mRNA_P-fluviatile_contig7.13580.1 (mRNA) Porterinema fluviatile SAG_2381

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

Overview
NamemRNA_P-fluviatile_contig7.13580.1
Unique NamemRNA_P-fluviatile_contig7.13580.1
TypemRNA
OrganismPorterinema fluviatile SAG_2381 (Porterinema fluviatile SAG_2381)
Homology
BLAST of mRNA_P-fluviatile_contig7.13580.1 vs. uniprot
Match: D7FP10_ECTSI (TYRosinase family member (Tyr-3) n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FP10_ECTSI)

HSP 1 Score: 691 bits (1783), Expect = 1.270e-237
Identity = 321/589 (54.50%), Postives = 429/589 (72.84%), Query Frame = 3
Query:   33 LEISASNEYGEFDKNTLTMYGLEMVIEPFRQTTLQVK--LTNSGSSGLSKKYLWRLQHVDSSSGV-TARSVDDVWS-VSGGPQVGVTLETPGRQFVLSVQNLGDDGTVLAEGRAVASCKYVRREIRKLAEGDREAFFDAMQIFFTISTEEGKIKYGSKFRNHEKIVTVHEAQLTEFCFHNGMQFMTSHAAFDLVFERYLQMINPRVALPLWDFMIEAATMGDEWYNSIIFDKEWFGSALGSPDNNFMVSEGRFGNISTIYDPEKRWARSRVHPNYNPYGYVSSVNNYNDMPRLTRTTSFCGLTSHGTFATAGVFIACFEE-HTTFDNWENCMEQKVHGDLHGIIGGGFNCNTDMKQFADDHPQYSVRLLSFLLEYITFGFWPQNLFMPNGNTCDTACDQGEP---CGCTCNVDAFAISDQETYFYCEYFMSQAAQKFSGDEFITYDADAPHPYGFMKGDERMSDEDALYLMRYLVKIGCEPGAVGAMSTGTSALDPIFWVLHGFFEKALHILWLSPKYREAYDMEWV-DGTCNGSGYNDELPFTESILGLGSGKTFLTNKRILELLYPTNVNMPYIYEGFHNWGNFDTD 1772
            L++ A+NEYGE+DK +L MYGL+MVIEPFR TT+  +  L +S +      Y+WRL++ D       + +  D W+  +G PQV V LE PG  + LSV+++ ++G V+ EG +  SCKYVRREIR L + DREAF DAM I++T+ T+ GK +YG  F N++ I   H A +  FC+H G+QF+TSHAAFDL  ERYLQMI+P V+LP+WDFMI++A++G EWYNS++FD +WFGSA GS +N + + E RFGN+STIYDP+     SR+   +N YGYV+S  NY D+PR++RT+SFCG+ SH   +TA  F+ CF+  +TT   WE+CME  VHGD+HG++GG F+CNTDM  F++ HP+YS  LLSF+LEY+TF FWP N F+P  N C T+C  G+    C CTC +DAFAI D++ Y Y E FM+ A+ KF GD++I+YD D   PYGFM+   R+SDE+ L LMRYL+KIGCEPGAVG+M+T  S LDP+F++LH  FEKALHI+WLSP+YR+++ M+W  DG C GSGY DELPFTES+LGLG G TF+TN+R+ ELL+P+N  +PYIYE F  WG  D +
Sbjct:   20 LKLRATNEYGEYDKASLKMYGLDMVIEPFRSTTVTAEGMLIDSPAH----MYVWRLRYADQEGAPQNSGTAGDAWNCTTGKPQVTVELERPGTAYFLSVESVDENGRVITEGNSKVSCKYVRREIRDLTDRDREAFLDAMLIWYTLPTDVGKDRYGPSFSNYQVITAYHNADVENFCYHIGLQFLTSHAAFDLTMERYLQMIDPSVSLPMWDFMIDSASLGHEWYNSVVFDNDWFGSAFGSQENGYAIPESRFGNVSTIYDPDGTLVDSRISSYHNAYGYVTSAFNYQDLPRMSRTSSFCGVPSHAVLSTAETFVDCFDGGYTTLSGWESCMETMVHGDIHGLLGGAFSCNTDMSAFSEAHPEYSAGLLSFVLEYMTFTFWPTNSFIPQANVCQTSCSTGQDERFCRCTCMIDAFAIDDKQVYAYMEDFMTSASVKFQGDQYISYDGDVRFPYGFMQDQTRLSDEENLLLMRYLIKIGCEPGAVGSMTTLASPLDPLFYMLHSMFEKALHIVWLSPRYRDSFSMDWAEDGICPGSGYTDELPFTESLLGLGEGTTFVTNERLFELLHPSNPAVPYIYEDFAKWGTSDLE 604          
BLAST of mRNA_P-fluviatile_contig7.13580.1 vs. uniprot
Match: D8LM86_ECTSI (Hypothetical tyrosinase-like protein F21C3.2 in chromosome I, putative n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LM86_ECTSI)

HSP 1 Score: 673 bits (1737), Expect = 5.470e-231
Identity = 327/610 (53.61%), Postives = 421/610 (69.02%), Query Frame = 3
Query:   72 KNTLTMYGLEMVIEPFRQTTLQVKLTNSGSSGLSKKYLWRLQHVDSSSGVTARSVDDVWSVSGGPQVGVTLETPGRQFVLSVQNLGDDGTVLAEGRAVASCKYVRR---------------------------------------EIRKLAEGDREAFFDAMQIFFTISTEEGKIKYGSKFRNHEKIVTVHEAQLTEFCFHNGMQFMTSHAAFDLVFERYLQMINPRVALPLWDFMIEAATMGDEWYNSIIFDKEWFGSALGSPDNNFMVSEGRFGNISTIYDPEKRWARSRVHPNYNPYGYVSSVNNYNDMPRLTRTTSFCGLTSHGTFATAGVFIACFEEHTTFDNWENCMEQKVHGDLHGIIGGGFNCNTDMKQFADDHPQYSVRLLSFLLEYITFGFWPQNLFMPNGNTCDTACDQG--EPCGCTCNVDAFAISDQETYFYCEYFMSQAAQKFSGDEFITYDADAPHPYGFMKGDERMSDEDALYLMRYLVKIGCEPGAVGAMSTGTSALDPIFWVLHGFFEKALHILWLSPKYREAYDMEWVDGTCNGSGYNDELPFTESILGLGSGKTFLTNKRILELLYPTNVNMPYIYEGFHNWGNFDTDLV 1778
            + TL  YGL+MVIEPFR+TTL V+    G+  LS++Y+W+LQH  S+ GVTA+   D W+ +GGPQ  VTL++PG  +VL+V+ + +DG V+AE R  ASCKYVRR                                       EIR+L + DREAFFDAMQ ++TI    GK  YG  F N+  +  +H  ++  FC+H GMQF+TSHAAFDL  ERYLQMI+P V+LP+WD+MI++A +G EWY S IF  +WFGSA+   +N+FMV+ GRFGN+S IYDPE     SRV P +NPYGYVSS +NY D+PRLTRT+S+CGL S  T AT   F+ CFEE  +F +WE CM+ K+HGD+HG++GG F+CNTDM  F+ +HP+YS  LL+F L+ +TF F   N+  P+ NTCD  C +G  EPCGCTC +DAFAI DQ+ Y Y E FM  A   FSG ++IT+D +A +PYGF++  +RMSDE A++LMR LVKIGCEPGAVG MS+  S +DP+FWVLH  F+KA+HIL LSPKY E Y MEWVDG C GSGY DELP TE  LGLG G  +LTN+++LELLYP+N  +PY+Y     WG+ DT+LV
Sbjct:    7 QGTLGTYGLDMVIEPFRKTTLAVE----GNVSLSRRYVWQLQH-GSNHGVTAKDAGDAWAYTGGPQATVTLDSPGTVYVLTVREVSEDGQVVAEARVEASCKYVRRFPLGACVQYLRVWRPFASGQPLTRPQHVPPLLLVSCDRREIRELTDRDREAFFDAMQTWYTIPNSVGKTTYGPDFSNYMPVTAIHGTEVQNFCYHQGMQFLTSHAAFDLTMERYLQMIDPTVSLPVWDYMIDSAWLGLEWYESEIFQPDWFGSAMSDVENHFMVTGGRFGNVSAIYDPEDTLTDSRVKPTHNPYGYVSSPHNYQDLPRLTRTSSYCGLQSRDTLATLDAFLGCFEESRSFYDWEYCMQYKIHGDIHGLLGGAFDCNTDMADFSAEHPEYSHGLLAFTLQILTFKFTAWNILTPDDNTCDAKCMKGQTEPCGCTCLIDAFAIPDQQVYGYMEAFMDAAMTDFSGYQYITHDEEAAYPYGFIQDGQRMSDEHAMFLMRTLVKIGCEPGAVGTMSSTASPVDPLFWVLHPLFDKAMHILLLSPKYDE-YTMEWVDGECPGSGYTDELPITERSLGLGPGTDYLTNEQLLELLYPSNPALPYVYTDLPRWGDKDTELV 610          
BLAST of mRNA_P-fluviatile_contig7.13580.1 vs. uniprot
Match: D7G530_ECTSI (Hypothetical tyrosinase-like protein F21C3.2 in chromosome I, putative n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G530_ECTSI)

HSP 1 Score: 643 bits (1659), Expect = 2.880e-220
Identity = 302/524 (57.63%), Postives = 388/524 (74.05%), Query Frame = 3
Query:   72 KNTLTMYGLEMVIEPFRQTTLQVKLTNSGSSGLSKKYLWRLQHVDSSSGVTARSVDDVWSVSGGPQVGVTLETPGRQFVLSVQNLGDDGTVLAEGRAVASCKYVRREIRKLAEGDREAFFDAMQIFFTISTEEGKIKYGSKFRNHEKIVTVHEAQLTEFCFHNGMQFMTSHAAFDLVFERYLQMINPRVALPLWDFMIEAATMGDEWYNSIIFDKEWFGSALGSPDNNFMVSEGRFGNISTIYDPEKRWARSRVHPNYNPYGYVSSVNNYNDMPRLTRTTSFCGLTSHGTFATAGVFIACFEEHTTFDNWENCMEQKVHGDLHGIIGGGFNCNTDMKQFADDHPQYSVRLLSFLLEYITFGFWPQNLFMPNGNTCDTACDQG--EPCGCTCNVDAFAISDQETYFYCEYFMSQAAQKFSGDEFITYDADAPHPYGFMKGDERMSDEDALYLMRYLVKIGCEPGAVGAMSTGTSALDPIFWVLHGFFEKALHILWLSPKYREAYDMEWVDGTCNGSGYNDELPFT 1637
            + TL  YGL+MVIEPFR+TTL V+ TN   SG   +Y WRLQH  S  G+T     D+W+ SGGPQ  VTL++PG  +VL+V+ + +DG V+AEGR  ASCKYVRREIR L +GDREAF DAM+ ++T+ T+ GK KYG  + N+  I  +H      FC+H GMQF+TSHAAFDL+ ERYLQMI+P V+LP+WD+MI++A +G EWY+S++F  +WFGSA+G  +N+FMV+ GRFGN+S IYDP+     SRV P +NPYGY+SS +NY D+PRLTRT+S+CGL S  TFAT  VF+ CF ++ +   WE CM+ K+HGD+HG++GG F+CNTDM  F+ +HP+YS  LL+F L+ +TF F   N   P+ N CD +CD+G  EPCGCTC +DAFAIS+++ Y Y + FM  A   FSG  +IT+D +A +PYGF++ D RMSDE A++LMR LVKIGCEPGAVG MST  S +DPIFWVLH  FEKA+H+L LSPKY E Y MEWVDG C GSGY DELP T
Sbjct:    7 QGTLETYGLDMVIEPFRETTLAVEGTNVSLSG---RYSWRLQHA-SEQGITVEDDGDLWAHSGGPQATVTLDSPGTVYVLTVREVSEDGQVVAEGRVKASCKYVRREIRDLTDGDREAFLDAMETWYTLPTDAGKAKYGPNYSNYMSIAAIHGTDYKNFCYHQGMQFLTSHAAFDLIVERYLQMIDPTVSLPVWDYMIDSALLGLEWYDSVMFQPDWFGSAMGDVENHFMVTGGRFGNVSAIYDPDYTLTDSRVTPTHNPYGYLSSSHNYQDLPRLTRTSSYCGLQSRDTFATLDVFLGCFGDNRSLYGWEECMQYKIHGDIHGLLGGAFDCNTDMANFSAEHPEYSHGLLAFALQILTFKFTACNALTPDDNVCDASCDRGQTEPCGCTCLMDAFAISEEQVYGYMQPFMEAAMTDFSGYLYITHDEEAAYPYGFIQDDHRMSDEHAMFLMRTLVKIGCEPGAVGMMSTAASPVDPIFWVLHPLFEKAMHVLLLSPKYDE-YTMEWVDGECPGSGYTDELPIT 525          
BLAST of mRNA_P-fluviatile_contig7.13580.1 vs. uniprot
Match: D7FSG6_ECTSI (Common central domain of tyrosinase family protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7FSG6_ECTSI)

HSP 1 Score: 560 bits (1442), Expect = 1.880e-186
Identity = 271/596 (45.47%), Postives = 381/596 (63.93%), Query Frame = 3
Query:  102 MVIEPFRQTTL----QVKLTNSG-----------------SSGLSKKYLWRLQHVDSSSGVTARSVDDVWSVSGGPQVGVTLETPGRQFVLSVQN------LGDDGTVLAE-------GRAV--ASCKYVRREIRKLAEGDREAFFDAMQIFFTISTEEGKIKYGSKFRNHEKIVTVHEAQLTEFCFHNGMQFMTSHAAFDLVFERYLQMINPRVALPLWDFMIEAATMGDEWYNSIIFDKEWFGSALGSPDNNFMVSEGRFGNISTIYDPEKRWARSR--VHPNYNPYGYVSSVNNYNDMPRLTRTTSFCGLTSHGTFATAGVFIACFEEHTTFDNWENCMEQKVHGDLHGIIGGGFNCNTDMKQFADDHPQYSVRLLSFLLEYITFGFWPQNLFMPNG-NTCDTACDQG-EPCGCTCNVDAFAISDQETYFYCEYFMSQAAQKFSGDEFITYDADAPHPYGFMKGDERMSDEDALYLMRYLVKIGCEPGAVGAMSTGTSALDPIFWVLHGFFEKALHILWLSPKYREAYDMEWVDGTCNGSGYNDELPFTESILGLGSGKTFLTNKRILELLYPTNVNMPYIYEGFHNWGNFDT 1769
            MV EP R TTL     V L   G                  SG    + W++  +    G  A ++ +     G  +V V    PG  ++L+V+       +  DGTV+         GRA    SCK+VRRE+R L+E DREAF DAM+ ++ +S E+G+ KYG  F +++ + + H A L  FC+H G+QF+T+HAAF L+ ER LQ INPRV+LP WD+MIEA T+G +W +S IFD + FG A+GS DN + +S+GRFG IS IYDP      +   + P++N YG++S+  NY + P LTRT+SFC L +   FAT+  F +CF  H T  +WE+CME KVHGD+HG++GG F C+ DM +F +DHP+Y+  LL+F++EY+T  FWP N FMP G NTC+T C  G EPCGCTC+VDA A+S+ E Y     F+SQA Q+FSG  +I+YD  +  P+GF +  ER+ D+  ++L+R +VK+GCEPGAVG M  G S +DP+FWVLH  FEKALH+LW+SP YR+ Y   W DG+C+GS  +D LPFT   LG+G+G   LTN+ ++++L+P+N  +P+++E F  WG  ++
Sbjct:    1 MVAEPHRPTTLTATSSVALGGGGXXXXXXXXXXVRGGADTESGSLSVFSWKVVELGEEEGGPAATIFE--EEEGRAEVSVEFTKPGGVYLLTVEERLRAGAVSRDGTVVLNAGETAVIGRATIKVSCKHVRRELRDLSEADREAFLDAMEAYYAVSKEDGRAKYGEGFFDYQLLASYHSADLKSFCYHAGVQFLTAHAAFGLMLERSLQKINPRVSLPFWDYMIEAETLGPDWQDSPIFDDDMFGRAMGSADNGYQISDGRFGKISAIYDPHHNLPGNGLDIGPHHNAYGFLSATYNYQEAPLLTRTSSFCNLKADSVFATSDDFFSCFTAHDTLGDWEHCMESKVHGDMHGLLGGAFKCSVDMHEFHEDHPEYTTGLLTFVVEYLTTKFWPNNAFMPPGSNTCETECVSGQEPCGCTCSVDAMALSEDEIYSLTSTFLSQATQRFSGHAYISYDESSERPWGFQQNGERLDDDATMFLLRQVVKLGCEPGAVGVMVGGVSPMDPLFWVLHPMFEKALHVLWMSPTYRDGYSFGWADGSCSGSKVDDILPFTAQDLGMGAGTELLTNRELMDILHPSNPRLPFVFEKFDTWGTAES 594          
BLAST of mRNA_P-fluviatile_contig7.13580.1 vs. uniprot
Match: A0A6H5KPW4_9PHAE (Tyrosinase_Cu-bd domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5KPW4_9PHAE)

HSP 1 Score: 540 bits (1390), Expect = 9.790e-177
Identity = 276/609 (45.32%), Postives = 366/609 (60.10%), Query Frame = 3
Query:   33 LEISASNEYGEFDKNTLTMYGLEMVIEPFRQTTLQVKLT---------NSG----------------SSGLSKKYLWRLQHVDSSSGVTARSVDDVWSVSGGPQVGVTLETPGRQFVLSVQNLGDDGTVLAEGRAVASCKYVRREIRKLAEGDREAFFDAMQIFFTISTEEGKIKYGSKFRNHEKIVTVHEAQLTEFCFHNGMQFMTSHAAFDLVFERYLQMINPRVALPLWDFMIEAATMGDEWYNSIIFDKEWFGSALGSPDNNFMVSEGRFGNISTIYDPEKRW---ARSRVHPNYNPYGYVSSVNNYNDMPRLTRTTSFCGLTSHGTFATAGVFIACFEEHTTFDNWENCMEQKVHGDLHGIIGGGFNCNTDMKQFADDHPQYSVRLLSFLLEYITFGFWPQNLFMPNGNTCDTACD--QGEPCGCTCNVDAFAISDQETYFYCEYFMSQAAQKFSGDEFITYDADAPHPYGFMKGDERMSDEDALYLMRYLVKIGCEPGAVGAMSTGTSALDPIFWVLHGFFEKALHILWLSPKYREAYDMEWVDGTCN----GSGYNDELPFTESILGLGSGKTFLTNKRILELLYPTNVNMPYIYEGFHNWG 1757
            LE+ A+NEYGE+D+  L +YGLEMV+EP R T + V  +         NS                 SS   ++Y W L   D S          V +   GP   VTL   G ++ L VQ +  DG+++AE R   +CKYVRRE+R L   DR  FF AM+ F+T+S EEG+ KYG  F N + +   H +   ++CFHNGM F+ +HAAFDL  E  LQ I+P+V+LP WD+M+EAA +G EW +S IF  + FGSALGSP N F +S+G F NI+++YDP       A S +  ++N YG+V  V N+  +P + RT+S+CGL     F    VF+ CFE  TTF  W +CME +VH  +HG+IGGGF+CN DM +F +++PQY   LL+F L Y+    WP N  M + N CD  CD  QGEPCGCTC VD F  +D E Y + E  +     + +G  ++  D  A HPYGFM+  ER+ +E  + L+R ++ IGC+PG VGAMSTG + LDPIFW LH  FEKA HIL LSP YR+AYD EWVD  C     G   +D  P+TE  LGLG G   LTN  + E+L+P+N  +PY+YE F  WG
Sbjct:  130 LELKATNEYGEYDRGALALYGLEMVVEPHRATRITVSSSRPRRLPPSENSEVXXXXXXXXXXPSPPLSSSSPRRYYWLLVRADRSGAPLDGVTPLVDTKVAGPLATVTLTDAGEKYALLVQQVEADGSLIAEARVTITCKYVRRELRSLTGEDRTGFFAAMREFYTVSLEEGRDKYGEGFSNAKHVAAYHNSP--DYCFHNGMHFLNAHAAFDLWVESNLQKIDPKVSLPQWDYMLEAAHLGTEWPSSEIFSPDMFGSALGSPVNQFQISDGWFSNITSLYDPRGDILTPAESFITTSHNSYGFVDGVYNFQALPGVVRTSSYCGLEVVAEFTKCEVFVDCFESSTTFHVWASCMEHQVHASIHGMIGGGFDCNIDMIEFHEENPQYDQGLLTFTLGYVLANKWPSNSLMRDFNECDEQCDVDQGEPCGCTCLVDPFEWTDDEVYDFMEDVLESLRGRANGASYVGEDVTARHPYGFMQEGERLDEESTMLLLRQMMVIGCQPGKVGAMSTGAAPLDPIFWTLHSGFEKAQHILQLSPGYRDAYDFEWVDADCGDGVAGGKLDDVYPWTEQTLGLGEGSELLTNADLTEILHPSNPKLPYLYEAFGKWG 736          
BLAST of mRNA_P-fluviatile_contig7.13580.1 vs. uniprot
Match: A0A6H5KMG1_9PHAE (TYR protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5KMG1_9PHAE)

HSP 1 Score: 529 bits (1362), Expect = 2.980e-174
Identity = 277/601 (46.09%), Postives = 371/601 (61.73%), Query Frame = 3
Query:   36 EISASNEYGEFDKNTLTMYGLEMVIEPFRQTTLQV--KLTNSGSSGLSKK---------------YLWRLQHVDSSSGVTARSVDDVWSVSGGPQ-VGVTLETPGRQFVLSVQNL-GDDGTVLAEGRAVASCKYVRREIRKLAEGDREAFFDAMQIFFTISTEEGKIKYGSKFRNHEKIVTVHEAQLTEFCFHNGMQFMTSHAAFDLVFERYLQMINPRVALPLWDFMIEAATMGDEWYNSIIFDKEWFGSALGSPDNNFMVSEGRFGNISTIYDP--EKRWARSRVHPNYNPYGYVSSVNNYNDMPRLTRTTSFCGLTSHGTFATAGVFIACFEEHTTFDNWENCMEQKVHGDLHGIIGGGFNCNTDMKQFADDHPQYSVRLLSFLLEYITFGFWPQNLFMPNGNTCDTACDQGE--PCGCTCNVDAFAISDQETYFYCEYFMSQAAQKFSGDEFITYDADAPHPYGFMKGDERMSDEDALYLMRYLVKIGCEPGAVGAMSTGTSALDPIFWVLHGFFEKALHILWLSPKYREAYDMEWVDG-TCN---GSGYNDELPFTESILGLGSGKTFLTNKRILELLYPTNVNMPYIYEGFHNWG 1757
            E++A+NEYGE+D   L +YGLEMV+EP R T + V  +L  S  S  S+K                 W L   DSS G     V  +    G  + V VTL   G ++ L VQ + GDDGTV+AE R   SCKYVRRE+R L   DR  FF AM+ F+T+S EEG+  YG  F + + +   H  +  ++CFHNGM F+ +HAAFDL  E  LQ I+P+V+LP WD+M+EAA +G EW +S IF  + FGSALGSPDN F +S+G F NIS++YDP  +   A + +  N+NPYG+V S  NY  +P ++RT+S+CGL     F+   VF+ CFE++ +   W  CME  VH  +HG+IGGGFNCN +M +F + +PQ+S  LL+F L+++    WP N  M + N CD  C  G+  PCGCTC  D F  +D   Y + E  M     +  GD+FI  D  A HP GF +  +R+ DE  + L+R L+ IGCEPG VGAMSTG + LDPIFW LH  F+KA HIL LSP YR+ YD  WVD  +C+   G   +D  P+TE +LGLG G   LTN  ++E+L+P+N  +PY+YEGF+ WG
Sbjct:   21 EVNATNEYGEYDGEALALYGLEMVVEPHRATRITVSSRLPLSEISEKSEKSPSPSPXXXXXXXXXXXWLLVRADSS-GAALDDVTPLVDARGYDRFVTVTLTDAGEKYALLVQQVEGDDGTVVAEQRVTISCKYVRRELRGLTIADRTGFFAAMREFYTVSLEEGRALYGDGFYDAKLMAAYHNTR--DYCFHNGMHFLNAHAAFDLWVESNLQKIDPKVSLPQWDYMLEAAHLGTEWGDSEIFGPDMFGSALGSPDNQFQISDGWFSNISSVYDPAGDLLSAEADISTNHNPYGFVGSTYNYQSIPGVSRTSSYCGLQGVSEFSKCEVFVGCFEDNNSLYEWAVCMEHSVHASMHGMIGGGFNCNVNMAEFQEANPQFSPELLTFTLQFLLANKWPSNSLMEDFNYCDEDCAVGQTHPCGCTCITDPFEWTDDAIYDFMEDAMETLQLRAHGDQFIDEDRSARHPLGFAQKGKRLDDESIMLLLRQLMVIGCEPGEVGAMSTGAAPLDPIFWALHAGFDKAQHILQLSPGYRDTYDFAWVDSESCDDMSGGKLDDLYPWTERMLGLGDGTELLTNSDLVEILHPSNPKLPYVYEGFNKWG 618          
BLAST of mRNA_P-fluviatile_contig7.13580.1 vs. uniprot
Match: D7FVH6_ECTSI (N/a n=2 Tax=Ectocarpus TaxID=2879 RepID=D7FVH6_ECTSI)

HSP 1 Score: 507 bits (1305), Expect = 1.190e-164
Identity = 258/597 (43.22%), Postives = 360/597 (60.30%), Query Frame = 3
Query:   12 SSSGLRSLEISASNEYGEFDKNTLTMYGLEMVIEPFRQTTLQVKLTNSGSSGLSKKYLWRLQHVDSSSGVTARSVDDVWSVSGGPQVGVTLETPGRQFVLSVQN--LGDDG-------TVLAEGRAVASCKYVRREIRKLAEGDREAFFDAMQIFFTISTEEGKIKYGSKFRNHEKIVTVHEAQLTEFCFHNGMQFMTSHAAFDLVFERYLQMINPRVALPLWDFMIEAATMGDEWYNSIIFDKEWFGSALGSPDNNFMVSEGRFGNISTIYDPEKRWARSRVHPNYNPYGYVSSVNNYNDMPRLTRTTSFCGLTSHGTFATAGVFIACFEEHTTFDNWENCMEQKVHGDLHGIIGGGFNCNTDMKQFADDHPQYSVRLLSFLLEYITFGFWPQNLFMPNGNTCDTACDQGEP--CGCTCNVDAFAISDQETYFYCEYFMSQAAQKFSGDEFITYDADAPHPYGFMKGDERMSDEDALYLMRYLVKIGCEPGAVGAMSTGTSALDPIFWVLHGFFEKALHILWLSPKYREAYDMEWVDGTC----NGSGYNDELPFTESILGLGSGKTFLTNKRILELLYPTNVNMPYIYEGFHNWG 1757
            SSSGL    + A+NEYGE+D+  L +YG +M++EP+++TT+ V    S S  +S  +L   +  D    V    V+   + SG   V VTL   G  + L VQ   L  +G        V++E     +CK+VRRE+R L   DR AFF AM+ F+T++ E GK KYG  F N + I T H  +   +CFH+GM F+ +HA+FDL  ER LQMI+P VA+  WDF I+AAT+G +W +S+IF  + +GSALGSPDN + +SEG F ++ +IYDP++ + + +++P Y+ YGY+ +  N   +  ++RT S+CG+     FAT  V I CFE++     W  CME +VH   HG++GG FNCN DM QF +D+P     LLSF LEYI  G WP N FM + NTCDT+C  G+   CGCTC+ D    SD E Y   E  M     +  G +++  D  A + YGF +   R+  +D + LMR L+ + CEPGA+GAMS G S LDP+FW LH  FEKA  IL LSP Y++ YD  WV   C    +G   ++ +PFTE   G G G   LTN+ I++ L+PTN  +PY+Y+ F +WG
Sbjct:  112 SSSGLT---LVATNEYGEYDRGALALYGFDMLVEPYKKTTISVTGPASSSGSISYSWLLVREDDDEPEAVELEVVEQDDTPSGS-SVKVTLTEAGATYALHVQQQQLAPEGGGDASVAVVVSEKTIQVACKHVRRELRDLTSADRTAFFSAMREFYTVNLEAGKEKYGKTFANSKIISTYHNTR--NYCFHSGMHFLNAHASFDLWAERSLQMIDPTVAMHYWDFTIDAATLGPDWADSVIFSNDMYGSALGSPDNGYQISEGWFADVKSIYDPDETFLKEQINPGYSLYGYIDARYNIQAVDGVSRTASYCGVRGEIEFATCNVIINCFEQYDNISEWNECMENQVHAANHGMMGGAFNCNVDMVQFQEDNPGLKAGLLSFALEYILVGMWPSNSFMGDHNTCDTSCTVGQTQDCGCTCDTDFHDWSDDEVYDKMESQMETMQNRAHGTKYVYRDDGATYQYGFQQNGVRLEHDDNMLLMRTLLTLACEPGALGAMSVGPSILDPVFWALHPIFEKATQILQLSPTYKDTYDFTWVGKDCGDGVSGGQVDETMPFTERDFGFGDGDEPLTNQEIIDFLFPTNPRLPYVYDKFDSWG 702          
BLAST of mRNA_P-fluviatile_contig7.13580.1 vs. uniprot
Match: A0A6H5JYD0_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JYD0_9PHAE)

HSP 1 Score: 327 bits (837), Expect = 1.790e-99
Identity = 171/436 (39.22%), Postives = 233/436 (53.44%), Query Frame = 3
Query:  564 MQFMTSHAAFDLVFERYLQMINPRVALPLWDFMIEAATMGDE--------------------------------WYNSIIFDKEWFGSALGSPDNNFMVSEGRFGNISTIYDPEKRWARSRVHPNYNPYGYVSSVNNYNDMPRLTRTTSFCGLTSHGTFATAGVFIACFEEHTTFDNWENCMEQKVHGDLHGIIGGGFNCNTDMKQFADDHPQYSVRLLSFLLEYITFGFWPQNLFMPNGNTCDTACDQGEP--CGCTCNVDAFAISDQETYFYCEYFMSQAAQKFSGDEFITYDADAPHPYGFMKGDERMSDEDALYLMRYLVKIGCEPGAVGAMSTGTSALDPIFWVLHGFFEKALHILWLSPKYREAYDMEWVDGTC----NGSGYNDELPFTESILGLGSGKTFLTNKRILELLYPTNVNMPYIYEGFHNWG 1757
            M F+ +HA+FDL  ER LQMI P VA+  WDF I+AAT+G E                                W NS +F  + +GSALGSPDN   +SEG F ++ +IYDP++ + + +++P ++ YGY+ +  N               +     FAT  V I CFE++     W  CME +V                DM QF +DHP +   LLSF LEYI  G WP N FM + NTCD +C  G+   CGCTCN D +  SD E Y   E  M     +  GD+++  D  A + YGF +   R+  +D + LMR L+ + CEPGA+GAMS G S LDP+FW LH  FEKA  +L LSP Y++ YD  WV   C    +G   ++ +PFTE   G G G   LTN+ I++ L+PTN  +PY+Y+ F +WG
Sbjct:    1 MHFLNAHASFDLWAERSLQMIYPTVAMHYWDFTIDAATLGPEYTFVDAGMSSPRAVQQEANPMGQHPNSTMHRSWANSAVFSNDMYGSALGSPDNGDQISEGWFADVKSIYDPDETFLQEQINPGHSVYGYIDAKLN---------------IQGEMEFATCNVLINCFEQNDNISEWNECMENQV----------------DMVQFQEDHPVFKAGLLSFALEYILVGTWPSNSFMKSHNTCDMSCTVGQTQDCGCTCNTDFYDWSDDEVYDMMESQMGTMNNRAHGDKYVYRDLGATYQYGFQQNGVRLEHDDNMLLMRTLLTLACEPGALGAMSVGPSILDPVFWALHPIFEKATQLLQLSPTYKDTYDFTWVGIDCGDGVSGGQVDETMPFTERDFGFGDGDEPLTNQEIIDFLFPTNPRLPYVYDKFDSWG 405          
BLAST of mRNA_P-fluviatile_contig7.13580.1 vs. uniprot
Match: A0A835Z854_9STRA (Polyphenol oxidase protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z854_9STRA)

HSP 1 Score: 327 bits (837), Expect = 1.040e-97
Identity = 175/460 (38.04%), Postives = 258/460 (56.09%), Query Frame = 3
Query:  180 YLWRLQHVDSSSGVTARSVDDVWSVSGGPQVGVTLETPGRQFVLSV--QNLGDDGT--VLAEGRAVASCKYVRREIRKLAEGDREAFFDAMQIFFTISTEEGKIKYGSKFRNHEKIVTVHEAQLTEFCFHNGMQFMTSHAAFDLVFERYLQMINPRVALPLWDFMIEAATMGDEWYNSIIFDKEWFGSALGSPDNNFMVSEGRFGNISTIYDPEKRWARSRVHPNYNP----YGYVSSVNNYNDMPRLTRTTSFCGLTSHGTFATAGVFIACFEEHTTFDNWENCMEQKVHGDLHGIIGGGFNCNTDMKQFADDHPQYSVRLLSFLLEYITFGFWPQNLFMPNGNTCDTA--CDQGEPCGCTCNVDAFAISDQETYFYCEYFMSQAAQKFSGDEFITYDADAPHPYGFMKGDERMSDEDALYLMRYLVKIGCEPGAVGAMSTGTSALDPIFWVLHGFFEK 1529
            Y+W L  +D S   +    D + S   G  V V L  PG  + L+V  Q    DGT  V+A   A  +C+YVRREIR L++ DR+ F DA+ I +  S EEG+ KYG +F ++E++  +H+    +FC+H G QF+T+H AF+++ ER LQ I+P V+LP WDFM ++  +G  WY S +FD+  FGSA+G P  NF ++  RF  I  +YDP        + P++N     +GY++S  N  +   ++RT +FCG+T     AT   F ACFE + +  ++  CME  +H D+HG +GGG+NC  DM QF  + P+ S  L++F L YI    W    +      C +   C     C CTC +D  +++D E Y + E  +      + G +F+T    +     F +    +SD      +R L+K+GC PG+VGAMSTG S  DPIFWVLHG ++K
Sbjct:   64 YVWSLTLLDESGAAS----DTIVSDQVGSYVDVVLTAPGHSYTLTVTEQLTATDGTTTVVASLAATIACRYVRREIRALSQVDRDRFLDALAILYFNSDEEGQAKYGDQFVSYERLCAMHDD--IKFCYHGGQQFITAHWAFNMMVERSLQSIDPGVSLPYWDFMKDSDQLGSSWYMSEVFDETMFGSAIGLPTENFKLAPSRFRGIRNVYDPS---GDRVISPDFNVLRNGFGYITSPTNEQNATFVSRTHTFCGVTGSVALATCRDFAACFESYDSLTDFRMCMETDIHADMHGWLGGGYNCAVDMAQFIQEVPEVSTELVTFALTYIVANTWHNTDYFAPYTECPSTDGCIDKSQCSCTCTLDVDSLTDDEVYAWMEEMLLAMTTIYDGADFVTA---SNGKLRFAQNGHLLSDAAYRPFLRALMKLGCTPGSVGAMSTGASPADPIFWVLHGIYDK 511          
BLAST of mRNA_P-fluviatile_contig7.13580.1 vs. uniprot
Match: A0A6H5JFE6_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JFE6_9PHAE)

HSP 1 Score: 290 bits (743), Expect = 1.180e-87
Identity = 140/258 (54.26%), Postives = 176/258 (68.22%), Query Frame = 3
Query: 1077 MKQFADDHPQYSVRLLSFLLEYITFGFWPQNLFMPNGNTCDTACDQGEP--CGCTCNVDAFAISDQET-------YFYCEYFMSQAAQKFSGDEFITYDADAPHPYGFMKG----------------DERMSDEDALYLMRYLVKIGCEPGAVGAMSTGTSALDPIFWVLHGFFEKALHILWLSPKYREAYDMEWV-DGTCNGSGYNDELPFTESILGLGSGKTFLTNKRILELLYPTNVNMPYIYEGFHNWGNFDTD 1772
            M  F++ HP+YS  LLSF+LEY+TF FWP N F+P  N C T+C  G+   CGCTC +DAFAI D++        Y Y E FM+ A+ KF GD++I+YD D   PYGFM+                   R+SDE+ L LMRYL+KIGCEPGAVG+M T  S LDP+F++LH  FEKALHILWLSPKYR+++ M+W  DG C GSGY DELPFTE +LGLG G  F+TN+R+LELL+P+N  +PYIYE F  WG  D +
Sbjct:    1 MSTFSEAHPEYSAGLLSFVLEYMTFTFWPTNSFIPQANVCQTSCSTGQKRFCGCTCMIDAFAIDDEQVGWVGGWVYAYMEDFMTSASVKFQGDQYISYDGDVRFPYGFMQARTRDNPTSSLYPPSQDQNRLSDEENLLLMRYLIKIGCEPGAVGSMMTLASPLDPLFYMLHSMFEKALHILWLSPKYRDSFSMDWAEDGLCPGSGYTDELPFTEYLLGLGEGTAFMTNERLLELLHPSNPAVPYIYEDFARWGTSDLE 258          
The following BLAST results are available for this feature:
BLAST of mRNA_P-fluviatile_contig7.13580.1 vs. uniprot
Analysis Date: 2022-09-19 (Diamond blastx: OGS1.0 vs UniRef90)
Total hits: 25
Match NameE-valueIdentityDescription
D7FP10_ECTSI1.270e-23754.50TYRosinase family member (Tyr-3) n=1 Tax=Ectocarpu... [more]
D8LM86_ECTSI5.470e-23153.61Hypothetical tyrosinase-like protein F21C3.2 in ch... [more]
D7G530_ECTSI2.880e-22057.63Hypothetical tyrosinase-like protein F21C3.2 in ch... [more]
D7FSG6_ECTSI1.880e-18645.47Common central domain of tyrosinase family protein... [more]
A0A6H5KPW4_9PHAE9.790e-17745.32Tyrosinase_Cu-bd domain-containing protein n=2 Tax... [more]
A0A6H5KMG1_9PHAE2.980e-17446.09TYR protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0... [more]
D7FVH6_ECTSI1.190e-16443.22N/a n=2 Tax=Ectocarpus TaxID=2879 RepID=D7FVH6_ECT... [more]
A0A6H5JYD0_9PHAE1.790e-9939.22Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]
A0A835Z854_9STRA1.040e-9738.04Polyphenol oxidase protein n=1 Tax=Tribonema minus... [more]
A0A6H5JFE6_9PHAE1.180e-8754.26Uncharacterized protein n=1 Tax=Ectocarpus sp. CCA... [more]

Pages

back to top
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
P-fluviatile_contig7contigP-fluviatile_contig7:1950739..1966228 +
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 score679.5
Seed ortholog evalue1.4e-192
Seed eggNOG ortholog2880.D8LM86
EggNOG free text desc.Common central domain of tyrosinase
EggNOG OGs2D2GE@1,2SMT5@2759
COG Functional cat.S
Best tax levelEukaryota
Best eggNOG OGNA|NA|NA
Hectar predicted targeting categoryother localisation
Exons14
Model size2765
Cds size1701
Stop1
Start1
Relationships

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

Feature NameUnique NameSpeciesTypePosition
mRNA_P-fluviatile_contig7.13580.1prot_P-fluviatile_contig7.13580.1Porterinema fluviatile SAG_2381polypeptideP-fluviatile_contig7 1951581..1965250 +


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

Feature NameUnique NameSpeciesTypePosition
1622817127.987175-UTR-P-fluviatile_contig7:1950738..19508121622817127.987175-UTR-P-fluviatile_contig7:1950738..1950812Porterinema fluviatile SAG_2381UTRP-fluviatile_contig7 1950739..1950812 +
1693571230.3788776-UTR-P-fluviatile_contig7:1950738..19508121693571230.3788776-UTR-P-fluviatile_contig7:1950738..1950812Porterinema fluviatile SAG_2381UTRP-fluviatile_contig7 1950739..1950812 +
1622817127.9976592-UTR-P-fluviatile_contig7:1951568..19515801622817127.9976592-UTR-P-fluviatile_contig7:1951568..1951580Porterinema fluviatile SAG_2381UTRP-fluviatile_contig7 1951569..1951580 +
1693571230.3923712-UTR-P-fluviatile_contig7:1951568..19515801693571230.3923712-UTR-P-fluviatile_contig7:1951568..1951580Porterinema fluviatile SAG_2381UTRP-fluviatile_contig7 1951569..1951580 +
1622817128.181828-UTR-P-fluviatile_contig7:1965250..19662281622817128.181828-UTR-P-fluviatile_contig7:1965250..1966228Porterinema fluviatile SAG_2381UTRP-fluviatile_contig7 1965251..1966228 +
1693571230.5602305-UTR-P-fluviatile_contig7:1965250..19662281693571230.5602305-UTR-P-fluviatile_contig7:1965250..1966228Porterinema fluviatile SAG_2381UTRP-fluviatile_contig7 1965251..1966228 +


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

Feature NameUnique NameSpeciesTypePosition
1622817128.0081575-CDS-P-fluviatile_contig7:1951580..19516721622817128.0081575-CDS-P-fluviatile_contig7:1951580..1951672Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1951581..1951672 +
1693571230.4012928-CDS-P-fluviatile_contig7:1951580..19516721693571230.4012928-CDS-P-fluviatile_contig7:1951580..1951672Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1951581..1951672 +
1622817128.0233529-CDS-P-fluviatile_contig7:1952018..19521091622817128.0233529-CDS-P-fluviatile_contig7:1952018..1952109Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1952019..1952109 +
1693571230.4138777-CDS-P-fluviatile_contig7:1952018..19521091693571230.4138777-CDS-P-fluviatile_contig7:1952018..1952109Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1952019..1952109 +
1622817128.0403094-CDS-P-fluviatile_contig7:1953026..19531421622817128.0403094-CDS-P-fluviatile_contig7:1953026..1953142Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1953027..1953142 +
1693571230.4232075-CDS-P-fluviatile_contig7:1953026..19531421693571230.4232075-CDS-P-fluviatile_contig7:1953026..1953142Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1953027..1953142 +
1622817128.0513852-CDS-P-fluviatile_contig7:1953985..19541361622817128.0513852-CDS-P-fluviatile_contig7:1953985..1954136Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1953986..1954136 +
1693571230.4323323-CDS-P-fluviatile_contig7:1953985..19541361693571230.4323323-CDS-P-fluviatile_contig7:1953985..1954136Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1953986..1954136 +
1622817128.0661266-CDS-P-fluviatile_contig7:1955712..19558641622817128.0661266-CDS-P-fluviatile_contig7:1955712..1955864Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1955713..1955864 +
1693571230.44495-CDS-P-fluviatile_contig7:1955712..19558641693571230.44495-CDS-P-fluviatile_contig7:1955712..1955864Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1955713..1955864 +
1622817128.0772746-CDS-P-fluviatile_contig7:1956450..19566461622817128.0772746-CDS-P-fluviatile_contig7:1956450..1956646Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1956451..1956646 +
1693571230.4571402-CDS-P-fluviatile_contig7:1956450..19566461693571230.4571402-CDS-P-fluviatile_contig7:1956450..1956646Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1956451..1956646 +
1622817128.0907516-CDS-P-fluviatile_contig7:1958744..19588821622817128.0907516-CDS-P-fluviatile_contig7:1958744..1958882Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1958745..1958882 +
1693571230.4698677-CDS-P-fluviatile_contig7:1958744..19588821693571230.4698677-CDS-P-fluviatile_contig7:1958744..1958882Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1958745..1958882 +
1622817128.104467-CDS-P-fluviatile_contig7:1959985..19602341622817128.104467-CDS-P-fluviatile_contig7:1959985..1960234Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1959986..1960234 +
1693571230.483046-CDS-P-fluviatile_contig7:1959985..19602341693571230.483046-CDS-P-fluviatile_contig7:1959985..1960234Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1959986..1960234 +
1622817128.1182542-CDS-P-fluviatile_contig7:1961269..19613771622817128.1182542-CDS-P-fluviatile_contig7:1961269..1961377Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1961270..1961377 +
1693571230.4970593-CDS-P-fluviatile_contig7:1961269..19613771693571230.4970593-CDS-P-fluviatile_contig7:1961269..1961377Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1961270..1961377 +
1622817128.1313362-CDS-P-fluviatile_contig7:1962200..19622611622817128.1313362-CDS-P-fluviatile_contig7:1962200..1962261Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1962201..1962261 +
1693571230.5105162-CDS-P-fluviatile_contig7:1962200..19622611693571230.5105162-CDS-P-fluviatile_contig7:1962200..1962261Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1962201..1962261 +
1622817128.1443946-CDS-P-fluviatile_contig7:1962860..19629491622817128.1443946-CDS-P-fluviatile_contig7:1962860..1962949Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1962861..1962949 +
1693571230.528381-CDS-P-fluviatile_contig7:1962860..19629491693571230.528381-CDS-P-fluviatile_contig7:1962860..1962949Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1962861..1962949 +
1622817128.1572797-CDS-P-fluviatile_contig7:1963676..19637851622817128.1572797-CDS-P-fluviatile_contig7:1963676..1963785Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1963677..1963785 +
1693571230.5402572-CDS-P-fluviatile_contig7:1963676..19637851693571230.5402572-CDS-P-fluviatile_contig7:1963676..1963785Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1963677..1963785 +
1622817128.1680572-CDS-P-fluviatile_contig7:1965101..19652501622817128.1680572-CDS-P-fluviatile_contig7:1965101..1965250Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1965102..1965250 +
1693571230.5502279-CDS-P-fluviatile_contig7:1965101..19652501693571230.5502279-CDS-P-fluviatile_contig7:1965101..1965250Porterinema fluviatile SAG_2381CDSP-fluviatile_contig7 1965102..1965250 +


Sequences
The following sequences are available for this feature:

protein sequence of mRNA_P-fluviatile_contig7.13580.1

>prot_P-fluviatile_contig7.13580.1 ID=prot_P-fluviatile_contig7.13580.1|Name=mRNA_P-fluviatile_contig7.13580.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=567bp
MYGLEMVIEPFRQTTLQVKLTNSGSSGLSKKYLWRLQHVDSSSGVTARSV
DDVWSVSGGPQVGVTLETPGRQFVLSVQNLGDDGTVLAEGRAVASCKYVR
REIRKLAEGDREAFFDAMQIFFTISTEEGKIKYGSKFRNHEKIVTVHEAQ
LTEFCFHNGMQFMTSHAAFDLVFERYLQMINPRVALPLWDFMIEAATMGD
EWYNSIIFDKEWFGSALGSPDNNFMVSEGRFGNISTIYDPEKRWARSRVH
PNYNPYGYVSSVNNYNDMPRLTRTTSFCGLTSHGTFATAGVFIACFEEHT
TFDNWENCMEQKVHGDLHGIIGGGFNCNTDMKQFADDHPQYSVRLLSFLL
EYITFGFWPQNLFMPNGNTCDTACDQGEPCGCTCNVDAFAISDQETYFYC
EYFMSQAAQKFSGDEFITYDADAPHPYGFMKGDERMSDEDALYLMRYLVK
IGCEPGAVGAMSTGTSALDPIFWVLHGFFEKALHILWLSPKYREAYDMEW
VDGTCNGSGYNDELPFTESILGLGSGKTFLTNKRILELLYPTNVNMPYIY
EGFHNWGNFDTDLVKN*
back to top

mRNA from alignment at P-fluviatile_contig7:1950739..1966228+

Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig7.13580.1 ID=mRNA_P-fluviatile_contig7.13580.1|Name=mRNA_P-fluviatile_contig7.13580.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=15490bp|location=Sequence derived from alignment at P-fluviatile_contig7:1950739..1966228+ (Porterinema fluviatile SAG_2381)
GTGGGGCTTCTTCCTCATCCGGACTGCGATCTCTCGAGATCAGCGCATCC AACGAGTACGGAGAGTTCGACAAGGCGAGTGAATGTTTACTGGTGCGCGA AAGTTTTGATGGTCTAAGCGTGCGCGTGAGAGCATTTATGGCGGAGGGAG GGGCACTCATGGTTGTTCGCTCCGCGAATTGAAGTGAAACGTACTCAAAA CAATATGAACGGAAACATAAGGCGTTGATGCCCAGCCAGAAACATAACTT GTAAATAGCATTGTCGAATGCTATTGAACGTTTGAGCTTCTGCTTTTCTA CACCACGCTGTTGTCATGACTTCAAAATCTGCAGAAAAACGCCCTGTGAG AGGACCACACAGCCCCCCCCCCTCTCCCAGTATCTTCCACACAGAATGAC CATAAAGATGAACGCCGGATCGTAGGACAACACAAAGTGTACGGCACGCA TTGCCGACTTCAACGCCCACGACATCAAGAGTCCCACGATTAGCAGATAG CCCCGGTCGCCAACGCCACACTCCCGCGCACTGCCCCATCAGGACCCTCT ACCCCTCGGATCTTCAACGAAGATTTACACTTCCAAGGGTACGAGAGGTT ATCCGGGAACCTGCCGTTTGCGACACGTCCGCAGCAGAGACGACCCTTTT GGAGCCGCCCCATGACCCAGTGTTTTCCCTTGACGGACTCTCGATTGTTC ACTCTCCCGTCCCTCCTCCTCCCCCGAGAATAATACCATTTTTATCACTG TTTTGCTCTCTCCCTTCCCCCTCCCACCCTCTCTCTCGCTCACTCTTTTT TATCTCGCGCTGCTATCTTGCTTGGCTCAGAACACGCTCACGATGTACGG CCTCGAGATGGTGATCGAGCCGTTCCGCCAGACCACTCTCCAAGTCAAGC TGACAAACTCCGGATCCTCGGGGCTGTCAAAGAAGTAAGCATCAGGGAGT GCCTCCCTCCTCAAACGTCTGCTCAAATCGAGCTCGTTTTCTTGTGAACA TCTTCATGGACGTCTTGATCTGCGTTGGGGTCGAACCTCTGCGCATGTTC CGCATTCTTTCTGAGTGTTTTGCCGCAACCAAGCATGGTTGGAAGCTTGG CAGGTTGGTTTGCGGTTCCGCATCGTTCCTTGTCCTTCCCGGCCCTTGTC AGTTTTAATCCATTTTGAAGATAAGAAAGGGTGGCGAGCGCTCCCATTTT CTCCAAAAAAAGAGGCGTCTCTCAAAAAGGTGCTCAATTAATTTTCTTGT TTGTTGCGTTCGCCGTGATTGTATGCCAAGGTACCTGTGGCGGCTGCAGC ACGTCGACAGCAGCTCGGGGGTCACCGCTCGGAGCGTGGACGACGTCTGG AGCGTTTCCGGAGGGCCGCAGGTGTTTTTTTTTTGTTGTATCGGTGCATT TTTTGCCCTTGGATTCTCACACTCGTACATTCGCTTTGACATTCTAACTT GTAATGAAATGAACCTCAAGACCGGAGGGCCCGTATTGCCGTGCGTGGGT AGGTGACTTTGGTCGTTTCTAGTTTTCGTTGATTTTTTGGTGCTTTTTTC TCCGGACGGACGCAAGTGAGCTTCACTTTTTTTTTCCTTGTGTTTGTCCC TTCGGCTCCACACACTCGTCCCTGCGTCTGTAGACTGGTATGATTATTTA GCTCCGAGGCGAGGTGCAGAGTAAGAGAAGGTTAACATAGGTGGTGGGAG GCCGCGTGCTTGTTGTTTGTGTTCGTGGGTGTGTGTGTCGGCCATTTTTT TGCTCGGTTCGTTTCCGGTTGACTGTTCCAGGATTATTTGTGTTTACGAG AGCCATGGATTATTCTGGACAGAAGCTTCGTGAGGAAGATTCCAGCAACA ACTCCAGTCGCTTTGTCGTACGCATGCCCTAAAGTGTTTGTTCTACGCTT GACGTTATCTTCCTCTTCGTCTCTTTCTTCTCTAGGCAGCCCAAACACCA TAATATACCAGCGTGCCAGTTGGTCGGCTTGCGCTCTGACAATCATGCTT AGCGCCCTCCATCTCTTCTTACTTGTTTTATGCTATCCGAGGAGGGAGAG AGAGCGGGAGGGGCCGAGGATCAGGCACGCGATTTCTCATACCCCCACTG GTGTCCACCACAACTTGCAACGGCTCTTCGCCGATGACTATCGCGGCGGC GACGAGGGCAACGGGGGTAGCACTTCACCTACTTTTGCTTCACTTACCAT TTTTTTTTTCGCCTGTCATAAAGTCATGCCTAAATGCATATCCGAATGAA AGCATGCCCTCCCTGTTTCACATTCACTGGACTCCCAGGTTGGAGTGACG TTGGAGACGCCAGGCAGACAGTTTGTTCTCTCCGTCCAAAATTTGGGCGA TGACGGCACCGTGCTGGCCGAAGGGAGGGCAGTGGCGTCCTGCAAATACG TCCGGTGAGGTGGGGGGTCATCAAAATTGCACGAAACATGGAGCGGTTTC CGCTTTGCTGGACCGGTGTCGTTTGTCAGGGGGGTTGAGGGCGGAAGGGG AGGGGGGGGGGGTGTACTCATAGTCGTGCATGCCGTAGTCGTTACACCAT TGACCTCGCATCCCTACAAAGCCGGGACGGAGCACGCCGGGTTCTCACCG GACTAGGCTCTCACACCACCAAGCGCGAAGCGCCGTGAGGTATTCGGCGA GTCGCATGAAGGGTGCGCTGCATCCTGCTAAGGGTGCTCGGCATCATCTT GTGCTTACTTCCTTGCATACGGATGACAGCTGCGTATGACTTAATTAATG TTCTGGTGCTTTCACTTCCAGAGAGAGTTGTAAGCACTGTGTAACTGCCT CGAGGGTGCTTGAACATTTTAACACAACGTGGTGCGATCACCCCCCTTGC GCGGAGTGAGGGTTCTCCACCCCGCACAACATAATCTTCTCGACCACCAT TATGGTTACCGCCAGAAAAACCAGAGGAAAAAAAAAGACGGTAACCTGGT TGCCGAGTTCACGAAGTGAGTTGGCTTGTTTTACAACGTCGTTGCCAAGC GACGTAAACCCAATCCCGATGGCAAACACCGAGGTGAGAGCCAGCGGGAG GGAGGGGGGAGGGgaGGGGAGTATGGAAGTATGCAAGTAAGCTTTTTGGC GCCAGATGGGTGGCGAGTGGTCATCGATGTGCATCACACAATATTGTCTG CTTTTCGTTTAGAGTCGAACGCTTATTTCCACGAAAGTCGCATCGCAGTC ACGTTATTTTTTCCTTGCTTTTATCTGACCCTACAAAAAAAAATTAGGCG AGAAATCCGGAAGTTGGCGGAGGGCGACAGAGAGGCGTTCTTCGACGCAA TGCAGATATTCTTCACGATCTCGACCGAGGAGGGCAAGATCAAGTACGGC AGCAAATTTCGAAATCACGAGAAAATCGTCACCGTCCACGAGGCCCAGGC AAGTACACCGAGAGCACTGGGGGGGGAAAGGAGGCGAAAAGAAGAGCGCA CGCGTCTTGTCGTTCCTCGGTTTCCCATGGCTTACCCTTTCGCATTTCCT TTCCTTTCCTTTCCTTTCATGTTCTTTTCTTTGCTTTTTCTTTGCTGTTC TTTTCTTTTCGTTGCTTTTCGTTTCTTTTCTTTTCTTTTCTTTTCCGTTC TTTTCTTTTCGTTGCTTTTCGTTTATTTGCTTTTTCTTTTCTGTTCTTTG CCCTTCTTTTCTTTTCTTTTCTGGTTTCTGTTCTGTTCTGTTCTGTTCTT TTCAGTTCTTTTCAGTTCTTTTCAGTTCTTTTCTGTTCTTTTCTGTTCTT TTCTGTTCTTTTCTGTTCTTTTCTTCTCTTTGCCATTCGTTTCTCTCCTT TTCTTTCCTTTCACCTCGTGTTTTGACATGATTCGTGAGTTTCCAGGTCT ACCCGATACGATTGACCCATTTCAAGTCTACCGCGGGCCGAGCACGATTC CAGAGCAAAGCGCAAATACCATGGTTTATCTGTAGGCAGCCGCCGACGCA ATACGGACGGACATTTTCCACCATTTTTTTACTGTCGAGGCAACCATGAC CTGGAAGATATGAATAGTCCGTGCACTACAAAGATTCCAAATTTTCCCAT GCACAAATGGAAACTTTTGAGGCACCCATGACCCGGAAAACATGCATCGT ACAAAATCGGAAGTAGAGAAATATTTCAGAGCCAAGCACGATTTACCGCG CGAAAAATGGACGGGTTATCACAGTTGATTACCATCAGTGGGGCCCGTGA GATTGCTTGGAACATTGTCGGTGCGCGCGCAGCCGAAGTTCGATTGGACT TACAGGGATATCCACGGAAAAATATGGAAGATGTTTTGATGAGAATCTGT GTTGGAACCTCTCTTTTCGGTACCTAACGATCGGACAGATTCGCGCCTCC GATTGCTGTTTTTGCCCTCCATTTGTCGAGCGTTGTTTAGCCTGGAGCTT ACCTGCACCCATAAATCTACCTGTTGGCGTGGAATGGAGTTGGTGAGGAG AACGACAGCGAGGGCTGCTGCATCAATGTGCTTTCGTGAAAGAGCGGTAA ATAAGGAGCAGACTGTGTGTTACATAAGTTCCGCTGTTCTGCTCGTGGAA AGGATTGTCGCCATCACAGGTCGCGGCAAATGGCGGCCAGGCGGATGCTC TCACATTTCCTTTTCGAGGCGCAAAACCCGTCGGACTCAAGTGTTCCGCA GGCAATTAGTTTGTTCAATTGTTTGGTTGACGGGGGAGATTTCAGAAGTT ATCAACTAGCAAAGAATAGAAGTTCGTGTAAATGAGCCGGGAAACTATCG TAGCCCGGTGGCATACTTTGCTAACAACTTTCTTGTGATTCGAAGATCGA ACGAGCTCATACATAAGTCTGCCTCATATTGCAGGTTTTGGATCTTGCGA CGGGAAACGTTGGCAAATCATTTGATCTCAATCCCCTGATGACGAACCAT GTGCATCCGTCTTTTTCGCACCGGTCTTTTTTAATTTCCTCTGTTTTTTA TCTCTCCCTGCGGGTGTATCCCAGCTGACGGAGTTCTGCTTCCACAACGG CATGCAGTTCATGACCTCCCACGCGGCCTTCGATCTAGTGTTCGAGCGCT ACCTGCAGATGATCAACCCCAGGGTTGCCCTCCCGCTGTGGGACTTCATG ATCGAGGCCGCCACCATGGGAGACGAGTGAGTCTCCCTATTTTGCCGTCG CGTCTACTTTAGGAAACCGCTGCTATACGGAGTCAATATTCCTCACCTTT TTGGGGGGCAAGTGTTTTATATTCTTGCCGCTTTCATACTTCGACGTCCC GCCTTGGGGGGGCGAGGTGTGCATTTTTCTATCGTTGTTTTCGCGCTGCG TGTTAAGCCAATAAAAACAAAAGAATTCTTTCATTTTTGGAGCGAAGTGA CTTTGTTCCTGTGCGTTTAGTTGCTTGCTCCCGTCCACAGCTTTAGCGGC AGTTCTTTGCACTGCTCGAATGATGATCGTTAAACGGGCCCAATCGTCTG GGCGTTGCTCCAAATACTGCATGTGCAACTTGCCGGGCGCAAGCGTTCTC TTGAAATTTTAGAAAGAGCTTCGTGGGACTTGCTGGCGGGCCTTTGATGC AGCAAAAATTTTCTCAAGTTTTGCAACACAGCGTTGTTTTAACCCAAGCC TTCAAAATACTACTCCCATGTGGTATTCCGAACTTGGTTTTAGCCCATTT TTTTTTCTCTTTTCTTTAAATCGCTCGGCGGCAAAAAAATAACTAAAAAA AAAATGACGTAGGTGGTATAACAGCATAATCTTCGACAAGGAATGGTTTG GCTCGGCCCTGGGATCTCCGGATAACAACTTCATGGTGTCGGAGGGCCGT TTCGGCAACATCTCCACCATCTACGACCCAGAAAAGCGGTGGGCCAGGAG CAGGGTCCACCCCAACTACAACCCCTACGGCTACGTGAGCTCCGTCAACA ACTACAATGTGAGCCATCCATTCCCTCCCGAAAAAAACAGACGCCTCCGA GAGAGATGAACCGGCTTGGATCAGCGTCGGGGTGGCAGCGACGTTCAGGA CACGCCATATCACTGTGTGGGCTATGCAACACTGGTTGCACTCCTTATTT TATTGCCGCACTGCGTTTTTTTTTTTTGAAGCTGGTAACCATGAAATGTT ACGGGTTGGTCCATGTCGCGAGGTGCGGAGTACTGCCACTCCCCACAGGC AAGGATGATGGTTGTGCCGCGCATTGCTTGGAAGGTTCCTCTTCAATGGG CAGTAAAATCAGGAAGTGCATGCTTATGGCTGTCTCTGGAACTGAAAGCA TCAAAAAGAAAAGTAGCGCATTCTTGCTGTTGCTCAAACGTGAGTTGAAC AATCTTCGAAGGGTGTAGCCCATCCTTCGCCTCGCCAAAATATGTCACCG CGTTAGAAAACCGCGAGCCTGGTCCTGCAACAATCGGTCCTAGTCCGTTC CAGCTTTGTTGAAATGCGGAAAGCTCAACGATCTTATGGCCATAGCATGC GCGACTCGAGTATCCCCTCACGTCGTCTCGGACCCAAAGCTATTGAGTTT TTCATGGCGCCACTTACTTGGTGAAATCTCCCGATACTTTCGTGGACCCT TTCCATCTCCAGCCTGACATCGACTTGAGCCCCCCCTACCCCCCTCGATC ATTTTTTCTTTGTTCGGTTGATTTCCTCTCCCGTGATTGACACATTTATC CCTCGGCTTACGAGGACCACCTTCCTTTTGCGGCCTGACGTCCAACCGAA CCCCCCGTACCCTCCTCAACCCACTTTTTTGTGTGCTTGATGCCCCCTAG ATGTCTCTACCCTTACAAGGGCCACCTTCCTTTCATGTCCTGACGTCTAA CCCATAGGCTAAACCCTAACCTACTCTTGAGTTCTTTTCATTTTTATCCT CCCTCCCTTATTGCTTGCCAACCGGCACCTAGATACACGCATCAAAGAGT AATGGTACCACCGCTAGAGTACGCCGGAGAAGTATGGGAAGGAAATAAGA AGATAGTCAAGGAGCTCGAGGCGGTGCAGACGAAAGCAGCAAAAATCATC CTAGGATGCTCCAAGCACACGAGTAGGCAGCCGTCGGGGCAGAACTGGGG ATCCAATCCCTTCGATCGGGAAGGGATGCAAGGAAACTAATATGGCAGTG CCGCATGCGCGGTATGGAAAAGGAGAGGTTGCCGAGAATAGCTTGGGAGG CGACATGAGCAAACAAGAACAGAGGTAGACAACATACGGAGTGGGTCATG GCTGTAGATGACTTATGGAAAAAATTGGGAATTGACGAAGACGATACGCC GGAAACGGAAGGTCTAGAGGGGTTCAAGGAGAAGATATCTGTTGCTTTTG CCGAGAGAAATGAACAGAATCTAACCGAAGAAACCAAGGCGAAGGAGGGT TTAGATATAAACGGGATTTTGAAAGAAGGAATAGGGTTCAAGGAGTACCT ACGGACCAATGTTGCAGGGAAAAAGCTGAAGGTCAAATTCATGACCGGGG ACATCAACCTTCGAGAGCGTAGACGAACATTTAGGAAGGTAGGCGATGAG GATGACAAGTTCAAGTGTGATTGCGGCCACGTGTGCGAAGACCGGGTTCA TGTAGTCGCGGAATGTTCGTCGTACAAGCAAGAGAGGGAAGTGTCCATGA CTGGGCTGGGAAAAGTAGAAGGAAGGTACAGGGAGATGTTTGAGGCATGA AATAGCCAGGAGAAGACAGCAGCTGTACTGGGGCATAGGAAGTGGGTTGG AAAGGCGGGAAGTGACATCGATAGTATAGTAGATAGACTGGGAAAGGCAT TTTTGGTCCACCTTTGGCAAAGTAGGAAGGAACGATTGGCCATCGGTTAT CGGTCCTGTGGGAACAATGCTCCGTCCTCTCAAGTACACGTGGTCAATGG TCTAACCGCTAAGGCATGCAAATCATGAGAGCATGCCCCCTCCCCCTTGC TTGCCAGGATCGTTGTCGACGAATTCCTTCTGCAGCCATATGCCTACCAT ACCCCCCAATTGTCCTTTTAATCATATTTGATGCCCTTCCCCCCACTGCT TTCCAGGACATGCCTCGACTGACCAGAACCACTTCCTTCTGCGGCCTGAC GTCGCACGGCACCTTCGCCACAGCGGGCGTGTTCATCGCGTGCTTCGAGG AGCACACCACGTTCGACAACTGGGAGAACTGCATGGAACAAAAGGTAGGA TTTCACTCCTTCACCCATTCCCTCCCAGATACAGTTGCTTTGATTTCATA CTATTTTTGGTGAGAAATCCCCCCCCTTTCAACAATCAGTCAATCGCCTG CGGAGTACAAGCCGGGCGAAAGGCTAGATTGGAGCAAAAGATTGGTGCGC GTGACGGTGCGTTAGCACGCGTTCGCAACCTCCGCCAAGATACGTCAGAG TGCTATGTAGCAAAGGGATGGGGGAGGCTCCTCCCAGGTGCGACGTGAGG GCTTTTGTTATACTGTTAATTAGAGTTTGATGCGAAGTATTTTCGTTCTG GCGTACACACGTTTTTGACGGAGCTGCACGGGCCTGCCATCACCAACCTT GAACGTTCGTGCGATGCTAAGTGAAAGGGTCCGGAGGCCAGAACCTATTT GTCGTCCACGAGTATGCCGTGCTTTTCGTTACCGGAGTATGCATTATTTA TGTACTTTGTATTTATTCTTTTTGTTTACCATCTTTCCATGCAGATCAGT TGAATGTCATTTATCTTTTTCGCCCAGCTTCATGATTTGATCGGAGCTGA AGTCTGTCGTCACGGAACGTAGGTATTTGTGATAGGTCATACTATTGGAC TTGAGAACCAATGCATTTTGTTGTCCAACCAGCCAGCCAGTCAGCCAGCC AGCCAGTATTTATCCATTAGAATGTCTTTTATCTTCTATCCTTATTTCTT TTGTTTGCTTTTTTTTCGTCGACGCATGTCTTTCGGGCTCATACGAGGCG TGCCTACTATCATGGACCGCATTCACTCGCGCCGCAGGCGTCTTCCCTCC CCCGACAGTGACGCTGGCTTCTTCGCCCTGATACCCTGCAGGGCGAAAAG CGTTCTCCTATGGCGAAGACAAAAGGCGTGGGAGCAGTAACAAAGCGGCC ACGCAGCGTATACATTCACGAAACCCTCGGCAGCCGTTTCCTCTGCAGAT AGAAACAAAATACGAATGACTCGAAGTGCCCGACACTGCGAACCAAGCTA AAACCAAACCAAAAGCAAAGAACACCAAAAGAACGCGAAAGGTAAAAAAA AACACACACACACGATAAAACAAAAAAATGCTGAAAACGGCTAACAGGTG CACGGCGACCTCCACGGGATCATCGGCGGCGGTTTCAACTGCAACACCGA TATGAAGCAGTTCGCGGACGACCACCCGCAGTACTCGGTGCGTCTGCTGT CCTTCTTGCTGGAGTACATCACCTTCGGCTTCTGGCCACAAAATCTTTTC ATGCCGAACGGCAACACCTGCGACACGGCGTGCGACCAGGGAGAGCCCTG CGGGTGCACGTGCAACGTCGACGCCTTCGCCATCTCGGACCAGGAGGTGC GTGCGCGTGGCTGCCACGGAGACGAAGTGGAATCCCCTGAGGGCGGGCCT GTGCGTGGGAGGAAAAAAGCAAGTTCAGTCAGGAATAGGGGGAGTTTTGG ATACGGGTTCTAGGGTTGGCGTTAGATGTCACTTAACCCCCTACCGGAGT TTATTCCTTAAGTCAAAAATTTTGGCTGCGGAGGCGGTCCCCTCTCCCCG GCGGGGAGGGGACCGATGGGCGGTGGCGCTGTCGTGCGGGTGTCGTCCGA AACAGTGGCAACACGAACGAGATATTGAATCCTGGTCACTTTGCCCGCCC CCCCTTCTGCGACCAACCCACCCGGAGCAGGCAAGGGTCGGGTGGCTGTG CCTCCTACTACTCTCCTTGCTAAACCAATCACAACGAAACGCCCGACGCT TCGGCCCCTGAAGTTGATGTTCCTCGCCTTTCTGACAGCGGTGACTTCCG CTGCAGTCCCCAACAACTTTTGGAGGCATTTTTCAGCTGCGGCGCCTTGG TTGTGTTGACGATCGTTCGGGACACGGCGTGGTGGGCTGGGGGGCGCTGG TGTGTGCAACATCGATGACTCAGAATGCTTTAACTTGGGCGGGGAGGGAG GGCAGGGAGGGGCAGGGGGGGCAGGGGAGGGCAGGGGGCGTGCTGCTCTT CACCTGTGCATTAAGAAACACCCCCATCATTGGCAACGAAACGCCCGACG CTTCGGCCCCTGAAGGTGATGTTCCTCGCCTTTCTGACAGCGGTGACTTC CGCTGCAGTCCCCAACAACTTTTGAGGCATTTTTCAGCTGCGGCGCCTTG GTTGTGTTGACGATCGTTCGGGACACGGCGTGGTGGGCTGGGGGGCGCTG GTGTGTGCAACATCGATGACTCAGAATGCTTTACCTTGAGCGGGGAGGGG AGGGCAGGGAGGGGCAGGGGGGGGCAGGGGAGGGCAGGGGGCGTGCTGCT CTTCGCCTGTGCATTAAGAAACACCCCCATCATTGGCACGTTGTTTTGCT GCCTCTATTGTTTTCATCTGCTGCGCCGCAGACGTACTTCTACTGCGAGT ATTTCATGTCCCAGGCGGCGCAGAAGTTCTCGGGCGACGAGTTCATCACC TATGACGCGGACGCGCCACACCCCTACGGCTTCATGAAGGTAGAGTGACC GGCCCATGTCTTGCGCGTTTTTTGTGGTTTTTCCTTTTGCGGAGGTGGGA ATCCTGGTGTTGGTGCTGGTGATGCTGATGCTTGTTTTCGCCGTTGCCTG AGCCGTCATCACGCTACCATGTTCTGTCGTGCAGGAGCAAATTTGCTTGA TTTTTTTTTTTCTACATGGAATCATCGCTTGCAGGGGCGTTCCTAGCCAG AGCTCTGATCCGTGGTCACTGGGACAGGTTCCTCTCCCAGAGGATCGCAC CCACCCATCTGTGGCGGATGCCTTTGATTCTACTTGGCGTTCCTCATAAA TGATCGCGTCGACCGATCCAACTCAACAATGCTTTAAACAACATGGCGAG CGAAATGTTCTCCAAAAAATCGATACCCGCGGCGTAGTCACCCCCACTTG TTGCTGCTTGCTTGTTAGACTCCCTCTTGAGAGTCTATTGTGTATTTCCG ATCATTTTTTCGGCTGTTGAGTATAGTACGTTGGCTCCTACTTGGTCAGC GCACGTATTCAAATCTCACGGGGGACCTTGTAGCTGACATCCAAAATATT TTTTCATGGCTCAATGCACTGTTGTTCCCCCTCCATCCCCCTCCGCGGAG GTTTTCTTGTGCCCGTAAACCTTAAGAGTCGTTTGGGTGGGGCGGACGCC AGCACGGGCACTTGGGGTTTCGGAGATGATTTTGCTCCGATCGCAACGGT ACCGGAGAGAACAGAAGTATGAGGGTCCTAAAACACGAACTACGGTGCCC CCATCGCTCCTGCACCTTCTGCCCCCGCACGTTGCCGTGTGACTCCGATT GGTTCGAGGCAGGGCGACGAACGAATGAGCGATGAGGATGCTCTCTATCT GATGCGATACCTCGTCAAGATAGGTGGGTGGGAGAAAGATGACCGGGCCG AGAGATACCAACAACACTACGGCCGGCTTTGCGACGCTACGCGCTCGATT TTTTCTCGGCATATCTCTTTCTCTTCTTCTACGCCTCTCTCTCTGGCTTG AAAGCAGTGCCTGCCGCAGCATCTTACTCCAATGCTGCTCACGGGCATCC GGGTCGCACCCACACGACCAATGACGATTTCAATATGAAAACATAAGTAA TGGCAAGAATGAAAAAAATAGTTAACCATGATTATAATACACACATTAGA AGCAGTACTCCGAGGTAAAAAATGTCGACTACGAGTTGGATAGCTCATTT TTTTATACCAAGCTGCTCCGTATCTCCGTACAGTGCCGGCCAGTACAAAA GAAGCACCTATTTTGAGTAAGGCTTATTCTTGTTTTGGTTCCGCCGCCTG GCGATCATATACTACGAGCACGTTGTAGGACGCACTGTGGCGCCGTCAGC TGATCCCATTATTATTTACGGGGTTTTGATAAGTTTTTCAATAATCGGAG CCTCGGTTTGCTACGAACATAATTGTTGCGAGGGGGCCCGCAGTTAATGT GTTCGTGTCACAAGCCGTTCAGGTTGCGAGCCGGGAGCCGTGGGCGCGAT GTCGACTGGGACCTCAGCTTTGGATCCGATCTTCTGGGTGCTTCACGGAT TCTTCGAAAAGGTGACCTACTCCCCGAACACGAATTTGCACCGGCACCTG ACCCGCCGCCAAGGGGGGGGATTGGAATACTTCAGGCCTTCGCAAAATGC GTTTTTCTCTCGGCCGTCGGAGGTTGGTCGCCACGACCATGTTGGGTAAA GTCAGCAGCAAGCTCCCCCCTCACGCGACGAGCGCCCTCGTTCGCCTTCT CACGCAACTCTGCACCACCAACAACGGCAAAGAACACCGTTTTCGGCAGG GTAATTCTGTTTTCACGACCAAGCGAGTGATCTAGGTGCTCCATGACAAA GTCTTGCGGAGATCTGACGTGCATAAATGAACTCGTGTTGTGTGTTACAA CGGTCAGGCCGGAGCTCGAGCACTCGCAAGAGGATGTTTTTTTATACCCC GGAGTATATATGTGTAGGGGAGATTTCATTGAAGTTCAAGGGGTGCGCTC GATGGTGCACAACAGCGGGGACGCTCGTAAAGGATGCTGGCACCACAATC CCCTCTTTTCTTTGTCGAGTCGGCCGTACCGATGGAAGGAGCCTGTCTCA CATTCACTTTCGTCCTGCCGCAGGCGACATGTTTGCCGAGTCACTGAAAG TATCGAGCGACCTTATGAGCATCACACTTCCGCGTATTATGTAGATCCAC CAGCCACCAACGAAACACGACTGACGCCTCCCCGCGTGGTTTCGATACTC TGTTTGGTACGTGCCCCTCGTGTTCTCATGATTTACAGGCGCTGCATATC CTGTGGCTTTCTCCAAAGTATAGGGAAGCGTACGACATGGAGTGGGTGGA TGGCACCTGCAACGGCAGCGGTTACAACGACGAGCTTCCCTTTACCGGTA GGTCATTTGCCGTTGCGCCTCTGCGATTCTCGGCGCAGGAAAATCATTGT CCAGTTTTTGCGAGCCGAATATAACGCTGTTTGCAGGGAGGGCCACTACA GGTTGTGGAAGGTTAATATAAGCTGGGTTGATGGCCCTTTCGTTCTCCTG GGATTTCTGTCGTGTCGATCTTTGGCGATCTCTCCCCCATCCCCCGGGTC AACTCAGTATATCCTGGCATGTCGTCGAACGATCCAATTTTCCGTTGTCG CGAGCTGAAAAATGGGATTTTGCATGGAGGCTAGCTCACGCCTTGTTTAC CCGGTTTACTGGGCGTCGGGTAGCTGATGTCATCGGACGCCGAAAGGTTA CACCACCAGCAATACTCCGTAGTTTTGTTTTCATCGACTGGTCACCCAGG TAGTTTTTCTTTTCGGCAAGGACATTTTTGGACCACCGTACTATCAAGTT TGGACACTGGAGCTTTCGATTTGCAGCACTCACATCGACGGAGAGAGACT TGCTCTTCTCTCGGCACGAGCACGTACCCCGCAGGGCTTGCGTCCATTGC ACTCCCAGCAAGCCTCTGATAGTTGCGCTTCGCTAGCCGAGCGCGCACTA AGAACTCCTTTCGACGCGCGCCAATGCAGCGAGCCACTCGCAGCCTGGAG GCAAAGGCTGTACACGATTACTTGATCTCACACCGGCGAAGGACAGTTTT CACTTATCCCGCCATTGTTCTCGCCTAAAAATGTGCCGAAACCCCTTAAG ATATGTGAAGTTCTGCTTACGATTTTTTACGTGATCGTTTACCTGCCGAC AATTTGAAGAACCACACGCAGTACAGAGAGCAATTATAAAAAGATTTCCA CCCTCCTTGCCATCTTGTGACATATCTCACCACTTGTTTGGTTCGGAATG GTATTGGGAGTAGTGATGAACACCCCCAAGCGCCCGGAAAAGACATTGCC GTCGGCGGCGCCACAACTCTTGGCTGACTCTTTCGTAGCCGATGAAGCTT GGTGCCCTGTTTTTCTGCGTGGAGGAAAACGGAAGTGAAGCTTTGCCGCT CCCAACTCAATCCCCACGCGACTCCGACAATCTCTGGCATCTGAAGAAAA CCATTGCTACCCCCGCGCACACCCGCGGGACGAGTGCTGTGAAACTAGCT ACATCCGTAGGGTCAACGCCAAGCGAGATCGCTGCATTCCTGCTGATGTT CCGACGTGCGTTGCGCATGGGTGATCCTGTTCTTGCGAAACCGCTCCTTG TGCGGATTGCATGCGTGCTGACACCCTGACGTGTGTTTCTTGCGTCGTTG GCGTTTATGACAGAGAGCATCCTCGGCCTTGGATCCGGGAAGACGTTCCT CACGAACAAGCGCATCCTCGAGCTCCTGTACCCGACCAACGTGAATATGC CGTACATCTACGAGGGGTTCCACAACTGGGGTAACTTCGACACCGACCTC GTCAAGAATTGACGATACGATACCCCGTGGTCCTAGACAGCCAGCCGTGC ATATAAAAACGAAAAAGAAAAAAAACTTGATACGAATGAGATGCGAGACT CGCGTTTCTTTCTTTTTGTTCAACACTTCTCAATACTGCGAGAGCACAGG GGGGTCGGGCATTTCACATCGCGCGCACAGAGGTGGCTACGGTTAAAGTT AATTTATACAGAAGGCACCTATGCAAGAGAGTCAATTAGTCTCGCCACGA ATCCCAAAGCCAGCATAAACTTGTCAGTTCGATTTAAGAGACAGGCTTGT TGGATTCTCTTTACTTTGTAGCCACTACGGGAAAGAGTTGAGCGGTACGG TTCCACGTCCATATGTCAGGACACGCCACGAAGTTTGTTCTGCGGAGGAT GGGCAGGGGGGAGGGTGTGTGGTAAAGTCTGCCCAATGTTGGAAAACGTG GTGCTGGAGTTTGTCACCTGGAGCAACCACTATGCCCGAATTGACTTGAG TCATCGGGTTAGGCTTCTTGAGTCAATCGTGCTCGGCTCCGTGTTTCAGT CGTGTTCGGCTCCTTAAAGCCAAAGTCATTCGTGGTCAACACCTTGTGCT TATTTACTTGTTGAGCAAGCGCTGACGTGGTGGGTAAATATGGCATGGTA TTCCGCATTGAAGCAGAATGTTCGGACACCACAGGCAAACGGCAGCGACT TGTTGTTGGTTGCAGATCCATTCCGTATCGCGACAGACCGAGTTGCGAAG CAAAGGTGTGTGTGTTCGGGGCACGCGTGGAGGATATTTCTTGGATATAT CCGATATTGACGTGGGCTTGGGGGGCCCGCGGACTGAGGTGCTCCACCGA GAGCGGTGGCGGGCAAGGTGAACGGCGAATCGGGTGAAACGAAGCCTGGT CCCTTTGCGTTGAATGTTGAGCCCCCACGAGAGAAATACCGATTAATGAG AGTCAAAAACTGGCTTGTTGAACCCCCTCTTGAGCCGTAG
back to top

Coding sequence (CDS) from alignment at P-fluviatile_contig7:1950739..1966228+

>mRNA_P-fluviatile_contig7.13580.1 ID=mRNA_P-fluviatile_contig7.13580.1|Name=mRNA_P-fluviatile_contig7.13580.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3402bp|location=Sequence derived from alignment at P-fluviatile_contig7:1950739..1966228+ (Porterinema fluviatile SAG_2381)
ATGTACGGCCTCGAGATGGTGATCGAGCCGTTCCGCCAGACCACTCTCCA
AGTCAAGCTGACAAACTCCGGATCCTCGGGGCTGTCAAAGAAATGTACGG
CCTCGAGATGGTGATCGAGCCGTTCCGCCAGACCACTCTCCAAGTCAAGC
TGACAAACTCCGGATCCTCGGGGCTGTCAAAGAAGTACCTGTGGCGGCTG
CAGCACGTCGACAGCAGCTCGGGGGTCACCGCTCGGAGCGTGGACGACGT
CTGGAGCGTTTCCGGAGGGCCGCAGGTACCTGTGGCGGCTGCAGCACGTC
GACAGCAGCTCGGGGGTCACCGCTCGGAGCGTGGACGACGTCTGGAGCGT
TTCCGGAGGGCCGCAGGTTGGAGTGACGTTGGAGACGCCAGGCAGACAGT
TTGTTCTCTCCGTCCAAAATTTGGGCGATGACGGCACCGTGCTGGCCGAA
GGGAGGGCAGTGGCGTCCTGCAAATACGTCCGGTTGGAGTGACGTTGGAG
ACGCCAGGCAGACAGTTTGTTCTCTCCGTCCAAAATTTGGGCGATGACGG
CACCGTGCTGGCCGAAGGGAGGGCAGTGGCGTCCTGCAAATACGTCCGGC
GAGAAATCCGGAAGTTGGCGGAGGGCGACAGAGAGGCGTTCTTCGACGCA
ATGCAGATATTCTTCACGATCTCGACCGAGGAGGGCAAGATCAAGTACGG
CAGCAAATTTCGAAATCACGAGAAAATCGTCACCGTCCACGAGGCCCAGG
CGAGAAATCCGGAAGTTGGCGGAGGGCGACAGAGAGGCGTTCTTCGACGC
AATGCAGATATTCTTCACGATCTCGACCGAGGAGGGCAAGATCAAGTACG
GCAGCAAATTTCGAAATCACGAGAAAATCGTCACCGTCCACGAGGCCCAG
CTGACGGAGTTCTGCTTCCACAACGGCATGCAGTTCATGACCTCCCACGC
GGCCTTCGATCTAGTGTTCGAGCGCTACCTGCAGATGATCAACCCCAGGG
TTGCCCTCCCGCTGTGGGACTTCATGATCGAGGCCGCCACCATGGGAGAC
GACTGACGGAGTTCTGCTTCCACAACGGCATGCAGTTCATGACCTCCCAC
GCGGCCTTCGATCTAGTGTTCGAGCGCTACCTGCAGATGATCAACCCCAG
GGTTGCCCTCCCGCTGTGGGACTTCATGATCGAGGCCGCCACCATGGGAG
ACGAGTGGTATAACAGCATAATCTTCGACAAGGAATGGTTTGGCTCGGCC
CTGGGATCTCCGGATAACAACTTCATGGTGTCGGAGGGCCGTTTCGGCAA
CATCTCCACCATCTACGACCCAGAAAAGCGGTGGGCCAGGAGCAGGGTCC
ACCCCAACTACAACCCCTACGGCTACGTGAGCTCCGTCAACAACTACAAT
GTGGTATAACAGCATAATCTTCGACAAGGAATGGTTTGGCTCGGCCCTGG
GATCTCCGGATAACAACTTCATGGTGTCGGAGGGCCGTTTCGGCAACATC
TCCACCATCTACGACCCAGAAAAGCGGTGGGCCAGGAGCAGGGTCCACCC
CAACTACAACCCCTACGGCTACGTGAGCTCCGTCAACAACTACAATGACA
TGCCTCGACTGACCAGAACCACTTCCTTCTGCGGCCTGACGTCGCACGGC
ACCTTCGCCACAGCGGGCGTGTTCATCGCGTGCTTCGAGGAGCACACCAC
GTTCGACAACTGGGAGAACTGCATGGAACAAAAGGACATGCCTCGACTGA
CCAGAACCACTTCCTTCTGCGGCCTGACGTCGCACGGCACCTTCGCCACA
GCGGGCGTGTTCATCGCGTGCTTCGAGGAGCACACCACGTTCGACAACTG
GGAGAACTGCATGGAACAAAAGGTGCACGGCGACCTCCACGGGATCATCG
GCGGCGGTTTCAACTGCAACACCGATATGAAGCAGTTCGCGGACGACCAC
CCGCAGTACTCGGTGCGTCTGCTGTCCTTCTTGCTGGAGTACATCACCTT
CGGCTTCTGGCCACAAAATCTTTTCATGCCGAACGGCAACACCTGCGACA
CGGCGTGCGACCAGGGAGAGCCCTGCGGGTGCACGTGCAACGTCGACGCC
TTCGCCATCTCGGACCAGGAGGTGCACGGCGACCTCCACGGGATCATCGG
CGGCGGTTTCAACTGCAACACCGATATGAAGCAGTTCGCGGACGACCACC
CGCAGTACTCGGTGCGTCTGCTGTCCTTCTTGCTGGAGTACATCACCTTC
GGCTTCTGGCCACAAAATCTTTTCATGCCGAACGGCAACACCTGCGACAC
GGCGTGCGACCAGGGAGAGCCCTGCGGGTGCACGTGCAACGTCGACGCCT
TCGCCATCTCGGACCAGGAGACGTACTTCTACTGCGAGTATTTCATGTCC
CAGGCGGCGCAGAAGTTCTCGGGCGACGAGTTCATCACCTATGACGCGGA
CGCGCCACACCCCTACGGCTTCATGAAGACGTACTTCTACTGCGAGTATT
TCATGTCCCAGGCGGCGCAGAAGTTCTCGGGCGACGAGTTCATCACCTAT
GACGCGGACGCGCCACACCCCTACGGCTTCATGAAGGGCGACGAACGAAT
GAGCGATGAGGATGCTCTCTATCTGATGCGATACCTCGTCAAGATAGGGC
GACGAACGAATGAGCGATGAGGATGCTCTCTATCTGATGCGATACCTCGT
CAAGATAGGTTGCGAGCCGGGAGCCGTGGGCGCGATGTCGACTGGGACCT
CAGCTTTGGATCCGATCTTCTGGGTGCTTCACGGATTCTTCGAAAAGGTT
GCGAGCCGGGAGCCGTGGGCGCGATGTCGACTGGGACCTCAGCTTTGGAT
CCGATCTTCTGGGTGCTTCACGGATTCTTCGAAAAGGCGCTGCATATCCT
GTGGCTTTCTCCAAAGTATAGGGAAGCGTACGACATGGAGTGGGTGGATG
GCACCTGCAACGGCAGCGGTTACAACGACGAGCTTCCCTTTACCGGCGCT
GCATATCCTGTGGCTTTCTCCAAAGTATAGGGAAGCGTACGACATGGAGT
GGGTGGATGGCACCTGCAACGGCAGCGGTTACAACGACGAGCTTCCCTTT
ACCGAGAGCATCCTCGGCCTTGGATCCGGGAAGACGTTCCTCACGAACAA
GCGCATCCTCGAGCTCCTGTACCCGACCAACGTGAATATGCCGTACATCT
ACGAGGGGTTCCACAACTGGGGTAACTTCGACACCGACCTCGTCAAGAAT
TGAAGAGCATCCTCGGCCTTGGATCCGGGAAGACGTTCCTCACGAACAAG
CGCATCCTCGAGCTCCTGTACCCGACCAACGTGAATATGCCGTACATCTA
CGAGGGGTTCCACAACTGGGGTAACTTCGACACCGACCTCGTCAAGAATT
GA
back to top