mRNA_P-fluviatile_contig9.15010.1 (mRNA) Porterinema fluviatile SAG_2381

You are viewing an mRNA, more information available on the corresponding polypeptide page

Overview
NamemRNA_P-fluviatile_contig9.15010.1
Unique NamemRNA_P-fluviatile_contig9.15010.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
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:
BLAST of mRNA_P-fluviatile_contig9.15010.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7FPE8_ECTSI3.470e-21077.78Intraflagellar transpot protein 74 n=1 Tax=Ectocar... [more]
A0A6H5JUN2_9PHAE2.530e-14160.73Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
A0A6V2XWW9_HETAK1.970e-13943.91Hypothetical protein n=1 Tax=Heterosigma akashiwo ... [more]
A0A836CE00_9STRA3.170e-12450.52Intraflagellar transport protein 74 n=1 Tax=Tribon... [more]
A0A662XXK3_9STRA2.520e-11541.22Uncharacterized protein n=1 Tax=Nothophytophthora ... [more]
D0NIV2_PHYIT5.740e-11138.62Intraflagellar Transport Protein 72/74 n=9 Tax=Phy... [more]
A0A662WLW1_9STRA7.440e-11141.55Uncharacterized protein n=1 Tax=Nothophytophthora ... [more]
A0A7S2WUI2_9STRA2.910e-11039.61Hypothetical protein n=1 Tax=Rhizochromulina marin... [more]
A0A8J5M4D3_9STRA7.130e-11040.13Uncharacterized protein n=1 Tax=Phytophthora aleat... [more]
H3HB40_PHYRM3.380e-10939.78Uncharacterized protein n=1 Tax=Phytophthora ramor... [more]

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Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig9contigP-fluviatile_contig9:110338..126549 +
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Diamond blastx: OGS1.0 vs UniRef902022-09-19
OGS1.0 of Porterinema fluviatile SAG_23812021-02-24
Properties
Property NameValue
Taxonomic scopeEukaryota
Seed ortholog score609.0
Seed ortholog evalue2.5e-171
Seed eggNOG ortholog2880.D7FPE8
Preferred nameIFT74
KEGG koko:K19679
GOsGO: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 OGs28JR0@1,2QS4E@2759
COG Functional cat.S
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
BRITEko00000,ko03036
Hectar predicted targeting categoryother localisation
Ec32 ortholog descriptionIntraflagellar transport protein 74
Ec32 orthologEc-14_004660.1
Exons14
Model size2125
Cds size1839
Stop1
Start1
Relationships

The following polypeptide feature(s) derives from this mRNA:

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig9.15010.1prot_P-fluviatile_contig9.15010.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig9 110367..126292 +


The following UTR feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesTypePosition
1622817305.3462315-UTR-P-fluviatile_contig9:110337..1103661622817305.3462315-UTR-P-fluviatile_contig9:110337..110366Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 110338..110366 +
1693572003.8053927-UTR-P-fluviatile_contig9:110337..1103661693572003.8053927-UTR-P-fluviatile_contig9:110337..110366Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 110338..110366 +
1622817305.523521-UTR-P-fluviatile_contig9:126292..1265491622817305.523521-UTR-P-fluviatile_contig9:126292..126549Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 126293..126549 +
1693572003.9691045-UTR-P-fluviatile_contig9:126292..1265491693572003.9691045-UTR-P-fluviatile_contig9:126292..126549Porterinema fluviatile SAG_2381UTRP-fluviatile_contig9 126293..126549 +


The following CDS feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesTypePosition
1622817305.358-CDS-P-fluviatile_contig9:110366..1104391622817305.358-CDS-P-fluviatile_contig9:110366..110439Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 110367..110439 +
1693572003.8161294-CDS-P-fluviatile_contig9:110366..1104391693572003.8161294-CDS-P-fluviatile_contig9:110366..110439Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 110367..110439 +
1622817305.3697383-CDS-P-fluviatile_contig9:111078..1112121622817305.3697383-CDS-P-fluviatile_contig9:111078..111212Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 111079..111212 +
1693572003.8254638-CDS-P-fluviatile_contig9:111078..1112121693572003.8254638-CDS-P-fluviatile_contig9:111078..111212Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 111079..111212 +
1622817305.380964-CDS-P-fluviatile_contig9:111670..1118771622817305.380964-CDS-P-fluviatile_contig9:111670..111877Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 111671..111877 +
1693572003.8351116-CDS-P-fluviatile_contig9:111670..1118771693572003.8351116-CDS-P-fluviatile_contig9:111670..111877Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 111671..111877 +
1622817305.3923774-CDS-P-fluviatile_contig9:112976..1130951622817305.3923774-CDS-P-fluviatile_contig9:112976..113095Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 112977..113095 +
1693572003.8451664-CDS-P-fluviatile_contig9:112976..1130951693572003.8451664-CDS-P-fluviatile_contig9:112976..113095Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 112977..113095 +
1622817305.4031842-CDS-P-fluviatile_contig9:114147..1142471622817305.4031842-CDS-P-fluviatile_contig9:114147..114247Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 114148..114247 +
1693572003.8555105-CDS-P-fluviatile_contig9:114147..1142471693572003.8555105-CDS-P-fluviatile_contig9:114147..114247Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 114148..114247 +
1622817305.415489-CDS-P-fluviatile_contig9:115244..1153251622817305.415489-CDS-P-fluviatile_contig9:115244..115325Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 115245..115325 +
1693572003.8655114-CDS-P-fluviatile_contig9:115244..1153251693572003.8655114-CDS-P-fluviatile_contig9:115244..115325Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 115245..115325 +
1622817305.4265645-CDS-P-fluviatile_contig9:116246..1164441622817305.4265645-CDS-P-fluviatile_contig9:116246..116444Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 116247..116444 +
1693572003.8751175-CDS-P-fluviatile_contig9:116246..1164441693572003.8751175-CDS-P-fluviatile_contig9:116246..116444Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 116247..116444 +
1622817305.4384296-CDS-P-fluviatile_contig9:116867..1170201622817305.4384296-CDS-P-fluviatile_contig9:116867..117020Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 116868..117020 +
1693572003.8873367-CDS-P-fluviatile_contig9:116867..1170201693572003.8873367-CDS-P-fluviatile_contig9:116867..117020Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 116868..117020 +
1622817305.4501126-CDS-P-fluviatile_contig9:117582..1178011622817305.4501126-CDS-P-fluviatile_contig9:117582..117801Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 117583..117801 +
1693572003.89853-CDS-P-fluviatile_contig9:117582..1178011693572003.89853-CDS-P-fluviatile_contig9:117582..117801Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 117583..117801 +
1622817305.463173-CDS-P-fluviatile_contig9:118556..1186851622817305.463173-CDS-P-fluviatile_contig9:118556..118685Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 118557..118685 +
1693572003.9108005-CDS-P-fluviatile_contig9:118556..1186851693572003.9108005-CDS-P-fluviatile_contig9:118556..118685Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 118557..118685 +
1622817305.4734561-CDS-P-fluviatile_contig9:119345..1193781622817305.4734561-CDS-P-fluviatile_contig9:119345..119378Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 119346..119378 +
1693572003.923798-CDS-P-fluviatile_contig9:119345..1193781693572003.923798-CDS-P-fluviatile_contig9:119345..119378Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 119346..119378 +
1622817305.4875557-CDS-P-fluviatile_contig9:120169..1202441622817305.4875557-CDS-P-fluviatile_contig9:120169..120244Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 120170..120244 +
1693572003.9336987-CDS-P-fluviatile_contig9:120169..1202441693572003.9336987-CDS-P-fluviatile_contig9:120169..120244Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 120170..120244 +
1622817305.4980824-CDS-P-fluviatile_contig9:124768..1248881622817305.4980824-CDS-P-fluviatile_contig9:124768..124888Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 124769..124888 +
1693572003.943296-CDS-P-fluviatile_contig9:124768..1248881693572003.943296-CDS-P-fluviatile_contig9:124768..124888Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 124769..124888 +
1622817305.5102923-CDS-P-fluviatile_contig9:126094..1262921622817305.5102923-CDS-P-fluviatile_contig9:126094..126292Porterinema fluviatile SAG_2381CDSP-fluviatile_contig9 126095..126292 +
1693572003.952898-CDS-P-fluviatile_contig9:126094..1262921693572003.952898-CDS-P-fluviatile_contig9:126094..126292Porterinema fluviatile SAG_2381CDSP-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*
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mRNA 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
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Coding 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
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