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Homology
BLAST of mRNA_P-fluviatile_contig6.12687.1 vs. uniprot
Match: D7G1Y4_ECTSI (N/a n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G1Y4_ECTSI) HSP 1 Score: 669 bits (1727), Expect = 1.740e-230 Identity = 339/390 (86.92%), Postives = 361/390 (92.56%), Query Frame = 2
Query: 248 GYANRRAPDAAVDGSSAV--GGRHITSTAREALMTCPTERAVAANLFFSFGTVGESGEVSLQPHDLRRMLQSMGVVVSEDKLSQMVSRADKDSTGYISEDDFLEAFDWLMSQGQDERDYMAIFNMLDKDKNGYVDVDELTNLHSTTKERLTMLEAKKILEVADQNGDGRMNYEEFLKLMTEHVILGWKLLTTFRVIFVMGGPASGKGTICAELVKRANAVHVSSGDLLRAEVQRATPLGLQVAETMKEGRLVEASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARLFGPPEACIRINCPDEVMMRRIIERGKGSGRADDHASVAKVRIETYHQQSSGPSRYFDSIGLECVELDGTLPVEENLRYLLNLPMLGSICYKHVHDGRRR 1411
GYAN R A++G+S+V GGR+ITSTARE LM TERAVAANLFFSFGTVGE GEV+LQPHDL RMLQSMGVVVSEDKLSQMVSRADKD+TG ISEDDFLEAFDWLMSQGQDERDYMAIFNMLDKD+NGYVDVDELTNLHSTTKERLT++EAKKILEVAD NGDGRMNYEEFLKLMTEH ILGWKLLTTFRVIFVMGGPASGKGTICAE+VKRANAVHVSSGDLLR EVQR TPLGLQVAE MKEGRLV+ASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARLFGPPEACIRINCPDEVM RI+ERGKGSGRADDHA A+VRI+TYHQQSSGPSRYF+SIGL+CV+LDGTL V EN +YLLNLPML SICY+HVH+ R +
Sbjct: 57 GYANHRR-SYAMEGNSSVAAGGRNITSTAREELMMSATERAVAANLFFSFGTVGEDGEVTLQPHDLSRMLQSMGVVVSEDKLSQMVSRADKDATGCISEDDFLEAFDWLMSQGQDERDYMAIFNMLDKDQNGYVDVDELTNLHSTTKERLTVVEAKKILEVADTNGDGRMNYEEFLKLMTEHTILGWKLLTTFRVIFVMGGPASGKGTICAEVVKRANAVHVSSGDLLRDEVQRQTPLGLQVAERMKEGRLVDASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARLFGPPEACIRINCPDEVMASRIVERGKGSGRADDHAGAAQVRIDTYHQQSSGPSRYFESIGLKCVDLDGTLSVRENTQYLLNLPMLSSICYRHVHEARSK 445
BLAST of mRNA_P-fluviatile_contig6.12687.1 vs. uniprot
Match: A0A7S4I305_9STRA (Hypothetical protein n=2 Tax=Odontella aurita TaxID=265563 RepID=A0A7S4I305_9STRA) HSP 1 Score: 224 bits (571), Expect = 6.660e-61 Identity = 132/387 (34.11%), Postives = 211/387 (54.52%), Query Frame = 2
Query: 317 TSTAREALMTCPTERAVAANLFFSFG-----------TVGES-GEVSLQPHDLRRMLQSMGVVVSEDKLSQMVSRADKDSTGYISEDDFLEAFDWLMS-------QGQDER------------------DYMAIFNMLDKDKNGYVDVDELTNLHSTTKERLTMLEAKKILEVADQNGDGRMNYEEFLKLMTEHVI---LGWKLLTTFRVIFVMGGPASGKGTICAELVKRANAVHVSSGDLLRAEVQRATPLGLQVAETMKEGRLVEASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARLFGPPEACIRINCPDEVMMRRIIERGKGSGRADDHASVAKVRIETYHQQSSGPSRYFDSIGLECVELDGTLPVEENLRYLLN 1357
T+ + CP + +V +LF SF GE G L DLR +L ++G +E +LS+++ D D +G + +FLE D +++ G D D + F LD+D NG + +DEL L STT +++ +A+ IL AD +G G ++ EFL L+ + + +GW+L + FR V+GGP SGKGT+C + +RA H SSGD+LR E++ +PL ++ TM++G LV ++T++ALL+K L +PG + LDGFPRS++N +D+ + G PE + ++ PD+VM+ RI++R + SGRADD+ A R+ET+H+ + + G+ +LDGT E+ LL+
Sbjct: 42 TTAGSPSFAKCPKDESVIRDLFLSFAHXXXXXXXXXXXXGEDDGPPCLNVDDLRDLLTAIGERPTEGRLSRLIDEVDSDRSGTVEYGEFLEGCDAILAGRRSANDNGDDNXXXXXXXXXCDYDSAVDMGDMIDAFRTLDRDGNGVLTIDELEGLLSTTGGKISEEDARAILRAADTDGSGSVDLSEFLDLVADPTLGGRIGWRLRSGFRAFLVLGGPGSGKGTLCDIMARRAGIKHCSSGDVLREELESGSPLASEIGVTMEKGELVPSTTIIALLKKRLCRYPGSLLALDGFPRSVENYQDFDDVCGRPEFAVSVDVPDDVMIERILKRAETSGRADDNIDTATRRLETFHELTKPTLFQLERDGVPVYKLDGTRSPEDIWEELLD 428
BLAST of mRNA_P-fluviatile_contig6.12687.1 vs. uniprot
Match: A0A7S2RDR3_9STRA (Hypothetical protein n=1 Tax=labyrinthulid quahog parasite QPX TaxID=96639 RepID=A0A7S2RDR3_9STRA) HSP 1 Score: 212 bits (539), Expect = 1.000e-56 Identity = 123/333 (36.94%), Postives = 191/333 (57.36%), Query Frame = 2
Query: 398 VGESGEVSLQPHDLRRMLQSMGVVVSEDKLSQMVSRADKDSTGYISEDDFLEAFDWLMSQGQDE-RDYMAI------FNMLDKDKNGYVDVDELTNLHSTTKERLTMLEAKKILEVADQNGDGRMNYEEFLKLMTEHVILG--WKLLTTFRVIFVMGGPASGKGTICAELVKRANAVHVSSGDLLRAEVQRATPLGLQVAETMKEGRLVEASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARLFGPPEACIRINCPDEVMMRRIIERGK----GSGRADDHASVAKVRIETYHQQSSGPSRYFDSIGLECVELDGTLPVEENLRYLLN 1357
V E E L +L +L+S+G +E +++ + S AD D G I +F+ + D L+ E R +I FN LDKD +G++ V++L L +T T EA+++++ ADQ+G+ ++ +EF+ L+T W+L + FR I+++GGPA GKGT+CA + + A H+S G++LR EVQ TPLG ++ + G LVE + VLALL + HPG VLLDGFPRS NA D+ + G P + + CP + M+ RII+RG+ G R+DD+ A+ RIET+++Q Y + I + + LD T +E + LL+
Sbjct: 71 VVELKETVLTRQELEPLLKSLGEFPTEKEVNAIFSLADSDKNGVIDLQEFISSCDKLLQPISGESRPVHSIDIMIQRFNTLDKDMDGFISVNDLEGLLTTGGGCFTAKEAEELVKEADQDGNNLIDLQEFIALLTSKKASTKHWRLRSAFRTIYIVGGPACGKGTLCARIAEHAQIQHISCGEILREEVQAQTPLGKEIEAIIARGELVEPAVVLALLRVRMAEHPGCIVLLDGFPRSQQNAEDFNAMVGKPSLVVYLECPPDTMVNRIIKRGEQSAPGEKRSDDNIETARNRIETFNKQGKPTLEYLEKIDIPVLHLDATKSPDEVWQQLLD 403
BLAST of mRNA_P-fluviatile_contig6.12687.1 vs. uniprot
Match: K0RVU7_THAOC (EF-hand domain-containing protein (Fragment) n=1 Tax=Thalassiosira oceanica TaxID=159749 RepID=K0RVU7_THAOC) HSP 1 Score: 173 bits (438), Expect = 9.740e-43 Identity = 94/242 (38.84%), Postives = 140/242 (57.85%), Query Frame = 2
Query: 638 YVDVDELTNLHSTTKERLTMLEAKKILEVADQNGDGRMNYEEFLKLMTEHVILGWKLLTTFRVIFVMGGPASGKGTICAELVKRANAVHVSSGDLLRAEVQRATPLGLQVAETMKEGRLVEASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARLFGPPEACIRINCPDEVMMRRIIERGKGSG----------------RADDHASVAKVRIETYHQQSSGPSRYFDSIGLECVELD 1315
Y+ D + L + ER + + +L+ D N DGR+ EEFL +ILG + RV+ V+GGP SGKG +C L AVH+S G++LR EV+ TPLGL+VA M+ G LV ++TV AL+ + + +PG+ +LLDGFPRS++NARD+ L GPPE + ++C D V++ RI++RG+ S RADD+ A R+ TYH+ + ++ + + VELD
Sbjct: 164 YLSEDRVRLLLESIGERPSEATFRMLLDNVDSNRDGRVTLEEFLN--AADLILG---KSPARVVLVVGGPGSGKGALCERLAAECGAVHLSCGEMLREEVESGTPLGLEVAAIMERGELVSSATVTALMRRRMRAYPGQRILLDGFPRSIENARDFVELCGPPELALHLDCDDTVLLERILDRGEQSAEEARRAEEEGIEAVNVRADDNVFTAINRLRTYHKHHAPTMQWLKKMKVPVVELD 400
BLAST of mRNA_P-fluviatile_contig6.12687.1 vs. uniprot
Match: A0A7S0KAC2_9STRA (Hypothetical protein n=1 Tax=Leptocylindrus aporus TaxID=1398097 RepID=A0A7S0KAC2_9STRA) HSP 1 Score: 167 bits (423), Expect = 8.230e-42 Identity = 88/248 (35.48%), Postives = 142/248 (57.26%), Query Frame = 2
Query: 638 YVDVDELTNLHSTTKERLTMLEAKKILEVADQNGDGRMNYEEFLKLMTEHVILGWKLLTTFRVIFVMGGPASGKGTICAELVKRANAVHVSSGDLLRAEVQRATPLGLQVAETMKEGRLVEASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARLFGPPEACIRINCPDEVMMRRIIERGK----GSGRADDHASVAKVRIETYHQQSSGPSRYFDSIGLECVELDGTLPVEENLRYLLNLPML 1369
Y+ +D + L S+ ER + + AD N DG+++ EFL+ + + + R++ V+GGP SGKG +C + + NAVH+SSG++LR E+++ TPLG++V + ++ G LV ++ + AL+ + + +PG+ VLLDGFPRSL+NARD+A L G PE + +NC D ++M RI+ R K GR+DD+ A R+ YH+ + + V LD + E LL++ L
Sbjct: 102 YLTIDGVKELLSSIGERRNDETVAEFFQAADLNNDGKLHLHEFLQAADQVLSK-----SPARIVLVVGGPGSGKGILCDRMAQECNAVHLSSGEMLREEIKKGTPLGMEVKDIIERGELVSSALMTALIRRRMRDYPGRRVLLDGFPRSLENARDFADLIGKPELALHLNCDDTILMERILMRAKEQSENGGRSDDNIETALRRLRNYHKAQKPTMDWLREQHIPIVNLDVSGTPESVWNQLLSIGRL 344
BLAST of mRNA_P-fluviatile_contig6.12687.1 vs. uniprot
Match: A0A7S1YIY5_9STRA (Hypothetical protein n=1 Tax=Grammatophora oceanica TaxID=210454 RepID=A0A7S1YIY5_9STRA) HSP 1 Score: 161 bits (408), Expect = 2.830e-41 Identity = 86/211 (40.76%), Postives = 123/211 (58.29%), Query Frame = 2
Query: 758 EEFLKLMTEHVILGWKLLTTFRVIFVMGGPASGKGTICAELVKRANAVHVSSGDLLRAEVQRATPLGLQVAETMKEGRLVEASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARLFGPPEACIRINCPDEVMMRRIIERGKGSGRADDHASVAKVRIETYHQQSSGPSRYFDSIGLECVELDGTLPVEENLRYLLNLPMLGSICYKH 1390
EEFL E ILG + R++ V+GGP SGKG + L + + VH+SSGDLLR EV++ TPLG +VA+ M+ G LV ++ ++ L+ + + HPGK VLLDGFPRSL+NA D + G PE + ++C D ++M RI+ RGK RADD+ A +R+ TYH+ + G+ V LD + E LL + L +H
Sbjct: 2 EEFLMCANE--ILGG---SPARIVLVVGGPGSGKGLLSKRLEEECSVVHLSSGDLLRDEVRKGTPLGQEVAQIMQRGELVSSAIIVTLIRRRMRDHPGKRVLLDGFPRSLENAHDLMEICGKPELALHLSCDDTILMERILRRGKEGNRADDNVETALLRLRTYHKYHHTQMEWLREQGVPVVNLDCSGSPENVWHQLLAIGRLMRPAAQH 207
BLAST of mRNA_P-fluviatile_contig6.12687.1 vs. uniprot
Match: A0A7S1YXG0_9STRA (Hypothetical protein n=3 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A7S1YXG0_9STRA) HSP 1 Score: 171 bits (432), Expect = 4.230e-41 Identity = 98/235 (41.70%), Postives = 137/235 (58.30%), Query Frame = 2
Query: 566 LMSQGQDERDYMAIFNMLDKDKNGYVDVD--ELTNLHSTTKERLTMLEAKKILEVADQNGDGRMNYEEFLKLMTEHVILGWKLLTTFRVIFVMGGPASGKGTICAELVKRANAVHVSSGDLLRAEVQRATPLGLQVAETMKEGRLVEASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARLFGPPEACIRINCPDEVMMRRIIERGKGSG---RADDHASVAKVRIETYHQ 1255
+ + GQD M + K +NG + +D +++NL T KK+ EVAD +GDG ++ +EF + LG K R+I V+GGP SGKG + LVK +H+SSGDLLR EV + T LG QV E MK G LV + ++AL++K + HPGK +LLDGFPRS +NA+D L G PE + ++C D +++ RI+ RG SG RADD+ A RI YH+
Sbjct: 289 VRAMGQDA--LMDLMQHYGKVRNGVLSLDWHDVSNLLKGVGNDSTDAFVKKLFEVADADGDGYIDEQEFFN--NSELFLGEK---PARIILVVGGPGSGKGLLSERLVKECGVIHISSGDLLRDEVAKGTTLGKQVDEIMKSGGLVSSGIMVALMQKKMKKHPGKRILLDGFPRSTENAQDLVTLCGKPELALHLDCDDTILIERILNRGLSSGSSARADDNIHTALTRIRNYHK 516
BLAST of mRNA_P-fluviatile_contig6.12687.1 vs. uniprot
Match: A0A1Z5JJ07_FISSO (Adenylate kinase n=2 Tax=Fistulifera solaris TaxID=1519565 RepID=A0A1Z5JJ07_FISSO) HSP 1 Score: 161 bits (408), Expect = 3.600e-40 Identity = 86/203 (42.36%), Postives = 123/203 (60.59%), Query Frame = 2
Query: 713 ILEVADQNGDGRMNYEEFLKLMTEHVILGWKLLTTFRVIFVMGGPASGKGTICAELVKRANAVHVSSGDLLRAEVQRATPLGLQVAETMKEGRLVEASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARLFGPPEACIRINCPDEVMMRRIIERGKGS--GRADDHASVAKVRIETYHQQSSGPSRYFDSIGLECVELD 1315
+ +VAD +G+G ++ +EFL+ V+L R+I V+GGP SGKG +C+ L VH+SSGDLLR EV+R +PLG +V + M G LV ++ ++ L++K + H GK VLLDGFPRS++NARD RL G PE + ++C D VM+ RI+ERG S R DD+ A RI T+H+ + + V LD
Sbjct: 80 LFQVADLDGNGYIDLDEFLE--NAPVLLE---SNPARIIIVVGGPGSGKGLLCSRLAAECGVVHLSSGDLLRNEVERQSPLGREVKDIMARGELVSSAIIVTLMKKHMGAHSGKRVLLDGFPRSVENARDLTRLCGVPELALHLDCEDTVMLERIMERGSASVVRRQDDNFQTAIRRIRTFHKYHKATMEWLHEQHVPVVNLD 277
BLAST of mRNA_P-fluviatile_contig6.12687.1 vs. uniprot
Match: A0A7S4R1Y4_9STRA (Hypothetical protein n=1 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A7S4R1Y4_9STRA) HSP 1 Score: 159 bits (403), Expect = 3.800e-40 Identity = 83/180 (46.11%), Postives = 112/180 (62.22%), Query Frame = 2
Query: 725 ADQNGDGRMNYEEFLKLMTEHVILGWKLLTTFRVIFVMGGPASGKGTICAELVKRANAVHVSSGDLLRAEVQRATPLGLQVAETMKEGRLVEASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARLFGPPEACIRINCPDEVMMRRIIERGKGSG---RADDHASVAKVRIETYHQ 1255
AD +GDG ++ +EF + LG K R+I V+GGP SGKG + LVK +H+SSGDLLR EV + T LG QV E MK G LV + ++AL++K + HPGK +LLDGFPRS +NA+D L G PE + ++C D +++ RI+ RG SG RADD+ A RI YH+
Sbjct: 29 ADADGDGYIDEQEFFN--NSELFLGEK---PARIILVVGGPGSGKGLLSERLVKECGVIHISSGDLLRDEVAKGTTLGKQVDEIMKSGGLVSSGIMVALMQKKMKKHPGKRILLDGFPRSTENAQDLVTLCGKPELALHLDCDDTILIERILNRGLSSGSSARADDNIHTALTRIRNYHK 203
BLAST of mRNA_P-fluviatile_contig6.12687.1 vs. uniprot
Match: A0A7S4MMY0_9STRA (Hypothetical protein (Fragment) n=1 Tax=Odontella aurita TaxID=265563 RepID=A0A7S4MMY0_9STRA) HSP 1 Score: 167 bits (422), Expect = 8.330e-40 Identity = 87/183 (47.54%), Postives = 114/183 (62.30%), Query Frame = 2
Query: 707 KKILEVADQNGDGRMNYEEFLKLMTEHVILGWKLLTTFRVIFVMGGPASGKGTICAELVKRANAVHVSSGDLLRAEVQRATPLGLQVAETMKEGRLVEASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARLFGPPEACIRINCPDEVMMRRIIERGKGSGRADDHASVAKVRIETYHQ 1255
KK+ EVAD + DG + EFL LG + R+I V+GGP SGKG +C LV+ VH+SSGDLLR EV R T LG QV E MK G LV ++ ++ L++K + HPGK +LLDGFPRS +NARD L G PE + ++C D V++ RII RG+ RADD+ A R+ YH+
Sbjct: 339 KKLFEVADSDKDGLIGTAEFLN--NSDAFLGER---PARIILVVGGPGSGKGLLCERLVRECGVVHLSSGDLLRDEVARGTDLGQQVEEIMKGGGLVSSAIMVTLMKKRMKDHPGKRILLDGFPRSAENARDLVTLCGQPELALHLDCDDTVLLERIISRGRTGARADDNFHTAIQRVRNYHK 516
The following BLAST results are available for this feature:
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Taxonomic scope | Eukaryota |
| Seed ortholog score | 671.0 |
| Seed ortholog evalue | 3.9e-190 |
| Seed eggNOG ortholog | 2880.D7G1Y4 |
| KEGG rclass | RC00002,RC00003,RC00060,RC00181,RC00496 |
| KEGG ko | ko:K00939,ko:K02183,ko:K11423,ko:K13800 |
| KEGG Reaction | R00127,R00158,R00512,R01547,R01665,R03875,R03938,R04866,R04867,R11319,R11891,R11892 |
| KEGG Pathway | ko00230,ko00240,ko00310,ko00730,ko00983,ko01100,ko01110,ko01130,ko04014,ko04015,ko04016,ko04020,ko04022,ko04024,ko04070,ko04114,ko04218,ko04261,ko04270,ko04371,ko04626,ko04713,ko04720,ko04722,ko04728,ko04740,ko04744,ko04745,ko04750,ko04910,ko04912,ko04915,ko04916,ko04921,ko04922,ko04924,ko04925,ko04970,ko04971,ko05010,ko05031,ko05034,ko05133,ko05152,ko05167,ko05200,ko05214,ko05418,map00230,map00240,map00310,map00730,map00983,map01100,map01110,map01130,map04014,map04015,map04016,map04020,map04022,map04024,map04070,map04114,map04218,map04261,map04270,map04371,map04626,map04713,map04720,map04722,map04728,map04740,map04744,map04745,map04750,map04910,map04912,map04915,map04916,map04921,map04922,map04924,map04925,map04970,map04971,map05010,map05031,map05034,map05133,map05152,map05167,map05200,map05214,map05418 |
| KEGG Module | M00049,M00052 |
| EggNOG free text desc. | cytidylate kinase activity |
| EggNOG OGs | COG0563@1,COG5126@1,KOG0027@2759,KOG3079@2759 |
| EC | 2.1.1.43,2.7.4.14,2.7.4.3 |
| COG Functional cat. | F |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko00002,ko01000,ko01009,ko03036,ko04131,ko04147 |
| Hectar predicted targeting category | mitochondrion |
| Ec32 ortholog description | Adenylate kinase/UMP-CMP kinase |
| Ec32 ortholog | Ec-07_003680.1 |
| Exons | 10 |
| Model size | 2939 |
| Cds size | 1383 |
| Stop | 1 |
| Start | 1 |
Relationships
The following polypeptide feature(s) derives from this mRNA:
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817013.1934142-UTR-P-fluviatile_contig6:3654919..3654983 | 1622817013.1934142-UTR-P-fluviatile_contig6:3654919..3654983 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig6 3654920..3654983 + |
| 1693570791.41666-UTR-P-fluviatile_contig6:3654919..3654983 | 1693570791.41666-UTR-P-fluviatile_contig6:3654919..3654983 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig6 3654920..3654983 + |
| 1622817013.3121185-UTR-P-fluviatile_contig6:3667477..3668969 | 1622817013.3121185-UTR-P-fluviatile_contig6:3667477..3668969 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig6 3667478..3668969 + |
| 1693570791.5452209-UTR-P-fluviatile_contig6:3667477..3668969 | 1693570791.5452209-UTR-P-fluviatile_contig6:3667477..3668969 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig6 3667478..3668969 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817013.2041264-CDS-P-fluviatile_contig6:3654983..3655247 | 1622817013.2041264-CDS-P-fluviatile_contig6:3654983..3655247 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3654984..3655247 + |
| 1693570791.430127-CDS-P-fluviatile_contig6:3654983..3655247 | 1693570791.430127-CDS-P-fluviatile_contig6:3654983..3655247 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3654984..3655247 + |
| 1622817013.2150955-CDS-P-fluviatile_contig6:3657351..3657489 | 1622817013.2150955-CDS-P-fluviatile_contig6:3657351..3657489 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3657352..3657489 + |
| 1693570791.4395785-CDS-P-fluviatile_contig6:3657351..3657489 | 1693570791.4395785-CDS-P-fluviatile_contig6:3657351..3657489 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3657352..3657489 + |
| 1622817013.226991-CDS-P-fluviatile_contig6:3659035..3659188 | 1622817013.226991-CDS-P-fluviatile_contig6:3659035..3659188 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3659036..3659188 + |
| 1693570791.4496286-CDS-P-fluviatile_contig6:3659035..3659188 | 1693570791.4496286-CDS-P-fluviatile_contig6:3659035..3659188 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3659036..3659188 + |
| 1622817013.2400665-CDS-P-fluviatile_contig6:3660937..3661039 | 1622817013.2400665-CDS-P-fluviatile_contig6:3660937..3661039 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3660938..3661039 + |
| 1693570791.459965-CDS-P-fluviatile_contig6:3660937..3661039 | 1693570791.459965-CDS-P-fluviatile_contig6:3660937..3661039 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3660938..3661039 + |
| 1622817013.250682-CDS-P-fluviatile_contig6:3662544..3662613 | 1622817013.250682-CDS-P-fluviatile_contig6:3662544..3662613 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3662545..3662613 + |
| 1693570791.4700522-CDS-P-fluviatile_contig6:3662544..3662613 | 1693570791.4700522-CDS-P-fluviatile_contig6:3662544..3662613 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3662545..3662613 + |
| 1622817013.261001-CDS-P-fluviatile_contig6:3663151..3663325 | 1622817013.261001-CDS-P-fluviatile_contig6:3663151..3663325 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3663152..3663325 + |
| 1693570791.4800792-CDS-P-fluviatile_contig6:3663151..3663325 | 1693570791.4800792-CDS-P-fluviatile_contig6:3663151..3663325 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3663152..3663325 + |
| 1622817013.2711346-CDS-P-fluviatile_contig6:3664285..3664336 | 1622817013.2711346-CDS-P-fluviatile_contig6:3664285..3664336 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3664286..3664336 + |
| 1693570791.493272-CDS-P-fluviatile_contig6:3664285..3664336 | 1693570791.493272-CDS-P-fluviatile_contig6:3664285..3664336 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3664286..3664336 + |
| 1622817013.2811959-CDS-P-fluviatile_contig6:3664805..3664930 | 1622817013.2811959-CDS-P-fluviatile_contig6:3664805..3664930 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3664806..3664930 + |
| 1693570791.5075657-CDS-P-fluviatile_contig6:3664805..3664930 | 1693570791.5075657-CDS-P-fluviatile_contig6:3664805..3664930 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3664806..3664930 + |
| 1622817013.2910872-CDS-P-fluviatile_contig6:3665750..3665876 | 1622817013.2910872-CDS-P-fluviatile_contig6:3665750..3665876 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3665751..3665876 + |
| 1693570791.5202491-CDS-P-fluviatile_contig6:3665750..3665876 | 1693570791.5202491-CDS-P-fluviatile_contig6:3665750..3665876 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3665751..3665876 + |
| 1622817013.301788-CDS-P-fluviatile_contig6:3667296..3667477 | 1622817013.301788-CDS-P-fluviatile_contig6:3667296..3667477 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3667297..3667477 + |
| 1693570791.5296626-CDS-P-fluviatile_contig6:3667296..3667477 | 1693570791.5296626-CDS-P-fluviatile_contig6:3667296..3667477 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig6 3667297..3667477 + |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig6.12687.1 >prot_P-fluviatile_contig6.12687.1 ID=prot_P-fluviatile_contig6.12687.1|Name=mRNA_P-fluviatile_contig6.12687.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=461bp
MLPRRLAVYFRRATLGSAGAGKGLESACKQTPIGSALWRLSSTTSSLSPS SGRSGACVESSGYANRRAPDAAVDGSSAVGGRHITSTAREALMTCPTERA VAANLFFSFGTVGESGEVSLQPHDLRRMLQSMGVVVSEDKLSQMVSRADK DSTGYISEDDFLEAFDWLMSQGQDERDYMAIFNMLDKDKNGYVDVDELTN LHSTTKERLTMLEAKKILEVADQNGDGRMNYEEFLKLMTEHVILGWKLLT TFRVIFVMGGPASGKGTICAELVKRANAVHVSSGDLLRAEVQRATPLGLQ VAETMKEGRLVEASTVLALLEKFLTLHPGKHVLLDGFPRSLDNARDWARL FGPPEACIRINCPDEVMMRRIIERGKGSGRADDHASVAKVRIETYHQQSS GPSRYFDSIGLECVELDGTLPVEENLRYLLNLPMLGSICYKHVHDGRRRA EGRDRAPEPA* back to topmRNA from alignment at P-fluviatile_contig6:3654920..3668969+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig6.12687.1 ID=mRNA_P-fluviatile_contig6.12687.1|Name=mRNA_P-fluviatile_contig6.12687.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=14050bp|location=Sequence derived from alignment at P-fluviatile_contig6:3654920..3668969+ (Porterinema fluviatile SAG_2381) ATCATCTTGATCATCTTGTACGTCGAGTCAAGAGAAATTGGTATCTCAGA
GGAAAGCCAAGCCGATGCTACCGAGACGACTCGCGGTATACTTTAGGCGA
GCGACCCTTGGGTCTGCTGGCGCCGGTAAAGGGTTGGAGAGCGCGTGCAA
ACAGACACCCATTGGGTCTGCCTTGTGGCGGTTATCGAGCACGACATCAT
CGTTATCGCCCTCCTCAGGGAGAAGCGGCGCTTGCGTAGAGTCAAGCGGT
TATGCAAATCGGAGGGCTCCCGATGCTGCTGTCGACGGCTCGAGCGCGGT
GGGGGGGAGACATATCACGAGCACCGCGGTAAGAGCGTAGACTGTGGGAT
TTCGTCGGCCACAACATACCTCTCCCAAAGTTCTGCTTCACTGCGAAGCG
TCCCACATGGTGTCTGCGCGTCACCGCGCCGCCCGGGTCTCTCTCTCGCT
CTCTCTCTCTCTGtcTCTCTCTCTCTCTCTCGGCGTGAGACTCTGCTTCC
TCTCTCTCTTCTTGTGTGAAAGTCTTGAAGGCTGGTTGCAATTGCAGGGC
AGCGGTTACCAGTGGCGGTTGCAAAGTGGTCTCTCAATCAAATGCACTCC
AGCAGCAGCAGCTTGTCCAAACCATCAAGCTGTTCAAATGGTATCAAACA
ACAGACTAGAGCGGTGCTGTTCCCCCGCTCTCGCTGTTGTCCTTGCACGG
TATTCAGTGCCCTCCAAACTCTCCTGCGTGTGTGGTGTATCGATGTTGCA
AACTAACCAACAAGCTCGCACGCTGACAATCTACGTTTGACTTGCGCGTT
TCGCACTCCGTATCAAATCGAGTTTTTGCTGAAAAAAATTGTGCAACATC
AGATGCGTCGCGAAGCAGTTTCCCTTCGCTTCTTGCCAAGCAACAATCAA
CAGCAGCGTGTCAGCTACTGGCACGGAATGCGAACGCCATGCGTACGCAC
GTGCTACCGTACAGCAGCATTGCATGTAGTCTACATCTAGTCGATCAGCG
CGTTCGATCGAGCCAGCGGCAAGAAGCCGAATGGCAACGGCCTTGCCGCA
CGCATGCAATAACATATATTGACACAAGATAACACACCCCCTTGACCGAT
TTTCGAAGCTCGATTTCTCAACTGCAGGAACAGTCGCTGCGCCGAAAATG
GCGGCGTTGAAACCGTCTTGTCGAGAGCTTTTCGAAAATGTATCATTATG
CATCCTCTTCGTCGTGGAGTAATCGAGCTTTGAAAATCGGTTGTGTTATC
TTGTGTCATACACGGTACTCAACTCTCCACTGAGCAGAGGCGTATCCTAC
CCACCCAGCACGCGCAGCGGAGCGTGCGTTGGTGTATCTGACGGGTTTTG
GTGTTAGCTGCGACAATAAGACTTCTGCGGCGGCAAAGGATCCATCCGCC
GACACTTGATGATGGCTCGCGATCCTTCGGCCGCCTTGGTCACTTCGTAG
CGGGGATGCGCCGCGTGGTTGGCATGATGCTAAAAGCGATCGAATCCCGG
GGTGGTGAAGTCATATACTGCCGTTGTTGTTGGATTGTCGTGTATCGCCG
CGAACACATCGCTCAGTACGTCATTCAGTGGAGTGCTAGCATGGCCGGGG
AAGGGGAGAGTGCAGTTGCTTGGTTATACGTCGATTCATAAGCCGGTTGA
GGGGACACAACACCTGCAGTTTTCGCCGCAGTCTTGCAGTCGTCTTGCCT
TCGGTGGTGAAATCACCGCCGGAGCTGTGGCGTGCTCACTTATCTTGGCG
TGGTGAGAGAGCTTTGCACAGCAAATATTCATATGCATACAATACGTATC
GCATGTCCACACATAAGCTTGAAACTTACGGTGACACGGCGGCGGCGTCT
TTTCGCTAAACGGTGAGATATCTGTGCGTCTTTATATCGATTCTCGTCAC
CCCACCCCCTCAAACCTGTTTCTTGACCATGGCGAAAGTATTCCCGGTAC
CCTCTCCTGGTGGACTTCTCTGTAAGTAAAGTTTTTTTTCGGGACAAGCG
CCGCTGTCGCCTTTCAGGGATTGCGGCAGGACGCATGTGCTGAATTATCG
GCAGGCAAGCATGGGTCCCAAGCTCCTCCCGGCCCAACCACCCCCCCCCC
GCCTTACCAGCGATACGAAGAGCACACGATCTCCGTCGTCGTGCTTAACT
CGGAACGGTCGTTCACGAACCCAACCTGAACCACGTGCAAGAAAGCCACG
CCGGTAGGCTCCGCGGTGCTCACCAATCCAGGCCCTCTTGTACTCTTGGG
CCACGGAGAGCAGCCGCGGTGAATCAAAGTTGTTGGACACATTTCTCAGC
ACCATCTCCAGAAATGGCACACGAAACCACGAAACTCGACTCTTCATAAC
CGTTTCGTTATTTTTGTCTCCATTCCCCCGCCCTTGTCCCCCTCGCCTCG
CCTTCCGTCGCGAAAACTGAACCCAAATCAAGAGAGAGGCGCTGATGACG
TGCCCCACGGAGAGAGCCGTGGCGGCCAACCTCTTCTTCAGCTTTGGGAC
GGTCGGCGAAAGCGGAGAGGTCTCGCTGCAGCCGCACGACCTCCGGCGGA
TGCTGCAGTCCATGGGTGTGGTGAGTGGCAATGGGTTTCTCCTTTGACGT
TTGCGCACTTGGTGTTATGTATTGCACAAGCAACAGCATGATGGAACACG
TTAGGTGTCATGTAACGACTTTCAAACTGCACCGATATCGGGTGCAGGGG
TTCTACTACTTCCATGTCGTGTGCTCCCTCCCGGGTGCTGGCAGCAGGAC
GAGGATGGCCTGCCAGGTGCTTTGCGCTTTTTGGGCGCCGACAATAGAGT
CTCCAGCGTGACGAGTATGTTGCAGACGGGTCGTGTCTGTGGTGTGTTGT
ACCGTTGCCTGCCGTGTATGGGTGCGGTGCTCGCGAGGTCGAGTTCCAGC
GGGATGGATTGCGGCCGCCTCAGACCATCTACAACCGGCCTCGCCGCCAA
TGCCCCTCAGTGTGTGATAAATCAGTCTCTCTTGCGCAGGCGACTCGGTT
CACTTTCGGACGAGGTGGAGATTAGGACGCGAGAGAGTCGGTGTGTCTGT
CAGCACCGTGCCGCGCCTAGCTAACACCATGCTTCAGCTCGTACAATCAG
TAGGGTTGAGTGTCACACAACACTCACTGCCCTTTGCATGCTGGACACCG
CTCTCTTTCCGCTGTACCCTCGTGTCCGTTGCCTTTGCGGGGCTGTTGAA
AATGGATGCATCATTTCGTTTCTTTTATATCCGACGGCGGATTACATGGT
GTGGTGGCCTATCGGAGTGACTCAGTTTGTACCTTTTATTGTCGTCGGTT
GTACCTTTAGTTGCCGCCGAAGGTTGTGTGAGAGAGGAAACCACGACGCA
CGTGTACGCAGCATGTCACCCTCTTTCTCGAAGACTCTCCGGATGGTTCC
GCATGGTCAGAAGACTCCGCGCGAGACTTGCGGAACACCTGAGCACATGC
AGCGTTCCTCTCGACGAACAAAAAACAAGTATCGCTGCTGGCTTGTGGAG
CTAGTTCCGACCGGCCCCACGGGCGAGTGTCTTCGCGTCCTGGCAAGACG
AAGAAAGCAGCGGTCGAAGCCGCGTCATTTTGGTGTGCGCCTCCTGTTTT
TTTTTTTCGGTGGCATTCACTGTTGCTTCGCCGGAGCTAAAAGTGAGCGT
ACCACATGTGTGCGGGGTCAGGTATTGGAAACGTCGGTTGTAAGTCTACT
TACCCTCTTTCGTCTCGATCTACTCTTTCTTTCTTTCGAGTCCGAGCCTC
CTCTCGATGAGCAGCCCACGTTTTATTTTCGTCTTGGAATCAAACGAGCC
TCGGAATGCGTCGCGGGGAAAGCGTTTTAAGATGTTGCCTCTTGCCGGCT
CACTCAGACCAGCCTGATCTGCTCTTGGTCGGTTCAGTGAAGCAGACGCC
GAGTTTGCGTCCCGGCAATCACAAGAGCCAGTTGCTCTCTGTCTCTCACT
CTGTCTCTCTGTCTCTCTCTGTTGTTTCAATTCGAAGACGGATGATTTCG
TTGTTTTTTGGCGTTGGATCAATCAAATCGAACCAACGTTTTCCAACCGT
TGTTTGCTGTTTCTGCCATGGACCAAATCAATCGGATATATTTGTGTCGT
CCAACCCCGCTGTAAGGTCGTGTCGGAGGACAAGCTGAGCCAGATGGTGT
CCAGAGCGGATAAGGACTCGACGGGGTACATCTCCGAGGACGACTTCCTG
GAGGCGTTCGACTGGCTTATGTCGCAGGGGCAGGACGAGCGCGACTACAT
GGCGATCTTCAACATGTTGGTGGGTAGAGCGCGTGTTGAGGCCGCAGGTC
GACCCTGGTCAGATTTCGCTGGATCTTGAAAGGCGAGGCAAATTTCTGTC
TTTCGGTTCGAAGTGCAGCGGTGTTCAGGCTCAAAGCTAAGACGCTGACC
GCTGAAAACGAGTCACGTGCTACATACAAATTCAGTGCCCGCAGTTTTTG
AAACGATTTATCCTTCGTTAAGTGCGGGAGCTACAAGCAGCAGGAAACAG
GCTTGTGCAGCGACCACATTTTGAACGCTTCGTGCTGACTTGTGGATGAC
TACAGGTGCACGTTCACAGTCTGACGCCCGCAAATCTAGCACGGCGATGG
GTGGAGTATGCGAGGACACACTTGTGTTGAAGAAGTGGTCGCTGACACTC
ACGAACTCCACAAAATTTCGAATGCTTTGTGGCCAGAGCGCTCAAAAACC
TTGTCTTTACAGCAGCCTGTTTCCTGCTATTGGCAGCTCCTAGAAACTGA
CGAAGGGTGAGCCGTTTCAAAAGCTGCGGGCAGGAATCTGTATGTGGTAC
GTGACATGCTCCTGGCTGCCAGTGTCTTGAGCTTTTAGTCACCGCTGCAC
GAACCTTGTCGCGAACATAGATTTCTTGCCAACAAAGACTGCAGATTTGC
TCGCCTTGCGAAGATCCAGCGAAATCTGAACAGGGTCGACCTGCGGCCTT
CACGCGTGGGTGTTTCGGACTCGTTTGCCCTGCGCTTATTTTCGTTTGCC
TGACAAAATAAGAGTCGCAGCGTGCCTCAGGTCATCCACGTAAAGTTTCG
GCATGCTTTTAGTATAGCCTGGACAGGCGGCGGCTGCCTGGCTTCTCTCC
GGGCACGACGTCCGAGGAAATCTGTAGCGGAAGTCGTGCCCCGACAGCAT
CCGGCTATTACGGTAGTTCAAAGTAGTCAGGCCCAAATTGGAGCAAACGG
AAAAAGCGTTTTGGTGTGCAACGTTTGTAGCAAATAACTTTTGTTCATTC
GGTCATTCGCGTTCGAATATTGAAGGTCTTACCGTCATTTTGGTCCAGGC
TGTTATGTACCTCCGTGATAGCTGCCGCCGGCGACGACCAGGCATGCTGC
TTTTCGATGCTGCCCCTTCCCTCTGTAGCGTTGCTGGCGCGATATCCGAG
GCATGTTGGCTGTACGTGTGCGCGCGCGTGCCGTGGTTGGAGCTTTTTCG
TTGACTTGTCTTCGAATGCCCCCCCGTGGGGCGGGCCGGCCAGCCTGACA
AAGCGGGGCTGCAGGAGTTGGAAACCCTCGCTGATGCCGGGTGCCGCCTC
CGGGGGCAGAGAGGGCTTGAAGTGGCCAGCGCGGGGGGGGCCGGCGTTGT
CGGGACCGGCACCTTGATTTTCGTTCCCGGGGGTAGCCTTTACCTGCCGT
TCATGAGGCGGCGCAGCCTGCACGCGCACGGATCCACCCACGATCTCTTC
ACCAGCCATGCGCCGGCGTCGTTTGTGTCGGCGCGATTGCCGCGCGGTGC
TCATTCATGTACCTCTTTTTTGTGCACGCAAGACAAACATGCAATCGAAG
GTTGAGTCAGATAGTTCAAGCAAGAAACGGCTTCTTCAAGAACAGCCAGC
CCCTCGTCTTTTTCGTCGCTTTCCGAGGTGTCGTCTTGATGTAATTTGTA
CTGCGGTCCCGACGCCAATCACCCCATCTCCTTTTTTTCGTGGTGAAGCT
GGATCTTCTTTCATGCTTTGGTTTGTGTCCCGGGGAATTTGCTCCCCACC
GGAACCACCGCCACGCAGGATAAAGACAAGAACGGGTACGTTGACGTGGA
CGAGCTCACCAACCTCCACTCCACGACGAAGGAGAGACTCACCATGCTCG
AGGCGAAGAAGATACTAGAGGTATGGGGGGTTTGGGCAACGGCGGCCACC
CCACAACCGAAAACAAGGAGCATTGACTTCGCATCCTTACCAGGCCGCGA
AGGAGCTCGGTGTCGTTTCGGCGAGCCGCTCGACAGGAGTGGGGGGCGGG
AGTAGGGGGAGGGGGGAGGGGAATTCATGGAATGAAGGGGGGTGGAGGGG
CGGGGGTACTCAATTCAAGCATGCCGTAGCCGTTAGGCCATACTTCGAAG
TAGACCTCGCATCCCTGCTAGGCCGAGACGGGGCGATTTACTTCACTGGC
CCAGGCTCTTGCATTCACCAAGCGGGAAGCGCCGGGATGCATTCGGCGAG
TCGCACGAATGGTGGGCAGCATCCTACTAAGGGTGTTCGTCCAAAGTCTT
ACTGATCTTGCAAACGGATGACAAACTCAACCGCGCTGCAAATTATTTTT
TGATATCGACCCAGAACAGCCTTTCGAATGTACTTCGGCAGTGTATCGCC
ATTTCAACACTGTGTGGTACGCGACCCATGCCCCATCTGCGAAGTTAAGT
TCTCCACCCTACTTGCATGGTTTACTCGACATCCATCAAGGCTACACCTC
CTCCCACAGCAAGAAAAAAAAAGAAAACGGTGACCTTGTTGCCTAGCTGA
AGCAGTGAGCAGCATATTTTACAGCGCCGCACCTGGAGCCAACCCAACCC
CTTGCCGCACCATCGGGCCGATGCATCTCTTTCGGGAGCGTGGGGGCGTG
AGGGCTGGGGAGTCATTGAATGGATGCCGTAGTCCAAGATGATGGACCTC
GCATCCCTCTTGGAAGCCGAGTCCGAGCAAGCTTACTCAACCGAGTTTTC
ACTTGAATAGGCTGTGGTTCAGGGGGTGGATGACGTGTTTCACCAATGCG
AAGTGTGAGTGCGTGGGCGGGGAAGGATGGGGCAGGGAGATTTAGCTCTC
GCGCTGTTTGTCGCCTCGCGTTTTTGTCAGATGCCAACCCTGTTCCACAC
CCTTGATGAAAGAGGCACGTCTGGGCGCGGACGAAAGAGGAAATTTGTCG
AGACAGCTGGTTACACTTTGTAGACGTCCCCGTGCTCGCCGGCCTACTCG
AAAACCTCCCCCGGGGAGCACACGGAAGGTAGCGGAAATGCCAACATGTC
GTTGCGCTCAAGTTCTCGTCTTCGCGGGCGGAGGAGTCGAGCTTGTGCCC
TGGCCTGCCTTTTGTCCGACCGGCCCTTCTTTTCGAGCTTGTCGGCCGTC
GTCGGGTCGTGTCATCCGCGAGCTGCGCGCTTGCTGCTGTCCCGCCGTGT
TTTTTTTCTCTCTTGCCGCCGATGCCCGATTCTTTGCGCGCCTTCGTACC
GTCAACCGTGGCACTCGGTTCAGTTCTCGCCGCGACGTGGGTCCGCTTGC
CGCCGATGCCCCCATGTTGCATTCGGTTGTTCTGTGCCGCCGCGGAACGT
ACTGCCGTAGCCCATTCCGTCGTGCAAACGTATCGTGACATCTAGAACCC
GTTTCCCGGTCTCGCCCCGACGCAGGTGGCAGATCAGAACGGGGACGGGA
GGATGAACTACGAGGAGTTCTTGAAGCTCATGACGGAGCACGTGGTGAGC
CAGAGACAGAGAGCACCCGCTATCGCTGATGCGATGGGAGAAGGGTGTGG
AGTTTGTGTGTTTTTCAAAATGATTTCGATGACACCCCCCCCTCTCCCCC
TTCCCCAGAATCAGATCCAGGAGGTATCTACTCTATTGCAGCTGTCTTCT
TTTAACATGTTGCATGGGGTTCCTCTGCGAACGGCATAGGAAGGGAACCG
TGTGCACCTCGGCCCGACTTTGCCTGCTCTGTAGGTCTAGAAGGTGGCGC
TGCCTGTTGATTGCCCCGCTTGTTTGTTTGTCGCGCCGCCACCATCGTGG
AAACAAGTCCACTGGGCCACACGATAGGCCGGGCCGCATTTGTCCGCTGG
ATGGAAAAAGAGCTCGTTGCAGCTCTCGCATGTTGTCGAATATTGTCGAT
TGCGCAGCGTCCACGTCACCCCCTCTCCTTCCTTGCTCTCCCTCGACCTA
TCCGTAATCTCCTGTCCCCCACTGGTTGCCTCGTCCACGGGTCGAACCGA
TGGAATCGAATCAACAAAACTCCCGCGCGCAGATCTTGGGGTGGAAGCTG
CTGACGACCTTCCGGGTGATCTTTGTCATGGGAGGCCCAGCGTCCGGGAA
GGGCACTATCTGCGCGGAGCTGGTGAAGCGGGCCAACGCGGTCCACGTGA
GCTCCGGCGACCTCCTGAGGGCGGAGGTCCAGCGCGCGACGCCGCTGGGT
CTGCAGGCGAGTGTGTTTTCGTCGCAACCCATGGTGACCAGAGAAGCCGG
AGCACACATTCACGAATACCGTGATTAAACATATACGCGTGCTGGTTAAC
CGTTCAACCTGTGGTGGTGGTCGTGCGTGTGCGTTCGCGTGTGCGTGTGC
GAGTGCGTTTGTGCGTGTTGCATTCCCGGCGCCCGATCGCACGTTGGTTT
TGATTTTTTCGTCACCTTACTCGAGTTGGATACATGAGGACTTCTCTTGT
CGGTTGATAAATCACTCAAATCATTTGAGCCGGCAAAGGCAGATAGGTGG
GTTGTTGCAGTCGCGTACCGCACAAATATATCGCCGCTGCTGGGGACGAG
GGCAAACGCGCGGTCCTTCAAGATTTTGCCCCTGGCGATCGTCAGCGAAG
CGTGATGGTTCCCTTCTTCGTCAAAACCCTTTTTTTCTTCTTATTTTTGT
TCGCCCGTCAAGCACCGCGTCTTGGTTCCCACGCCGGTTCGGGAAGCTTT
TGTTTATATCGTGGGCATTTTTCCGCCGGCGCATGGGTTGCATGCTCTCT
GGCGACGCTACCCAGAATTCGTTGAGTACCTCGACCTCTGACGAAGAAAT
TTCCTGCCTCGCGATGTTGAAATCTCGGCCGAAGACGTCCAGAATGTGTT
GAGTGTCTCGACCTCAGAAGAAGAAATTTCCTGCATCTCGATGCTAACAT
CTCGGCCGAAGACGTCCAGACAGTACCTCGACGTGAGGAGAAGGAACCTC
CTGCCTCCCGATGCTAACATCTCGGCCGAAGTGCCGCCACTCTCTCGCGT
ATGATACGCGGTGCTGTCGGCTTCCCACGCCGTGACTGGGTAAACCTGGG
GGAAATAAATGCCCTGCTTGGTCGCGGCCGTCTTTACTTTGTCTCGATGG
CGATGTGTGGACACACCTTGGTTTGTCTGTTCGCGCAACACGACGCCGCT
CGCTGGTTGAAAACAGGTGGCGGAGACGATGAAGGAAGGCCGCCTGGTTG
AAGCAAGTACAGTCTTGGTGAGAAGGGGCGAGAAGGAAGAAACATGGAAT
CAGACGTGCACGGTCGGAAGCCATGGGTCTTTCTTGTCTTAAACCGGAAG
CGTGAGATGCTTGTTCGGCGCAAAGCCAGCCACTCAGTCGCTGGCCCTGG
ACTCGCGGTGCCGCTGCAGGCCTTGTGCGCACTCAGTCGCTGGCCCTGGA
CTCGCGGTGCCGCTGCAGGCCTTGTGCGCATGCACTGGTATCTTGACGTC
CTTGCCGTACGGTTTCCCTCTGAGCTTTTAAAATTTTCTTTGTTTTTTTT
GGGGGGGGGCATTTCTTCTTGAAGGAGCTCCGAGGCGAAGACAAGGGTTC
TGGGCATACAATTGGCCTCGCCCGCGGCTCCTACTTTTTTTTGCTTTGGC
TGAATCTTCGCCCTGCCTTTTGACTCTATCGCACGCCTCCGTGACGCACC
GCTGATCTGACCGCTCTCTTGCCTCTTCAAACGCAGGCACTGCTCGAGAA
GTTCCTGACGCTCCACCCGGGCAAGCACGTATTGTTGGACGGATTTCCTC
GCTCCCTCGACAACGCCAGGGACTGGGCGAGGCTCTTCGGACCTCCAGAA
GCCTGCATTCGGTGAGCGCGATGACGTTGTCGAGAATTCAATTCAGAGCA
GAACAAACCCGAACGCAATCCGGAAGCGCTGCTCGAATTGCAAGGCGAAG
CACAATCCACAACCGCTGCTCCATTACTAAGCAAAGCCAGGCGCAATCCG
TACGCGCTTGTTAAATGACAGAGCAACGCCAAGGGCAGTCCGTAAGCGCT
GCCTGATCCCACTCCGGGGCTAATGCTGGTCACGTTGTATCGTAGCATTT
GATCCCACTCTGTGGTAGCCACGCTCCGCCCCCCCAACAACCACGAACTC
TGTTGTAGCTACACCCCGCCCCCGCCTCACCAACAACCACGAACTCTATT
GTAGCCACACCCCGCCCCCGCCTCACCAACAACCATGAGCAAGAAAATGG
ATGATAAGATAGAACATCACGTTTTGGGGGACGCCTTCGAAAGAGGGCAG
GCAGCCCGCGCCCACCAGGGGCATCGAGGGCAACCTATCGAGGAGTCGTG
TCCAGAAACAGCCGACAGTCAGCCTCGTCTTGATCGGCTTGTTTTGGCGC
GGGTGCGAGCGTCCGGCCGCACGCTGTTGTTTTTTTTTGCCTTTGACCCC
GCTGGTTGCAACTCGAGGGGGCATCACACCGGTGCTGTTGTGTGTGTGCC
CGGATGAAGGAGCGGGAAGGGGACGAGCGGTGCAGCGGACCTCGAATACA
ACATTCATGCTCCGCGTGCTGATGATCCACGTCGTGCGTGTCTCTCGTTT
TTGCCGATCATGCTCGAGATATAGCGCCTACTTGCCGGCCTGCCTGCCTG
CCTGCCTGCCTTTTCGCTCGCCTGTCTTAAGGATCAACTGCCCGGACGAA
GTGATGATGAGGCGAATCATCGAGAGGGGCAAAGGCTCCGGCCGGGCGGA
CGACCACGCCTCCGTCGCCAAAGTGCGCATAGAAACGTACCACCAGCAAA
GTTCCGGGTACGTTTGTCCGCCGGGAGGGAGGGAGGGAAAGAGGGGAGGA
GGGAGGAAGGAAGCGGAGCAGGGGTGCTCGAACTGTTGGTTTCCGACTCT
CTGTTTGGGTTTTGATGGTGGCGCTGTGATAGTCGTTCTCTCGTCGCGTT
GCGCTTCGCCTGCCAAGCCCTTTTAGATCGACCTGCGCTTTTAAGTCTTC
AGGAGTAACTTGCTCGGGCCCCACCGTAGCAGCGAGCCGACAGCAGTGAC
TGACCTCGCAGAGGGTGGCCTGGCCTTTCGTGGCAGTCCTTATTCTTTCA
TCTACGGGTATGCTCCACCCGCCTGTTGTACCTCAAAAAACCTGTTCATG
TCCAGTGCCCAATAAATGGACGCGAAGCGCCGACAGCGAGCGGCTTGTTG
CCGCCCTCCTTGGTGACCGCCCCACCGGATCGCTTGCAAAACATCCAAAG
TTGCACACTAGCGGCTAAGGGAACGAAAGCAACAGTAGTAGGGCTCGAGA
GTTGAACACGCGAATTCAGGATAGTGGATTCCAGCTAATCCACGCTCATG
ACAAGGGCTAATGGCGTTGGCGACGCTCGAACTCCACACTTTCCTTCTAT
CATTTCACTTTTTCTGTTGTCTTGTTTCGTTTCACTTTTTCTGTCTTTTT
TCGTTTCATTTTTTCTGTCTTTTTTCGTTTCATTTTTTCTGTTTTCTTTT
TTCGTTTCATTTTTCTGTCTTCTTTTTCGTTTCACGAAAGGTTGTTCGCC
GTCTAGTCGTATCATTCTTTTTTTTTTTTGTTCGTTTTCACGTTCGTTGC
TCACCGCTTTTGATTGTCCATGACTCCTGAACGGGTCGATTTGCCGCACG
TTTTTGGCTTGGAAAGCACGCCTGCTTGCTGCCGCCCTCTTATCCTTCTG
GGGGGCGAAGGTGCACGCACACGCAAAACGGCACCGAATTCAAAGCACCC
ATGGCCACGAGCCCAACAGATTATCAAGACTTGGTCTGGTGTACACGTGC
TCTGGACAAGCTTGTGTGTGCATGGTCGTGCTGCCGTACCGCGTGTGCGA
TCCTTTTTTGCTAGTGTTCGCGTGCTCTCGGAAAATGTGGCCTGGGTGCT
TGGACATATCCTAATCGAAGGCAACCAGCGGGCCGCTGGTTGGTGCTGCT
GCCGCTTCTTCGGGCTGGCACCCTGCTACCCTGCTTGATACCCTGCTGCC
TGCTACACACCACCGCTTTGTTTGCGGTCGTTTGGGAAAATTCACCTGTG
TACCCGCGGATCCGCCGCTTCAGCTGCTGCTGCTGCTGCTGCTGCTGCTG
CTGTGGTGTGTGCCCGTCTACCTGCGTGTGTTCGCACCCGTGCGTTCGAT
ACCGCAGTGTTGACCTCCTCGCCTGCCTTGCCGTCCCTGCCTTGCCTTCC
CTCGCCTTGGCTTGCGTTGCCTCGCAGGCCGTCGCGATACTTCGACTCTA
TCGGGCTGGAGTGCGTGGAGCTGGACGGAACGCTGCCCGTCGAGGAGAAC
CTGCGGTACCTCCTGAACCTGCCGATGCTGGGATCGATCTGCTACAAGCA
CGTCCACGACGGCAGGCGGCGGGCCGAGGGGAGAGATCGAGCGCCGGAAC
CAGCATGACGTCACGTTTGATTGTGGTGGCCGACTTCCGAAGGGTCGGTT
TTCGATTTTTGACTGGCTGTGGCTGATTCCGAGAGGGTCCGTTTTGCGGG
AGGGTCGATCGCGTTGAGAGAGCCGAAGGGCGCGCGGAGAAATCATGGCA
AAATTTTGTAGGTGTTTTTGTAGTTGTGGAGGTGGGGAGTGCGGAATGGG
GGAATTGATTGGGTGTTAGTTGTGGATCGCATGGTTGTGGTGGGGCGGAT
CGGTGGATCGGTTCGTCTGTGTGGTGTCTAGTGGTGGTTGGTTGGTTGGT
GTGTTGGTTGATGTGTCGGCGGTCGTGGAACACTTTCGCGTAGCGGGTTC
CAGAGGAAGAAGAGCTGTGTCCTGGTGGACCGTCCTCAATGTGTGGAAGT
CGCCGCTTTCTTTCTAGAGAGCTGGCGCCGCGTTCGGGGGTCGATTGTGG
TTTTGTATTTTGCTTGGTTGAGCGATCGCTTCCTTCCACAACCACCAGAC
AGAATATCTGGCTGTTTTTCTCGTCGCTTTCTCGAAGCTTTTCGTGAAGG
CCGACCGCGCACACACGCGCTCTCTCTGCTGGAATGCTGCACAACGAAAT
CTTGTGACAGCGAAGGTTTTTTCTCGTCCCACGAAGAGCACGTTGACAAC
AAGGGACCCACCTCCCCCTCTTAGGTTGTTCCGTGTCCTCTTGAATGGCT
TTCTGAAGGAGAAGTTCCAAGGTCGACAAAAAAGCTTTGACTTGCCCGGG
TCTCGAATTCGCTGTAGACGACCCCTGATGCATAACCCGCATCTTCTCCG
TCCTCGGAGCTGGGGTGCGTCTTCCCCTTGTGGTGGTTTCTATTCGTGGA
CGATGGGCGTGACTGGGGGGGTGGGGATGCGCGAAGTGCTGCTGCTGTCG
TACTATCATCGTCAGCCTGGCCGTCTGTGGTCGATTCGTCGGAGAAACCT
CGGAGGCAGTCACGTTCTGCGTGACTTGTGAAAATTAAACGACGTGAGGT
TGCTCGCTGTGGGTTACGCGTATGGACCTCGTGTGGTGAGAAGGAAAGGA
TGGTGAGCGGCAGTGACGTCAGCAACATCGTTAGTGGATACTGCTGCTGC
TCCTGTTGCTGTTGCTGCTGCCCATGTTCTGGTTGGTTGGGGATGATGCC
GCGAATGACCGTGCTTCTGTTATAGCGTTGATGTACGATTTCGGGCTTGA
GTGAGGGTGGACGGGAACAAAGAACGAGAGGTAACCACGTGAAGAGTGCG
CTCGTTGAAGTTCGAGTTGGACGGGACCGATTGTATGTTCCATTTTTTTC
TTTTTGTGAAGTCAGCCATTTTTTTCCGTCCATCGCAACTTGAAGAGCGC
TTGACGACGATAGATATTGATCGGCAAAGCTTTGAGCCAAGCCAAGCCAT
CATGCCAGCCAGTAGCGACCAAGATAAAAGCTATCGGAAAACAAACGGGG
GAGGGGAACATAACAAAAAAAAATGATAGTTACTACGAACTTGACCATCT
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig6:3654920..3668969+ >mRNA_P-fluviatile_contig6.12687.1 ID=mRNA_P-fluviatile_contig6.12687.1|Name=mRNA_P-fluviatile_contig6.12687.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2766bp|location=Sequence derived from alignment at P-fluviatile_contig6:3654920..3668969+ (Porterinema fluviatile SAG_2381) ATGCTACCGAGACGACTCGCGGTATACTTTAGGCGAGCGACCCTTGGGTC TGCTGGCGCCGGTAAAGGGTTGGAGAGCGCGTGCAAACAGACACCCATTG GGTCTGCCTTGTGGCGGTTATCGAGCACGACATCATCGTTATCGCCCTCC TCAGGGAGAAGCGGCGCTTGCGTAGAGTCAAGCGGTTATGCAAATCGGAG GGCTCCCGATGCTGCTGTCGACGGCTCGAGCGCGGTGGGGGGGAGACATA TCACGAGCACCGCGATGCTACCGAGACGACTCGCGGTATACTTTAGGCGA GCGACCCTTGGGTCTGCTGGCGCCGGTAAAGGGTTGGAGAGCGCGTGCAA ACAGACACCCATTGGGTCTGCCTTGTGGCGGTTATCGAGCACGACATCAT CGTTATCGCCCTCCTCAGGGAGAAGCGGCGCTTGCGTAGAGTCAAGCGGT TATGCAAATCGGAGGGCTCCCGATGCTGCTGTCGACGGCTCGAGCGCGGT GGGGGGGAGACATATCACGAGCACCGCGAGAGAGGCGCTGATGACGTGCC CCACGGAGAGAGCCGTGGCGGCCAACCTCTTCTTCAGCTTTGGGACGGTC GGCGAAAGCGGAGAGGTCTCGCTGCAGCCGCACGACCTCCGGCGGATGCT GCAGTCCATGGGTGTGAGAGAGGCGCTGATGACGTGCCCCACGGAGAGAG CCGTGGCGGCCAACCTCTTCTTCAGCTTTGGGACGGTCGGCGAAAGCGGA GAGGTCTCGCTGCAGCCGCACGACCTCCGGCGGATGCTGCAGTCCATGGG TGTGGTCGTGTCGGAGGACAAGCTGAGCCAGATGGTGTCCAGAGCGGATA AGGACTCGACGGGGTACATCTCCGAGGACGACTTCCTGGAGGCGTTCGAC TGGCTTATGTCGCAGGGGCAGGACGAGCGCGACTACATGGCGATCTTCAA CATGTTGGTCGTGTCGGAGGACAAGCTGAGCCAGATGGTGTCCAGAGCGG ATAAGGACTCGACGGGGTACATCTCCGAGGACGACTTCCTGGAGGCGTTC GACTGGCTTATGTCGCAGGGGCAGGACGAGCGCGACTACATGGCGATCTT CAACATGTTGGATAAAGACAAGAACGGGTACGTTGACGTGGACGAGCTCA CCAACCTCCACTCCACGACGAAGGAGAGACTCACCATGCTCGAGGCGAAG AAGATACTAGAGGATAAAGACAAGAACGGGTACGTTGACGTGGACGAGCT CACCAACCTCCACTCCACGACGAAGGAGAGACTCACCATGCTCGAGGCGA AGAAGATACTAGAGGTGGCAGATCAGAACGGGGACGGGAGGATGAACTAC GAGGAGTTCTTGAAGCTCATGACGGAGCACGTGGTGGCAGATCAGAACGG GGACGGGAGGATGAACTACGAGGAGTTCTTGAAGCTCATGACGGAGCACG TGATCTTGGGGTGGAAGCTGCTGACGACCTTCCGGGTGATCTTTGTCATG GGAGGCCCAGCGTCCGGGAAGGGCACTATCTGCGCGGAGCTGGTGAAGCG GGCCAACGCGGTCCACGTGAGCTCCGGCGACCTCCTGAGGGCGGAGGTCC AGCGCGCGACGCCGCTGGGTCTGCAGATCTTGGGGTGGAAGCTGCTGACG ACCTTCCGGGTGATCTTTGTCATGGGAGGCCCAGCGTCCGGGAAGGGCAC TATCTGCGCGGAGCTGGTGAAGCGGGCCAACGCGGTCCACGTGAGCTCCG GCGACCTCCTGAGGGCGGAGGTCCAGCGCGCGACGCCGCTGGGTCTGCAG GTGGCGGAGACGATGAAGGAAGGCCGCCTGGTTGAAGCAAGTACAGTCTT GGTGGCGGAGACGATGAAGGAAGGCCGCCTGGTTGAAGCAAGTACAGTCT TGGCACTGCTCGAGAAGTTCCTGACGCTCCACCCGGGCAAGCACGTATTG TTGGACGGATTTCCTCGCTCCCTCGACAACGCCAGGGACTGGGCGAGGCT CTTCGGACCTCCAGAAGCCTGCATTCGGCACTGCTCGAGAAGTTCCTGAC GCTCCACCCGGGCAAGCACGTATTGTTGGACGGATTTCCTCGCTCCCTCG ACAACGCCAGGGACTGGGCGAGGCTCTTCGGACCTCCAGAAGCCTGCATT CGGATCAACTGCCCGGACGAAGTGATGATGAGGCGAATCATCGAGAGGGG CAAAGGCTCCGGCCGGGCGGACGACCACGCCTCCGTCGCCAAAGTGCGCA TAGAAACGTACCACCAGCAAAGTTCCGGGATCAACTGCCCGGACGAAGTG ATGATGAGGCGAATCATCGAGAGGGGCAAAGGCTCCGGCCGGGCGGACGA CCACGCCTCCGTCGCCAAAGTGCGCATAGAAACGTACCACCAGCAAAGTT CCGGGCCGTCGCGATACTTCGACTCTATCGGGCTGGAGTGCGTGGAGCTG GACGGAACGCTGCCCGTCGAGGAGAACCTGCGGTACCTCCTGAACCTGCC GATGCTGGGATCGATCTGCTACAAGCACGTCCACGACGGCAGGCGGCGGG CCGAGGGGAGAGATCGAGCGCCGGAACCAGCATGAGCCGTCGCGATACTT CGACTCTATCGGGCTGGAGTGCGTGGAGCTGGACGGAACGCTGCCCGTCG AGGAGAACCTGCGGTACCTCCTGAACCTGCCGATGCTGGGATCGATCTGC TACAAGCACGTCCACGACGGCAGGCGGCGGGCCGAGGGGAGAGATCGAGC GCCGGAACCAGCATGA back to top
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