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Homology
BLAST of mRNA_P-fluviatile_contig9.15010.1 vs. uniprot
Match: D7FPE8_ECTSI (Intraflagellar transpot protein 74 n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FPE8_ECTSI) HSP 1 Score: 605 bits (1560), Expect = 3.470e-210 Identity = 336/432 (77.78%), Postives = 368/432 (85.19%), Query Frame = 3
Query: 30 MRPGSRGYVGGGLQPPGTGMRMGTGQRGGRPMSGRMRTGQVTAGPSREAAYGVALSQEVKVTDRPVTQQGMSGMKTAGGGGGGIG---RQVQDGSFFIGVLRSKMNDIRAEIGRLRQEIEKHEKDVSQQGHLERTYETLFQEVKTLEGTLADYNLAVDKARTTADPVEVTNYLHDLEDQNRREAEGLDEIFLAKQQYEKETQELEAEIEAVHARMEAKINTLEPEKLHEYRVLLQRNNDLQSGVAVKQAEADRLSAQVGHHEARAQGGGGAAVRAEYRLLEKSVAGLRRERDNLRQDLEISTMNPKEARERLLSKVKADQERLKQLDARVAETAGEVERMKERXXXXXXXXXXXXXXDLTQRRTNRHRRGQVEVLQKRDKEMTDFMGKFEQTKAEALADQKSAQATIVGLLEHISLGLESQHSIPDRGKMRE 1316
MRPGSRGYVGGGLQPPGTGMRM TGQRGGRPMSGRMRTGQVTAGPSREAAYGVALSQEVKVTDRPVTQQGMSGMKTAG RQVQDGSFFIGVLRSKMND+RAE+GRL+ EI++HEK VSQQGHLERTY+T+ Q+VK LEGTLADYNLAVDKARTTADP EVT YLHDLED+NRREA+GLDEIFLAKQQ+E+ETQELEAE+EAVH RME KINTLEPEKLHEYRVLLQRNN LQ+ VA KQAEADRLSA +G HE+R+QG GGAA+R EY++LEKSV LRRER+NL QDLEIS MNPK+AR+RLLSKVKADQERLKQLDAR AET EV RMKER D+ Q + VEVLQKRDKEMTDF+ KF+QTK EAL DQ+SA++TIVGLLEHIS GLESQH IPD+G MR+
Sbjct: 1 MRPGSRGYVGGGLQPPGTGMRMATGQRGGRPMSGRMRTGQVTAGPSREAAYGVALSQEVKVTDRPVTQQGMSGMKTAGXXXXXXXXXXRQVQDGSFFIGVLRSKMNDVRAELGRLQAEIDRHEKSVSQQGHLERTYDTMLQDVKALEGTLADYNLAVDKARTTADPGEVTKYLHDLEDRNRREAQGLDEIFLAKQQHERETQELEAEMEAVHGRMEEKINTLEPEKLHEYRVLLQRNNHLQAEVAAKQAEADRLSAMIGQHESRSQGAGGAALRGEYQVLEKSVGALRRERENLSQDLEISNMNPKDARDRLLSKVKADQERLKQLDARAAETTEEVVRMKERLEDLESDLKADRKGDVAQNK--------VEVLQKRDKEMTDFIEKFDQTKQEALDDQRSARSTIVGLLEHISTGLESQHHIPDKGGMRD 424
BLAST of mRNA_P-fluviatile_contig9.15010.1 vs. uniprot
Match: A0A6H5JUN2_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JUN2_9PHAE) HSP 1 Score: 432 bits (1110), Expect = 2.530e-141 Identity = 266/438 (60.73%), Postives = 297/438 (67.81%), Query Frame = 3
Query: 240 MSGMKTAGGGGGGIG-RQVQDGSFFIGVLRSKMNDIRAEIGRLRQEIEKHEKDVSQQGHLERTYETLFQE-----------------------------------VKTLEGTLADYNLAVDKARTTADPVEVTNYLHDLEDQNRREAEGLDEIFLAKQQYEKETQELEAEIEAVHARMEAKINTLEPEKLHEYRVLLQRNNDLQ------------------------SGVAVKQAEADRLSAQVGHHEARAQGGGGAAVRAEYRLLEKSVAGLRRERDNLRQDLEISTMNPKE--------------------ARERLLSKVKADQERLKQLDARVAETAGEVERMKERXXXXXXXXXXXXXXDLTQRRTNRHRRGQVEVLQKRDKEMTDFMGKFEQTKAEALADQKSAQATIVGLLEHISLGLESQHSIPDRGKMR 1313
MSGMKTA RQVQDGSFFIGVLRSKMND+RAE+GRL+ EI++HEK VSQQGHLERTY+T+ QE VK LEGTLADYNLAVDKARTTADP E+T YLHDLED+NRREA+GLDEIFLAKQQ+E+ETQELEAE+EAVH RME KINTLEPEKLHEYRVLLQRNN LQ + VA KQAEADRLSA +G HE+R+QG GGAA+R EY++LEKSV LRRER+NL QDLEIS MNPK+ AR+RLLSKVKADQERLKQLDAR AET EV RMKER D+ Q + VEVLQKRDKEMTDF+ KF+QTK EAL DQ+SA++TIVGLLEHIS GLESQH IPD+G MR
Sbjct: 1 MSGMKTAAXXXXXXXXRQVQDGSFFIGVLRSKMNDVRAELGRLQAEIDRHEKSVSQQGHLERTYDTMLQEXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXDVKALEGTLADYNLAVDKARTTADPSEITKYLHDLEDRNRREAQGLDEIFLAKQQHERETQELEAEMEAVHGRMEEKINTLEPEKLHEYRVLLQRNNHLQVAYGTEFFGVKSALSSSSLGSLGTAEVAAKQAEADRLSAMIGQHESRSQGAGGAALRGEYQVLEKSVGALRRERENLSQDLEISNMNPKDVRATGDSLVAVSVKIFFFVKARDRLLSKVKADQERLKQLDARAAETTEEVVRMKERLEDLESDLKADRKGDVAQNK--------VEVLQKRDKEMTDFIDKFDQTKQEALDDQRSARSTIVGLLEHISTGLESQHHIPDKGGMR 430
BLAST of mRNA_P-fluviatile_contig9.15010.1 vs. uniprot
Match: A0A6V2XWW9_HETAK (Hypothetical protein n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A6V2XWW9_HETAK) HSP 1 Score: 431 bits (1108), Expect = 1.970e-139 Identity = 263/599 (43.91%), Postives = 390/599 (65.11%), Query Frame = 3
Query: 75 PGTGMRMGTGQRGGRPMSG--RMRTGQVTAGPSREAAYGVALSQEVKVTDRPVTQQGMSGMKTAGGGGGGIGRQVQDGSFFIGVLRSKMNDIRAEIGRLRQEIEKHEKDVSQQGHLERTYETLFQEVKTLEGTLADYNLAVDKARTTADPVEVTNYLHDLEDQNRREAEGLDEIFLAKQQYEKETQELEAEIEAVHARMEAKINTLEPEKLHEYRVLLQRNNDLQSGVAVKQAEADRLSAQVGHHEARAQGGGGAAVRAEYRLLEKSVAGLRRERDNLRQDLEISTMNPKEARERLLSKVKADQERLKQLDARVAETAGEVERMKERXXXXXXXXXXXXXXDLTQRRTNRHRRGQVEVLQKRDKEMTDFMGKFEQTKAEALADQKSAQATIVGLLEHISLGLESQHSIPDRGKMREMEDEKSFKDRQLKSSEATMRRLNQDKEKRLQEMEKVKTLDEKIPLELTNLKEKMARMKAEMRDFEDIDGLRDEAARTKEHLHGLLKQYRSRVESMRGQVQQLTARHEACKKELAASETGKTLEALERKMRTYETNIFFLKEFVEIKGREIDFQSLRGECMNMVKELNEAAKKRGETEGFGVAY 1865
PGTGMR GQRG M G R+RTG + AGP AA GV + V V+DRPVTQQGMSGMKTAG G GRQVQD S++IGVLR+K+ +I EI +L++EI +H+ D +Q LER YE L +EV+ LEGTLADYNLA+DK R DP EV Y L +NRR+A+ +D++FL KQ ++ T+E E E+E +H E K+N LEP KL +Y+ LL R++ LQ+ +Q D+ + EA + G Y+ L++ + LRR+R L ++ E++ M+P+EA +++L++VK D R +LD + E+ R++ + DLT + + + E L +RD+EMT F+ KF++TKA+ + ++ Q TIVGLLEHIS GL ++ ++P K+ EM+DE FK++QL++S+ TM RL Q+KEKRLQEMEK+ TLD+KI EL L ++M M+ EM FED+DGLR +A +TK++LH ++++Y++R ++++ QV QL+A++E K +L+ ++T +TLEALE+K+ +IF L+E++E KGRE DF+SL+ +C+ + + LN+ K + G Y
Sbjct: 21 PGTGMRTAAGQRG---MLGTARLRTG-MAAGPGNVAAVGVGMQTAVNVSDRPVTQQGMSGMKTAGQG---PGRQVQDPSYYIGVLRAKLTEIATEISKLKREINQHQTDSAQYSGLERKYEELLKEVRNLEGTLADYNLAMDKVRMHTDPTEVEAYQKQLAAKNRRDAQEVDQVFLRKQGRDRATREAEEEVERIHRANEQKLNRLEPAKLSQYKALLDRSHQLQARAHEQQEALDQALGRAAEAEAELRERG---HNDRYKDLQRRLDRLRRDRQGLLEEQELAAMDPREANKKVLARVKEDNRRAAELDQKARALREEIGRLRRQLGDLSA--------DLTAKEGADSAKTKYERLSQRDQEMTQFIAKFDETKAQIVGGIQNTQDTIVGLLEHISRGLGAESNMPSADKLDEMKDEARFKEKQLETSQMTMARLRQEKEKRLQEMEKINTLDDKIAEELRGLNDQMGSMRREMGAFEDLDGLRAQAEKTKKYLHEMMEKYQTRQDNVKQQVAQLSAQYEQVKNDLSNNKTHETLEALEKKIAAQANSIFSLQEYIETKGRETDFESLKDDCLRITESLNQITIKMEQNAESGAKY 601
BLAST of mRNA_P-fluviatile_contig9.15010.1 vs. uniprot
Match: A0A836CE00_9STRA (Intraflagellar transport protein 74 n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CE00_9STRA) HSP 1 Score: 387 bits (993), Expect = 3.170e-124 Identity = 241/477 (50.52%), Postives = 314/477 (65.83%), Query Frame = 3
Query: 63 GLQPPGTGMRMGTGQRGGRPMSGRMRTGQVTAGPSREAAYGVALSQEVKVTDRPVTQQGMSGMKTAGGGGGGIGRQVQDGSFFIGVLRSKMNDIRAEIGRLRQEIEKHEKDVSQQGHLERTYETLFQEVKTLEGTLADYNLAVDKARTTADPVEVTNYLHDLEDQNRREAEGLDEIFLAKQQYEKETQELEAEIEAVHARMEAKINTLEPEKLHEYRVLLQRNNDLQSGVAVKQAEADRLSAQVGHHEARAQGGGGAAVRAEYRLLEKSVAGLRRERDNLRQDLEISTMNPKEARERLLSKVKADQERLKQLDARVAETAGEVERMKERXXXXXXXXXXXXXXDLTQRRTNRHRRGQ-----VEVLQKRDKEMTDFMGKFEQTKAEALADQKSAQATIVGLLEHISLGLESQHSIPDRGKMREMEDEKSFKDRQLKSSEATMRRLNQDKEKRLQEMEKVKTLDEKIPLELTNLKEKM 1478
G PPGTG+R GTG R MRTG SREAAYGVAL+ EV V +RPVTQQGMSGM+T+ G G GR VQDGSFF+G LR K+ DI+ E+ +L+ E E+H KD SQ G LERTYETL EVK LEGTLAD+NLA+DKARTTADP EV YL +LED+NRR A LD +FL+KQ+ E+ ++E I VH ME ++N ++P+KL EYR L+QR+ L++ VA QAE D ++A++ HEAR G G + R EY+ +E+ V LRR+RD L D+E+++M PK ARE+LL+KVKADQ+R K LD R A+TA E+E+M+ R R G+ VEVLQ+RD EM++F+ +F+ T+A L +Q AQ IV LL HIS GLE+QH+IP++ ++ TMRRL +KEKRL EM K+ TLDEKIP+EL +L++K+
Sbjct: 10 GQMPPGTGLRTGTGMR--------MRTGAAPPTASREAAYGVALTHEVNVDNRPVTQQGMSGMRTSQGAG--PGRLVQDGSFFLGQLRQKIMDIQRELAKLKAEGEQHTKDSSQYGGLERTYETLLAEVKNLEGTLADHNLAMDKARTTADPGEVVAYLSELEDRNRRNARELDNVFLSKQERERAVADVEQAIAQVHREMEGRVNAMDPQKLEEYRGLVQRSQQLEAEVASVQAETDAMTARIKEHEAR-MGPKGGSYRQEYKDVEREVGRLRRQRDALAADIELASMEPKAAREKLLAKVKADQDRSKDLDRRSADTASEMEKMRAAVAEAEADA-----------RAGRSGAGEIDPSKVEVLQRRDAEMSEFIDRFDATRAGVLQEQSRAQEAIVALLAHISSGLEAQHTIPEQ-------------------AQVTMRRLQGEKEKRLAEMAKIDTLDEKIPVELKSLRDKV 445
BLAST of mRNA_P-fluviatile_contig9.15010.1 vs. uniprot
Match: A0A662XXK3_9STRA (Uncharacterized protein n=1 Tax=Nothophytophthora sp. Chile5 TaxID=2483409 RepID=A0A662XXK3_9STRA) HSP 1 Score: 370 bits (949), Expect = 2.520e-115 Identity = 244/592 (41.22%), Postives = 356/592 (60.14%), Query Frame = 3
Query: 75 PGTGMRMGTGQRG-------GRPMSGRMRTGQ-VTAGPSREAAYGVALSQEVKVTDRPVTQQGMSGMKTAGGGGGGIGRQVQDGSFFIGVLRSKMNDIRAEIGRLRQEIEKHEKDVSQQGHLERTYETLFQEVKTLEGTLADYNLAVDKARTTADPVEVTNYLHDLEDQNRREAEGLDEIFLAKQQYEKETQELEAEIEAVHARMEAKINTLEPEKLHEYRVLLQRNNDLQSGVAVKQAEADRLSAQVGHHEARAQGGGGAAVRAEYRLLEKSVAGLRRERDNLRQDLEISTMNPKEARERLLSKVKADQERLKQLDARVAETAGEVERMKERXXXXXXXXXXXXXXDLTQRRTNRHRRGQ-VEVLQKRDKEMTDFMGKFEQTKAEALADQKSAQATIVGLLEHISLGLESQHSIP--DRGKMREMEDEKSFKDRQLKSSEATMRRLNQDKEKRLQEMEKVKTLDEKIPLELTNLKEKMARMKAEMRDFEDIDGLRDEAARTKEHLHGLLKQYRSRVESMRGQVQQLTARHEACKKELAASETGKTLEALERKMRTYETNIFFLKEFVEIKGREIDFQSLRGECMNMVKELN 1817
P TG+R GTGQRG GRP++GR+ TGQ A P + A YG++L+ EV V+DRPVTQQGM GM+ G G G GRQVQD SFF G L SK +I +EI +L++EIE+ KD +Q LER YETL EV+ LEG LADYNLA+DK R+ DP E+ L +N +EAE D +F+ +Q+ EK + +E E+ +H + + KIN L P+KL Y+ LL+ ++ + + + E + + + EA R EY LE+ L++ERD + +D + + M+P EAR LL+KVK D+ +L L+ + E + + + +L +R + ++ Q E L +DKEMT F+ +F K L Q+ QA IV LLEHIS G+ + +P + + E+ + SFK+RQL+SS T +RL + +KR E+EKV TLD KI +ELT+L +KM M +M +F +D L++ A+TK+HL L KQY R ++MR QV L+ + E +E+AAS+T K L+ALE+K+R +E NIF LKE+++ K RE+D+ L+ +C ++ELN
Sbjct: 40 PITGVRPGTGQRGMLGSSAGGRPLTGRLGTGQQAPATPGQTAGYGISLNTEVNVSDRPVTQQGMMGMRV-GTGSAGPGRQVQDASFFKGKLHSKTAEITSEIDKLQREIEQDAKDKAQCAQLERKYETLALEVRDLEGQLADYNLAMDKLRSATDPAEIRQVQEQLHQRNAKEAEEADRVFIMRQEQEKSVRRMEDEMAEIHGKHQEKINQLAPQKLQRYKELLEEHHQSEVEIEARSNELELVLHAIHQKEAELSAD---RYRDEYEALERQARRLQKERDAVAEDAKTAQMDPSEARAVLLAKVKDDKSKLDALEGALQVATTEKQELSK--------AVADLQSELDERASGGSKQEQRFEELFAKDKEMTVFLEQFPAKKEAELLSQRETQAVIVQLLEHISAGMAKEDKLPGANAANLEEIRRDLSFKERQLESSVTTKQRLTMELQKRQAELEKVNTLDTKIAVELTSLLQKMETMTTDMTEFGKLDALQEVHAQTKQHLLRLKKQYIGRRDAMRQQVTALSGQLETLAQEIAASDTAKNLDALEQKLRHHEQNIFHLKEYIDSKSREVDYDHLKQDCFRTLQELN 619
BLAST of mRNA_P-fluviatile_contig9.15010.1 vs. uniprot
Match: D0NIV2_PHYIT (Intraflagellar Transport Protein 72/74 n=9 Tax=Phytophthora TaxID=4783 RepID=D0NIV2_PHYIT) HSP 1 Score: 359 bits (921), Expect = 5.740e-111 Identity = 246/637 (38.62%), Postives = 364/637 (57.14%), Query Frame = 3
Query: 39 GSRGYVGGGLQPPG----------------TGMRMGTGQRG-------GRPMSGRMRTGQ-VTAGPSREAAYGVALSQEVKVTDRPVTQQGMSGMKTAGGGGGGIGRQVQDGSFFIGVLRSKMNDIRAEIGRLRQEIEKHEKDVSQQGHLERTYETLFQEVKTLEGTLADYNLAVDKARTTADPVEVTNYLHDLEDQNRREAEGLDEIFLAKQQYEKETQELEAEIEAVHARMEAKINTLEPEKLHEYRVLLQRNNDLQSGVAVKQAEADRLSAQVGHHEARAQGGGGAAVRAEYRLLEKSVAGLRRERDNLRQDLEISTMNPKEARERLLSKVKADQERLKQLDARVAETAGEVERMKERXXXXXXXXXXXXXXDLTQRRTNRHRRGQVEVLQKRDKEMTDFMGKFEQTKAEALADQKSAQATIVGLLEHISLGLESQHSIP--DRGKMREMEDEKSFKDRQLKSSEATMRRLNQDKEKRLQEMEKVKTLDEKIPLELTNLKEKMARMKAEMRDFEDIDGLRDEAARTKEHLHGLLKQYRSRVESMRGQVQQLTARHEACKKELAASETGKTLEALERKMRTYETNIFFLKEFVEIKGREIDFQSLRGECMNMVKELNE---AAKKRGETEGFGVA 1862
G R GGGL P G TG R GTGQRG GRP++GR+ TGQ V A P + A YG++L+ EV V+DRPVTQQGM GM+ G G GRQVQD SFF G L SK +I +EI +L++E+E+ KD +Q LER YE + EV+ LEG LADYNLA+DK R+ DP E+ L +N +EAE +D +FL ++ EK + +E E+ +H + + KIN L P+KL Y+ LL+ ++ + + + E + + + EA R EY LE+ L++ERD +D + + M+P EAR LL+KVK D+ +++ L+ + E + + + +L +R + + E L +DKEM+ F+ +F K + Q++ Q IV LLEHIS G+ + +P + + EM + +FK+RQL+SS T +RL + +KR E++KV TLD KI LEL++L +KM M +M +F ID L++ A+TK+HL L KQY R ++MR QV L+ + E E A ET K L+ALE+K+R +E NIF LKE+++ K RE+D++ L+ +C ++ELN A ++R + G+A
Sbjct: 33 GQRPGTGGGLAPVGGLPSGXXXXXXXXXXXTGARPGTGQRGMLTSASGGRPLTGRLGTGQQVPATPGQTAGYGISLNTEVNVSDRPVTQQGMMGMRV---GSAGPGRQVQDASFFKGKLHSKTAEITSEIEKLQREVEQDAKDKAQCAQLERKYEKMALEVRDLEGQLADYNLAMDKMRSATDPAEIRQVQEQLHQRNAKEAEDVDRVFLMHKEQEKSVRNMETEMTEIHGKHQDKINQLAPQKLQRYKELLEEHHQSEVEIEARSQELELVMHAIHQKEAELSSD---RYRDEYEALERQARRLQKERDAAAEDAKTAQMDPNEARAVLLAKVKDDKAKMEALEGVLQSAGAEKQELVK--------VVADVQSELDERASGSDPAHKYEALFAKDKEMSTFLEQFPAKKEAEMQAQRATQGVIVQLLEHISAGMAKEDKLPGTNAANLEEMRGDLTFKERQLESSVTTKQRLTMELQKRQAELDKVNTLDAKIALELSSLLQKMDTMTTDMTEFGKIDALQEVHAQTKQHLLRLKKQYIGRRDAMRQQVTSLSTQLENLVHETAQQETAKNLDALEQKLRHHEQNIFHLKEYIDSKSREVDYEHLKQDCFRTLQELNTLHVAQQQRQQQLHLGIA 655
BLAST of mRNA_P-fluviatile_contig9.15010.1 vs. uniprot
Match: A0A662WLW1_9STRA (Uncharacterized protein n=1 Tax=Nothophytophthora sp. Chile5 TaxID=2483409 RepID=A0A662WLW1_9STRA) HSP 1 Score: 375 bits (963), Expect = 7.440e-111 Identity = 246/592 (41.55%), Postives = 359/592 (60.64%), Query Frame = 3
Query: 75 PGTGMRMGTGQRG-------GRPMSGRMRTGQ-VTAGPSREAAYGVALSQEVKVTDRPVTQQGMSGMKTAGGGGGGIGRQVQDGSFFIGVLRSKMNDIRAEIGRLRQEIEKHEKDVSQQGHLERTYETLFQEVKTLEGTLADYNLAVDKARTTADPVEVTNYLHDLEDQNRREAEGLDEIFLAKQQYEKETQELEAEIEAVHARMEAKINTLEPEKLHEYRVLLQRNNDLQSGVAVKQAEADRLSAQVGHHEARAQGGGGAAVRAEYRLLEKSVAGLRRERDNLRQDLEISTMNPKEARERLLSKVKADQERLKQLDARVAETAGEVERMKERXXXXXXXXXXXXXXDLTQRRTNRHRRGQ-VEVLQKRDKEMTDFMGKFEQTKAEALADQKSAQATIVGLLEHISLGLESQHSIP--DRGKMREMEDEKSFKDRQLKSSEATMRRLNQDKEKRLQEMEKVKTLDEKIPLELTNLKEKMARMKAEMRDFEDIDGLRDEAARTKEHLHGLLKQYRSRVESMRGQVQQLTARHEACKKELAASETGKTLEALERKMRTYETNIFFLKEFVEIKGREIDFQSLRGECMNMVKELN 1817
P TG+R GTGQRG GRP++GR+ TGQ A P + A YG++L+ EV V+DRPVTQQGM GM+ G G G GRQVQD SFF G L SK +I +EI +L++EIE+ KD +Q LER YETL EV+ LEG LADYNLA+DK R+ DP E+ L +N +EAE D +F+ +Q+ EK + +E E+ +H + + KIN L P+KL Y+ LL+ ++ + + + E + + + EA R EY LE+ L++ERD + +D + + M+P EAR LL+KVK D+ +L L+ + E + + + +L +R + ++ Q E L +DKEMT F+ +F + KA L Q+ QA IV LLEHIS G+ + +P + + EM + SFK+RQL+SS T +RL + +KR E++KV TLD KI LELT+L +KM M +M +F +D L++ A+TK+HL L KQY SR ++MR QV L+ + E +E+AAS+T K L+ALE+K+R +E NIF LKE+++ K RE+D+ L+ +C +++LN
Sbjct: 807 PITGVRPGTGQRGMLGSSAGGRPLTGRLGTGQQAPATPGQTAGYGISLNTEVNVSDRPVTQQGMMGMRV-GTGSAGPGRQVQDASFFKGKLHSKTAEITSEIDKLQREIEQDAKDKAQCAQLERKYETLALEVRDLEGQLADYNLAMDKLRSATDPAEIRQVQEQLHQRNAKEAEEADRVFIMRQEQEKSVRRMEDEMAEIHGKHQEKINQLAPQKLQRYKELLEEHHQSEMEIEARSNELELVLHAIHQKEAELSAD---RYRDEYEALERQARRLQKERDAVAEDAKTAQMDPSEARAVLLAKVKDDKSKLDALEGALQVATTEKQELSK--------AVADLQSELDERASGGSKQEQRFEELFAKDKEMTVFLEQFPEKKAAELLSQRETQAVIVQLLEHISAGMAKEDKLPGTNAANLEEMRRDLSFKERQLESSVTTKQRLTMELQKRQAELDKVNTLDAKIALELTSLLQKMETMTTDMAEFGKLDALQEVHAQTKQHLLRLKKQYISRRDAMRQQVTALSGQLETLAQEIAASDTAKNLDALEQKLRHHEQNIFHLKEYIDSKSREVDYDHLKQDCFRTLQDLN 1386
BLAST of mRNA_P-fluviatile_contig9.15010.1 vs. uniprot
Match: A0A7S2WUI2_9STRA (Hypothetical protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2WUI2_9STRA) HSP 1 Score: 355 bits (911), Expect = 2.910e-110 Identity = 225/568 (39.61%), Postives = 353/568 (62.15%), Query Frame = 3
Query: 132 RMRTGQVTAGPSREAAYGVALSQ-EVKVTDRPVTQQGMSGMKTAGGGGGGIGRQVQDGSFFIGVLRSKMNDIRAEIGRLRQEIEKHEKDVSQQGHLERTYETLFQEVKTLEGTLADYNLAVDKARTTADPVEVTNYLHDLEDQNRREAEGLDEIFLAKQQYEKETQELEAEIEAVHARMEAKINTLEPEKLHEYRVLLQRNNDLQSGVAVKQAEADRLSAQVGHHEARAQGGGGAAVRAEYRLLEKSVAGLRRERDNLRQDLEISTMNPKEARERLLSKVKADQERLKQLDARVAETAGEVERMKERXXXXXXXXXXXXXXDLTQRRTNRHRRGQVEVLQKRDKEMTDFMGKFEQTKAEALADQKSAQATIVGLLEHISLGLESQHSIPDRGKMREMEDEKSFKDRQLKSSEATMRRLNQDKEKRLQEMEKVKTLDEKIPLELTNLKEKMARMKAEMRDFEDIDGLRDEAARTKEHLHGLLKQYRSRVESMRGQVQQLTARHEACKKELAASETGKTLEALERKMRTYETNIFFLKEFVEIKGREIDFQSLRGECMNMVKELNEAAKK 1832
R+ TG +T+ R+AA G + Q ++ VTDRP T QGM GM + G + R QD +F++GVLR K+N+I AEI +L++E E+ ++D S +++R E L +EV+ LEGTLADYN+A+DK R +D E+ Y+ + E +NR A+ +D IFL +Q E Q +E +IE V+ + +AKIN+++P +L +Y+ LL ++ LQ A QA+ D ++ Q+ ++A+ + E++ LE L+R+ +L ++ EIS + P E ++R+L+KVKAD R LD + + E R ++ D + + E L +RD+EMT+F+ F++TK L +QK AQ TIVGLL HIS GLE++ ++P + +++EM DE SFK++QL+SS+ATM+RL +++E RL+EMEK+K LDEKI +EL L+ KM M EM F+D+D LR AA TK+ L+ Y R+++ R QV + ++E+ KK+L ET K + A E+K+++Y NIF L+E++E +GRE DF +++ CM + +NE K+
Sbjct: 25 RLATG-MTSSLGRQAAVGAVIQQAQINVTDRPTTTQGMRGMSSRSGP---MQRSTQDATFYVGVLRQKVNEITAEISKLQRETEEVQRDQSMSSNMQRRVEDLDKEVRNLEGTLADYNIAMDKLRQGSDASELKGYIQEYEAKNRVFAQEIDRIFLQTKQEEAVCQTVEQQIEGVYQKNQAKINSMDPGRLQQYQELLHQSQALQERSAHMQAQIDSVTDQIALYQAQRDAN---SCNQEFQDLEDRGMLLQRQLQSLMEEQEISRLEPGEMQQRMLAKVKADNARAAALDEEIKQLRDESRRQEQTVSELKAEVSNGGKSD----------KDKYEKLYQRDREMTEFIDGFDETKKAILNEQKEAQETIVGLLAHISKGLEAEGNMPSQERLQEMHDEASFKEKQLESSQATMQRLQKERELRLEEMEKIKNLDEKIGVELEMLRIKMESMSTEMVAFDDLDDLRRRAAETKKFLNQQFDTYGKRMKAARDQVAGVRRKYESTKKQLEEHETQKKMIAQEKKLKSYAQNIFSLQEYIETQGRESDFIAIKDSCMALTSRVNEMVKE 575
BLAST of mRNA_P-fluviatile_contig9.15010.1 vs. uniprot
Match: A0A8J5M4D3_9STRA (Uncharacterized protein n=1 Tax=Phytophthora aleatoria TaxID=2496075 RepID=A0A8J5M4D3_9STRA) HSP 1 Score: 365 bits (937), Expect = 7.130e-110 Identity = 246/613 (40.13%), Postives = 362/613 (59.05%), Query Frame = 3
Query: 63 GLQPPGTGMRMGTGQRG-------GRPMSGRMRTGQ-VTAGPSREAAYGVALSQEVKVTDRPVTQQGMSGMKTAGGGGGGIGRQVQDGSFFIGVLRSKMNDIRAEIGRLRQEIEKHEKDVSQQGHLERTYETLFQEVKTLEGTLADYNLAVDKARTTADPVEVTNYLHDLEDQNRREAEGLDEIFLAKQQYEKETQELEAEIEAVHARMEAKINTLEPEKLHEYRVLLQRNNDLQSGVAVKQAEADRLSAQVGHHEARAQGGGGAAVRAEYRLLEKSVAGLRRERDNLRQDLEISTMNPKEARERLLSKVKADQERLKQLDARVAETAGEVERMKERXXXXXXXXXXXXXXDLTQRRTNRHRRGQVEVLQKRDKEMTDFMGKFEQTKAEALADQKSAQATIVGLLEHISLGLESQHSIP--DRGKMREMEDEKSFKDRQLKSSEATMRRLNQDKEKRLQEMEKVKTLDEKIPLELTNLKEKMARMKAEMRDFEDIDGLRDEAARTKEHLHGLLKQYRSRVESMRGQVQQLTARHEACKKELAASETGKTLEALERKMRTYETNIFFLKEFVEIKGREIDFQSLRGECMNMVKELNE---AAKKRGETEGFGVA 1862
GL P TG R GTGQRG GRP++GR+ TGQ V A P + A YG++L+ EV V+DRPVTQQGM GM+ G G GRQVQD SFF G L SK +I EI +L++EIE+ KD +Q LER YET+ EV+ LEG LADYNLA+DK R+ DP E+ L +N +EAE +D +FL ++ EK + +EAE+ +H + + KIN L P+KL Y+ LL+ ++ + + + E + + + EA R EY LE+ V L++ERD +D + + M+P EAR LL+KVK D+ +++ L+ + A E + + + +L +R + + E L +DKEMT F+ +F K L Q++AQ IV LLEHIS G+ + +P + + EM + +FK+RQL+SS T +RL + +KR E++KV TLD KI LEL++L +KM M +M +F +D L++ A+TK+HL L KQY R +++R QV L+ + E E ET K L+ALE+K+R +E NIF LKE+++ K RE+D++ L+ +C ++ELN A ++R + G+A
Sbjct: 396 GLNPI-TGARPGTGQRGMLTSASGGRPLTGRLGTGQQVPATPGQTAGYGISLNTEVNVSDRPVTQQGMMGMRV---GSAGPGRQVQDASFFKGKLHSKTAEITTEIEKLQREIEQDAKDKAQCAQLERKYETMALEVRDLEGQLADYNLAMDKMRSATDPAEIRQVQDQLHQRNAKEAEDVDRVFLMHKEQEKSVRTMEAEMTEIHGKHQDKINQLAPQKLQRYKELLEEHHQTEVEIEARSQELELVMHAIHQKEAELSSD---RYRDEYEALERQVRRLQKERDAAAEDAKTAQMDPNEARAVLLAKVKDDKAKMEALEGVLQSAAAEKQELTK--------ALADVQSELDERASGSDPAHKYEALFAKDKEMTTFLEQFPAKKEAELQAQRAAQGVIVQLLEHISAGMAKEDKLPGTNAANLEEMRRDLTFKERQLESSVTTKQRLTMELQKRQAELDKVNTLDAKIALELSSLLQKMDTMTTDMTEFGKLDSLQEVHAQTKQHLLRLKKQYIGRRDAIRQQVTALSTQLENLMHETVQQETAKNLDALEQKLRHHEQNIFHLKEYIDSKSREVDYEHLKQDCFRTLQELNTLHVAQQQRQQQLNLGMA 993
BLAST of mRNA_P-fluviatile_contig9.15010.1 vs. uniprot
Match: H3HB40_PHYRM (Uncharacterized protein n=1 Tax=Phytophthora ramorum TaxID=164328 RepID=H3HB40_PHYRM) HSP 1 Score: 368 bits (944), Expect = 3.380e-109 Identity = 249/626 (39.78%), Postives = 368/626 (58.79%), Query Frame = 3
Query: 24 VAMRPGSRGYVGGGLQPPGTGMRMGTGQRG-------GRPMSGRMRTGQ-VTAGPSREAAYGVALSQEVKVTDRPVTQQGMSGMKTAGGGGGGIGRQVQDGSFFIGVLRSKMNDIRAEIGRLRQEIEKHEKDVSQQGHLERTYETLFQEVKTLEGTLADYNLAVDKARTTADPVEVTNYLHDLEDQNRREAEGLDEIFLAKQQYEKETQELEAEIEAVHARMEAKINTLEPEKLHEYRVLLQRNNDLQSGVAVKQAEADRLSAQVGHHEARAQGGGGAAVRAEYRLLEKSVAGLRRERDNLRQDLEISTMNPKEARERLLSKVKADQERLKQLDARVAETAGEVERMKERXXXXXXXXXXXXXXDLTQRRTNRHRRGQVEVLQKRDKEMTDFMGKFEQTKAEALADQKSAQATIVGLLEHISLGLESQHSIP--DRGKMREMEDEKSFKDRQLKSSEATMRRLNQDKEKRLQEMEKVKTLDEKIPLELTNLKEKMARMKAEMRDFEDIDGLRDEAARTKEHLHGLLKQYRSRVESMRGQVQQLTARHEACKKELAASETGKTLEALERKMRTYETNIFFLKEFVEIKGREIDFQSLRGECMNMVKELNE---AAKKRGETEGFGVA 1862
V P R G L P TG R GTGQRG GRP++GR+ TGQ A P + A +GV+L+ EV V+DRPVTQQGM GM+T G G G GRQVQD SFF G L SK +I AE+ +L++EIE+ KD +Q LER YET+ EV+ LEG LADYNLA+DK R+ DP E+ L +N +EAE +D +FL ++ EK + +E E+ +H + + KIN L P+KL Y+ LL ++ + + + E + + + EA R EY LE+ V L++ERD +D + + M+P EAR LL+KVK D+ +++ L+ + T E + + + +L +R + + E L +DKEMT F+ +F + DQ+++Q IV LLEHIS G+ + +P + + EM + +FK+RQL+SS T +RL + +KR E++KV TLD KI LEL++L +KM M A+M +F +D L++ A+TK+HL L KQY R ++MR QV L+ + E +E + ET K L+ALE+K+R +E NIF LKE+++ K RE+D++ L+ +C ++ELN A ++R + G+A
Sbjct: 607 VGGLPSGRPGTGQSLNPI-TGARPGTGQRGMLLSASGGRPLTGRLGTGQQAPATPGQTAGFGVSLNTEVNVSDRPVTQQGMMGMRT-GTGSAGPGRQVQDASFFKGKLHSKTAEIAAEVEKLQREIEQDAKDKAQCAQLERKYETMALEVRDLEGQLADYNLAMDKMRSATDPAEIRQVQEQLHQRNAKEAEDVDRVFLMNKEQEKSVRNMEDEMTEIHGKHQEKINQLAPQKLQRYKELLDEHHQTEVEIEARSQELELVMHAIHQKEAELSSD---RYRDEYEALERQVRRLQKERDAAAEDAKTAQMDPNEARAVLLAKVKDDKSKMEALEGVLQSTTAEKQELTK--------ALADLQSELDERASGSDPAHKYEALFAKDKEMTAFLEQFPAKREAETQDQRTSQGVIVQLLEHISAGMAKEDKLPGTNAANLEEMRRDLTFKERQLESSVTTKQRLTMELQKRQAELDKVNTLDAKIALELSSLLQKMDTMTADMGEFGKLDSLQEVHAQTKQHLLRLKKQYIGRRDAMRQQVTALSTQLENLVQESGSQETAKNLDALEQKLRHHEQNIFHLKEYIDSKSREVDYEHLKQDCFRNLQELNTLHVAQQQRQQQLNLGLA 1219
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 | 609.0 |
| Seed ortholog evalue | 2.5e-171 |
| Seed eggNOG ortholog | 2880.D7FPE8 |
| Preferred name | IFT74 |
| KEGG ko | ko:K19679 |
| GOs | GO:0002064,GO:0003334,GO:0003674,GO:0003682,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005813,GO:0005815,GO:0005856,GO:0005929,GO:0006355,GO:0006357,GO:0006810,GO:0006928,GO:0006996,GO:0007017,GO:0007018,GO:0007154,GO:0007165,GO:0007166,GO:0007219,GO:0007275,GO:0007368,GO:0007389,GO:0007507,GO:0008092,GO:0008150,GO:0008285,GO:0008544,GO:0009799,GO:0009855,GO:0009888,GO:0009889,GO:0009891,GO:0009893,GO:0009913,GO:0009987,GO:0010468,GO:0010556,GO:0010557,GO:0010604,GO:0010628,GO:0010970,GO:0015630,GO:0015631,GO:0016043,GO:0019219,GO:0019222,GO:0022607,GO:0023052,GO:0030030,GO:0030031,GO:0030154,GO:0030155,GO:0030216,GO:0030705,GO:0030855,GO:0030990,GO:0030992,GO:0031323,GO:0031325,GO:0031326,GO:0031328,GO:0031503,GO:0031514,GO:0032501,GO:0032502,GO:0032991,GO:0033628,GO:0033630,GO:0035735,GO:0042073,GO:0042127,GO:0042995,GO:0043226,GO:0043227,GO:0043228,GO:0043229,GO:0043231,GO:0043232,GO:0043588,GO:0044085,GO:0044422,GO:0044424,GO:0044430,GO:0044441,GO:0044446,GO:0044463,GO:0044464,GO:0044782,GO:0045785,GO:0045893,GO:0045935,GO:0045944,GO:0046907,GO:0048468,GO:0048487,GO:0048513,GO:0048518,GO:0048519,GO:0048522,GO:0048523,GO:0048731,GO:0048856,GO:0048869,GO:0050678,GO:0050680,GO:0050789,GO:0050794,GO:0050896,GO:0051171,GO:0051173,GO:0051179,GO:0051234,GO:0051252,GO:0051254,GO:0051641,GO:0051649,GO:0051716,GO:0060255,GO:0060271,GO:0060429,GO:0065007,GO:0070925,GO:0071840,GO:0072359,GO:0080090,GO:0097542,GO:0099111,GO:0120025,GO:0120031,GO:0120036,GO:0120038,GO:1902680,GO:1903506,GO:1903508,GO:1905515,GO:2000112,GO:2001141 |
| EggNOG free text desc. | beta-tubulin binding |
| EggNOG OGs | 28JR0@1,2QS4E@2759 |
| COG Functional cat. | S |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko03036 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | Intraflagellar transport protein 74 |
| Ec32 ortholog | Ec-14_004660.1 |
| Exons | 14 |
| Model size | 2125 |
| Cds size | 1839 |
| 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 |
| 1622817305.3462315-UTR-P-fluviatile_contig9:110337..110366 | 1622817305.3462315-UTR-P-fluviatile_contig9:110337..110366 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig9 110338..110366 + |
| 1693572003.8053927-UTR-P-fluviatile_contig9:110337..110366 | 1693572003.8053927-UTR-P-fluviatile_contig9:110337..110366 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig9 110338..110366 + |
| 1622817305.523521-UTR-P-fluviatile_contig9:126292..126549 | 1622817305.523521-UTR-P-fluviatile_contig9:126292..126549 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig9 126293..126549 + |
| 1693572003.9691045-UTR-P-fluviatile_contig9:126292..126549 | 1693572003.9691045-UTR-P-fluviatile_contig9:126292..126549 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig9 126293..126549 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817305.358-CDS-P-fluviatile_contig9:110366..110439 | 1622817305.358-CDS-P-fluviatile_contig9:110366..110439 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 110367..110439 + |
| 1693572003.8161294-CDS-P-fluviatile_contig9:110366..110439 | 1693572003.8161294-CDS-P-fluviatile_contig9:110366..110439 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 110367..110439 + |
| 1622817305.3697383-CDS-P-fluviatile_contig9:111078..111212 | 1622817305.3697383-CDS-P-fluviatile_contig9:111078..111212 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 111079..111212 + |
| 1693572003.8254638-CDS-P-fluviatile_contig9:111078..111212 | 1693572003.8254638-CDS-P-fluviatile_contig9:111078..111212 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 111079..111212 + |
| 1622817305.380964-CDS-P-fluviatile_contig9:111670..111877 | 1622817305.380964-CDS-P-fluviatile_contig9:111670..111877 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 111671..111877 + |
| 1693572003.8351116-CDS-P-fluviatile_contig9:111670..111877 | 1693572003.8351116-CDS-P-fluviatile_contig9:111670..111877 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 111671..111877 + |
| 1622817305.3923774-CDS-P-fluviatile_contig9:112976..113095 | 1622817305.3923774-CDS-P-fluviatile_contig9:112976..113095 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 112977..113095 + |
| 1693572003.8451664-CDS-P-fluviatile_contig9:112976..113095 | 1693572003.8451664-CDS-P-fluviatile_contig9:112976..113095 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 112977..113095 + |
| 1622817305.4031842-CDS-P-fluviatile_contig9:114147..114247 | 1622817305.4031842-CDS-P-fluviatile_contig9:114147..114247 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 114148..114247 + |
| 1693572003.8555105-CDS-P-fluviatile_contig9:114147..114247 | 1693572003.8555105-CDS-P-fluviatile_contig9:114147..114247 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 114148..114247 + |
| 1622817305.415489-CDS-P-fluviatile_contig9:115244..115325 | 1622817305.415489-CDS-P-fluviatile_contig9:115244..115325 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 115245..115325 + |
| 1693572003.8655114-CDS-P-fluviatile_contig9:115244..115325 | 1693572003.8655114-CDS-P-fluviatile_contig9:115244..115325 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 115245..115325 + |
| 1622817305.4265645-CDS-P-fluviatile_contig9:116246..116444 | 1622817305.4265645-CDS-P-fluviatile_contig9:116246..116444 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 116247..116444 + |
| 1693572003.8751175-CDS-P-fluviatile_contig9:116246..116444 | 1693572003.8751175-CDS-P-fluviatile_contig9:116246..116444 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 116247..116444 + |
| 1622817305.4384296-CDS-P-fluviatile_contig9:116867..117020 | 1622817305.4384296-CDS-P-fluviatile_contig9:116867..117020 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 116868..117020 + |
| 1693572003.8873367-CDS-P-fluviatile_contig9:116867..117020 | 1693572003.8873367-CDS-P-fluviatile_contig9:116867..117020 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 116868..117020 + |
| 1622817305.4501126-CDS-P-fluviatile_contig9:117582..117801 | 1622817305.4501126-CDS-P-fluviatile_contig9:117582..117801 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 117583..117801 + |
| 1693572003.89853-CDS-P-fluviatile_contig9:117582..117801 | 1693572003.89853-CDS-P-fluviatile_contig9:117582..117801 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 117583..117801 + |
| 1622817305.463173-CDS-P-fluviatile_contig9:118556..118685 | 1622817305.463173-CDS-P-fluviatile_contig9:118556..118685 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 118557..118685 + |
| 1693572003.9108005-CDS-P-fluviatile_contig9:118556..118685 | 1693572003.9108005-CDS-P-fluviatile_contig9:118556..118685 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 118557..118685 + |
| 1622817305.4734561-CDS-P-fluviatile_contig9:119345..119378 | 1622817305.4734561-CDS-P-fluviatile_contig9:119345..119378 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 119346..119378 + |
| 1693572003.923798-CDS-P-fluviatile_contig9:119345..119378 | 1693572003.923798-CDS-P-fluviatile_contig9:119345..119378 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 119346..119378 + |
| 1622817305.4875557-CDS-P-fluviatile_contig9:120169..120244 | 1622817305.4875557-CDS-P-fluviatile_contig9:120169..120244 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 120170..120244 + |
| 1693572003.9336987-CDS-P-fluviatile_contig9:120169..120244 | 1693572003.9336987-CDS-P-fluviatile_contig9:120169..120244 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 120170..120244 + |
| 1622817305.4980824-CDS-P-fluviatile_contig9:124768..124888 | 1622817305.4980824-CDS-P-fluviatile_contig9:124768..124888 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 124769..124888 + |
| 1693572003.943296-CDS-P-fluviatile_contig9:124768..124888 | 1693572003.943296-CDS-P-fluviatile_contig9:124768..124888 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 124769..124888 + |
| 1622817305.5102923-CDS-P-fluviatile_contig9:126094..126292 | 1622817305.5102923-CDS-P-fluviatile_contig9:126094..126292 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 126095..126292 + |
| 1693572003.952898-CDS-P-fluviatile_contig9:126094..126292 | 1693572003.952898-CDS-P-fluviatile_contig9:126094..126292 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig9 126095..126292 + |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig9.15010.1 >prot_P-fluviatile_contig9.15010.1 ID=prot_P-fluviatile_contig9.15010.1|Name=mRNA_P-fluviatile_contig9.15010.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=613bp
MRPGSRGYVGGGLQPPGTGMRMGTGQRGGRPMSGRMRTGQVTAGPSREAA YGVALSQEVKVTDRPVTQQGMSGMKTAGGGGGGIGRQVQDGSFFIGVLRS KMNDIRAEIGRLRQEIEKHEKDVSQQGHLERTYETLFQEVKTLEGTLADY NLAVDKARTTADPVEVTNYLHDLEDQNRREAEGLDEIFLAKQQYEKETQE LEAEIEAVHARMEAKINTLEPEKLHEYRVLLQRNNDLQSGVAVKQAEADR LSAQVGHHEARAQGGGGAAVRAEYRLLEKSVAGLRRERDNLRQDLEISTM NPKEARERLLSKVKADQERLKQLDARVAETAGEVERMKERIEDLESDLKA DKKGDLTQRRTNRHRRGQVEVLQKRDKEMTDFMGKFEQTKAEALADQKSA QATIVGLLEHISLGLESQHSIPDRGKMREMEDEKSFKDRQLKSSEATMRR LNQDKEKRLQEMEKVKTLDEKIPLELTNLKEKMARMKAEMRDFEDIDGLR DEAARTKEHLHGLLKQYRSRVESMRGQVQQLTARHEACKKELAASETGKT LEALERKMRTYETNIFFLKEFVEIKGREIDFQSLRGECMNMVKELNEAAK KRGETEGFGVAY* back to topmRNA from alignment at P-fluviatile_contig9:110338..126549+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig9.15010.1 ID=mRNA_P-fluviatile_contig9.15010.1|Name=mRNA_P-fluviatile_contig9.15010.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=16212bp|location=Sequence derived from alignment at P-fluviatile_contig9:110338..126549+ (Porterinema fluviatile SAG_2381) GTCACGAGGGAAGCCACGACGGCGTTGCGATGCGGCCTGGCAGTCGTGGC
TATGTTGGCGGGGGGCTTCAGCCTCCCGGAACCGGGATGAGGATGGGAAC
AGGTTCGAACTCCATTTGCGCCGCATGTTGACATACCAACGGAACGGGAT
GCTGTAGAGCGCTTGGTGTGCAAGGATCCTCGAAACCAGACGCCTTTGCC
AGAAGCACCAGCTGCAGGCCGTAGGGATCCTCTGGAGTTCACGCCCGAAA
TTTCCATATTCCCTCTCTATCGGGCACAATCCTCTTAACGTTACTGCCTG
CCGTTTTATTTGTCTACTCTTGATGGATTTTGGATCCAAAACTTCGGCCG
TAAACATTACTCTCCCGGCCAGCACGAAATGTTGATCCAGACCGATTACC
CCCCGGGTGTGTTGTTCGCGTACCTGTCCATAATATCGATGATCTTAACA
ACACGTCCACGTATTTTACCACACGGAGACCGTATTCATAGGTAGGCCGG
GTGAGCGCGCGTTCGGTGTGCTAATAAAAAACAGAACTTCGGCTTGAATA
ATCAATAATCCGCAACGACTGGAGTATTTTCTTGGTAGGCTGACATCATA
GCGCGATTTTCCCATTTGATAGACCAACGCACACGAACACACACACGGCC
GTGTTTCATGCTAATTCGACAAAACACACAAGTCGGTTGACGGAGGGATC
CCCCCCCCCCCCGACTTCGCTCGGTTGGTCGCTCGTCACAGGACAGCGCG
GGGGCCGTCCCATGTCCGGGAGGATGAGGACCGGCCAGGTCACGGCCGGC
CCGAGCCGGGAGGCTGCCTACGGCGTTGCTCTCTCGCAGGAGGTCAAAGT
CACGGACCGACCAGTGACTCAGCAGGTGGGGTAGTCGGTGGAAAGGAGGG
TGGGGGTGGCGTGGTATGTTTTTTTTCTTTGTGATTATACAGGCGAAGAC
CGGCCAACGAATAAACGCTTACCGGTATATCGGCGAGGCAAGGTGCGAGA
ACGCCTTTTAATCGCGGCACCTTGTCACCGCCACTCATGCCTTTTCGTAT
GGTAGCCGATGACACGGCACAGGTTTTAACGACAGACATACATCAGGCAA
ACGGTTTAACCCGGCCCCAGTGCTGCAAATCGTACTGCACAGGTCTCCAG
GGGCATCACAGCCACATGCCTCGGGAAGAGACGCTTGCAGGAAACAGGAT
ACCCGCCACGCCTATTGCGCTATTCGAAAGTGCAACCGACACCATTGAAC
AGTTACACCATGCCCGAAACATTCTAACTGTGAACGGTAACAACAACAAC
AACAACAACGACAACAACAACGCACAATCGCAGGGCATGTCGGGCATGAA
GACGGCCGGCGGAGGCGGAGGTGGCATCGGCAGACAGGTCCAGGACGGCT
CCTTCTTCATCGGGGTGCTCCGGAGCAAGATGAACGACATTAGGGCGGAG
ATTGGCCGCCTCCGTCAGGAGATCGAGAAGCATGAGAAGGACGTGTCGCA
GCAGGGGCACCTGGAGCGCACGTACGAGACATTGTTTCAGGTGAGAGCAA
TGAGTCTACTGCAGACCCATCTGTGACTGTCCCGCCTGAAATGGAGAGCG
GCTTCGGTCACGACGAATGTCGGCAACTTCGTTTTGCATACCGATCAGCA
GTGAAGGGAGGAACCATCAACGCCGGGACAAAACATGATATAGGTTACGA
CTCCACCAAGTACCGCGATGAATCCTAGCACAGGCTTAAGTGCAGGGGAG
ATGATACTATCCGACATCTCCCTCGTATAGACGAGTAAGAGGCGCTCGTA
CGGTCATCCATCGGTGGACTGGTCCATTTCCACAACAGCCCGTTCCGACC
GGTTGCCGTTGAGATTTTGTCCTCGTAAGATGTACGTACATACCCAGGTG
CGTCTGAAGGAGCACATTGCGACAAACCACCAAAACCCGTCGGAAGCGGG
AACGATGATCCCGGCGGGGGTTCTGCCCAGATTATGCGCGTCGAGGGAGT
CCGAGGCACGATGGCCGGCCTCCCCCTTCGAGCCAGTGCTCGTCGATTCG
CAGAGAGCACAGCAAACGAACAAAATGATAAATTAATCGCGGATTGGAGG
GCACAAGATGCTCGCCTTAGTTTCCCTCGTCGTCGTGTCTCAGAGGAGTA
GAACTGTCTCAGAAGAGTAGAACACAGGCGAGTTTTTGATGCGGTCTGAA
AACAGCCAGCACTCGCCTTCGTTTGCTCGTTCGGCCCGGACACACACGAG
CACATCCGGACGTTGATCCCTGAGTCAAACAAAAAGCGCGTGGACACAAC
AAACGAGCGCCTCCGCTTGCTCTCTCTCATCAGAGCACTAACAAAGCATA
CGCAGGTCGTACACCCCGAAATCTAACGGAACCGGCCCTGTTCCGCTTTC
GCCGTCGTTTTCCCGTTTGATTGATCTTTTTTCTGTTTCTTGCATGTTCA
TTTCTTCATTTCTTCATTTTTTTCCATTTTTCTAATTTTCATGTGCATTT
TTTCCGTTTTCCGTTTCCTCGTTTCTCTGGTCGTCACGCGTGTCCGTGTT
TCCTCGTTTCGTCGTTCCCTGGTTCCCTTGTTTCCGCGTTTTCGTTTTTT
CTGTTTTCTGTGGCCCTCTGATATTCCTTCCTCGTGCAGGAGGTCAAGAC
GCTGGAGGGAACCCTGGCGGACTACAACCTGGCTGTCGACAAGGCCAGGA
CCACCGCAGACCCGGTCGAGGTGACAAACTACCTTCATGACCTGGAGGAC
CAGAACAGGTGGGTAACGGTAGATGGATGCTATCAACGGGGTCCACGATG
GCCTTCGCGCGCAGCCCGTGGGGCCGGCTTCCTCCGATCATGTAGGGAAC
TTACCCCGCCTTCGCAGTCCGTTGGACGCTGGGTCCGCAGAACCGGCGAA
GATTTTTGCTCGCAGGGAAGCAGATAAGCACTCAGCGCCGTTCTGGCGGG
GAGCACTCGCGTGGGGTGTGTGAAGGGGGAGCACACGCTTGGGATCCGTG
AAGAGTGGCTACTCTGCGGCCGCATGGTAGGGTATTTCTTGATCCAGGAT
GGGTACTTCACGAGGAAAGCTATTTCTGGCGTTGCGCCACCGTCGATGTC
AAGCTTGAATGTTCGGCACCATCGACGCTGAAGCTGATGGGACGAAGTCA
GTGAAAGGGACCCACCCGGATTCCTGACTTTTTGGACACTTGTAGACACT
TGTAATAGCCACAACTCATCTTTGTCACGCGATCTGCTAGCGGCATGCCA
AATGCTGCCGGGTGTTAAAGTAGAGCGGCTGAAAACATGGCGCCGACGGT
TGAAGGGCTCGTCTGTGCTGCCGCGCGCACGAGGCGCACACAACCTTCCC
CTGGGGAACCTGGGAACCTTCCCTCGGATTTTTATCGCTCAATGCCCATC
ATGTTTCGAACTCTCACAGCCATTTCTTTCGGCTCTCCCAGCAGAGGCGT
ATTCCCAATTCCAGCAATACTAATGGTGTGGAGGTGGGGCATGGCGATCA
AAGCTATTCTTGCTTTCATTGCCAGCGTGGCAGCCTCAGCTGGCCAGCCT
GACTCTCTGTCTCATGTATTCCTCTCATTTCCCTTTCTCTGCTCTCTCTC
TTGTCTGTCGCTTCCTGCTTTCCGCATGCCCTGCCGGATCTCTCTCTCTC
TCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTC
TCTCTCTCTCCCTCTCTGTCGCGGGTAAATCGCGGTACGACGGCCCCGAC
CGCGTGGTCGCTCGTCCTCCTCTTCCTCCCGTGAACGGTCGGACTCCGTG
CCCAAAACAGGCGGGAGGCTGAAGGGTTGGACGAGATCTTCCTGGCCAAG
CAGCAGTACGAGAAGGAGACCCAGGAGTTGGAGGCAGAGATAGAGGCGGT
GCACGCAAGGGTAAGTGGACCGCTCACCGCCAACGGCATTTCTTTTCTTT
TGCTCCAGGATGTGTCGGTCGTTGCGAGTAGCTACGGAGGCCATGTACTC
TCCAGAGGTCAATCACTGCCCGATGTGAGCTTTTCGTACCTCACTTTTGG
GCTGGCGCTGACTCTGACGGTTTGTCGGTGGGACGTAGGATGACAAGTCG
TGCCACTTAAAGATTCCTCGAGGTGGGGAGGCGCTTGCGATCGTCGTGAA
CCCAGCTGGCTACCGCTGTTACGCATGACCAATTTAGTGCCCTGGGAACG
GAGTCGCTCGCCGTCCTCTCCTGCTCGAGGCCAACGGCGCATCCTATACC
CCGTGCACCAAAAGCAATGGCAGCCCAAGGATGTGCTGAAGTGATTATCC
TCGGTGACACGCGGCGGTGTGGTGAACAAACGTTGGTTTTGACATTGGCT
AGGCTGGCGATTGGAAACATCCGGTTGGCGAGAGCTGAAAGAGCTGACAT
ACTGCCCCGTTCAATCCAGACATCTGTGTTTATGCCTTCGGCGAGCAATT
TTTTCCGGATGGCCTTGGCGGAGGCCGATTTCCCCTACAAAACACATAAG
GAAAGCAGCCGGGCAACATGTCAAGACATTGTGCATACCGGGGATGTGGC
TGCATGGCGGCGGGAGGGGGACGGGGCAGGATTTCCCGATTCGACGCCGC
CTCAGGCAACCGGGCAATTGGCAACGATTGTGTGGCTTTTGAAACGGATT
GTAGATTTAATTCACTGGATACACCACCACGTATGTATGAGGTTGCTCTT
GTGTCCTCAAACCACATCTTGGTGGGCTTCAGCAGAATGGATGCTCGGAA
TTGCTTTCTCTAAACACGAACCTTCTCAAATGCCATCCCCCCATTAACGA
GGGATTTCTCCAATGCTCGGGACTTGGCACGCTTTTCACGCCTAATTTCG
TGCGCGCGTCGCCTGCCAACACACCCGTCCGGTGTGATTGCAAACGGCGA
AATGCAGATGGAAGCAAAGATCAACACCCTCGAGCCGGAGAAGCTTCACG
AGTATCGCGTCCTCCTCCAGCGCAACAACGACCTGCAGGTACCCACGCCA
TCGCCCACGTGTTCCGGCGCTGCTGCTTCCGGGATACTATTTTGATTTTG
CCGAGAGCTTTCGCATCAAACCGGCGGTAACGGGTCCGTGGTGCACGAAG
CGTGTCGGGCTCACCCCGTGTCCTAGACGTGTTTCATGTGCGTCGATTGA
ACAGTGGAGCCGTGGTTATGTGTCTGCAGCTCCTACAAGAACAGGGGAGG
CACTCGGGTTGTCCCTGTCCACCACCGCAAGGCATACTGAAACAAAAAAT
AACAGGCGACACCGAGTGCACGACCGCGTGTGCACACGCGACGCGAAGCT
TATCCTCGTGATTTTTTTCAACCCCGCAAGACACTGAGCGCCCGCGCCTG
AACACACAACAGCGTAGAGGAGGGGAAGTAAGGGTCCGCTGTCAACGTTG
GTTGGTGGAAGGGAAGGAGTACGCGAGGGATGTACTGCTGTTTCGTGGCC
CGGCGGACCTTGGGTAGGACGGTCACTCGCCGTGCGGGGAGGGTACCTAA
GTAGGTGGCTGCCGAGACGGGGGGTGCGGACGCTGGGGGGGGCACAAAAA
CAGCGAGTGCGATTTCCGTTTTCTGCAAGCCACGTACATGTTTTTGCCGC
CGTCACCTGCCTGGCGTCTGACAGTGAAGGAGCTCTGACGCGCAGCGGCA
CCTCTGTCCAATCGCAGCCACACAGAGTCTCTGAATCTGCGGGTCTTTGT
TGGTCTGCTGTGTTCGGGTGTTTGTACGCCAAATCAATGCCGACATCAAG
CCCACCTGACCTCCCCCAGCCCCCCTCCGACCCTGTATGTGGTGCCCACC
CGTCTCTTCTCCTTGCATTGCACGACCAACCCCCCCCTCCTGCCTCTCGA
CCCTTGATCGTGGATACTCCCGCCATGCTATTCGCTACCGGCGGCGGCGG
CGTCCGCAGTCCGGAGTGGCCGTGAAGCAGGCCGAGGCCGATCGCCTGTC
CGCGCAGGTAGGGCACCACGAGGCGAGGGCCCAGGGGGGCGGGGGGGCGG
CCGTGCGAGCGGAGTACCGGCTCCTTGAGAAATCGGTGGCGGGCCTGCGG
CGGGAGCGGGATAACCTCCGGCAAGACCTTGAGATCTCTACGATGAATCC
CAAGGAGGTGGGGATGGATGTCCGGGGATTGGGGAGTACGCTTTTCGATT
TTGTTTTGCGTTCGCGTGTCGTTTTTGCTCGCGGTGTGTCATCGGTTTTG
CATTGGCCCTTGTTACATGCCGAATCTTGACCTTGTTCGCCTGCGTTCCG
GTAAGCTTGAAAATGCTCCCCGGGCATGCGATCCGTCACGTTTCGTGTAC
GAAATGAGCGCATGCGTTCCACGATTGTCATAAATGTGGGTGTACCGCTG
TAGTCGCGCGATCGCCTTGTACACCACCATCACCACCAGCACCGCAAGAA
CGACGTCTCCTCTTCGGCGGCTTGGCAAGTGGTGTCGAACGACTTGCCAA
CGCAAGGCCATTTTCTTTGTTGGCGTGTGCAATATGTCGCTTGGCCGCTG
TCCCTCTCTTTCTCTGTTGGTCCGTCTCAGGCTCGCGAGCGCCTCTTGAG
CAAGGTCAAGGCGGACCAGGAGCGGCTGAAGCAGCTCGACGCGCGCGTGG
CGGAGACCGCCGGCGAGGTCGAGCGCATGAAGGAGCGAATCGAAGACCTC
GAGTCGGACTTGAAGGCGGACAAGAAGGGGGACGTCTCGCAGAATAAGGC
GAGACTTGGGTTTCGATCGAAGACATGCTTGACGCGGAACACCCCACTAG
TACGAGCCAGAAGATCGGTTGGCCGAGAGATTGAGCCGCCTGTATGGCGT
GACTCCAAGCCAACCCGTTGCATCCCGCGTGACCACGCACTGAAAACCCC
TTGGCAGCGGCGCGCGAATGAAAGCAGAGCGTATCTTGTATTTTTGCGAC
GCACATGTATGTTGTTTTCACGGTTGATGGTCATCGCCGCCGATCCGAGT
AGCGCTAGGGCAGCATGGTTTACACGCGGAACGGGCGATCGAGACAACGG
TTTTGCCTCGGGTGTTGGTGCTGTTCGACCTGGACGATTTTCTGTAAGAG
AATCGTTACACTGTTCTCCGTAGTATTTTTTGTACCACGGGTGTTGTCGT
TTCTCGGCAGGATCCTGGAAGCCATAATCTCTGTGAGGAACTCGACACAC
AGCCCTCGTGGGTCCTGTCTCTTTAGACGTTCCATCCTAACTATTATAGT
GCACATTCCTCGAAGAACGGTTGAGAGATTGAATGATCAATCGAGCTGAC
GCAACGACGAACCAATCGACACCGGCGGGGGCAGGTGGAGGTGCTCCAGA
AACGGGACAAGGAGATGACCGACTTCATGGGGAAGTTCGAGCAAACGAAG
GCGGAGGCTCTGGCCGACCAGAAGTCGGCCCAGGCGACGATCGTCGGCCT
CCTCGAGCACATCAGCTTGGGCCTCGAGTCACAGCACAGCATCCCCGACA
GGGGCAAGATGAGGGTAAGACATTGAGGGGGGGAGGCAGGGAGGAAGGCA
GCAGGGATGGAAAGAAGGAAGTAGAGACGAATGGCTGGAGATAGGCAAGG
AGGGATGGAGGAAAGGTGATACTCATGCACTGCTGTCTGTGCCTTCTCCC
TGCGTTAGCTTCCACCCTTTGAATGGCGCAACCACGTAGAGCTTCTTCTC
TGGAACTTGGTTTGAATGAATAGTGTAAAGTTTGTGCTGCAAATATCTGC
GGCGACGGCACGACGTACCTTTCCTACGCTCCCGATCTTGCCCCTTGTCC
TCTGGCCGTCTTCCTCGGTCGGTAGCTTTCCCTCTTTCCTCTCTCTGGCC
CTCGCTCTGCCCGCCTTGTGGTCTCTCTCTGTCTGACTCTCATTATTCTC
AACGTGGAGTCAACGTTTTTTTACCCTCACCTTCTCTCTCTTCCCTGCTA
TCCGGGCTGTTGCACAAACCACGCCGCGCGCCTGGCACGGCCGCTCAAAC
CCAACCAATCCTCACCACGTTCCCGACCTTAAATGTGCGACTGTAACTGC
CAGACCCCCTAGGCCAAGGTTCAAACCTCGACTGCTGCGCTACCGGGCAG
GCCCCAATGCTGAACCATGCGTCTTGGAAATGACCTTGATGAGATCTTTC
CGAGGCCGCCTTGCTGGCCATCGGCACTCAATCCTCTGCGGAGCTTTAGG
TCTCCGAAAGTCGCCTCAACGGGGTGTGGTATACACTGTCGTTTGCGTTG
CGTGTGCTCGCCGCCGCAGGAGATGGAAGACGAGAAGAGCTTCAAGGATA
GGCAGCTCAAGAGCTCCGAGGCCACGATGCGGCGGCTCAACCAGGACAAG
GAAAAACGCCTCCAGGAGATGGAAAAGGTCAAGACCCTCGACGAAAAGGT
GCGCAAGAGCAAACACAGCCGACATGATTGATCGGTTGAATGCCTCCATG
ACGGCGATCGTGGCAACCATGATGCATGTGGGGGAGGCCATCGAGCGGTT
CGTCGGCGTGAGCACACAAAGGAGGTATTAGTAGCAGGGAACGAGCTGCA
CAACGGTCAACTTTTCGACGAAGACCCTTGGTCGAAGTAGCGCTAGGGAG
TAAGGGCAGCGGGATAGAGGGGGTAGGGGCAAGAGTGGGGGAGGTCGTCG
AGGAGGTGGACGAGGGGGGGGGACGGGTAGGGGGAGGGAAGTGATGGGGG
GTTCCCGGAGGCTGCTGCGACGAGGAATGGTGGTGGTGCGGGGGAGAATG
CTTTCAAGGAGAAAGTTACGCACTCGTTCTTGACAGTCCCGCTCGCTGCC
TTTGCTGCGGGGAGCCGTTCTGTATTCGTTGTTCCCGCTTCTCGTTGCCC
TGGTCCGAGCTATCTTCCTGGTTTGTTTTCCGACAGTTTATACCGCTGCC
CGTTTCATCGATCACCCCACCCCAATCTACCCTCTATTTCGCTTCCCTTC
CCCCCACCCCTGCCCCCTCTACCCTCCGTTCCCGCCCAAATTCTGACGTT
CGGCGGTCCCTTCCGCCCCTGACGCCTCCACCATCACCCCCACCATCACC
GTCATCAGATCCCGCTGGAGCTTACGAACCTCAAAGAGAAGGTGCGAGTG
CCGCCCATCACCGCGAAGAAAATATCTCCCCTTAGTTTCAACCCTATAAA
TTCCAGCGTGCACCGATGGTTTGAGCGGGGAGGGTTCTTTTGCAGAGGGG
AGGTAGCGGTGGACGCTTCATGAAGAAGGCGGTAGGAGCACGCACTAGGA
CGTGTTATCCACGGTGTTCTCTATCTTCGTACTTGCAAGGTCTAATTACA
GGATGCTCTTGATCAGACCATCATGTTGCCGACAAAAGAATAACCCTCCT
ATTTTGGAGCCGTGGTGATGGCATGACATTGCTGGAGAGGGAGGGGCTAG
GTGTTTAATCTTTCAACGCCTGCACCTCACTTGTCGAACGATTCGGACTA
GCTTTCGCCGTCTCGCGGGATGGTACACCATGGCGCGCCACAGTATGATC
AACATACTCAGGCACGCGGAAAATTCCAATTCAATAGCGAAACTGTAGGC
CTGGCGAGCATGACTTTTCCTGCTTTTTTTTGTTGTTTGTTTTTGTGACG
GGCGGGCTCGAACATGAAAATGGTCTCTGTGCGCTAGGCGGCGGTTTATT
TTGTGTTGCTTTGCGTTGATTCGTTTCCTTTTGGGTTTTGCGGTCGTTCT
CCTCCGTGCTCTTGCTCCGCCCGTGCGCGACGATGGTGGTCACGCCTTCG
GCCATCGACATCGAGAACTAACAACCCTCCCCCCGCTGACAAATCGAAAC
CAAAAGCCCCTCCCGCCGGCAAATCACAACCACACCCCCCCCCGCCGACA
AATCGCGACCAAAACCTTGGAAAAAAATTCAGATGGCCAGGATGAAGGCA
GAGATGAGAGATTTCGAGGACATTGACGGGTTGCGTGACGAAGCCGCTCG
AACAAAGGTCAGCCTTGTACGCAGGAAGTTTTTTTTTTTTTTCGGTTTTG
GTACACCAACTTCGATTGTAAACAATTTTTTAGGACGAAATTCTCCCCCT
CCCTCCAAAAATCACTTAATCGCCCGCGGAGTAGGGTCTAGACAGTTAAA
TTTTTCCACCACGTGTGACCCCCTTTTTCTCGCTTAATTTTGTGAGTTGA
GACGTGAAATAAAGTGGGCATGAACCGCACGGACGAGAGGAATCCAAATC
CGGTGTCAAAAATAAAATCGGTCAAAAATGGCCATTTTCGGAAATAATTA
CCCTGAAATTACCCCTGAAATTGTCCTGAGAGGCACTAGAATTGACCCGA
ATGACGATATATTTCCTTCGAACGACTGCAATTGACCCGCTCGAGAAAAT
GATTGTGTTGTCACGCAATATAGATCGCACCCATGTATATTTACATATTA
TACACAGGCATCTCTGCGGTGTAGCCAGTCCCAATTGATACGATCGCGCC
CTCCGGCGAACATCAGATCGACCACGAACAACCAAGCAACAACGATAGAT
CGATTCAACACGCGCCGAACCTATATAGGTAAACTTTGAACAATAATTAC
ATCTCTGGGGCGGCGATGCTGCCCTTATCGCTACAGAGAGATTGGGTTCA
TCTCCTTGATGAACTTCTTCAGCATCCTATCAATAGCCTTGTTAGACTCA
AGTCTGGCCTCCTTCGCCGCCGCGAGAGCCGCCCTCTCTCTGGCCGCGCG
GCTCTCCGGGGTTGTCGCGCGGCTGCGGGCCAACACCACTTTGTCGGCCA
TGTCAGTGGGGGAACGGTGGCTCGTCCACTTCGTCAGGTCCCGGGTCTTC
AGGTATCCATCGAGTCCGGTGTTGTAGGCCTCGACGTAAAGCCAGGACAC
CCTGCACCACTTCCGAACCAGTGCCAGCGGGACGGTGCTCAGCGTAACAG
GAAGTCTTGCGAGCAGACTCTTGACGGAGTAGTTGCACATGCGGCGCTCG
ATACACTTGGTGTACCCCCAGAAACGCTCAATGGCATTGCACTCCGGGTG
ATACCTGCAAACACCAAGCAAGGGCGGGCGGATCAGAATACTCACCCGGA
AGCTGACCCACACAGAGCAGTCATCGGTAAATCACCGAAACGTTTTCGAG
CGCGAGTAATCTAATGGAAAACCTATAAATTTACTGGGTAATATACTAGG
TATCCACCTCCATCCTCCTCTTGACGACGTCGGGCCTGTTGTGGCCATCC
ACGTAGACACACTTTCGGTGGCGGCGCCACCGAAAGCCCAGACTCTGCAG
CCAGTTGTGCGCTGTCTTCAAGGAAATCCCTCGCTCATCCGCTTCCTTGT
ACGGCTTGAGGACGGTGTCGTTGATGTGTCTACCAAGGAAGCAAGCAAAA
TGTCGGAGGTGGGAGTGCCGCTTAATGGTAGGCCTATATACGTTCGTGAA
AAACACATCTACCGAGCTTCACCGCCGCTCATCTAAGACTACGCACATCG
ACCCTTTGGAATATTTGCTGACCAAAAACGTGGGCATGCAGCTCAAACAT
GAAACCACAACAACCAAATACGCACGTCTGGAAGTCTCGAACGCGAAGCT
GCGGGTCCCCGTTCTTGCGGCGGTAGATTTTGTCGTCCAGCCACTCACGC
AGTTCCTCTCGCAAGTCCTCGTGGTCGATGAGTGAGTGCAGGCCATGTTG
GTTGTACTGCCGCACGTGAAGCTTGAACTTCCTGTCTCTGACGAAATCCC
GAACCCACGAACGAACTGTTCGACCCGTCACACCTGCCGTGAGCGCGGCC
ACCTCGCTGTGCGTCAGAGGGTGGGTGCCATGTTCCAGCCTGGTTCATCA
GCGGGAACAGGGGTAAGGCGTGCAAGTCAGGGTCTCGCGCATTGTGGTTT
ATGCCTAATTGCGGGAAACGGTACGAAATCCTGCGAAGACTGATGCAATT
TCCAACTGCTGCAACACATGTGACCATATACTCACTCCAACGAGAAGAAG
CCGTAGATGCCCCGCAGCTTGCCGAAACGCGTCCCCGTTCTTCTTCGGTG
TGGCTAATTCGTCTGCGTTCTCCACGACACTGTCCAACCGGACCTGCCGG
AGAGCCTAAAAATATGGGAGGGGACGGAAGAGGCGGGAGCACCAGCACTA
AATAGTGAGCGAATAAATAAGTGGGTTTTGTTCGCAGGCACACATGCACA
GCGGTGCGAAGCAAGTGTTCATCACACACACAAAAAATACAACACGAACA
CAGCTGTGCCACGTGCACACCGTGACGTGCACAGGCACATGCACAAGACA
GCCATATAAACAGCAACCGAGCACATGTTTTTCCTCCTCGAAACCAATCC
ATTAACAGTCGACGACTTACACACACACATACACCAACCTTGGGAGAGAG
CGGAATGGAGAGAGCGGGGAGACGGGAGAGGGAGCATGTTCAAACAGCAG
CGCATTTTTCAACACTTTTCTCAGACAACCCATACCTACATGCGGCCGCC
CTTACAACCAGACGGACGACTACAGCAGTGCAGGGTGGACTACTGCTGTT
TGCTCACCGGGCCAAGGATTTCGCGCGCCTCCACAAAAATCTTCTCTCGT
TCTTGTTGGGCCGCCAACCGCGCGGAGTCGCTGGCTGCGCGCCTTTTGCG
GCCCTCCTGTTGCGCCTATCCAGCTTCACCTGCGCCCTGTTGCGCTTGTC
CTTTCTCCTGGTGCCTCTTCCCGTTCCTTTAGCTTATTGCCTCTTCCCGT
TCCAGCGTCTCCACCCTTCGGCCGCGCCAGAGGCGGCTTTGCGGCGGCGG
TCGCAGTGGGCAAGATGCGGCGGGATCGTCGCGCGGCGGGATCCAGCAGC
AACTCTGGAGACGGCACAGGAGATATTTCTCCCTGCGGATCCTCTGGAGC
TCCCTCGACCGGCTGCGTCATCCCCCGCTGTCGCTCCATTCCATGACGGA
CTCCTCGGAAGATGTGCAATCCCCCGAGTCGCCATTGTATCCGCCGAAGA
GCAGCCCCTCCGACTCGAACTGCTGTCAACGCATCGCCGAAAATCGACGT
CTTGCATGTCCTCTCCTCCAAACCAACCGGCCATCTCGTCTCCATCATCA
CCTCCCACTATCGCGAACACCAGCGCGTTATCCTTGACCTCTCCCGCCTC
CCCTTGTTCGACGGGCAAGGCTGTGCCTGGAGTGCTTGCGCTGGGCCGAA
GGGATGGCCACATATCGAAAAGCGTCCGCCGCCCTCTCTTGTTCTCCTTA
TCTCGCCGCCTTTTTCTGAGGCGCCGCTGCTGCCGCCCGCTCGTTCCATC
GTAGGTGACGTCTCCCTCGCTTCCACTGCTGCATTCGCTGTCTTGGCTGT
GTTCACCGCCGCTGCTGATGTCCTCCTCGTCTCCATGATATGGTGTCTCG
CTGTCGTGTTCGATGTCGAGATCGGGTGGTGCCGCAGGAGATGGTGGTGC
GGCAGTTTTTTTGCCGCCGAACTGGCCAGCTGTTCTTGTTTGGAAGCCGC
CGCGCTTGGTTTTCTTGCTGCCGGGAGGGCGCCCAGCCCGTTTCCCAGAC
ATGTGTGGGCACGTGCGTGGCCCGTGGGTGTGTGTGTACTGCTGTTGGTG
TTCGTGTGCTGGTTCTGGGTGTTGTGTGTAAACACGTCAACACCAAAACT
TTGAGAGGCCATATCTCACCCAAAAAATTTTTTTTGGGAAAAAGGAAAAG
TTTGCCGCCTGGGTGCAGGTCCAAATCGTCCGAATCCGTTGAGTTTCTTG
TGTTCTATCGGTTCAAAAGTCTTTAAAAAACCACCCCGCCAGCTCCGGCT
GAAAGCGGTTTTCTGCCCGTTATTCGACCAAACCCCAGCGAAAAAAAAAC
TGAGTCGGTTCGCCATGAGCCCCGTGGTGCGAGCTGTCCAAAACCGGTCT
AAAAAAAAAAAATCGAGTTCACACTAGCCCATATAAAACCACGCAAAATA
TCCCAAAATCTCGACGGAATCTCGATTATCTCGCCAACAAAAAAAAAAAA
AAAAAACTGCTCCGATCAAACGATTCGCCTGACACAGGGCTTTTTTACGA
TATGCCGAACGTCACCAGGGGATATGTCAGTCGCTCAAAATTAATTCCGG
AGTTATTCGGTAGCCGCTGGAAAAAAATGACTGTCTGGACTATACAAGTC
TAACAAAATTAGGTCTCGCGCTGCCAGTTGCCGCGTTGAGTTGAAGAAAA
TGTGAAAAGTTTGTCGGATTTTTTTCATCACTTGTGGTTGCGAGCGTTTC
GAAGCCACTGTTGGTGTTATGGATGGGGCGCGGCGATGTTGTATTGTTGT
TAGTGCTTCCCTGTCGTGTGGTCGCTTGCATGCTGGTCTCTAGCGTACGG
ATTCAAAACCCCGCACGCACGACGTATGGCTCACAAAGGGAAGGCAGCCC
AGTGCCTGCAAGACGCGGTGCGATGCGGCAGCAGCGCCTCGTCCGGCAAG
TACACGGCAGCACGGCTGCTACCTCTGACCTACAAGACGGAATGAACGAC
CGAAACCAAACGAATGTATGACGTTCCGCAGGAGCACCTGCACGGGCTCC
TGAAGCAGTACCGATCGAGGGTGGAGTCCATGCGGGGACAGGTCCAGCAG
CTCACCGCGAGGCATGAGGCCTGTAAGAAGGAGCTAGCCGCCAGCGAAAC
GGTGAGGGAGGGAGGAATATTTATCTGAAGCGACTGGTCCGTTCGGTGGA
TCGATAGATCAGGCCCTTGATCAACTCCAAGAAATCGGACAGGTGCAAGG
GACGATGGAACGTTGAGACTTGAGCGGTGAAGGACGGCGTGGAAATGTTT
CTAGGTTTTGGTTGGTCGCAATCTCGTTTTTTGGACCGGCGTCAAGTGAG
GTGCGCAGCAAGTTTGCGCGGTACGAGCTGCAACCGTGGAGCAGCACTCT
ACCTGCCGCGCTGCAATGTCTCTGGCGTATTGCTTACGCAGTCTCAACCC
CCCTCTCCCCTGCTTTTCCCAAACACTTGTCAAAACTTATGCTTTATTTA
GAAAGAAGTGTCGGAATGGCCGAGCAAAAAAGCCGCAGGAAGGAGACACT
CCCAGCGCACTCGGCTGAGAAGCCAAGCATCGCCCACGCACGACGCGGTT
GCGCTTTCTCGAGTTTTGTTTCCCACACAAAAATCCGGCAACAAAGGAGA
GAAGATGTAATAAAAGTCTAAGTGCCGTGCAGGCGAAGGCGATCGGCCCG
CGGTTGTCTTCATGGACCAGACCACCCAGTAGAGAGTTTCCTTCCAGGCC
AACTTGATCGGAGGCGGTGAGAACTGCGAGATCTCAACAGCCGAGTAATG
TCCTGTCGACGGTACACGATGGCGAGCAAGTTCGGCGGGGCCGCGCTTTC
CAGGCTCAAGTTATGGGCGCAAACAATCTCACTGGGGCTAAGCAATGCTT
GTAGTATCACATATTCAACGATGAGGAATCACGACACACGGCCTACCCCA
TCGACCAACTGGCTTGTTTTGTAAATGATCGCTGTTGCTAGCCATAAAGG
GATGAGATGGTTTCACAATCGAATGGAGATGTGATTCCTTTAATTGTAGC
CCTCCGGGGTTTTATTTGTTTCACGTCACACACGAAGGGAAAAACTCGAG
AGCACGCAACCGCTTGAGTGTGGGCGATGCGTACGTTGCCTACCCGTGCC
TTGAGCTTCGTGCTTTCTTTTCTTGATGCTCGAGAGGTCACGACGAGGCA
CAACTCGATCGAAGGAAATACCCCGAGAGTCATTCGTGGAATCTTCTAAG
CGACCTCCGGGCGGAGATCCTGTATGCAATCAACAGGGCCACATCTCAGC
ATTGCCGCGAATGCGCCATTGTCCTAAAATCACGAGAAACGTGCCGAAAT
ACATCAGGGCAAGACGCTGGAAGCCCTGGAGAGGAAGATGCGCACCTACG
AGACGAACATCTTCTTCCTCAAGGAGTTCGTGGAGATCAAGGGCCGGGAG
ATCGATTTCCAGAGCCTCCGGGGGGAGTGCATGAACATGGTGAAGGAGCT
CAACGAGGCGGCGAAGAAGAGGGGGGAGACCGAAGGCTTTGGCGTTGCGT
ACTGATTCAAACAGCAGCAGCAGCAGCAGCAGCAGCTAGTAGCAGCACAT
TAGTTGCCAAATGTTTCGACAATATTTGTACGTCGAATTGCCGATGACAC
TTTTTGAGGAGTACAATGGCGTCAAGTCGGACGTTTCGTGATTGATGATG
GCATGCTTACTTCTCGCTTTCTGTCGACAACTTTGGTAATGCTCTTGGCG
CAAAGGTGGCCGTGGCCCTCGGTTATTCTCTATTTTTTTCATTTGTGAGG
GATGGATGGAGG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig9:110338..126549+ >mRNA_P-fluviatile_contig9.15010.1 ID=mRNA_P-fluviatile_contig9.15010.1|Name=mRNA_P-fluviatile_contig9.15010.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3678bp|location=Sequence derived from alignment at P-fluviatile_contig9:110338..126549+ (Porterinema fluviatile SAG_2381) ATGCGGCCTGGCAGTCGTGGCTATGTTGGCGGGGGGCTTCAGCCTCCCGG AACCGGGATGAGGATGGGAACAGATGCGGCCTGGCAGTCGTGGCTATGTT GGCGGGGGGCTTCAGCCTCCCGGAACCGGGATGAGGATGGGAACAGGACA GCGCGGGGGCCGTCCCATGTCCGGGAGGATGAGGACCGGCCAGGTCACGG CCGGCCCGAGCCGGGAGGCTGCCTACGGCGTTGCTCTCTCGCAGGAGGTC AAAGTCACGGACCGACCAGTGACTCAGCAGGACAGCGCGGGGGCCGTCCC ATGTCCGGGAGGATGAGGACCGGCCAGGTCACGGCCGGCCCGAGCCGGGA GGCTGCCTACGGCGTTGCTCTCTCGCAGGAGGTCAAAGTCACGGACCGAC CAGTGACTCAGCAGGGCATGTCGGGCATGAAGACGGCCGGCGGAGGCGGA GGTGGCATCGGCAGACAGGTCCAGGACGGCTCCTTCTTCATCGGGGTGCT CCGGAGCAAGATGAACGACATTAGGGCGGAGATTGGCCGCCTCCGTCAGG AGATCGAGAAGCATGAGAAGGACGTGTCGCAGCAGGGGCACCTGGAGCGC ACGTACGAGACATTGTTTCAGGGCATGTCGGGCATGAAGACGGCCGGCGG AGGCGGAGGTGGCATCGGCAGACAGGTCCAGGACGGCTCCTTCTTCATCG GGGTGCTCCGGAGCAAGATGAACGACATTAGGGCGGAGATTGGCCGCCTC CGTCAGGAGATCGAGAAGCATGAGAAGGACGTGTCGCAGCAGGGGCACCT GGAGCGCACGTACGAGACATTGTTTCAGGAGGTCAAGACGCTGGAGGGAA CCCTGGCGGACTACAACCTGGCTGTCGACAAGGCCAGGACCACCGCAGAC CCGGTCGAGGTGACAAACTACCTTCATGACCTGGAGGACCAGAACAGGAG GTCAAGACGCTGGAGGGAACCCTGGCGGACTACAACCTGGCTGTCGACAA GGCCAGGACCACCGCAGACCCGGTCGAGGTGACAAACTACCTTCATGACC TGGAGGACCAGAACAGGCGGGAGGCTGAAGGGTTGGACGAGATCTTCCTG GCCAAGCAGCAGTACGAGAAGGAGACCCAGGAGTTGGAGGCAGAGATAGA GGCGGTGCACGCAAGGGCGGGAGGCTGAAGGGTTGGACGAGATCTTCCTG GCCAAGCAGCAGTACGAGAAGGAGACCCAGGAGTTGGAGGCAGAGATAGA GGCGGTGCACGCAAGGATGGAAGCAAAGATCAACACCCTCGAGCCGGAGA AGCTTCACGAGTATCGCGTCCTCCTCCAGCGCAACAACGACCTGCAGATG GAAGCAAAGATCAACACCCTCGAGCCGGAGAAGCTTCACGAGTATCGCGT CCTCCTCCAGCGCAACAACGACCTGCAGTCCGGAGTGGCCGTGAAGCAGG CCGAGGCCGATCGCCTGTCCGCGCAGGTAGGGCACCACGAGGCGAGGGCC CAGGGGGGCGGGGGGGCGGCCGTGCGAGCGGAGTACCGGCTCCTTGAGAA ATCGGTGGCGGGCCTGCGGCGGGAGCGGGATAACCTCCGGCAAGACCTTG AGATCTCTACGATGAATCCCAAGGAGTCCGGAGTGGCCGTGAAGCAGGCC GAGGCCGATCGCCTGTCCGCGCAGGTAGGGCACCACGAGGCGAGGGCCCA GGGGGGCGGGGGGGCGGCCGTGCGAGCGGAGTACCGGCTCCTTGAGAAAT CGGTGGCGGGCCTGCGGCGGGAGCGGGATAACCTCCGGCAAGACCTTGAG ATCTCTACGATGAATCCCAAGGAGGCTCGCGAGCGCCTCTTGAGCAAGGT CAAGGCGGACCAGGAGCGGCTGAAGCAGCTCGACGCGCGCGTGGCGGAGA CCGCCGGCGAGGTCGAGCGCATGAAGGAGCGAATCGAAGACCTCGAGTCG GACTTGAAGGCGGACAAGAAGGGGGACGCTCGCGAGCGCCTCTTGAGCAA GGTCAAGGCGGACCAGGAGCGGCTGAAGCAGCTCGACGCGCGCGTGGCGG AGACCGCCGGCGAGGTCGAGCGCATGAAGGAGCGAATCGAAGACCTCGAG TCGGACTTGAAGGCGGACAAGAAGGGGGACCTGACGCAACGACGAACCAA TCGACACCGGCGGGGGCAGGTGGAGGTGCTCCAGAAACGGGACAAGGAGA TGACCGACTTCATGGGGAAGTTCGAGCAAACGAAGGCGGAGGCTCTGGCC GACCAGAAGTCGGCCCAGGCGACGATCGTCGGCCTCCTCGAGCACATCAG CTTGGGCCTCGAGTCACAGCACAGCATCCCCGACAGGGGCAAGATGAGGC TGACGCAACGACGAACCAATCGACACCGGCGGGGGCAGGTGGAGGTGCTC CAGAAACGGGACAAGGAGATGACCGACTTCATGGGGAAGTTCGAGCAAAC GAAGGCGGAGGCTCTGGCCGACCAGAAGTCGGCCCAGGCGACGATCGTCG GCCTCCTCGAGCACATCAGCTTGGGCCTCGAGTCACAGCACAGCATCCCC GACAGGGGCAAGATGAGGGAGATGGAAGACGAGAAGAGCTTCAAGGATAG GCAGCTCAAGAGCTCCGAGGCCACGATGCGGCGGCTCAACCAGGACAAGG AAAAACGCCTCCAGGAGATGGAAAAGGTCAAGACCCTCGACGAAAAGGAG ATGGAAGACGAGAAGAGCTTCAAGGATAGGCAGCTCAAGAGCTCCGAGGC CACGATGCGGCGGCTCAACCAGGACAAGGAAAAACGCCTCCAGGAGATGG AAAAGGTCAAGACCCTCGACGAAAAGATCCCGCTGGAGCTTACGAACCTC AAAGAGAAGATCCCGCTGGAGCTTACGAACCTCAAAGAGAAGATGGCCAG GATGAAGGCAGAGATGAGAGATTTCGAGGACATTGACGGGTTGCGTGACG AAGCCGCTCGAACAAAGATGGCCAGGATGAAGGCAGAGATGAGAGATTTC GAGGACATTGACGGGTTGCGTGACGAAGCCGCTCGAACAAAGGAGCACCT GCACGGGCTCCTGAAGCAGTACCGATCGAGGGTGGAGTCCATGCGGGGAC AGGTCCAGCAGCTCACCGCGAGGCATGAGGCCTGTAAGAAGGAGCTAGCC GCCAGCGAAACGGAGCACCTGCACGGGCTCCTGAAGCAGTACCGATCGAG GGTGGAGTCCATGCGGGGACAGGTCCAGCAGCTCACCGCGAGGCATGAGG CCTGTAAGAAGGAGCTAGCCGCCAGCGAAACGGGCAAGACGCTGGAAGCC CTGGAGAGGAAGATGCGCACCTACGAGACGAACATCTTCTTCCTCAAGGA GTTCGTGGAGATCAAGGGCCGGGAGATCGATTTCCAGAGCCTCCGGGGGG AGTGCATGAACATGGTGAAGGAGCTCAACGAGGCGGCGAAGAAGAGGGGG GAGACCGAAGGCTTTGGCGTTGCGTACTGAGGCAAGACGCTGGAAGCCCT GGAGAGGAAGATGCGCACCTACGAGACGAACATCTTCTTCCTCAAGGAGT TCGTGGAGATCAAGGGCCGGGAGATCGATTTCCAGAGCCTCCGGGGGGAG TGCATGAACATGGTGAAGGAGCTCAACGAGGCGGCGAAGAAGAGGGGGGA GACCGAAGGCTTTGGCGTTGCGTACTGA back to top
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