Homology
BLAST of mRNA_P-fluviatile_contig7.13502.1 vs. uniprot
Match:
A0A6H5K7B3_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K7B3_9PHAE)
HSP 1 Score: 375 bits (963), Expect = 4.590e-116
Identity = 197/409 (48.17%), Postives = 260/409 (63.57%), Query Frame = 3
Query: 900 FPVYP---DCLYAIPTEEEALVRVLDASIPGNVLWVESIEFGRTGNRVLGLMHSLQVGYCCKSKLVSLPPKSDVLAPGIFNEGTPGPRWFDFSTAPDVEGFDASACPAKITWSHGDALHLEGVGTEGHPYYTPGLFDCARTVPRLIGCEAAHFFPAN--IDVC---------HGGGANSTRQDEVDWSEGSGRESVLEQGERGQSGGDEA----------------GEESQLPHLVIHVRSGDIFVDPPPLKGQPPLQFYLLVLRQQEWGRVDIVTNGPSNQTQKLNPVFPALQKMFAEGELPGNVHFYANRSMGKDLQAMMCADALVTGRSTLERLLSYHAVATQIFSPRLCPGFLEILSHDRPDTKVYGM-SWREQDYTTFRYWNNTPEQRAEMIDFPVDSLERCIS 2033
PV P C YAIP+EEEA R + S PGNV+ V + R GNR + SL +GYCCKS+L+SLPPK + LAPG FNEG PGPR FDFS+APDVEGFD S+CP +ITW +A HL+G+ EGHPYYTP LF+C + +PR+ GCEAA+FFP + +D+C H NS +D + L+ GERGQ G EA E +LV+HVRSGDIFV P P GQPPLQ+Y+ ++ QEW RVD+VT+G ++T +NPV PAL+ AEGEL GN+HF+ NR++G+DL+ M+CAD V RSTL ++S+H+ A +++ P C L+ LS +RP T+V+GM SW +Q YT ++ WNNT +Q EM+ F V E+C +
Sbjct: 138 LPVVPFSSSCPYAIPSEEEARERSGNTSAPGNVVVVTDFNYCRLGNRFTSMSRSLSLGYCCKSRLLSLPPKDEQLAPGRFNEGIPGPRNFDFSSAPDVEGFDYSSCPPEITWGGTNAFHLQGLRDEGHPYYTPELFECIKELPRIAGCEAAYFFPKDMAVDMCPLDETAERDHN---NSNVRDVSEKPRDDAPGVRLDWGERGQ--GREATXXXXXXXXXXXXXXXXXEGSAGNLVVHVRSGDIFVRPHPDYGQPPLQYYVRAIQDQEWDRVDVVTDGIVDETHAINPVVPALEAKVAEGELAGNIHFHKNRTIGEDLRYMICADGFVAARSTLRHVVSHHSSAKRMYFPMACNEKLKTLSTERPGTQVFGMASWNDQ-YTVYQRWNNTADQLTEMMTFDVGGFEQCTA 540
BLAST of mRNA_P-fluviatile_contig7.13502.1 vs. uniprot
Match:
D7G2M2_ECTSI (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G2M2_ECTSI)
HSP 1 Score: 365 bits (938), Expect = 9.710e-113
Identity = 194/391 (49.62%), Postives = 243/391 (62.15%), Query Frame = 3
Query: 900 FPVYPDCLYAIPTEEEALVRVLDASIPGNVLWVESIEFGRTGNRVLGLMHSLQVGYCCKSKLVSLPPKSDVLAPGIFNEGTPGPRWFDFSTAPDVEGFDASACPAKITWSHGDALHLEGVGTEGHPYYTPGLFDCARTVPRLIGCEAAHFFPANIDVCHGGGANSTRQDEVDWSEGSGRESVLEQGERGQSGGDEAGEESQLPHLVIHVRSGDIFVDPP-PLKGQPPLQFYLLVLRQQEWGRVDIVTNGPSNQTQKLNPVFPALQKMFAEGELPGNVHFYANRSMGKDLQAMMCADA-LVTGRSTLERLLSYHAVATQIFSPRLCPGFLEILSHDRPDT------------KVYGMSWREQD-YTTFRYWNNTPEQRAEMIDFPVDSLERC 2027
F PDC Y + T E L R+ D +IPGNVL + FGR GNR L +L++GYCCKSKLVSLP K D LAPGIF EGTPGPRW+DF+ APDVEGFDAS+CPA ITW +A HL G+ HPYY+P L C TVPRL GCEAA+FFP +DVC + D V G+G G + G E E LVIHVRSGDIFVDP P GQPPLQ+Y+ ++ Q+W RVDIVTNG + + +NPV PAL+ MFAEGEL GN++F+ +R+M +D +MMC LVT RS+L LL++H+ A++++ PR C G LE + PD KVYG+ + Y+ WNNT +Q EM+ F V S E+C
Sbjct: 118 FAFNPDCPYILRTPGERL-RMRDPAIPGNVLTINDFRFGRLGNRFWALGVNLKLGYCCKSKLVSLPAKDDTLAPGIFGEGTPGPRWYDFTNAPDVEGFDASSCPADITWGGREAFHLLGLDNPSHPYYSPNLSTCVETVPRLTGCEAAYFFPMGVDVCLSD--RTATGDVVHEQRGNGASGRSGPGVKKNLVGSEEEEGRPANTLVIHVRSGDIFVDPAAPGYGQPPLQYYVRAIKHQKWDRVDIVTNGRTKKMNVMNPVIPALEVMFAEGELTGNIYFHKDRTMEEDFLSMMCVGGGLVTARSSLSLLLAHHSSASRLYFPRPCAGSLEFYTRGSPDASLNDLDDELQAVKVYGVKPPGMERYSLDVSWNNTADQVNEMLTFNVSSFEQC 505
BLAST of mRNA_P-fluviatile_contig7.13502.1 vs. uniprot
Match:
D7G610_ECTSI (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G610_ECTSI)
HSP 1 Score: 348 bits (894), Expect = 8.140e-108
Identity = 182/375 (48.53%), Postives = 239/375 (63.73%), Query Frame = 3
Query: 915 DCLYAIPTEEEALVRVLDASIPGNVLWVESIEFGRTGNRVLGLMHSLQVGYCCKSKLVSLPPKSDVLAPGIFNEGTPGPRWFDFSTAPDVEGFDASACPAKITWSHGDALHLEGVGTEGHPYYTPGLFDCARTVPRLIGCEAAHFFPANIDVCHGGGANSTRQDEVDWSEGSGRESVLEQGERGQSGGDEAGEESQLPHLVIHVRSGDIFVDPP-PLKGQPPLQFYLLVLRQQEWGRVDIVTNGPSNQTQKLNPVFPALQKMFAEGELPGNVHFYANRSMGKDLQAMMCADALVTGRSTLERLLSYHAVATQIFSPRLCPGFLEILSHDRPDTKVYGMSW-REQDYTTFRYWNNTPEQRAEMIDFPVDS-LERCI 2030
DC YAIP + A + D++I GNV+ V ++FGRTGNR + + +L +GYCCK+K V LPPK DVLAPGIFNEGTPGPRWFDFS+APDV+G D CP I W + A+ + G+ Y P + DC PRL+GCEAA++FP +I VC R+ ++ L G+R GG AG +LV+HVRSGDIF D P KGQPPLQFYLL+++ Q W R+D+VTNG + +NPV PAL M A G LP NV+F+ RSMG+DLQ+M+CAD+L +S+L LSYH+ A +++ P C L L+ RP TKVYG+ R Y+ +R+W NTPEQRAEM+ + V + +RCI
Sbjct: 58 DCTYAIPNAKVARKQRHDSTIEGNVVKVTHLQFGRTGNRFMAVYRNLALGYCCKAKQVWLPPKDDVLAPGIFNEGTPGPRWFDFSSAPDVDGVDLGRCPIDIIWENRGAMQMAGLDNPERNKYLPHIRDCMAKAPRLLGCEAAYYFPQDIAVC-------PRK----------KKPFLALGDRNPPGG--AG------NLVLHVRSGDIFFDRVVPYKGQPPLQFYLLLMQDQPWDRIDVVTNGQN--WDNVNPVVPALMAMRATGALPDNVYFHTERSMGEDLQSMLCADSLGLAKSSLVNFLSYHSTANRVYYPWRCNHDLRELARLRPKTKVYGLQLDRSGSYSVYRHWENTPEQRAEMLGYNVTTTFQRCI 405
BLAST of mRNA_P-fluviatile_contig7.13502.1 vs. uniprot
Match:
D7G1L4_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G1L4_ECTSI)
HSP 1 Score: 342 bits (878), Expect = 1.080e-103
Identity = 193/439 (43.96%), Postives = 259/439 (59.00%), Query Frame = 3
Query: 804 GDEVQLMLSPEVASRGRREHDLIQSTAAAGNPFPVYP---DCLYAIPTEEEALVRVL------DASIPGNVLWVESIEFGRTGNRVLGLMHSLQVGYCCKSKLVSLPPKSDVLAPGIFNEGTPGPRWFDFSTAPDVEGFDASACPAKITWSHGDALHLEGVGTEGHPYYTPGLFDCARTVPRLIGCEAAHFFPANIDV--------CHGGGAN------STRQD----EVDWSE-GSGRESVLEQGERGQSGGDEAGEESQLPHLVIHVRSGDIFVDPP-PLKGQPPLQFYLLVLRQQEWGRVDIVTNGPSNQTQKLNPVFPALQKMFAEGELPGNVHFYANRSMGKDLQAMMCADALVTGRSTLERLLSYHAVATQIFSPRLCPGFLEILSHDRPDTKVYGMSWREQDYTTFRYWNNTPEQRAEMIDFPVDSLERCIS 2033
GD+ LM E+ + G R D P+ P C YAI EEE R + S PGNV+ V + R GNR L + SL +GYCCKS+LVSLPPK D LAPG FN+GTPGPR FDFS+APDVEGFD+S+CP +I W A HLEG+ EGHPYYTPGLF C + +P +IGCEAA+FFP ++ V GG N + D ++DW E G GRE+ E+ +LV+HVRSGDIFV P P GQ +Y+ ++ Q+W RVD+VTNG ++ +NP+ PAL+ A+G+LPGN+HF+ NR+M +DL +M+CAD V RSTL R++S+ + A +++ P C L+ L + P T+V+GM+ + +YT FR WNNT +Q AEM+ V E+C +
Sbjct: 111 GDDRDLMELDEI-NLGTRGED-----RGGKRRLPIAPFSSSCPYAILAEEEGHERSDRGGDGGNTSAPGNVVVVTDFNYCRLGNRFLSMGRSLSLGYCCKSRLVSLPPKDDQLAPGRFNDGTPGPRNFDFSSAPDVEGFDSSSCPPEIKWGGTQAFHLEGLRDEGHPYYTPGLFTCIKELPWIIGCEAAYFFPTDMAVPMCPLDETAEGGNKNVRDISEKPKDDAPGIQLDWEESGHGREAT----EQXXXXXXXXXXXGSAGNLVMHVRSGDIFVSPAHPGYGQ----YYVQAIQDQQWDRVDVVTNGIEDKNHAINPIVPALEAKVAKGQLPGNIHFHKNRTMEEDLLSMICADGFVAARSTLGRVVSHLSSAKRMYFPTSCNEELKNLGTEGPGTQVFGMASWDHEYTVFRRWNNTADQIAEMMTADVGGFEQCTA 535
BLAST of mRNA_P-fluviatile_contig7.13502.1 vs. uniprot
Match:
A0A6H5K2F3_9PHAE (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5K2F3_9PHAE)
HSP 1 Score: 308 bits (788), Expect = 8.800e-91
Identity = 170/451 (37.69%), Postives = 229/451 (50.78%), Query Frame = 3
Query: 840 ASRGRREHDLIQSTAAAGNPFPVYPDCLYAIPTEEEALVRVLDASIPGNVLWVESIEFGRTGNRVLGLMHSLQVGYCCKSKLVSLPPKSDVLAPGIFNEGTPGPRWFDFSTAPDVEGFDASACPAKITWSHGDALHLEGVGTEGHPYYTPGLFDCARTVPRLIGCEAAHFFPANIDVCHGGGANSTRQDEVDWSEGSGRESVLEQGERGQSGGDEAGEESQLP--------------------------------------------------------------HLVIHVRSGDIFVDPP-PLKGQPPLQFYLLVLRQQEWGRVDIVTNGPSNQTQKLNPVFPALQKMFAEGELPGNVHFYANRSMGKDLQAMMCADALVTGRSTLERLLSYHAVATQIFSPRLCPGFLEILSHDRPDTKVYGMSWREQDYTTFRYWNNTPEQRAEMIDF 2003
+S +++ S A+A + C Y I T EEA+ R+ D S+PGNV+ VE + F RTGN +L +GYCCKSK+V LPPK DVLAPG+FN+GTPGPRWFDFS+APDV+GFD+SAC A ITW+ A H+ + + H ++TPGL +C PRL+ CEAA++FP ++D+CH A +LV+HVRSGDIF D GQPPLQFYL V++ +W VDIVTN S + LNPV PALQ M G+LP +VH + NR+M +DL +M CAD L RSTL L +H+ A +++ P C + L+ RP+ + YG+ W + Y ++ W NTPEQR EM+ +
Sbjct: 68 SSSAPEHREVVPSAASAAPGVSLEGGCPYVIDTAEEAISRIKDKSLPGNVVKVEHLTFCRTGNHFSSFFRNLALGYCCKSKVVWLPPKDDVLAPGVFNQGTPGPRWFDFSSAPDVDGFDSSACSADITWAGQRAFHMHQLDSPEHEFHTPGLKECIARAPRLLACEAAYYFPKDVDLCHATAAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXDGNLVLHVRSGDIFSDKVLAYYGQPPLQFYLQVIQHADWDSVDIVTN--SQEHDGLNPVIPALQAMVDAGDLPDSVHVHTNRTMEEDLLSMFCADGLALARSTLVSLTGFHSKAKRVYGPHQCNAQFKQLALIRPEVQAYGIDWAGE-YGVYKSWENTPEQREEMLAY 515
BLAST of mRNA_P-fluviatile_contig7.13502.1 vs. uniprot
Match:
D7FRV9_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FRV9_ECTSI)
HSP 1 Score: 145 bits (367), Expect = 1.340e-33
Identity = 114/380 (30.00%), Postives = 170/380 (44.74%), Query Frame = 3
Query: 984 NVLWVESIEFGRTGNRVLGLMHSLQVGYCCKSKLVSLPPKSDVLAPGIFNEG--TPGPRWFDFS-TAPDVEGFDA-----SACPAKITWSHGDALHLEGVGTEGHPYYTPGLFDCARTVPRLIGCEAAHFFPANIDVCHGGGANSTRQDEVDWSEGSGRESVLEQGERGQSGGDEAGEESQLPHLVIHVRSGDIFVDPPPLK-----GQPPLQFYLLVLRQQEWGRVDIVTNGPSNQTQKLNPVFPALQKMFAEGELPGNVHFYANRSMGKDLQAMMCADALVTGRSTLERLLSYHAVATQIFSPRLCP--GFLE--------------ILSHDRPDTKVYGMSW--REQDYTTFRYWNNTPEQRAEMIDFP-VDSLERC 2027
N + + S GR+GN L + L +G+CC+S+L++LP + D PG G G RWFDFS P GF+ C ++ +A E + + L C V L GCE A + +D+ G E G+ LV+H+RSGDIF + GQPPLQ+YL VL +++W V +T + + +NP F L+ M G L NV NRS+ +D++ M+CADAL T RS++ L H+ AT F P C GF +L ++PD +VYG +W Y+ ++ W++TPEQ EM F ++ +++C
Sbjct: 110 NTITLLSFGSGRSGNHFLMISSYLAMGFCCRSRLLTLP-EVDTAMPGDDEGGGFKAGERWFDFSRVTPPWPGFEQLGDNPEVCRPQMEDGADNAFGYEHIHSR--------LLRCMNRV-YLRGCEKA-YLGKMVDL------------------------------EGFCPKQEPGKRKGAGSLVVHIRSGDIFNPNEEGRRRTEFGQPPLQYYLHVLGEKDWDNVTFLTAAWNQKA--INPTFSILEVMAKAGTLGDNVRLLKNRSLLEDVREMLCADALATSRSSMSFLTFAHSRATTFFVPTPCGNGGFRRMRRPPVKATFDNTTLLLLEKPDAEVYGTAWPGNSPKYSVYQAWHDTPEQLLEMATFGGIEGVQKC 446
BLAST of mRNA_P-fluviatile_contig7.13502.1 vs. uniprot
Match:
UPI001FBB8470 (coagulation factor 5 8 type domain-containing protein n=1 Tax=Methylobacterium sp. E-046 TaxID=2836576 RepID=UPI001FBB8470)
HSP 1 Score: 68.2 bits (165), Expect = 3.960e-8
Identity = 59/174 (33.91%), Postives = 86/174 (49.43%), Query Frame = 3
Query: 1512 LVIHVRSGDIFVD-PPPLKGQPPLQFYLLVLRQQ-EWGRVDIVTNGPSNQTQKLNPVFPALQKMFAEGELPGNVHFYANRSMGKDLQAMMCADALVTGRSTLER---LLSYHAVATQIFSPRLCPGFLEILSHDRPDTKVYGMSWREQDYTTFRYWNNTPEQRAEMIDFPVDSL 2018
L+IH+RSGDIF P QPPL FY +V+R+ GR+ + N +LNPV PAL+ AE +P + + ++ D+ A+M LV G T LS F+ F I + DR +V ++ YT W+N+PE+RA M+D+P +SL
Sbjct: 287 LLIHIRSGDIFSTWVAPTYPQPPLAFYQMVIRRLLSEGRITRIKLVFEN---RLNPVIPALEAWIAERGIPLSTQ---SGTLIDDVVALMNGRYLVFGLGTFGPGVCQLSDRVEQVFYFASGWPQHFKSIPTIDRV-VEVLDVAGA---YTKVGEWDNSPERRALMLDYPAESL 450
BLAST of mRNA_P-fluviatile_contig7.13502.1 vs. uniprot
Match:
A0A089NML5_9HYPH (Protein of unassigned function n=5 Tax=Methylobacterium TaxID=407 RepID=A0A089NML5_9HYPH)
HSP 1 Score: 67.8 bits (164), Expect = 5.130e-8
Identity = 57/174 (32.76%), Postives = 86/174 (49.43%), Query Frame = 3
Query: 1512 LVIHVRSGDIFVD-PPPLKGQPPLQFYLLVLRQ-QEWGRVDIVTNGPSNQTQKLNPVFPALQKMFAEGELPGNVHFYANRSMGKDLQAMMCADALVTGRSTLER---LLSYHAVATQIFSPRLCPGFLEILSHDRPDTKVYGMSWREQDYTTFRYWNNTPEQRAEMIDFPVDSL 2018
L+IH+RSGDIF P QPPL FY +V+R+ + GR+ +T N +LNPV P L+ A+ +P + ++ D+ A+M LV G T LS H F+ F I + R +V ++ YT W+N+PE+RA M+D+P ++L
Sbjct: 281 LLIHIRSGDIFSTWVAPTYPQPPLAFYQMVIRRLRSEGRIRRITMVFEN---RLNPVIPVLEAWIADLGVPLTTQ---SGTLVDDVAALMNGRYLVFGLGTFGPGVCQLSEHVEQVFYFASGWPQHFKSIPTIGRV-VEVVDVAGA---YTKVGEWDNSPERRALMLDYPAENL 444
BLAST of mRNA_P-fluviatile_contig7.13502.1 vs. uniprot
Match:
I9CSZ7_9HYPH (Coagulation factor 5 8 type domain-containing protein n=2 Tax=Methylobacterium TaxID=407 RepID=I9CSZ7_9HYPH)
HSP 1 Score: 67.0 bits (162), Expect = 9.940e-8
Identity = 61/176 (34.66%), Postives = 87/176 (49.43%), Query Frame = 3
Query: 1512 LVIHVRSGDIF---VDPPPLKGQPPLQFYLLVL-RQQEWGRVDIVTNGPSNQTQKLNPVFPALQKMFAEGELPGNVHFYANRSMGKDLQAMMCADALVTGRSTLERLLSY--HAVATQI-FSPRLCPGFLEILSHDRPDTKVYGMSWREQDYTTFRYWNNTPEQRAEMIDFPVDSL 2018
L++H+RSGD+F V+ + QPPL FY LV+ R + GR+ V N +LNPV AL+ A +P +V + ++ +D A++ LV G TL + Y AV T + FS GF EI P + DY WNN+PEQR M+++P SL
Sbjct: 315 LIVHIRSGDVFSTWVNAAYI--QPPLAFYTLVIDRFLQAGRITRVKLVYEN---RLNPVIDALEAHLAARAIPFSVQ---SGTIVEDTAALVNGRYLVFGFGTLGPAICYLSDAVETVVSFSNGHDHGFREI-----PTVGNVVEVFDAGDYIRPGSWNNSPEQRRMMVEYPESSL 477
BLAST of mRNA_P-fluviatile_contig7.13502.1 vs. uniprot
Match:
UPI001AE3EB38 (coagulation factor 5 8 type domain-containing protein n=2 Tax=Methylobacterium TaxID=407 RepID=UPI001AE3EB38)
HSP 1 Score: 64.7 bits (156), Expect = 5.010e-7
Identity = 59/180 (32.78%), Postives = 85/180 (47.22%), Query Frame = 3
Query: 1491 EESQLPHLVIHVRSGDIFVD-PPPLKGQPPLQFYLLVLRQQEWGRVDIVTNGPSNQTQKLNPVFPALQKMFAEGELPGNVHFYANRSMGKDLQAMMCADALVTGRSTLER---LLSYHAVATQIFSPRLCPGFLEILSHDRPDTKVYGMSWREQDYTTFRYWNNTPEQRAEMIDFPVDSL 2018
EE L IH+RSGDIF P QPPL FY LV+ Q +T+ +LNPV PAL+ AE +P + ++ D+ A++ A LV G T LS H F+ F I + ++ T+V ++ YT W+N+PE+RA M+D+P +L
Sbjct: 288 EEKPADQLHIHIRSGDIFSTWVAPHYPQPPLAFYKLVI--QRLLAEKRITSIKMVFENRLNPVIPALEAYIAEIGVPLTTQ---SGTLADDVAALVNARYLVFGLGTFGPGVCHLSDHVEQVFYFASGWPQHFRGIPTIEKI-TEVVDVAGA---YTKVGEWDNSPERRALMLDYPAHNL 458
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig7.13502.1
>prot_P-fluviatile_contig7.13502.1 ID=prot_P-fluviatile_contig7.13502.1|Name=mRNA_P-fluviatile_contig7.13502.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=664bp
MSLLQGGFTLRTAMTVRCWCWQCGQKRVLGGEIGGGLDFKTATTTTASNT
QTRVLQHLGVRDAGARAAGPIMDGCIMQTASTRAAPPVVNTGQRGAARHH
GSCYEQHPGVGDLKEPKTGRAITKKVWVGTWMIESGAQICGGSTTMIGRR
TRCTATAAALLGAAVTLLVVGRALSVTTTMSAPEGLHATVPAAHRGESSA
TRRRRAGRESASTRPLPAARAGATADDLRRRAAEEPSTRFRTGAVAHAND
GDEVQLMLSPEVASRGRREHDLIQSTAAAGNPFPVYPDCLYAIPTEEEAL
VRVLDASIPGNVLWVESIEFGRTGNRVLGLMHSLQVGYCCKSKLVSLPPK
SDVLAPGIFNEGTPGPRWFDFSTAPDVEGFDASACPAKITWSHGDALHLE
GVGTEGHPYYTPGLFDCARTVPRLIGCEAAHFFPANIDVCHGGGANSTRQ
DEVDWSEGSGRESVLEQGERGQSGGDEAGEESQLPHLVIHVRSGDIFVDP
PPLKGQPPLQFYLLVLRQQEWGRVDIVTNGPSNQTQKLNPVFPALQKMFA
EGELPGNVHFYANRSMGKDLQAMMCADALVTGRSTLERLLSYHAVATQIF
SPRLCPGFLEILSHDRPDTKVYGMSWREQDYTTFRYWNNTPEQRAEMIDF
PVDSLERCISDST*
back to topmRNA from alignment at P-fluviatile_contig7:933289..947782-
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig7.13502.1 ID=mRNA_P-fluviatile_contig7.13502.1|Name=mRNA_P-fluviatile_contig7.13502.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=14494bp|location=Sequence derived from alignment at P-fluviatile_contig7:933289..947782- (Porterinema fluviatile SAG_2381)
GCGGTAAGTCGTTCATACGTTGGAGGACGAGCTGTTTGCGCGGAAGGTTG
CTAATGAGTCTCTTACAAGGCGGTTTTACTCTAAGAACGGCAATGACCGT
CCGTTGCTGGTGTTGGCAGTGCGGACAGAAGAGGGTACTGGGCGGAGAGA
TCGGGGGTGGTTTGGATTTCAAGACAGCAACAACAACAACAGCTTCAAAC
ACACAAACCAGAGTCCTCCAGCATTTGGGGGTACGCGACGCGGGAGCGAG
GGCGGCGGGACCAATAATGGATGGATGCATAATGCAGACAGCAAGCAGTG
AGTGGTGTTGGCTTGCTTGCAGAGGACGGAACAGAAGCAGAAGGCAATTA
ATTGCTACGCCGGCCTGCTGAGCCACTGTGGACGCTTTGGCGCAGCACCC
TCCATCCTTCGCGATGTATCTAGTACCTGCTCGTTCTCTCCCTCGCCCCT
CCGCTGAAATGACATTGGAAGGCTCAGGTACTGCTGTGAGAGTAGATAGA
TACAAAAAGGGTCCACTCACCACTGCTTCCGCGAGCAAGCAAGCATAGAC
AGGGCGTGTTTCACAAAAAACGGAGGTTGTGTGCAGGCGAGAAAACGTTC
CATTTTTCGAAACAACAGCTGTGAGCCGGAATGCACACACAGATTCTCCC
GCGGGCACGCGAAAAGAGAAAGTACGTCCACCTCTCACGACAGCAGCAGC
TCCCTACACTGCCCTTCACGCTGCACCCCCTAGAAGACGAAAGGGTCGAC
CAGCAATGCCGCACAGACTTTCGCGCGCCTAATCCAAATCACTTCGTAGG
TGGAGGGCGAATTTTTGTTCGTTTCGTTTCGGAATTGCCCGGGGGGGAGG
GCTCGGCCCTTGCAGGTGCAGGCGACAGGCAAGTCGGAACGGGACGGTGC
AGTGGTGGTTTTGGGGTGGGAAACGGGGTTGAGATTGGGTGCCACAGATT
GAGCAAGGCAGCGGGCTGTTCTCTGTTAAGCGTTTCCGGTAGCAGTGTAA
CCAGCAATGCCGCACAGACTTTTGCGCGCCGGACACAAGCTAACCACTTC
TGTCCAGAGCGGATGTTTGGTGGGTGCGTTATCGGGACTGCCGAGGGAGG
AGAAAAGCAGGGTTTTGGTTGGCAAAGGGCGTATTGGGTGATTCGCTCTA
GGATTGGTGCCTAAAATCTGGACTATGTTTAGAATGTTCGAGCAAATTTT
ATGGCAGGTATTCGAGATTGGCAACCGAGTTTGATGATTTATGTAGCTTG
GAGGTTTAGACCGATTGATTTTCGACATCGTTTTTCTCATTTTAATGTCT
GATGAATAGTCTGTCTGCTGTGTGAAATGTCGCTTGAGGCTATATACGTT
GTCTGGTGGCAAGCGCGATAATACAATAAAAATAAAAAGGGCTAGAGCTT
GTCCGTGCGAGAGAGGGAGAGATACAGATGCAGGGACACAGGGACAGCTA
GAGACCAATAGCGACAGAGACAGAAAAGCACCTGTGGTGGGGTCACAGAC
ATCCCAGCCCAGACCACGCGCTGCCGGCATACTCCGGAGTATAAATAAAC
TTACGCATTCCCACACATAGGCACAGGCGCGATGCTCTAACCATCGCGGG
GCCCTCCACCTCTTTGCTTACACTACTTAAATGTATAGTGTATAGTCTAC
ACATGATGACTGATAAAAATCGCCAAAACAATCGAAGCGAACGAGAGATG
TATTCAAAGCAAAATAATGAATGAATAATGAGTCGCCATTAACATGCAGG
CGCAAGCAGACGGCCAACAATGCAACGACTCTGAAGGGCATTCCCACCCC
ACCTACAAAGTCGGGAGGTTCCGTGCCAGGGTTCTACCGGCCAACCTAGC
GTATCCTGCGCTTTTCTCTACGAGGACAAGTAGCTCAAGTTCGTTTTCCC
ACCCGCGTCGGCTGGGGAGCGGAGCGTGTCGGTAGGACAATGGGAGGCAG
ACAAGACAAACGTGTCAACAAATTAACAAAACGAGAACGAAAAGAAACAA
CAAATTATTTCGCGGCCGAGAGCGGGCCACAGCCCACGCCGACCGGGAAG
GGGAGGGCGAGGACACGAGGGGGCCGAATCAAGACAAGAGATAAGACCGG
TCAAAAACAACTAAAGGGACAAGCGAAAACCGCAGCAGCAGTTGCAAGGC
ACGGAAAACGAGGGGTTGGAATGATAACACGCACATACAGACCATCACGC
CCTGGTTTTTCCACCCCGACTGAGATGTATTTCCCGTCCCCACAGTTATT
TGTTCCCCGGTCTTTCTCCTTCTTTCTGATCCGTCCTCGGCTGCTCCCCC
TGTCTCCCCGGCTGTCTCCTTCGCCCTCGCTAGTTTGTGACTCACGGATT
CCTCCTTCTCCCGCCAGTACCATCGTTCCACTATCCCCTCCATCCGTCAT
CTGGGCCTTCAATTTCCGCACACCCTTCTTCTCCCTGTCCAACCCGAAGG
CGTCCAGATCGTCATCTCTATGTGGTGTGTCCAGTCGTGTTGGTGCCCCT
CTGAGTGCCCCTTGCGACCTTGGAACGCCCCCGTCATGAGGAGATTCGTG
AGATGGTGATTGTTCATGCCCACGTCGGAGCCCGCGAAGCGAGGCCTCTG
CTTTCGTAACGTGGTCGCAATGGTCTCGGCGCAGTCTGTCCCGGTGAGGG
CTTCAGCGGACGACAGGGGGCGGTCCGTGCGTCCTCTCTTGCTTCACCCG
ATGCAGCGTTTACTTTCTAAATCCGGCGGTGGGCCCCTCCCAACTTTGAG
TCGTGGGTCGCCGTAGGGCTCCATGTCTCGCACGCGTACAGCAAGGCTCT
CACCACTTCAGTATGTGCATGACGCACACCTTGAACCGGAGGGGAATTGC
CCGGCGATCGTAAACCCCTGGGCATTCCGTCGCAGGCAGCCCCCAGCTCT
GATAATGTCACTTGTGGTCTCCGAATCCAGCCTCCGCGAAAGTTTCAGAA
CTACATGTATAACACACCTACCTCTAATCAGGCGCGACGACTTTTACACT
TTGATGAAGATTGGTGTTGAGAAGCACGATGACCACTAGATTGACTGCCA
GTCAGCCGCTGACCGGTAGAGACTAGTGGTCATCGTGCTTCTCAACAAAA
GTTAGTGTCCGTGTCCGATGTAGCGTTTCGGCCAACAAGTGGTCCCCCCA
GGGTTGCCACCCCTGTATTCAGCGCTGTGCTTACCAGATCGATACAAGCA
GCCCATCGGCGTATTTGCGAACCCCATTTCCTCAGGCTTGTGCTTTCAAA
CGAAGCTGATACCCGGGGTTTGAATATACCCTCGAGGTAATGCCCGGGGT
TCGACTCTCACCCGGTGCGTCTTTTTGATGAAATGTTTGCGCCCTAATTA
TGAGAAAGAAACAGCCTGAAGAAAAAGGCTTCGCAAAAACGCCGATGAGC
TGCCTGACACAAACCAATGTGCTTATTTTCTTTGAAGTTATCGTGTCTGC
GAGTTCCTTCCTGGCGTGCACGTTAAAAATTTTCGGGATTTCATTGTTTC
ATCGGCTGCGTTTGCCACTGAAGAAAACCCTTGTTTGTCTCGATCTCTTG
GAAGACGACAGGAGTTCTTGAAGCAAACACAGATGCAAACTCTAAAAGCT
ATTTGTCCGCCTGCAATTGCCGACCCGCGCATACGTCGTGAGAGTGCCCG
TTCAGAATACTCTGAGTCCTAAATTTTGAAAATGCCCCTATTCATCCGAC
GGCATAGCGATTTCAGCACGCCATTGCTCCATTACCGCAACAACCGTTCG
TCCGCGCGACTCTGGACACTATCATCTAGTGTCTGAGGGTGTTTTCGTTT
GATTGCAACTCTCTATGGAGGCGCCCGCCGACCAATCGTGCGCTTGATAG
CAAAGTCACCTTGAGGGCCGGCCTCCTTTCACGTTGCTCGGCAGCTTTTC
AACACAGCGGTCGGGACTGTCATTCGTTGGTTTTTCAGAAATTGATGGCA
TCTCACTCAATGGGGCGTAGATTGCGAAGGCTCGATAGCAGATTTCGAAG
CCGCGACTTCCTCATTCGCCAGAGATCCGGCCATCACCGCACGAGAGGGA
CGCGGGCACGGGAAGGGCCCTCGATTTCACGGGCTACCGCATGCCGCAAA
CAGCAGGCCGAAATAGGCTCGAGCGGCGGATAATATTAATAATAACACGC
GCAGTAGGCTCACGAGAGAGATCAGAAGGGCAACGGAGGTCTCTCATGCG
CCGAGAGCGAGCCCGAGGTTTGGTAGCGATGCTTGTGTGGGGCCCTTCTT
TACTCGTTGCGCCCACGGGATGTGCCCCGAACATACCGCGGCCGTGTCTC
ACATATCGCAGAAGACGTGCGGTGTGGGCCCATCTCGCAGAAGGTTTGAA
CCACTGTTGCGCCCTTCGATATCCAAGCCCCAGAAGCAGTTCTGAGCGCG
CAAATGTACATAGCGCTGCTGCGGAGTGTCCCTTCAGACAAGGACTCCTC
CGAAAATTCACATTTTTGAAGCCACGACCTTCTTGGCTGTTTTGACTTGA
TTTTTGTCGGTGGAAATGTTTAAACCGGAGTATTGTTTTCGAAGAGGGAG
GTTGGAGTTAACCTGCGCGATAACGACGTAAAGATGAGCCCTTGGCGCCG
CTCAGCAGTCCCTCCCCACACATGAGGTCTTCGAGACCCCGACCTGTGAA
AGACTTCTTTGATGAGCAGGCGCATCAACAGAATGCAATTGAGTCCACAA
CTAGGGCTCTCTTCGTTTTTGTTCGATCTTGTCATCTGTTCGTCTCACAC
TTGGCCAGGACTTTAATTTCATGCAAGGACGTGTTTTCCACGTGTGTGCG
CAATCGCGGTGCAGCGTACCAATGGGGGCTCTTCCCACCACCGTGTCCTT
GAGAAAGTCGACCCGTTGTGCCAAATGAACTAAGACGAGGTTTCCGAAGC
TCGCTCGAGATATCGCGCATCTGCCATCTTCAAACAGTTTTGCCCTCGTG
TCCTCGCGGGTTTTTTCCCGAAAACGAAACAGCAAGGGCCGCCCCACCCG
TCGTGAACACGGGACAACGGGGGGCAGCGAGACATCATGGCTCGTGCTAC
GAACAACACCCGGGAGTAGGAGACCTGAAGGAGCCCAAGACGGGGAGAGC
AATCACCAAAAAGGTCTGGGTCGGCACTTGGATGATTGAGAGCGGCGCCC
AAATATGCGGGGGAAGCACCACGATGATCGGGAGGAGAACCCGGTGCACC
GCCACAGCCGCGGCACTGCTCGGAGCAGCGGTGACGCTACTCGTGGTCGG
GCGAGCACTGTCCGTGACGACAACGATGTCTGCTCCCGAGGGATTGCACG
CGACAGTCCCGGCGGCACACCGGGGAGAATCCTCGGCGACCAGGAGGCGT
AGGGCAGGAAGAGAATCGGCTTCGACGAGGCCACTCCCCGCAGCACGCGC
TGGAGCTACTGCCGATGACTTGAGGCGAAGAGCAGCAGAAGAGCCTTCGA
CGCGGTTCCGCACCGGGGCAGTAGCCCACGCTAACGATGGCGATGAGGTC
CAGCTTATGCTGAGCCCCGAGGTGGCGTCCAGGGGCCGAAGGGAACATGA
TTTGATTCAGAGCACTGCGGCCGCTGGCAATCCCTTCCCGGTGTATCCGG
ATTGCCTGTACGCCATTCCCACGGAGGAAGAGGCGCTCGTGAGAGGTGAG
CAACGACGCTCCGCCATGCATGAACCAGTTTTTTCGCTTGAAATGCCCGC
CTCTACGCGTTCTTTGCTTGAAAATCGCTGTCGCTTGTAATCGTGTTGTC
AAACCGAGTTAAGTCACTTGAACCGATCCTTGGTTCGCGGAGATGACTGA
AGATGCATGTTTGTCCCCACGTCGACCGACCACCGTGGGCGATTCTCGTA
TCCCTCTTGCGTTCCTACCGGCGGAGGACAGTGACTTACGCGAGCTCGCA
AGAATAGCTCGGAAAATAAATATCTCTTTGGCCCAGTACCATGTTTCTGT
ACAACGTTTGACCCATTACCCATCCCGCTGAATACCAAGCCACGAGGAGG
AATAGGAGTCGACCACATTTTCCCACCAATTCCGCGGCAAACATTCAGTT
CTGGACGCTTCCATTCCCGGCAACGTACTATGGGTGGAGAGCATTGAGTT
CGGAAGAACAGGCAACCGAGTTCTGGGGCTGATGCATTCGCTGCAAGTCG
GCTACTGCTGCAAGTCAAAGCTGGTGCGTGTCCAAAGTCCATTCGGCTGG
ATGCCTGGTGGTACGTCGCTTTGAACTTCGCCGCAGGCTATGAATCAAAG
TCTACTCGTCCCCCGTGTACTGTCAGAGGTTGCGCCAACAAAAATTATGC
CGCCGACTCTTTCACCTCAGAGCGCAACGGTAAAGCGTGTGCATAAAATT
GCATGATCAAATCGTTCGTCGCGAAGGAAGCGCGCGTTAAAAAAAGAAAA
AAGTGTGGTTGGAGGCTGATGATCACGTGTTTGGCCGAGCGCATGCAGCG
ATGAGACGTTGGGTGTTCACGCGGTTGACACGACGCAGGTATCGCTGCCC
CCCAAGAGCGACGTTCTGGCCCCCGGCATATTCAACGAAGGTACTCCCGG
CCCTCGCTGGTTCGATTTCTCGACCGCCCCGGACGTGGAAGGGTTCGACG
CGAGCGCCTGCCCGGCGAAAATCACGTGGAGCCACGGGGACGCCTTACAC
CTGGAGGGAGGTGATGACTTGTTTTTTTGCTGCCGTTCTTTTGGTGTCCT
CCTGCGTCTATTTGTCTGCTCGCGATTCCAGCAGTCCGCACTTGATCCCC
GAAGAACGCCTCTCCACGCTCGTGAGTTTTGCTCGCAAGTCCTGTCACAC
TTGCGAGGGAGGCTCTGTTTGGAGAAAGAAGAATTCTCGGCAGTTGATTA
AAATACTCCGGAGTATGTGTATTCCACGTTTATTCCACGTCGTCTGACTC
CCCTCCTCCCACAACACGGTCGATTGCGTCGCTTCCGCGCACCACTGGCG
GGCGGAGATCCTCCGCGCCTGATTGCACTCCCTCCATCGGGCTGCCCGCA
TCCCTGCCCTCCGCAATCTCTGCCGCGGAATTTCTCACACACAAATATCT
TCGCATACAAGCTTCTGCGACGCTCATAAACACGCCGAATACTTGCGTCG
TTCTCGTGAGACTCCTCAACTGATGAGATGAATTATCGATGATGACGGCA
GTGGGCACGGAGGGCCACCCGTATTACACCCCGGGGCTGTTCGACTGCGC
AAGAACGGTGCCGAGGCTAATCGGCTGCGAGGCCGCCCATTTTTTCCCAG
CGAATATCGATGTTTGTCATGGAGGAGGAGCAAACAGTACCCGTCAGGAC
GAGGTCGACTGGAGCGAAGGTTCTGGGCGAGAAAGCGTCCTCGAGCAAGG
AGAAAGAGGGCAGAGCGGGGGTGACGAGGCGGGCGAGGAAAGTCAACTTC
CACATCTCGTGATCCACGTGAGGTCGGGCGACATCTTCGTGGATCCACCG
CCGTTGAAGGGTCAGGTACTTGCAGATTAGTTCAGCCTGCGGTAGACGAG
GCATCGTTCTCTTGATCTTCCTGTCGACAGGCAGAATCGCTTCGTATGCC
TGCCTGTGACGAAGTCCTTCGTTATTTTTGCGCGTATGGAGGTTGAAGTC
ACCATCGTGCAGTCTGCTGGGTGTTCGCAAGCATAATCGTTCCGTGTGTG
GAATACTTGTTGGAATGTTGTCATCACGGGTCCATTAAGTGCAAACCGGG
GATGCGGTGTCTTCGCCGATTTTCCCGGATGCGGGGGCGGTGGGCGAGCA
TGTGAGGGTTATTAATAGATGTGTCGCTTGCCGCATGGCAGCCAGGACTT
ATGCTGGCTGAGGAATGATAATCCACGGCACATTACGCGCTCCTGTGACC
ATTCCGTCCTCCCCCGCAGCATTTGAACATCGAATCTGATGCAGCCACGG
GTGTGCGTGAGCAGGTCGCCGGGCAAGGCGCAAGTGAGAATACTTAGGTG
TTGAGGGAAATATTTCTGCATCTCACGCGCGTTGGGAAGCCGATTTCCTC
GGTCGTCTCCTTCGCCGTCCCCAATGGAGACCAAGCGGCAAAAATTTGAG
TCTGCCACAATCTCATAGATGCCGCGCGAATTTTGACCCGTCGGATGATT
CCATGCCGTCGACCGTGAGTCACACACGAGAGCTATTCAGAAATTGCATG
GCATTTGTTGCTTGTCGCTCCCCGAGGTGCGTAGACGCATTTGACCCCAA
ATGTGTTCCTGGTTTGCATCCGTCCATCTTCCGTCCTTCGTGCTTCCGGC
GCCATCGACCACCAGCCGCCATTGCAGTTCTACCTTCTTGTTCTGCGCCA
ACAAGAGTGGGGCCGCGTCGACATCGTCACGAACGGGCCATCAAACCAAA
CGCAGAAGTTGAACCCCGTGTTTCCGGCCTTGCAAAAGATGTTCGCCGAG
GGTGAGCTCCCCGGCAACGTTCATTTCTACGCGGTGAGCGGGGCTTCCAC
GGATCGACCGATGTCATTCCTTACGGCCAATTAGATCATGGGTGCTGCCA
GTTCACCCAGCGCTTTGCATACTCGGCGGACGATTGCCTCTATTTCGAGA
TTTTATTCTACTGGTGCTGAAAGTGTATCGAAATCGGGAAAAAAATGCCT
GCCGAGTACAAGCCTATTCGGCATGCTTGCGTGCAAGAAATCCAAGAGAT
CGCAACCCAATATCATGCTGCACAGGAAAGCATTTTGCATGGTAAATAAT
AGCCCCAAATTAAGGAACGGCAATTGAGAGAAACGGTGAATAACACAGAA
GAACAGCTCGCCCGCGGCCATTCGCAACGGAAACGAAGCACGCTCGATCC
TGCAACATTGGTTCTAGAATACTCTGCATGAGTACTTTTTAGGGGGATAA
GGACTGACGGCCTGTCAGGCTACAACGCTAACACGACCCGGGAAGGTATT
GATTTTCCCCTCGACATCAATTTGGTCGTCGGGAGTTGGATCAAAGCACG
CCACATTCGTATTTTTGGTCACGACGGTACGTACGAGCACGCGCACGCGT
CATCGGGTTATTCGACCTCGGATCAACAACTCTGCAAAGTTAAAGTTGGC
TGGACGTCCAGCATGATGCAATAAATAGTTTCGGGTCTTTTCGTCTCACA
TGACGATCTCACGGACAATTGCGGCCTGAGCGGAATGTATTTCTTGGCCG
CCAAGGTAGGTAAAACATCGAGCAATGACTTTGGTTGCTGCCGTGTGCTC
GCGCCAGAACCGTTCGATGGGCAAAGATCTGCAGGCGATGATGTGCGCCG
ATGCTCTAGTGACGGGACGGTCTACGTTGGAAAGACTGCTTTCCTACCAC
GCCGTCGCCACCCAGATATTTTCTCCCAGATTATGCCCTGGATTCCTCGA
AATCCTCTCCCACGATCGACCGGACACCAAGGTATGTGTATGTTTGTTGG
GGAAACCGCCTATGCATTTTTGCTTCGAATGTTTGGCCTTGAGCCTGTAG
GGAACGAGGTGGCAAGAGTTGCAATTTGTGCACAGCACTCTCTCTTTTGA
GTGTAAAATACCCCCCCGCGAGCCACCAGAGGTTGGAAATAGTTGAGCAA
GTAGAACAGGCTGAGCTAGATGTGGTAGGGATCCAAGAGTCATGGGAGTT
GAAAGATGGGGATATCGAAAGCAGGATAGGAGAATACCGGTGGATAGGAA
AGGCACGGAAAGGTTTAGACCCGAAAAAAAGGAGAGGGGGGGAGTCGGAT
TTCTCATCAAGGAATACTTGTTTGAGTTGGTAGAAATAGTGGTAAAGACG
ACGTTCGAGGAAAGCTTATGGATAAGGGTACCAGGAGAAAGGGGTGAGCT
CGACCTCTTTATAGGTAATGTATACATTCCACCGTCGTCGAAGAAAGTCG
CATGTAAGGCGCAAGAGAATTTCGAGCAAGTGGGGGAAGATGTTCAGAAG
TTCAAGAGGAAGGGAGAAGTTGTCATAGTAGGCGATTTCAACTCTCGAGT
TGGGAAAGCTAGTCGGGGGGCAGGTGATAGGGCAATACGGAGAAAAACCG
AGTTAATGCCAACGGGGAAAAAATGCTTGACTTCCTAGGTAGTAACGAGC
TGATGGCAACAAACAATAGGAGTAGGGAGGACACCCCGCAGTATACCAGA
CAGCGGGCAAGTTGCGGAGAATTCTCGATTCTTGACTACATCCTGGTAGA
CAGAGAAACAAAGCGGATCCCAAGATTGCAAGTAAACAAGGTAGATATAG
GCACGACTGACCACTTCCTTATTTGGGCTAAAACAACACGTAACAAGAGG
GTCAAGAGTACGAAGACGAGGAAGGTATTCAGATGGAAAGTAGAACGACT
GGGAACGAGAGAGTACGTGCTGAATTCCAACAAAGGAATGCAGACAGCGT
AGAACAAGTAAGGGAACTGATGGGGAAAGGGGAGAGGAAGGGGACGTTCA
AGTAAAAGGGGACAGAGTAATCGCAGGATGGGAAAACATAGTGAACACAA
CCGCAGAGGAAGTGATAGGAAAAAAAGATGGTCCGGTGTGGTCAGGCGGT
TAAGTGGTGGGACGAAGAATTGAGGGAAGAAATAGGGGAACGAAGAGAAC
TGTTTAAGCGGCACATGGATGAGAAGACAGAGGAGAGTTGGGAAACCTAC
AGAGCCAAGAGGAAACATGTGAATAGAGTAGTGAAAAGGAAGAAGAAAGG
CATCTGGGACGAAGTGGTGCAGGAAGCGAACGGGGGGTTGGAGGGTAGCG
TAAAACAGATGTGGCAGGGAATTAATGGATTGGTAAAGAAGAATGAACAT
GGGGGGGAAACAGGAGTAGCAACATTGCGAAGCGTAGACGGTAAACTAGT
CAGCAGTGGCAAGGGTAAGAGACAGGTACTAGCAGGACACTATAGGAAAC
TCGGGGTGCCGTCGGAAAAGGCAGACTTCGACCAAGTATTCAAGGAAGAG
GTAGACGCGTGGGCCCAAGCAGAAGAGCGAGCTTCGATGGAGGACGTTGG
GAATGCAGAGCTCCAAAAGAAGTTCACCGAGGAAGAGGTTGAGAGTTGTG
TGAAAAAACTACAGTGTCACAAGGCCGCAGGGGTCGACGGGATAGTGAAC
GAAATCATGAAGTTCGGGGGGGAGGGGATGATTAAGATGATGGTACTGTT
GTTCAACTGGGTATGGGAAAACGAATACGCACCGAGTAGATGGAGGGAAG
GGGTGGTGGTGAACCTGTTTAAGAAAGGAGATAAGACTGACCCAGGAAAC
TATCGGGGAATCACCCTGTTGAGCACAGTGGGGAAAGTGTTCTTCAAGAT
CCTCAACAACAGAATAGTACGAGTACTGGAGATGGAAAAGAGAATTAGTG
AGGGTCAAGCAGGTTTCAGGGAGGCTAGGGGGTGTGGAGATCACCTATAC
ACGGTAGGGAGAATCATACAAGGTCGGAAGAGGGTGGGAAAGCCGACATA
TTGTTTTTTCCTAGACGTTCAGAAAGCGTATGATACAGTATGGAGAAATG
GGCTCTGGAAAAAGTTGGCGAAGTATGGGATAAACGGGAAGATGTGGAGA
ATGATTAAGAAGATGACAGAGAGTACGAAAAGCGCCGTGATGTTAGATGG
AGAACTCTCGAGGTTCTTCGACATTGAGCAGGGGGTCCCACAGGGGTGCA
CAATGTCCCCAACGTTGTTCCAGGTATTCATCAACGACTTACTGAAAGAG
GTAGAGGCGGTAGAGAAGGGAGTAGAAGTAGGGGAAACCTCGGTATCGGG
ACTGCTATTTGCTGACGACTTTGTTGGGATGTCGGACACGCCTGAGGGGC
TCCAACTACAGATTAACGCAGCGAAGACCTACGCTGATAAGTGGAGATTC
TCGGCCAACGTCCCAAAGTGTGCCGTAATGGTATGCAATGAAGTTGGTGA
CGAGGAAGTAGGTACCAAGTGGACGTGGGGGGACAAGGAGCTGCCAAGAG
TGGAAAAATACACATACCTTGGAGTAGAGATAGCAAAGGACTGTAAATGG
GATGCACACATGCACAAAATAGCGGACAAGGGCAAAGCAAGGGCAGGGAA
GTTGCACCCAATCCTAGCAGACCGGCACCTTGATACACGCGTCAAAATGA
CCATTCTGAAAAGTGTTATCATCCCGCCACTAGAGTACGCGGGAGAAGTT
TGGGAAGGGAACAAGAAAATAGTAGCAGAGTTGGAGGCAGCGCAGATGAA
AGCAGCGAAGATCATTCTAGGATGCTCCCAGCGCACAAGTAACGCAGCAG
TAAGAGCAGAGTTGGGGATCTACTCCTTAAGAACGGGAAGAGACAGGAGG
AAGTTGACATGGCAATACCGTTTGGAAAACATGGGAAAGGAGAGGTTACC
GAGAATAGCTTGGGAGGCGAGATGGGTAAACAAGGCCAAGGGTAGACAAC
CCATTGAGTGGGCTAAGGTTGTACAGGGAGTGTGGAGGGGTTAGATATTG
ACGAACGGGAGACGACGGGAGCGGAAAGCTTAGAAGGGTACAAGAAGAGC
ATCTCAGAAGCCTTTGAAAATAGAGAAGACCAGAGCTTGCGGAAAGAGAC
CAAGGAAAAGGAGGTTCTAGAAGTGTACGGAAGGCTGGACGAAGGAATAG
GGTTCAAGGAGTACCTGAACGGACCATTGGATGAAGGAACAAAGATGAAG
GTCAAATTTAGAACGGGCGACATTGACCTACGGGAACGTAGAAGGAGGTT
TAGGAAGGTAGACGACGACGAAGACAAGTTCAAATGTGACTGCGGCGCCG
AATGCGAAGACCGGGTACATGTAGTTGCGGAATGCCCGTTGTACGATCAG
GAGAGAGAAGGGTACATGGTTGAGCTGGAAAAAGTAGACAGTCGGTATAG
AGAGAAGTTTGAGGCATGGAACAAAGAGGAGAAGACGGTAGCGGTACTCG
GGTGTAAGATGTGGCCCAGGACGGACAGGTATAAAGTAGACAGGTTAGGG
AAAACATTTTTGAGCCACCTTTGGCAAAGTAGGAAGGAACGATTGGCCAT
CGGTGGTCGATCCTGCGGGAACAATGCTCCGTCCTCTCGAGGACGCGTGG
TCAATGGTCTAACAACTAAGGCAGGCAAAACATGAGTACGCCCCCCGCGA
GCCACCTTTGGCAAAGTAGGAAGGAACGATTGGCCATCGGTGGTCAATCC
TGCGGGAACAATGCTCCGTCCTCTCGAGGACGCGTGGTCAATGGTCTAAC
AACTAAGGCATGCAAAACATGAGTACGCCCCCGCGTGCAATCATCCACCA
TGTGAAACTGATAGCGTCACCCCTACCTTAAAGGTCGTTGTACTCGTGGT
CCCAGAAGACGACTTGTCTTAATCTTTTGTTGTCCTTGCACATCTTCGGA
TATAGCGTCAGATTGCAAACGATTTACTTGTACTCCTCTTCGACGGCTCT
TGACACTTGGCGGCAGACACGAACGGTACACAGCCCGCACACTGCCTGTC
CATTGCAACCTTGCGACTTTCGGCGCCTTCGCGACTGCGCGGTGAAGGCG
CTCGAGTTACTTGTAGTTTATTGATGCGCACCTATTCAGTTTGATCATTT
TACGGCAGGATTTCCCATGGACGACAGGTTCCGCGCGTGGCTATAACCCT
CACCTTCTCGGACCTCTACATGGGTTTCTTGCAGGTCTACGGCATGTCGT
GGAGGGAACAAGACTATACCACTTTCCGGTACTGGAACAACACCCCGGAA
CAACGAGCCGAGATGATTGACTTCCCTGTTGATAGCTTGGAGCGGTGCAT
CTCCGACAGCACCTAGCCGAAGGAGAACGAGAGGCGCGTACGAATTGGAC
GTTATTATTTGTGGGGTCGGCTGATGAGTGGAAAACCCCCCGTTGTGTTC
AGTGCCTCCCCCCCCCACTCCACGAGCTACGGGCCCAAGCCTGCGACTAA
CTCGTCGAAATCACGGTGCCGTCGGGCGAGCTCAGCGCTTTGTCTGCATT
CGTAAGGCGTGACAGCGACCGAAGTCAATCGAAACGACAAAGTAGGATTT
CGCCTTGCTTGCGCACTCCCCGGTGTTCCCGAAAGAAGGGAGTTTTTTGC
GGCATTTTGCCTGTCCTTCCAAGTCTGTCGTGGTTGGAACGGATTGATAA
CGGCTGACAAGACGGCAGTGATGCCCCCGGCGGTGCTTCTTCTAGTGGAG
CAAGTCGGTAGGAGGTGAGCGGAGTATCTGCCACAAGCCCTCCAACAGCA
GGAGCAGAACGATTGGCACAATCGCTGTCCCGGTGGAATCGCCTGAGAGT
TGTCCTCCATGAACCTTTGTTCAGATTAGATACTTTCTGAGTATCATCTT
GCTTCACCAAGATGGTGAAATGTTCAGCATTGAGTTTTGAAGGAGGCGCC
AGCTTGACCGATGATGCTGAAAGCCGTGGGAGTGCATCGGCACCAAGCAC
GCTGTACGCCCTGGACAAGGACTTGTACGGCGAGGCGCGAAATAAAGGAG
AATCAGGAAGCGCAACAGACACATCGTTTCCGAAGGCTCGAAAAGTGGGG
GGAGCGCAAGGGGGTAAAGTTTAACTGTCCATGTTTGAGAAACC
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig7:933289..947782-
>mRNA_P-fluviatile_contig7.13502.1 ID=mRNA_P-fluviatile_contig7.13502.1|Name=mRNA_P-fluviatile_contig7.13502.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3984bp|location=Sequence derived from alignment at P-fluviatile_contig7:933289..947782- (Porterinema fluviatile SAG_2381)
ATGAGTCTCTTACAAGGCGGTTTTACTCTAAGAACGGCAATGACCGTCCG
TTGCTGGTGTTGGCAGTGCGGACAGAAGAGGGTACTGGGCGGAGAGATCG
GGGGTGGTTTGGATTTCAAGACAGCAACAACAACAACAGCTTCAAACACA
CAAACCAGAGTCCTCCAGCATTTGGGGGTACGCGACGCGGGAGCGAGGGC
GGCGGGACCAATAATGGATGGATGCATAATGCAGACAGCAAGCAATGAGT
CTCTTACAAGGCGGTTTTACTCTAAGAACGGCAATGACCGTCCGTTGCTG
GTGTTGGCAGTGCGGACAGAAGAGGGTACTGGGCGGAGAGATCGGGGGTG
GTTTGGATTTCAAGACAGCAACAACAACAACAGCTTCAAACACACAAACC
AGAGTCCTCCAGCATTTGGGGGTACGCGACGCGGGAGCGAGGGCGGCGGG
ACCAATAATGGATGGATGCATAATGCAGACAGCAAGCACAAGGGCCGCCC
CACCCGTCGTGAACACGGGACAACGGGGGGCAGCGAGACATCATGGCTCG
TGCTACGAACAACACCCGGGAGTAGGAGACCTGAAGGAGCCCAAGACGGG
GAGAGCAATCACCAAAAAGGTCTGGGTCGGCACTTGGATGATTGAGAGCG
GCGCCCAAATATGCGGGGGAAGCACCACGATGATCGGGAGGAGAACCCGG
TGCACCGCCACAGCCGCGGCACTGCTCGGAGCAGCGGTGACGCTACTCGT
GGTCGGGCGAGCACTGTCCGTGACGACAACGATGTCTGCTCCCGAGGGAT
TGCACGCGACAGTCCCGGCGGCACACCGGGGAGAATCCTCGGCGACCAGG
AGGCGTAGGGCAGGAAGAGAATCGGCTTCGACGAGGCCACTCCCCGCAGC
ACGCGCTGGAGCTACTGCCGATGACTTGAGGCGAAGAGCAGCAGAAGAGC
CTTCGACGCGGTTCCGCACCGGGGCAGTAGCCCACGCTAACGATGGCGAT
GAGGTCCAGCTTATGCTGAGCCCCGAGGTGGCGTCCAGGGGCCGAAGGGA
ACATGATTTGATTCAGAGCACTGCGGCCGCTGGCAATCCCTTCCCGGTGT
ATCCGGATTGCCTGTACGCCATTCCCACGGAGGAAGAGGCGCTCGTGAGA
GCAAGGGCCGCCCCACCCGTCGTGAACACGGGACAACGGGGGGCAGCGAG
ACATCATGGCTCGTGCTACGAACAACACCCGGGAGTAGGAGACCTGAAGG
AGCCCAAGACGGGGAGAGCAATCACCAAAAAGGTCTGGGTCGGCACTTGG
ATGATTGAGAGCGGCGCCCAAATATGCGGGGGAAGCACCACGATGATCGG
GAGGAGAACCCGGTGCACCGCCACAGCCGCGGCACTGCTCGGAGCAGCGG
TGACGCTACTCGTGGTCGGGCGAGCACTGTCCGTGACGACAACGATGTCT
GCTCCCGAGGGATTGCACGCGACAGTCCCGGCGGCACACCGGGGAGAATC
CTCGGCGACCAGGAGGCGTAGGGCAGGAAGAGAATCGGCTTCGACGAGGC
CACTCCCCGCAGCACGCGCTGGAGCTACTGCCGATGACTTGAGGCGAAGA
GCAGCAGAAGAGCCTTCGACGCGGTTCCGCACCGGGGCAGTAGCCCACGC
TAACGATGGCGATGAGGTCCAGCTTATGCTGAGCCCCGAGGTGGCGTCCA
GGGGCCGAAGGGAACATGATTTGATTCAGAGCACTGCGGCCGCTGGCAAT
CCCTTCCCGGTGTATCCGGATTGCCTGTACGCCATTCCCACGGAGGAAGA
GGCGCTCGTGAGAGTTCTGGACGCTTCCATTCCCGGCAACGTACTATGGG
TGGAGAGCATTGAGTTCGGAAGAACAGGCAACCGAGTTCTGGGGCTGATG
CATTCGCTGCAAGTCGGCTACTGCTGCAAGTCAAAGCTGTTCTGGACGCT
TCCATTCCCGGCAACGTACTATGGGTGGAGAGCATTGAGTTCGGAAGAAC
AGGCAACCGAGTTCTGGGGCTGATGCATTCGCTGCAAGTCGGCTACTGCT
GCAAGTCAAAGCTGGTATCGCTGCCCCCCAAGAGCGACGTTCTGGCCCCC
GGCATATTCAACGAAGGTACTCCCGGCCCTCGCTGGTTCGATTTCTCGAC
CGCCCCGGACGTGGAAGGGTTCGACGCGAGCGCCTGCCCGGCGAAAATCA
CGTGGAGCCACGGGGACGCCTTACACCTGGAGGGAGGTATCGCTGCCCCC
CAAGAGCGACGTTCTGGCCCCCGGCATATTCAACGAAGGTACTCCCGGCC
CTCGCTGGTTCGATTTCTCGACCGCCCCGGACGTGGAAGGGTTCGACGCG
AGCGCCTGCCCGGCGAAAATCACGTGGAGCCACGGGGACGCCTTACACCT
GGAGGGAGTGGGCACGGAGGGCCACCCGTATTACACCCCGGGGCTGTTCG
ACTGCGCAAGAACGGTGCCGAGGCTAATCGGCTGCGAGGCCGCCCATTTT
TTCCCAGCGAATATCGATGTTTGTCATGGAGGAGGAGCAAACAGTACCCG
TCAGGACGAGGTCGACTGGAGCGAAGGTTCTGGGCGAGAAAGCGTCCTCG
AGCAAGGAGAAAGAGGGCAGAGCGGGGGTGACGAGGCGGGCGAGGAAAGT
CAACTTCCACATCTCGTGATCCACGTGAGGTCGGGCGACATCTTCGTGGA
TCCACCGCCGTTGAAGGGTCAGTGGGCACGGAGGGCCACCCGTATTACAC
CCCGGGGCTGTTCGACTGCGCAAGAACGGTGCCGAGGCTAATCGGCTGCG
AGGCCGCCCATTTTTTCCCAGCGAATATCGATGTTTGTCATGGAGGAGGA
GCAAACAGTACCCGTCAGGACGAGGTCGACTGGAGCGAAGGTTCTGGGCG
AGAAAGCGTCCTCGAGCAAGGAGAAAGAGGGCAGAGCGGGGGTGACGAGG
CGGGCGAGGAAAGTCAACTTCCACATCTCGTGATCCACGTGAGGTCGGGC
GACATCTTCGTGGATCCACCGCCGTTGAAGGGTCAGCCGCCATTGCAGTT
CTACCTTCTTGTTCTGCGCCAACAAGAGTGGGGCCGCGTCGACATCGTCA
CGAACGGGCCATCAAACCAAACGCAGAAGTTGAACCCCGTGTTTCCGGCC
TTGCAAAAGATGTTCGCCGAGGGTGAGCTCCCCGGCAACGTTCATTTCTA
CGCGCCGCCATTGCAGTTCTACCTTCTTGTTCTGCGCCAACAAGAGTGGG
GCCGCGTCGACATCGTCACGAACGGGCCATCAAACCAAACGCAGAAGTTG
AACCCCGTGTTTCCGGCCTTGCAAAAGATGTTCGCCGAGGGTGAGCTCCC
CGGCAACGTTCATTTCTACGCGAACCGTTCGATGGGCAAAGATCTGCAGG
CGATGATGTGCGCCGATGCTCTAGTGACGGGACGGTCTACGTTGGAAAGA
CTGCTTTCCTACCACGCCGTCGCCACCCAGATATTTTCTCCCAGATTATG
CCCTGGATTCCTCGAAATCCTCTCCCACGATCGACCGGACACCAAGAACC
GTTCGATGGGCAAAGATCTGCAGGCGATGATGTGCGCCGATGCTCTAGTG
ACGGGACGGTCTACGTTGGAAAGACTGCTTTCCTACCACGCCGTCGCCAC
CCAGATATTTTCTCCCAGATTATGCCCTGGATTCCTCGAAATCCTCTCCC
ACGATCGACCGGACACCAAGGTCTACGGCATGTCGTGGAGGGAACAAGAC
TATACCACTTTCCGGTACTGGAACAACACCCCGGAACAACGAGCCGAGAT
GATTGACTTCCCTGTTGATAGCTTGGAGCGGTGCATCTCCGACAGCACCT
AGGTCTACGGCATGTCGTGGAGGGAACAAGACTATACCACTTTCCGGTAC
TGGAACAACACCCCGGAACAACGAGCCGAGATGATTGACTTCCCTGTTGA
TAGCTTGGAGCGGTGCATCTCCGACAGCACCTAG
back to top