGAGPANGRLGCRNGMGATAAVLAALSLESSEGVMAEPSKHSRQRS KTHEEEMDENKVVVHTRRGSTAVGVTPSDPSAIVDLFQEVESIGSIYPGH DSDESEHATGGEEAAAASGDHAGSKSAAAAAASAASDLGGSAKSQRRTSA NSQASACTQPLSACSRDGDDDNNNSKNPTPSSATPAPPAPPPPPAPPAGT QQIQQQRSKGWGMAGKLWTQLSSQKKQPRTPPQPADGGAVFEPALGTSVG APQAAPQPYWPSKATAADVTTEGGVGAVAMPGGSGGAAQSTEGNQKSAQS AQQSAQEVYPPSSSALPTASVSDSVESQSNQKAPFRRKTSMGSFQKGMGE SLTGRLRKQLDIPKTPKREINTDISIAEIQNLSYLAQGAMCVAYTALLNG QMVVLKTPLPNTSHAAVAANDLEVEMLLLKELHHDNIVSLLGAGFLPDGR RFVALEYLSGGTLSEVLREHQAEPMGISKVLDLSLALCNALEYLHDVAVP GRIVCHRDLKPDNIGFAADGTLKVIDFGLGKIIKRRFRVKAEKYQMTGGT GSLRYMAPEIADHQEYNEKGDVYSFSLIMWEMLAGTKPFLGLKRPDFYNR VVDQGERPPLNPDWPLPIRNLLESCWRTNLDERLSFREVAGILKVCAEEE NRRSFSEEKRKSLVGLSSIRRSRMWTTTGARPDLDEISADPQYKPKFKIS SLLSSHHSTGGVRSTMERLRGTYKHGGKGRAEESSVFRTTSDDTDTKQTV IRRRTINDA* back to topmRNA from alignment at P-fluviatile_contig11:977066..992202- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig11.1066.1 ID=mRNA_P-fluviatile_contig11.1066.1|Name=mRNA_P-fluviatile_contig11.1066.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=15137bp|location=Sequence derived from alignment at P-fluviatile_contig11:977066..992202- (Porterinema fluviatile SAG_2381) GAACTATTTGCTTGCAGCATCGGCTGCTCACACTAAGGCAGGAATCCAAC
ACCAACCGCTACCATCCGTTCGACGCGACCAACAGGACACCACGTCATTT
TAGGAAGAGTGCATCAGCGTCTCTCCTAGGCTCTCGCTCTCCTTGCAACG
ATGGCTCTCACGACAGGAGCTGGACCTGCGAATGGGAGATTAGGTTGCAG
GAATGGAATGGGGGCAACAGCAGCGGTGCTTGCAGCATTATCGCTTGAAA
GTTCAGAGGGGGTCATGGCTGAACCTTCAAAACATTCAAGACAGGTGAGC
TAGAGTTCATGTGGTTGGTTGTCTGTTGTTGGCGTTCTCGGCCGCTGGAA
GTAACAGAGGCATCCGCTTGCTTGGCACTTTTTCCTTTGCGCATGTCTTT
TTCCCCGGCGTACAGAATGCGCGCTCACCTCTCTCTCGCTCGCTCGCTCG
AGAAATCGGGGAGCCCAGTCACCTGACCTCTCCTATCCCTTCTGCAGACT
GCTAATGCTGCTTTGTCTGTTCAAGGCTTGGGCCCGAGTCGGGGGCATTT
CACAAACAGCTCACATACTGTATTTCTCTCTCGCTCTGTATCGTTTCTTC
TCTCCCCCTCCCCCCCGCGCTCTCTCTCTTTCTCTCGCTCAACAAGCCGC
GAACTCTCGCTCGCATTTCGGTTTTCTACGTCGAGGAAAATCCACCGCCG
GTGCTCGTTTGTGCCTTGTCCGTCATTCGTGTGGCAGCGTGGGTGTGTCT
TGGTCCCGCCGGATTCTTACCGCCGACGATGTTCGAAAGCATGTCACGTT
TGAGGGACCATTATGTCGCAGCACATTTGTGTGCAGGCAAGCGTCCTTTT
CTTTTGGTCTTGACCGGTCGCCCCGGTGGTCTTTTGTAATAGTGGTATCC
TTGTAACCTTCTGGCACCCAGGTCACGGGTTCGAATCTCGGCGAGAGTGG
TTTTTCTCACTTTCGTACCTGGGAGTAGGAAGCGGTGAAAAGCTGCAAAG
CTTCGTGAGCACAAATTTCGATGTCGCGGTCGACGATGGCTGAACCCCTC
TCGCGATAAAAATGAAGGGAAGCACCGCAGGAGGACGGTGGGGCAAAAAA
AAAAAAAAAAATTAAAAAAGTCCCGGTGTTTACCCCTTTCCTGTGTGACC
ACGGTTGGTTCTAGCTGGACAGAAAAATACACTGAACAAGTGCAGTCCTC
TAAATACGCTGCGAAGTGTAGTACACGTGTCGCCTTGATCGGAGGGACTG
TCCGCACACACACACAAACACAACTTCCTGCCCTGCGCCGGAACGTTCAT
CGCAGTGACAGCTAAACAACACAGTTTTTGTGCACAGCGGTGGATGGATC
ACACACACGCTGGGTCGCGAATAACTTGCACAAAGAGCCATGAGCGTCTT
CCTCCTTGTCGTCGCGTATCGGTGTGCGCCGGGTTTTGCCACCGGTTGCG
CCGCTGAACCCGGACACGACCAAAAAATATCGCACAAGGTTCCCCCGCCC
GCCCCAGAACTTCGAGTCGGTTGCCCCGTTAGGCCATTTGGTATCCCCGT
GAGCTTCGTGGATCCCGGTTCGGTGCGAATCCCGGCGTGTGGCCTTCCTC
GAGGTAGATTTTCTATCCCAGCGTTGCTGGTTGGTTCGAGTCGCGAGAAA
AACGCGAGCAAAAAAAAAAAAACTGAGACAAGAGGGGCTGGACTGTTCTT
TTCCTCAAAAATCGAAGGCATAAACCGTTTGGGTAGGGGGGCCTCAGGGA
GAGGAACCCTTCTTTGTGACCGCGGTCTCTAGCGAAAACGTCGGTCTTCA
AGAATGTCTGGTTTCAAAGAAAACTTCCCTGTTCGGCAAGCCCTTCTCAG
ATATCGATAGAGCGAGAGATTCTTTGCGGTATTTTTGGTGTGTCATTCTG
CTGCTGTCCTCGCTCTACAGACTCCCTCACAACAAAATATGGGAGGCTCT
TGGGCAAAAGTGCAGGATGCGCTGCACGAGACTGGATATCCAAAATCCGA
GGAGGGGGTGTACTCACAGTCGTGCATGCCGTAGTCGTTAGACCATTGAC
CTCGCATCCCTACAAAGCCGGGACGGAGCACGCCGGGTTCTCACCGGACC
AGGCTCTCACACCACCAAGCGCGAAGCGCCGTGAGGTATTCGGCGAGTCG
CATGAAGGGTGCGCTGGGTGTTCGGCATCTTGTGCTTACTTCCTTGCATA
CGGATGACAGCTGAGTATGGCTTAATTTGTTTTCTGGTGCTTTTACTTCC
AGAGACATTTGTAAGCACTGTGTAACTGCCTCGAGGGTGCTTGACCATTT
TCACACAACGTGGTGCGATCATCCCCCTTGCGCGTAGTGAGGGTTCTCCA
CCCCGCACAACATGATCTTTTCGACCACCACTATGGTTACCGCCAAAAAA
ACACAGGGGAAAAAAAAAGACGGTAACCTGGTTGCCGAGTTCACGAAGAG
AATTGGCTTGTTTTACAACGTCGTTGCCAAGCCACGAAAACCCAACTGAT
GGCAAACACCGAGGTGAGAGCCAGCGGGAGGGCGGAGGGCAAAATCCGAG
GAGGAGGGGGCTAACTTTAAAATGGACGGGGCACAAAAATAAGAAAATAT
TGGGTTTACCGTCTGATTTCACCTCTATACGGCAAACCTCTATGTACGAC
TGGGACAGACTGCTTAAAAGCATGGACGAAGGGTGGGGGGAGGAGCAATG
CATCCTGCCCTTCCGTCCGCGAGCCCTTGGAGGAACAGCGCAGGGTTCCT
CGCAGATTCGCCCAGAACCCGGTGGCACAAAACCATACTCTACGAGCACA
CATGTGTATACACACGTGCTGCCTCCAATGGTTCGCTGGGCGTGAATAGA
TTTATTCCGCCACGACAGGATGGGTACGGACACTTTGAGGTACCGGGAGT
GAGCGGACAGGGGGGTTTAATGTGAAGCTAATGTGAAGCCAACACACACA
CACACCCGGTCGGACCGTGTCTGCACCTGGCGCGCGTCTTGCACCACATA
AACCTGCCCACTACTGCTATAGCGACCGGCCGACGTATGCATGATGAAAA
AAATTGCGTTCGAGGCATCGGGGGGAGGGGGCTGGGGTTGAAATAATCAA
CGGTCGAGGACGATGATGGTCGAACCACCGAACGGCAACAAGAGTTTTTT
GGCACCCCGCCATACACAGAGTCCAACCACGAGCGCATTTGACTCCGTTT
TGGCGTATGCTATTTGGTTTTCATAAGCTCACCGTCAATTCACCGGGTCC
CGCTGGTATTGGTGTATTTACGTGTCCATTGCCCGTAATGTTCCTTGCTA
GCAAAACCAACGAACGGGAACACTCATTGCTGCTCAATTTGGTTAATTCC
CTCCGGGCTTGAGGGCCACGCATACTGAAAGGCAGCTAACACCTGATCCT
CCATCTTAGCTGTCCGCCATCCGCTCGCACACACTATTGTCGTATAGGAC
GATGGTGTCGCGGTGTGTGTTCCACAGATAGTCGTCCATCAATCCAAAAT
CTCAAAGCAAACTTGGACTAGGTCCGATGGCATGACACAGCTCCACGGCC
GCCCTTGTTTTTCTTCCCTTTATTGTGGTTATCTGGGATGAGCACGGTCA
TGTTTGATGCAAGCACGTCCGTCGATGATTTCGGCCGCATATGTGTTCAT
TTTTTTTTTTGCTGTGAAAGGCAAACTTGATGAGAGAATGATGACGTGCA
TGGGCCCAACGTGGTGTGGTGCTTGCGACCCTCCCGTCCCCCTTTCTCTC
GAACCGGACTTCACAACGGTTTGTTGGACTCAAGATTCCTGCTCGCGTGG
ACGAGATGGGATTTTGTAAGGTCAGGCGCGATTGTGAACGTTCGCCAATC
TCCGCGTTAAACAAGCGGCAACTAGCAGCCAGCCTATATGCGACAGATCG
AGGTCCGAAGATCATGGATTTTCTTTGAAATGCTCACCGCTGTTGGTGTT
AGCAACAGCCCAATGGTGATCGCTCGAAGGCTGCAGCAGGTCTTCTTGTT
TTCACTACCACCGCCGTGTCACTTGTGCAGGAGCAATTCAGCGACGCTCC
CTTGTTCTAGACAGCGAGTGGGGCTTTCGTCGCCCATCCAACGAGACCTC
CGCTTCCCTCTCTCCATGTAGACCTCTCTGCAGATCTTGGCGTTTTTGCA
ACATTTTAGTGTATCAAAATTTGGTCCATTGTCGCGCGACTACCTCTTTT
CTGCCGACAACGAGTTTGCTATCGAAACACACACGCGTGCTCACTTCACA
GCAACACGTCCCGCCTTCCAGAGGAGCAAGACGCACGAGGAGGAGATGGA
CGAAAACAAGGTCGTGGTACACACGAGACGCGGCAGCACTGCGGTCGGAG
TGACTCCCAGCGACCCCTCCGCGATCGTCGACCTCTTCCAGGAAGTGGAG
TCAATCGGTGAGCGACGGGAGAGGCGTCGCATGCGGCAATGCGTCCAAGT
AACTGTTCACATTAAATTTCCACCGCGAAATAACTACAAATCATCCACCT
CGTAGTTTTTCGGTATATTTCCCTCTCCACCGCCCGCGGGTGAGCAGGTG
CTAGACGGCCAGAACCTCGATTTGCAGAACCTTGCGACTTTCCGCAAGAC
TGTTTCCCGGGGAAGCAGCGTATGCGCCATACACCCGCCGGTTCTCGGCT
GGCCCCTCAACATTCAACGCACACGGTCACCCGTCCGAACGAGCGAAAGC
GATCGATCGAATGGTGGGAAGTACAAGATAAGCACCCGGAGCAACCCCCT
TTCCCTCCCCACTTGTACTCTCGCAACGGCGTCGCGCACACCGCTGTTTC
CCGGACGCCAGGGAGTATCTACCCAGGGCACGATTCGGATGAGTCGGAGC
ACGCAACAGGCGGGGAAGAGGCCGCCGCTGCTAGCGGTGATCACGCCGGC
TCTAAATCCGCTGCTGCCGCTGCCGCTAGCGCTGCCTCCGACCTTGGGGG
AAGCGCAAAGTCGCAACGGCGCACAAGCGCCAATTCTCAGGCCTCGGCCT
GCACTCAACCGTTATCGGCTTGCTCCCGAGACGGCGACGATGACAACAAC
AACAGCAAAAATCCCACCCCCTCCTCTGCTACACCAGCACCACCAGCACC
GCCACCACCGCCAGCACCGCCAGCAGGGACGCAGCAAATACAGCAGCAGA
GGAGCAAGGGCTGGGGGATGGCTGGCAAGCTCTGGACGCAACTTTCGTCG
CAGAAGAAGCAGCCGCGGACCCCCCCGCAGCCGGCGGACGGCGGTGCCGT
CTTTGAGCCGGCCTTGGGGACGTCCGTGGGAGCCCCGCAGGCGGCGCCGC
AGCCGTATTGGCCTTCGAAGGCGACGGCGGCAGACGTTACGACGGAGGGG
GGCGTGGGTGCCGTGGCTATGCCGGGGGGTAGCGGGGGGGCTGCGCAATC
CACCGAAGGCAACCAGAAGGTGAGACTCGACAAGCTTAGAGGGGCGGTGG
TGGGCAGGGCTAAGGCGGAGGTTTGAGGGGTGGATAGCTTCCTAAGCGTT
TGAACTCCGCGAAAGCCGTTGCGGCGTTGTGCTTTGTTATCTGGGCGACG
CTTATTTCGGCTTTTTTCTCGATCGCCCTCGAACTTCTCGTTGAAGCTCG
ATTCAGTCTGCCTCTACAAGTAAACCGTGGCCGTTGACGCGCTTTGATTT
CTCAACAAAATACCTTTACTGCGTGTTTTTAGTTTGTAAGATTTCTGTTT
CCTCGAGTTGTGGTTTTGTGTGAGTGTGCTTGCGCTTTTTGTTTGCTTCG
GAGGACGAGAGGAAGAAGAGCCCCGCAGACAGCAGTGTCTACGTTCCCGG
AAGCGGAAGATCCTTCGCTAGGTAACGTCGTGTGTACATGTGCACTGGAC
GCGCTGCCAGCCACAACACCGAAACAACGGTGAAGACCGATCCACCGGCC
TTCTTGTACCTATCAGGGGGGCCAAGCTGCCGCCGCCGGCGCCGAAGGCC
GACTAGTACCAGGGCTAGGCAAAATACAAAGGATTGAGGCAAGGGGCAAG
CTCATAGATTCAGAGGTGTGGTGGGTACATGAAACGTGAAAAAATGGATT
TGATTTAATGATCATGCGGTGACTGTGCGAAAGGCGGAGCAGTTCAACGT
TCGCCCATAATTTTTTTAATCTTGTGATTTGAGACAAAGAAAATGCTCTT
TGGGGTGCTGCAAATTTACGTACACGGGTTGATGCACGTGCGTGTGGCTC
GTTCGGGGTGTATAGCGTCGACGTGATTGGGTTATCGCTTAGTGGCTGCC
GTGCAGCCTCATCATTGCATTTACCGCAATTGACTGATGCTCGCCGAATA
TTACCCGGCGTGCAGCGTCGGTTGATGCTCCCCTCCCTCCCACCCCCCAT
CCTTCCCTCGATCCTGGGTGCAATATGTTCTGTATGGCCGGGTTTTCCAC
AACCCTCACACATGTCCGTTCAAGTCTCACTCGATTCCATGCGCAAGTAT
CCCCTGTGTCAACCCGTCCCGCTTCCCTCCCGAAACGCCCGCCTGACACG
TGAAAAGTCGGCGCAGTCGGCACAGCAGTCGGCGCAGGAGGTGTACCCTC
CCTCGTCCTCGGCGCTGCCGACTGCTTCCGTGAGCGATTCGGTGGAGTCG
CAGTCGAACCAGAAGGCTCCGTTCCGTCGCAAGACCTCCATGGGCTCGTT
CCAGAAGGGCATGGGGGAGAGCCTCACTGGCAGACTCCGGAAGCAACTGG
ACATCCCGAAAACGCCCAAGCGGGAGATCAACACCGACATATCCATCGCC
GAGATACAGAACTTGAGCTACCTTGCGCAGGTGGGGGGGTGGGGACGTGA
CTCGATCGGGCCGGAGGGAGGGGGTGGCGTGAGGGGGCGGGGGCGGGGCG
GGGCGGGGCGGGGCCGGGGCTCATTCAGCCGTGGGGCATCACGGGGCTTT
TGGTGCCCCGTCGTGTTGGATATTGGACGGCACTCGCATCCCCATCAGCA
TGGGTTCCAGCCAATTCCCAAAGCTGAAACGCTGCGACTGCAGCCGTGTA
CGGGGTGCAGAGTCAATTTGGGGTCCGTTTTCGGGACTCTCGTTCCACAA
GAAAACGATGAATATCGCATCATATCGCGTGACATCGCGTCGCATCTTAT
ATTTAGTCCTGTCCGTGTTCAGTGACAACATGCCTGTGTACACGCGCACG
TATTATTCAAGTTATATGCACCCCCCAAGCGGGAACCTTTTTTGTTCCCA
GGCTGTTGGGGAGCTGCGCATGCCCGCCGCACAGTCCGGACGAAAACTCA
TTTGAAGAAATCGGTTGATGCACACCATTATTTCGCGGACACGACCTTTT
TTTGTCCGGTTTGATGTCATTGCTAACCTTCCGATCCGCATCCCCCCCCA
CTAACCCTTCCCCGGCCCTTTTTGCGCATTCTTCTTCCCCAGGGAGCGAT
GTGCGTGGCGTATACTGCCCTGCTCAACGGACAGATGGTGGTGCTCAAGA
CGCCGCTGCCGAACACTAGCCACGCTGCTGTCGCTGCGAACGATTTAGAG
GTACGAGTTCTCTCTGCGTCGCGGGGTCGGGATCGGAGTCACGGCTTCGT
TGTCGGGGAGCACCTCCTCCCTTACCCCCGTAAGCGCCGGCGCAACCCGT
GCTTCCACAGCAGGTTTCCTTGCTAGACCCAGCGGACATGCTCCTGCCGC
CGCAGACGGTGTGGTATTTGCCGAATTCGTGGGAGCAGAAGGGCCGACAA
AATCAGCTCAGTTCACAAGAAATCGGTTGGCGACCATGATGTTGCAGCTT
GCGCGTGACGGGCGGTGTTGCGTGCTTTACATTAAAGACACGTTGTTGGT
ACAACGTGTGTGCGGCGGCCCCAATTGTGGCCGTGTCTCGTGACGGGGTT
GTCCGCCGCACGCTCAAGCGGCCAGCCTAAAAGTATCCAGGCCGACACCT
GGCTCTCGTATTAGCACGTTGGCATCTTGGACGAGTTCGCACGCGTTAGT
TTTTGTGTGTCTCCCTTCCTTTTTTTTATTCTGCCCCTCCGTGCTTCTGT
GTTGTCTTCGGTCGTCGGCACCCACACCAGGTGGAAATGCTCCTGCTCAA
GGAGCTCCACCACGACAACATCGTGAGCCTTTTGGGGGCGGGATTTCTGC
CGGACGGCCGCCGGTTCGTTGCTCTGGTGCGCAGCGAGTGTTTTGTCTGG
GCCCGAAGGGATGATGGCCGTGGCTGTAGGGTAATTACTCATGAAAATCA
CGCAGCCAAACACGTGAGGATTGAATTTGATGTTGACATCTGACTGGACG
TATTGTTGTGACCCAGGAAAATGAAAATCATATTTGTGACCCAGGAAAAT
GAAAATCATGTAGCCTGAATTCTGAACTTGGCGTGCTCTCAAGATCTCGT
TGCCGACCCTGGGACCAATCAAGCAAGGCTTCGCGCCGAAGGCCAAGGCG
CAGGGTTGGGCAGGCGTGCTCGCTGTGCTCTTCGCGCAAGCCGGTCGTCG
ACTTGTACGTGCCAGTATTCCGGTTGTGTAACCCCTTCCTCTCCCCCCCC
GCCAGCACTTTAGCCTACGGGGCGGAGTCGCTGCGAGGCGATACACACAG
AAAGAAGTCGATGCAGCACACGAGAAGAAGAAATGCGCGGACACCCCGGC
TCGGAAGCGAGGTTACATTACATTCCGCTGTGACGCTCTTGGGGTGTGCG
TGCTTCGCTCGGCGTGTATTGGCGTTAGTGTCAACTGGCCTCCTTGATTT
CAACGCCCTCCCTTCCCCAAATGTAATTCGTGAAATGATCTCGGCCACAG
GAGTACTTGAGCGGAGGGACCCTAAGCGAGGTGCTGAGGGAGCACCAGGC
GGAGCCCATGGGGATTTCAAAGGTGAGGCGTCTGCCGAGGCGTTTGCCAG
TTGCGTGTTATTTGCGGTGTGGGCGATTTCTCCTGCCAAGCTTGACGTGT
CTCATTCCTTGACCTTTGTGTTTGCTTGCTTTGTAAAGTTGGGTCGCGAA
GGGGGCGCAAGGTCACACGCGCGCGACGAGATGTGGAACACGTTCGCGGT
GCATCGGCGGAAGGTCGTTGACATCCCGAACATTGAGAGACGCTGTCGGA
AAGTGCATTTTTTTTTGTTTTCGTCTTTCTTTTGTACTGCTTGTTTCCGC
GAGAGTGGGTGTCGGGGGGCCACTTTTTTTTTGTTTTGTTTTTTCCCTTA
GGAAGGCTTGCGTGTAACGCATGCGTGATTTTCTTGCAACCCTTGGGTCG
CACGACTCCTCTGCTCTAGTGTCTCCGGGAGCGTTCCCTCTCGTTCTGCC
TGCCTGCTTGCCTGCCTGCCTGTCTCTCCCTTTCTCCCTCTTCCGCTCTG
ATGTCGCTTTTCATTCTGTCGATTTTGTCACTCAACTGTTTTTTCTCGGT
TACTACTGAGGCTCCACCCACACGACCATCACACGTACGATCGCACCGCG
CCATCTTGGATCACGGCACCGACGCCCAACACCACCGATACACGACGGCA
GGTGCTCGACCTATCGCTGGCTCTGTGCAACGCGTTGGAGTACCTCCATG
ACGTGGCGGTGCCGGGGCGCATCGTGTGCCACCGCGACCTCAAGCCCGAT
AACATCGGATTTGCGGCGGACGGGACGTTAAAGGTTATCGACTTCGGCTT
GGGGAAGGTGGGGATTGCTGGATGGCGTCTGGTTGTGGCGATGAATGTCC
CCGCCACATTTTATTTTGACCAATATGGCTCTTGAAGAGAGGAAAAGAAG
TGTGCAGCGCAGAGAAACTGCTGCTGCTGCTGCTGCTGCTGCCGAGAGCG
TTGTCTCATGAAGGAACATGGGGTCTGCTGAGCCAGGCCGCTGTCTTGGG
TCCCAACTGGGAAACACGTGTCTTGCCAACGGCGACTTAGATCCCACATT
GCCATGGTTTTGGCGATAAATGCGCTTCCTTTCCTATTGGCTTCTTGTCA
CAGTGCCGGGTAGCCCTCCCTTCAAGCTCTTTCGTCACACGCGTGACGTG
CGGAACTCCCTCCCTTCCAGATCGCTCGTGGTGTGGACTCGCGCTCCTCA
AATGCTTGTCTATCTGATCTTTGATGCCCGTGGCGTCGTGTGTGCCGCTC
TTTTTCATTTCAGATCATCAAGCGAAGATTTCGTGTAAAAGCCGAAAAGT
ACCAAATGACCGGAGGCACCGGATCCCTCCGCTACATGGCACCCGAGGTA
GGCGAAGAGCAAGGAGGAAATAAAGGCGTCCAGGAGACTATGACCCGAAG
CAACGAGGTTTGGCAGAGGCGCCCACATTAATTTTGCACGCATTTTTTTT
TTGTTGCCAAAGGCGCGTGAATTTGTACTTTTTCTCGTTCGTATCTCCCC
CCCTTCTCTCAAGTAAACGCACGTTTTACCACCCCGTCTGCCTCATCGCG
TGTTTCATGTTTTCAGAGGTCGCATCGGTTCGCTAGAAAACCAAGAACAG
AAGAGGAGACACCTGACTGCCCTCGAAGTTGCTGGTTGCAGCTGATGGAT
GTCGCAAGCGAGTAGACTTTCTGGCTCCTGCTTTGCAACCCCCATCCCCC
CTTGCGCGCCCGCTCGCCCCTCTCGCTTGCGGTGTAAGTTGGGTCTGGGG
TTCGCCCCCCTCGTTGAAACGCTCAACTGTCACGTCTCCCGACATTTTTG
AAATGGTGTGATTCATTGCCCGCGTTCCGTTTAGTGACGTATTTTCCTCC
CACCGGTTCCTGTCTTATATCCATTCGGCTTGTTCTTACCCCCCAGATCG
CGGACCACCAGGAGTACAACGAGAAGGGCGACGTTTACAGCTTCAGCCTC
ATCATGTGGGAAATGCTCGCGGGAACTAAGCCATTCTTGGGTAGGAACAA
GAAGCGGGGGCACCGAGGGGTGCGAGGGGGGATCGACTGGGAGGGGAGTG
GGGGGGGGGAAGGTTACAGACTAGGCGGATTTGGCCTTTGTGCTGCTTGA
GGAGTGTTGCAGTTGCGGCGGGCCTCTGTCGAGAGATCAAGGACAGCGTA
CGAGGCATGCTCTCGGAGCGGAACAGCGCACGCCTAGAGGCGCGCCGCAA
CAGCTTGTGCGTACAGCGCCGAAGCGTCCAAAACTAGCAGCCATTAGTCT
GCCTGGACTTGAGTCGCAACAAGGCGAACGGATCGACGATAGCGTTCCGA
AAGCGGTAGTCAAGCCACGACAGATGTCGAGGTTCCGGACATGAGCAAGA
ATCCTGGAAAACTTGGGATGAATGAGCTGCAGTGGGCCGCCACACTGCTC
TCGCGATTTTGCTGACCCTCGTCTTGCCTCCCTCGCGCCGTTTGCATATC
GGGGCTGCCACACCGATGTGTGGGGCGGAAATGTCAGGTTTGAAACGGCC
CGACTTCTACAACAGGGTGGTCGACCAGGGGGAGCGTCCCCCGCTTAACC
CAGATTGGCCCCTTCCCATCCGCAACTTGTTGGAGAGCTGCTGGCGAACA
AATCTCGACGAGCGCCTCAGCTTCAGAGAAGTGGCGGGCATCCTCAAAGT
GCGCTTGTGGGGGGTCGTGGAAAGAGGGGCGGGGGAGGATAGGTTATGGG
AGGGAGGGTATTTTTGCGCCTGTTTTCTTGTGTAGGTGGGAGGCGGAGAC
ACGTATCCCCGTTTTGGGGGGTGGCGCACGGGTTGTGGGCTAGGAAGGGA
GACGACGAGGATGGCGGCCAATGCTTTTGGCATTCCCGCTGGCCTTGGTT
TTGTGTCTCCCCCCAGTTTTCCGACTCGTTTCCGATCGCGACGCTTAGTA
TCCCCGTGCAGAATTTTCCGGTAGCTTCCTTGGCAGAGCTCGACTTGAAC
GTTCGACAGACGCAGACGATAGAAGCCATGGCACGATAGATGCGCAGGGC
TGTGACGACTTTGGCGGAAACGGTGGGCGAAAGGGAACACGGCGGAGAAC
GAATGAACGGCGGTGAAAGCGTCGGCATATCGCGCACCCGTCTGCTCGGA
AAATTCTGCATTTGTGTTTCCATTGAAATATCCCCATCCTTCATGAATTT
CTTCTCTCATCGGCATCGTCATATCACAAATCCCTGCGATTTTCCCTTGA
AATGGGTTCCTGGATCATGTCCACCTCGTTGGCATTGGCGCTTCTGGCAT
AACACTGGTTTTGGCATTACCGCTGACATCTTCGTCGAAGTTGATATCGG
CGTTTCAACAGCAATCGACATCGGCATAGGCGTCGGTATCGGCATTTGTA
TTGATTGGCATTCGCGTGCTTCTTCCCGTTCCTCTGAGGTCTTTTGTAGC
CTGAGGAGACGGAATCGATTCAGTACGATATGGTACGGACATTCGAAGGT
ACTGGCGGTGATCGGGAAGGTTTGACTGTGAAGTCCAAGCAATGACAACG
CGCGTTGCTACTGTACTAATGCACTAATTAACTAATTAACTAATTCAGGT
GTGCGCGGAGGAGGAGAACCGGCGAAGTTTCTCAGAGGAGAAACGGAAGA
GCCTCGTCGGGTTGTCTTCGATCCGGCGGTCCCGCATGTGGACCACCACG
GGGGCGAGGCCAGACCTCGACGAGATCTCAGCAGACCCGCAGTACAAGCC
AAAATTCAAGATATCTTCGCTCTTGTCGAGCCATCACGTGAGCGCGTAGT
TGGCGGGGGTTCCGACGTCATGTACCTTTGGGTGGAGAATAGGGTATGTT
CGGGGGGACAAGAAGTGCGTTTTGTTCCGTTGTCTCTGTCGGAAGGTCGT
AAGACGTTGGAAAATAGAACCAAAAAAAAGAAATTAAAGAAATGAAGGAA
TTGAATAAAGACGAACCAGGAATGAATGCTTCGCTGGCGCCTTTTGCCTT
GAAACTTGGTGTGACCTGTAGCTGCGAGTCGGGACATGGAAGGAAGGCGG
AGAGGGGGCGGGGGGGATAAGAAAGGCGATAGGCGCTTCGAGTGGGACGG
ACCAGAAGAGGTACGTCGATCGGATCAAATGAGGAACATGTTTGTGAAGC
CTCTAGGCGGTTCCAATCGACAGCGAAGGAACGAGAGCAACACGGATAAA
GGGCGAGTTTTGTGGTCCCCGGCCAAGGAGCCAAGAAGCCGACTCCACGC
GGCGCCTCAAGTGCCGGGAAGTTAGGCACCTCACGAGAGAAAAGCTGTCT
GTTGTTACTTTGGTGTCGTGCTGTCTGTCGTGGTTCACTCGTTTTTCTCG
ACGCGACTGAGGGGAGCCAGCCGTGCGAGGTTCCTCTCGGCACAAGCGCA
GCCAGCCGTAGTTTTGTCGTCCTCCTCTGCCTTTCTCCATGTCTTTTTTT
TTTGTGTGTGTCGCGCGCGATCGTTTGACTTGTCAGTTCTGACGTTTTTC
TGGCGCACGCGTGTGTGGCACCATGTCTTGTTCTTGTATGCTGCTGCTGC
TGTCGGTCGGTCGGCACACACGCAGAGCACCGGCGGGGTGAGGTCGACGA
TGGAACGACTCCGCGGCACCTACAAACACGGTGGCAAGGGCAGGGCAGAG
GAGAGCTCCGTCTTTCGGACCACCTCCGACGACACGGATACGAAGCAGAC
TGTGATTCGCCGACGAACGATCAACGACGCATGAAGATGTTGCTCGGTTT
TTGCGGCGGGTTGCGGGGCTGGGTGGTGTTTTATATCGCCACGTAGAGGT
CGGTAGCTCGCACTTCTGTTGATACGGTTCGCAAAATATTTACGAGATGA
TGACCGCGAGGGGAGGATTTTCTTTTTTTTTCAAGTGTTGTTCGTTCTCC
TTCCTCTTGTTCTTTATTTGGGGTGGATGGGTGTTTATGTACGTTAAATC
TTCAGCCCGCGGTGGCATCGCGCTGGCTTGGAATGAGTGGCTGCGCAGGG
TCGAACCTTTCTGCCCCGGTGGCAGTGGCGGTGGCGGCCTTCTGTTAGTT
TTAGTTTTATGATGTTCAATTAGTGTTTTTTTAGAAGGGCCGGGCAACGG
CAGTGGTGGCGGTCGGCATGTAATGCAGCGGCCAAAGATTCTTCGGAGGG
CGGGGAAGGCACCGCGACCTAGCCCAGCATGTGCATGGTGTACTGAAGGC
GGTGGTCGCAATTTGTTGCGGATGGGAACGTCCCGTACCCTCTTGGCAGT
GTAAAGTGCTACGGGAGAGAGAGAGGGAGAAAGGCAGAAAAGCGTGCGCG
GCACAACGTCAGCCCTCGGCGGCTATACGTAGGCCGAAACTGTACCGTGT
CAATGAGGGGGGGGGGGCGGCAGAGAGCTGCAGGGAGCTTTGAGCTTTTC
TTTCCCCGATCAGGCGACCACTATCGCCGGCTTTTCGGTGCTGCTGCATC
ACGCGTGTCGAACATATCTGTGTTTGGGCGTTTTTTTTTCTTTTATTTGA
CCGGCATCGGAGTTTCCATGCCCTTCGATGGCAGAAGGCGAGGACAAAGA
GGCAACGGCATCCAAGCTGGCGGGGCCTCTCTCTCCTCAGGCAGTCAGTC
GCAACTGGTTGTTTGACTGGTTTTGCTGCCGCAGGAGGAGGGGGTGGTGA
GGGCTGTTTCGGGAGTTCCAACGCGTCTAGGTCTCGGTCGCTTGATTGAG
GGCGTCGGTGTATACACTCGCTCATCACCCCGTGATCATCGGCCAATCAG
AACCACCGACACCGATGTTGACCAACAGGAAACGTGCGGGCGGGGACTTT
CGCTGCTGTCTTTTGTCTGTCGATGGTTTTATATTTTATACCTGTTGCGT
CCCGTCTGAGGACTGGAATGGGAATGCCAGTCAGTGTTGATCTTTGCGGC
GCACATGGCGATCGAGCGGCGGCGTTCGTTTTTTTATGAGTGATTATCAA
AAACCAGATCCAGTAAGTTTGCGCCGATAAATGTCTGCGTTTCGCGTTGA
TTCGTGTAGGGCTGACCGACGTCCGTTGTAGGAGATCACCTCTGATGTAC
ATTCGTGTGCATACTCTGTGTTGACTTGGGCCTGTGTACCCTATAGGTTG
CTTCTCCCTTTTTCCGGAGCAGCAAAGGTACAAGGTCACCGTGGGTGAGA
CTGTGTTCGTTCTCCTATCATTTTATTCGCAGCGGGTTTACGATGCACTT
CAAGATGGAGAGTTGTGCAAAATAAGGCGAAAAAAAGGAGCACTTGCTTC
GGCTCTGTTTTTCGGTGTTTGGCCGGTCCGCCGGTTGGTACGGGGCACAC
AGGCAAGCTCGTGCATGAAAGGTGTGGTGTTCTGGTTGCGGGAGGAGAGG
GTTCCATAATGTACCTTGAGAACGCCTCCGGGGGCGA back to topCoding sequence (CDS) from alignment at P-fluviatile_contig11:977066..992202- >mRNA_P-fluviatile_contig11.1066.1 ID=mRNA_P-fluviatile_contig11.1066.1|Name=mRNA_P-fluviatile_contig11.1066.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4560bp|location=Sequence derived from alignment at P-fluviatile_contig11:977066..992202- (Porterinema fluviatile SAG_2381) ATGGCTCTCACGACAGGAGCTGGACCTGCGAATGGGAGATTAGGTTGCAG GAATGGAATGGGGGCAACAGCAGCGGTGCTTGCAGCATTATCGCTTGAAA GTTCAGAGGGGGTCATGGCTGAACCTTCAAAACATTCAAGACAGATGGCT CTCACGACAGGAGCTGGACCTGCGAATGGGAGATTAGGTTGCAGGAATGG AATGGGGGCAACAGCAGCGGTGCTTGCAGCATTATCGCTTGAAAGTTCAG AGGGGGTCATGGCTGAACCTTCAAAACATTCAAGACAGAGGAGCAAGACG CACGAGGAGGAGATGGACGAAAACAAGGTCGTGGTACACACGAGACGCGG CAGCACTGCGGTCGGAGTGACTCCCAGCGACCCCTCCGCGATCGTCGACC TCTTCCAGGAAGTGGAGTCAATCGAGGAGCAAGACGCACGAGGAGGAGAT GGACGAAAACAAGGTCGTGGTACACACGAGACGCGGCAGCACTGCGGTCG GAGTGACTCCCAGCGACCCCTCCGCGATCGTCGACCTCTTCCAGGAAGTG GAGTCAATCGGGAGTATCTACCCAGGGCACGATTCGGATGAGTCGGAGCA CGCAACAGGCGGGGAAGAGGCCGCCGCTGCTAGCGGTGATCACGCCGGCT CTAAATCCGCTGCTGCCGCTGCCGCTAGCGCTGCCTCCGACCTTGGGGGA AGCGCAAAGTCGCAACGGCGCACAAGCGCCAATTCTCAGGCCTCGGCCTG CACTCAACCGTTATCGGCTTGCTCCCGAGACGGCGACGATGACAACAACA ACAGCAAAAATCCCACCCCCTCCTCTGCTACACCAGCACCACCAGCACCG CCACCACCGCCAGCACCGCCAGCAGGGACGCAGCAAATACAGCAGCAGAG GAGCAAGGGCTGGGGGATGGCTGGCAAGCTCTGGACGCAACTTTCGTCGC AGAAGAAGCAGCCGCGGACCCCCCCGCAGCCGGCGGACGGCGGTGCCGTC TTTGAGCCGGCCTTGGGGACGTCCGTGGGAGCCCCGCAGGCGGCGCCGCA GCCGTATTGGCCTTCGAAGGCGACGGCGGCAGACGTTACGACGGAGGGGG GCGTGGGTGCCGTGGCTATGCCGGGGGGTAGCGGGGGGGCTGCGCAATCC ACCGAAGGCAACCAGAAGGGAGTATCTACCCAGGGCACGATTCGGATGAG TCGGAGCACGCAACAGGCGGGGAAGAGGCCGCCGCTGCTAGCGGTGATCA CGCCGGCTCTAAATCCGCTGCTGCCGCTGCCGCTAGCGCTGCCTCCGACC TTGGGGGAAGCGCAAAGTCGCAACGGCGCACAAGCGCCAATTCTCAGGCC TCGGCCTGCACTCAACCGTTATCGGCTTGCTCCCGAGACGGCGACGATGA CAACAACAACAGCAAAAATCCCACCCCCTCCTCTGCTACACCAGCACCAC CAGCACCGCCACCACCGCCAGCACCGCCAGCAGGGACGCAGCAAATACAG CAGCAGAGGAGCAAGGGCTGGGGGATGGCTGGCAAGCTCTGGACGCAACT TTCGTCGCAGAAGAAGCAGCCGCGGACCCCCCCGCAGCCGGCGGACGGCG GTGCCGTCTTTGAGCCGGCCTTGGGGACGTCCGTGGGAGCCCCGCAGGCG GCGCCGCAGCCGTATTGGCCTTCGAAGGCGACGGCGGCAGACGTTACGAC GGAGGGGGGCGTGGGTGCCGTGGCTATGCCGGGGGGTAGCGGGGGGGCTG CGCAATCCACCGAAGGCAACCAGAAGTCGGCGCAGTCGGCACAGCAGTCG GCGCAGGAGGTGTACCCTCCCTCGTCCTCGGCGCTGCCGACTGCTTCCGT GAGCGATTCGGTGGAGTCGCAGTCGAACCAGAAGGCTCCGTTCCGTCGCA AGACCTCCATGGGCTCGTTCCAGAAGGGCATGGGGGAGAGCCTCACTGGC AGACTCCGGAAGCAACTGGACATCCCGAAAACGCCCAAGCGGGAGATCAA CACCGACATATCCATCGCCGAGATACAGAACTTGAGCTACCTTGCGCAGT CGGCGCAGTCGGCACAGCAGTCGGCGCAGGAGGTGTACCCTCCCTCGTCC TCGGCGCTGCCGACTGCTTCCGTGAGCGATTCGGTGGAGTCGCAGTCGAA CCAGAAGGCTCCGTTCCGTCGCAAGACCTCCATGGGCTCGTTCCAGAAGG GCATGGGGGAGAGCCTCACTGGCAGACTCCGGAAGCAACTGGACATCCCG AAAACGCCCAAGCGGGAGATCAACACCGACATATCCATCGCCGAGATACA GAACTTGAGCTACCTTGCGCAGGGAGCGATGTGCGTGGCGTATACTGCCC TGCTCAACGGACAGATGGTGGTGCTCAAGACGCCGCTGCCGAACACTAGC CACGCTGCTGTCGCTGCGAACGATTTAGAGGGAGCGATGTGCGTGGCGTA TACTGCCCTGCTCAACGGACAGATGGTGGTGCTCAAGACGCCGCTGCCGA ACACTAGCCACGCTGCTGTCGCTGCGAACGATTTAGAGGTGGAAATGCTC CTGCTCAAGGAGCTCCACCACGACAACATCGTGAGCCTTTTGGGGGCGGG ATTTCTGCCGGACGGCCGCCGGTTCGTTGCTCTGGTGGAAATGCTCCTGC TCAAGGAGCTCCACCACGACAACATCGTGAGCCTTTTGGGGGCGGGATTT CTGCCGGACGGCCGCCGGTTCGTTGCTCTGGAGTACTTGAGCGGAGGGAC CCTAAGCGAGGTGCTGAGGGAGCACCAGGCGGAGCCCATGGGGATTTCAA AGGAGTACTTGAGCGGAGGGACCCTAAGCGAGGTGCTGAGGGAGCACCAG GCGGAGCCCATGGGGATTTCAAAGGTGCTCGACCTATCGCTGGCTCTGTG CAACGCGTTGGAGTACCTCCATGACGTGGCGGTGCCGGGGCGCATCGTGT GCCACCGCGACCTCAAGCCCGATAACATCGGATTTGCGGCGGACGGGACG TTAAAGGTTATCGACTTCGGCTTGGGGAAGGTGCTCGACCTATCGCTGGC TCTGTGCAACGCGTTGGAGTACCTCCATGACGTGGCGGTGCCGGGGCGCA TCGTGTGCCACCGCGACCTCAAGCCCGATAACATCGGATTTGCGGCGGAC GGGACGTTAAAGGTTATCGACTTCGGCTTGGGGAAGATCATCAAGCGAAG ATTTCGTGTAAAAGCCGAAAAGTACCAAATGACCGGAGGCACCGGATCCC TCCGCTACATGGCACCCGAGATCATCAAGCGAAGATTTCGTGTAAAAGCC GAAAAGTACCAAATGACCGGAGGCACCGGATCCCTCCGCTACATGGCACC CGAGATCGCGGACCACCAGGAGTACAACGAGAAGGGCGACGTTTACAGCT TCAGCCTCATCATGTGGGAAATGCTCGCGGGAACTAAGCCATTCTTGGAT CGCGGACCACCAGGAGTACAACGAGAAGGGCGACGTTTACAGCTTCAGCC TCATCATGTGGGAAATGCTCGCGGGAACTAAGCCATTCTTGGGTTTGAAA CGGCCCGACTTCTACAACAGGGTGGTCGACCAGGGGGAGCGTCCCCCGCT TAACCCAGATTGGCCCCTTCCCATCCGCAACTTGTTGGAGAGCTGCTGGC GAACAAATCTCGACGAGCGCCTCAGCTTCAGAGAAGTGGCGGGCATCCTC AAAGTTTGAAACGGCCCGACTTCTACAACAGGGTGGTCGACCAGGGGGAG CGTCCCCCGCTTAACCCAGATTGGCCCCTTCCCATCCGCAACTTGTTGGA GAGCTGCTGGCGAACAAATCTCGACGAGCGCCTCAGCTTCAGAGAAGTGG CGGGCATCCTCAAAGTGTGCGCGGAGGAGGAGAACCGGCGAAGTTTCTCA GAGGAGAAACGGAAGAGCCTCGTCGGGTTGTCTTCGATCCGGCGGTCCCG CATGTGGACCACCACGGGGGCGAGGCCAGACCTCGACGAGATCTCAGCAG ACCCGCAGTACAAGCCAAAATTCAAGATATCTTCGCTCTTGTCGAGCCAT CACGTGTGCGCGGAGGAGGAGAACCGGCGAAGTTTCTCAGAGGAGAAACG GAAGAGCCTCGTCGGGTTGTCTTCGATCCGGCGGTCCCGCATGTGGACCA CCACGGGGGCGAGGCCAGACCTCGACGAGATCTCAGCAGACCCGCAGTAC AAGCCAAAATTCAAGATATCTTCGCTCTTGTCGAGCCATCACAGCACCGG CGGGGTGAGGTCGACGATGGAACGACTCCGCGGCACCTACAAACACGGTG GCAAGGGCAGGGCAGAGGAGAGCTCCGTCTTTCGGACCACCTCCGACGAC ACGGATACGAAGCAGACTGTGATTCGCCGACGAACGATCAACGACGCATG AAGCACCGGCGGGGTGAGGTCGACGATGGAACGACTCCGCGGCACCTACA AACACGGTGGCAAGGGCAGGGCAGAGGAGAGCTCCGTCTTTCGGACCACC TCCGACGACACGGATACGAAGCAGACTGTGATTCGCCGACGAACGATCAA CGACGCATGA back to top
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