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Homology
BLAST of mRNA_P-fluviatile_contig15.2425.1 vs. uniprot
Match: A0A6H5KNZ3_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KNZ3_9PHAE) HSP 1 Score: 533 bits (1372), Expect = 8.490e-162 Identity = 510/1277 (39.94%), Postives = 642/1277 (50.27%), Query Frame = 2
Query: 707 RALRQLLLLLLRENGCYLPAGVTSVEQLSSDALIRAVGSITSGIDGSRPPIEAFSTRGSHPAERLHACRLVAGRVRDVGYAEPFSAHQLMYPGGEDTRELLLELLSMLPPEGVPVLPAQPSPGARSPPLPGQEQQRHQQPRPQQQGAHDFLSGDPSENAVEGN-DPVTSDVGVRHENGGDAAXXXXXXXXXXXXXXXXXXXADGDQDXXXXXXXXXXXXXXXXXXXXXXXATEVEDAASSPPGEEQVENGDQLGAAGTKENGDGAASLLAGGDAEIGKQSAAVLVDEYGHYPA-PMGEEKQGEREG-AAEPLARSADNCTLEGKEELGERGDDXXXXXXXXEEGSAGHEAEADTPPATGVVEAVVGFSQSPDGE--GTAVGEATADEGXXXXXXXEATSTEPAPPGPADNQATFRRWSSNPPAGSDTGGDDSSSL-HASLDNPWHDELTEGGEEDGEENVFGPVDSSEAEASATRAFQTREDVEGEEEAEVDMLAAAEANATGALAGEEG-GEEAEFDVFGLTEPSEAVLGGRSSATAAPRARTEGWEEEEKAGNVLGPTVQPAADLSAEPVPPEGRATESDATPVRRAFDSDAAQVIGNRDAALRDDVQDVERDLTGETNSPLAVQARDSGLTQ-----AREAEGLGEEGIAGPSGPTPGGAGDGGEGSCAVSGEDGGLGDDQRV-GSASVEAQDSESGXXXXXXDVEAKSA---APDGKSRGVLDAAAVR---AGLLEGHSQGPESVSSVEGGREGESGEIGTDRTAPPGERGDNDDVVFLQFELEAKELELTRLLTEAEVDNDEADKLEEEVGRLGALAAEKEKYCRSSAKALELFPNAEAETTELQKRCAAAEARMQAARKAFDKAMKPLEATVRLQREELARRKARCHSLIEVMRGMYAECRKMTLEGRSLRASARKMEAWERQARGEVLGGHNDGEDSNNSGSEMEW----GEDEDNGEEAIRRREAGALLRSDMDKRITSLCEDATSQKQEIAISLSEVIDSRRDVNGAWELLGRSEVIPEERLFAAAKQAKLDGGGKANKERAKDMIDAYRLLQVLGDVFSKVVEAVAEVGRQEEECRLVEGKTETMLSRRGATDHLLLLSRDLNRVKEDAFALEQRLDQALEQERLHXXXXXXXXXXXXXXXSEDGLRGEGEHPTSEVVKGATTQEEEYQTRAKTGCGGEHDRGWNGGER-APFQAPQHDDAAEAIPQRDLQGYGGFA--EESREGVPRTPPDHYGGGEDVDEGSVGVGSEEQEDEFVGEDEEDNVWQ 4459
R QLL+LLLR+NGC +P GV+SV QLSSDA+I+AVG + +G+DGSRPP EA ST G HPAER HACRLVA RVRD GY+EP SAHQL+YPGGEDTR +LL+LL+MLPP+G P + + G P LP ++R Q A D LS D A G+ D ++ R E + A G D A + S GEE D G AG DG +L G E G + E PA P G +Q R G AA +A + + GKE L A V +P E G AVGE + XXXX+ D GGDD + + H S DEL E + E+NVF S E AT + T VE EEE + EA+ G+ G+EG G AE +T PS G +AP A G+ GN G T P + P EG VE N PL +A D L Q ARE+ G+ A P+G T GA + V+G G G+D+R G E++ G D EA + A GK G +DAA R + G + PE + VEGG+ G G DDVVFLQFE+EAKELEL RLL E E + AD+LE+EV RLG+LA E+EK+CR +AKALEL PNA AET+ +Q C AAEARM AA KAF+K KPLEA VR+QRE+LARRKARC +L+ MRGMYAEC++M+ + +L A+AR ME WE +ARGEV+ G G D GE+ + EEA +RR+AGA LRS +DKRITSLCEDA +QKQEIAISL+EV+DSRR+ NGAWELLGR+E +PEER+F+AAKQAK G G NK+RAKD+ +AY+ L LG+VFSK+VEA++EVGR+EEECR VE +TE MLSR+G L LL+RDL RVK DAFALEQRLDQALE+ERL+ ++D R + + +E V +++E + CG D + ++ P +A +H AAE+ ++Q A EE EG P+ G G D V +QE +FVGEDE DNVWQ
Sbjct: 160 READQLLVLLLRQNGCPVPHGVSSVGQLSSDAVIQAVGFMIAGMDGSRPPPEALSTTGCHPAERFHACRLVASRVRDAGYSEPLSAHQLLYPGGEDTRRMLLDLLAMLPPDGAKSPPPELASGTGPPLLPEGGKERQQ--------ADDLLSSDVGGTAERGSADRYNDNMSPRSEGQEEEAARVC-----------------GGTDASSPQSAVAENVPETDAQEKGEHAV-----SESGSGEEDSPPSDAGGDAG-----DGPTALAGAG--ETGDMDGS----EDPALPASPSG--RQNPRGGSAASDIAEGLGSPSGSGKEAL-----------------------------------AKVSGRSTPSAEKGGNAVGERGGGQASRDXXXXD-----------------------------DNGGDDGAPVSHVS------DELGNETESEEEDNVFTAEPSCE---DATASVGTG--VEAEEEG----MTRDEASEGGSCKGDEGEGVPAE-----MTAPST----GGDDDVSAPGA---GFVN----GNGSGDTA-PVGIVDPSDEPGEGEPESL------------------------------VE-------NPPLPSEALDEPLHQGAGEPARES---GDGDCADPNGATAQGAAE------PVAGPSGASGEDERSPGVPQAESEGDAEGGVCAVGDEEAAAVGLTANGGKPGGAVDAAEERGDSSASPSGEALPPEEGADVEGGKGGPXXXXXXXXXXX----GTEDDVVFLQFEVEAKELELKRLLAEREGQDKAADELEKEVQRLGSLAEEREKHCRYAAKALELLPNAAAETSRMQNECVAAEARMHAAAKAFEKGRKPLEAVVRVQREKLARRKARCRALVTEMRGMYAECQEMSQQESALMAAARDMEVWESKARGEVVIGPEKGGDXXXXXXXXXXXXXXGEEXHDSEEARKRRKAGAALRSHIDKRITSLCEDAAAQKQEIAISLTEVLDSRREANGAWELLGRAEALPEERIFSAAKQAK-SGSGGTNKDRAKDLTEAYKHLHALGEVFSKIVEAMSEVGRREEECRSVERETEKMLSRQGGNVRLQLLTRDLERVKGDAFALEQRLDQALEEERLNQKASQETQDSFGA--AQDVTRRDSDDNANEAV----VEQDEQASCGNDTCGEVQDDDDDAEQQDLPLRAQEHGKAAESTLDVEVQDERSAAGGEERGEGE---APEQRGSGAGGD-----VVESDQEADFVGEDEVDNVWQ 1232
BLAST of mRNA_P-fluviatile_contig15.2425.1 vs. uniprot
Match: D7FJ88_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FJ88_ECTSI) HSP 1 Score: 461 bits (1187), Expect = 7.770e-138 Identity = 322/654 (49.24%), Postives = 407/654 (62.23%), Query Frame = 2
Query: 2546 NSPLAVQARDSGLTQ--AREAEGLGEEGIAGPSGPTPGGAGDGGEGSCAVSGEDGGLGDDQRVGSASVEAQDSESGXXXXXXDVEAKSA--APDGKSRGVLDAAAVRAG---LLEGHSQGPESVSSVEGGREGESGEIGTDRTAPPGERGDNDDVVFLQFELEAKELELTRLLTEAEVDNDEADKLEEEVGRLGALAAEKEKYCRSSAKALELFPNAEAETTELQKRCAAAEARMQAARKAFDKAMKPLEATVRLQREELARRKARCHSLIEVMRGMYAECRKMTLEGRSLRASARKMEAWERQARGEVLGGHNDGEDSNNSG----SEMEWGEDEDNGEEAIRRREAGALLRSDMDKRITSLCEDATSQKQEIAISLSEVIDSRRDVNGAWELLGRSEVIPEERLFAAAKQAKLDGGGKANKERAKDMIDAYRLLQVLGDVFSKVVEAVAEVGRQEEECRLVEGKTETMLSRRGATDHLLLLSRDLNRVKEDAFALEQRLDQALEQERLHXXXXXXXXXXXXXXXSEDGLRGEGEHPTSEVVKGATTQEEEYQTRAKTGCGGEHDRGWNGGERA--PFQAPQHDDAAEAIPQRDLQ---GYGGFAEESREGVPRTPPDHYGGGEDVDEGSVGVGSEEQEDEFVGEDEEDNVWQ 4459
N P +A D L Q A G G+ A P G T GA + G +GED ++R G E + G D EA + + +G G +DAA R G LLEG + PE VEGG+ G DDVVFLQFE+EAKELEL RLL+E E ++EAD+LE+EV RLG+LA E+EK+CR +AKALEL PNA AET+ +QK C AAEARM AA KAF+K KPLEA VR+QRE+LARRKARC +L+ MRG+YAEC+ M+ + +L+A+AR E WE +ARGEV+ G G + + EWGE+ED+ EEA +RR AGA+LRS +DKRITSLCEDA +QKQEIAISL+EV+DSRR+ NGAWELLGR+E +PEER+F+AAKQAK GGG ANK+RAKD +AY+ L LG+VFSKVVEA++EVGR+EEECRLVE +TE MLSR+G + L LL+RDL RVK DAFALEQRLDQALE+ERL+ + D R + + +E V +E++ Q GGE E+ P +A +H +AAE+ P +L+ G EE EG GG+ V+ +QE +FVGEDEEDNVWQ
Sbjct: 384 NPPPPSEAPDEPLHQEAGEPAGGSGDGDCADPDGATGHGAAEPVAGPSEAAGED-----ERRPGVPEPENEGDAVGGVSGVGDEEAATVGLSANGGKPGGVDAAEDRGGSSALLEGEALPPEEGGDVEGGKGA--------XXXXXXXXGTEDDVVFLQFEVEAKELELKRLLSEGEGQDEEADELEKEVRRLGSLAEEREKHCRYAAKALELLPNAAAETSRMQKECVAAEARMHAAAKAFEKGWKPLEAVVRVQREKLARRKARCRALVTEMRGIYAECQDMSQQESALKAAARDTEVWESKARGEVVIGPEKGIGGDGXXXXXXGDAEWGEEEDDSEEARKRRNAGAVLRSHIDKRITSLCEDAAAQKQEIAISLTEVLDSRREANGAWELLGRAEALPEERIFSAAKQAK-SGGGGANKDRAKDFTEAYKHLHALGEVFSKVVEAISEVGRREEECRLVERETEKMLSRQGGSVRLQLLTRDLERVKGDAFALEQRLDQALEEERLNQKASQEQETQESFGEARDVARRDSDDNANEAV-----EEQDEQASYGDDTGGEVXXXXXXAEQQDLPSRAQEHGEAAESTPDVELEDERSVSGGGEERGEGDAPXXXXXXXGGDVVES--------DQEADFVGEDEEDNVWQ 1010
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 | 70.9 |
| Seed ortholog evalue | 4.6e-09 |
| Seed eggNOG ortholog | 67593.Physo132784 |
| Preferred name | CCDC22 |
| GOs | GO:0003674,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005654,GO:0005737,GO:0005829,GO:0006355,GO:0006464,GO:0006807,GO:0006810,GO:0006873,GO:0006875,GO:0006878,GO:0006892,GO:0006893,GO:0007253,GO:0008104,GO:0008150,GO:0008152,GO:0009889,GO:0009893,GO:0009894,GO:0009896,GO:0009966,GO:0009967,GO:0009968,GO:0009987,GO:0010468,GO:0010556,GO:0010604,GO:0010646,GO:0010647,GO:0010648,GO:0016192,GO:0019219,GO:0019222,GO:0019538,GO:0019725,GO:0023051,GO:0023056,GO:0023057,GO:0030003,GO:0030162,GO:0031323,GO:0031325,GO:0031326,GO:0031329,GO:0031331,GO:0031974,GO:0031981,GO:0032088,GO:0032268,GO:0032270,GO:0033036,GO:0036211,GO:0042176,GO:0042592,GO:0042632,GO:0042994,GO:0043122,GO:0043123,GO:0043124,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043233,GO:0043412,GO:0043433,GO:0043687,GO:0044092,GO:0044237,GO:0044238,GO:0044260,GO:0044267,GO:0044422,GO:0044424,GO:0044428,GO:0044444,GO:0044446,GO:0044464,GO:0045185,GO:0045732,GO:0045862,GO:0046916,GO:0048193,GO:0048518,GO:0048519,GO:0048522,GO:0048523,GO:0048583,GO:0048584,GO:0048585,GO:0048878,GO:0050789,GO:0050794,GO:0050801,GO:0051090,GO:0051171,GO:0051173,GO:0051179,GO:0051220,GO:0051234,GO:0051235,GO:0051246,GO:0051247,GO:0051252,GO:0055065,GO:0055070,GO:0055076,GO:0055080,GO:0055082,GO:0055088,GO:0055092,GO:0060255,GO:0065007,GO:0065008,GO:0065009,GO:0070013,GO:0071704,GO:0080090,GO:0097006,GO:0097602,GO:0098771,GO:0098876,GO:1901564,GO:1902531,GO:1902532,GO:1902533,GO:1903050,GO:1903052,GO:1903362,GO:1903364,GO:1903506,GO:2000058,GO:2000060,GO:2000112,GO:2001141 |
| EggNOG free text desc. | Protein of unknown function (DUF812) |
| EggNOG OGs | 3QBUI@4776,COG2126@1,KOG1937@1,KOG1937@2759,KOG3713@2759 |
| COG Functional cat. | J |
| Best tax level | Peronosporales |
| Best eggNOG OG | NA|NA|NA |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | expressed unknown protein |
| Ec32 ortholog | Ec-12_008440.1 |
| Exons | 12 |
| Model size | 4683 |
| Cds size | 3489 |
| 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 |
| 1622815650.7601993-UTR-P-fluviatile_contig15:946999..947220 | 1622815650.7601993-UTR-P-fluviatile_contig15:946999..947220 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig15 947000..947220 - |
| 1693562708.5299876-UTR-P-fluviatile_contig15:946999..947220 | 1693562708.5299876-UTR-P-fluviatile_contig15:946999..947220 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig15 947000..947220 - |
| 1622815650.8929298-UTR-P-fluviatile_contig15:955416..955455 | 1622815650.8929298-UTR-P-fluviatile_contig15:955416..955455 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig15 955417..955455 - |
| 1693562708.6359217-UTR-P-fluviatile_contig15:955416..955455 | 1693562708.6359217-UTR-P-fluviatile_contig15:955416..955455 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig15 955417..955455 - |
| 1622815650.9065428-UTR-P-fluviatile_contig15:955813..955994 | 1622815650.9065428-UTR-P-fluviatile_contig15:955813..955994 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig15 955814..955994 - |
| 1693562708.6503742-UTR-P-fluviatile_contig15:955813..955994 | 1693562708.6503742-UTR-P-fluviatile_contig15:955813..955994 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig15 955814..955994 - |
| 1622815650.9238102-UTR-P-fluviatile_contig15:956636..957389 | 1622815650.9238102-UTR-P-fluviatile_contig15:956636..957389 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig15 956637..957389 - |
| 1693562708.6613028-UTR-P-fluviatile_contig15:956636..957389 | 1693562708.6613028-UTR-P-fluviatile_contig15:956636..957389 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig15 956637..957389 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815650.7724628-CDS-P-fluviatile_contig15:947220..947727 | 1622815650.7724628-CDS-P-fluviatile_contig15:947220..947727 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 947221..947727 - |
| 1693562708.5413775-CDS-P-fluviatile_contig15:947220..947727 | 1693562708.5413775-CDS-P-fluviatile_contig15:947220..947727 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 947221..947727 - |
| 1622815650.7821436-CDS-P-fluviatile_contig15:948389..948531 | 1622815650.7821436-CDS-P-fluviatile_contig15:948389..948531 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 948390..948531 - |
| 1693562708.5509892-CDS-P-fluviatile_contig15:948389..948531 | 1693562708.5509892-CDS-P-fluviatile_contig15:948389..948531 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 948390..948531 - |
| 1622815650.7951674-CDS-P-fluviatile_contig15:948864..949049 | 1622815650.7951674-CDS-P-fluviatile_contig15:948864..949049 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 948865..949049 - |
| 1693562708.5600536-CDS-P-fluviatile_contig15:948864..949049 | 1693562708.5600536-CDS-P-fluviatile_contig15:948864..949049 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 948865..949049 - |
| 1622815650.8071167-CDS-P-fluviatile_contig15:949767..949836 | 1622815650.8071167-CDS-P-fluviatile_contig15:949767..949836 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 949768..949836 - |
| 1693562708.5683262-CDS-P-fluviatile_contig15:949767..949836 | 1693562708.5683262-CDS-P-fluviatile_contig15:949767..949836 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 949768..949836 - |
| 1622815650.820006-CDS-P-fluviatile_contig15:950434..950677 | 1622815650.820006-CDS-P-fluviatile_contig15:950434..950677 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 950435..950677 - |
| 1693562708.5764904-CDS-P-fluviatile_contig15:950434..950677 | 1693562708.5764904-CDS-P-fluviatile_contig15:950434..950677 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 950435..950677 - |
| 1622815650.8357728-CDS-P-fluviatile_contig15:950894..951040 | 1622815650.8357728-CDS-P-fluviatile_contig15:950894..951040 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 950895..951040 - |
| 1693562708.585315-CDS-P-fluviatile_contig15:950894..951040 | 1693562708.585315-CDS-P-fluviatile_contig15:950894..951040 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 950895..951040 - |
| 1622815650.8518224-CDS-P-fluviatile_contig15:951939..952030 | 1622815650.8518224-CDS-P-fluviatile_contig15:951939..952030 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 951940..952030 - |
| 1693562708.5977569-CDS-P-fluviatile_contig15:951939..952030 | 1693562708.5977569-CDS-P-fluviatile_contig15:951939..952030 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 951940..952030 - |
| 1622815650.861779-CDS-P-fluviatile_contig15:952568..952646 | 1622815650.861779-CDS-P-fluviatile_contig15:952568..952646 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 952569..952646 - |
| 1693562708.6070812-CDS-P-fluviatile_contig15:952568..952646 | 1693562708.6070812-CDS-P-fluviatile_contig15:952568..952646 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 952569..952646 - |
| 1622815650.8719487-CDS-P-fluviatile_contig15:952932..954891 | 1622815650.8719487-CDS-P-fluviatile_contig15:952932..954891 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 952933..954891 - |
| 1693562708.615637-CDS-P-fluviatile_contig15:952932..954891 | 1693562708.615637-CDS-P-fluviatile_contig15:952932..954891 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 952933..954891 - |
| 1622815650.8834033-CDS-P-fluviatile_contig15:955347..955416 | 1622815650.8834033-CDS-P-fluviatile_contig15:955347..955416 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 955348..955416 - |
| 1693562708.6241014-CDS-P-fluviatile_contig15:955347..955416 | 1693562708.6241014-CDS-P-fluviatile_contig15:955347..955416 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig15 955348..955416 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig15.2425.1 >prot_P-fluviatile_contig15.2425.1 ID=prot_P-fluviatile_contig15.2425.1|Name=mRNA_P-fluviatile_contig15.2425.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1163bp
MYPGGEDTRELLLELLSMLPPEGVPVLPAQPSPGARSPPLPGQEQQRHQQ PRPQQQGAHDFLSGDPSENAVEGNDPVTSDVGVRHENGGDAASQSEEGGD GSEEESAAAAAADGDQDGGDAASTAGRGGDGDEVASSAAGATEVEDAASS PPGEEQVENGDQLGAAGTKENGDGAASLLAGGDAEIGKQSAAVLVDEYGH YPAPMGEEKQGEREGAAEPLARSADNCTLEGKEELGERGDDEEEEEEEYE EGSAGHEAEADTPPATGVVEAVVGFSQSPDGEGTAVGEATADEGEGAAEA EEATSTEPAPPGPADNQATFRRWSSNPPAGSDTGGDDSSSLHASLDNPWH DELTEGGEEDGEENVFGPVDSSEAEASATRAFQTREDVEGEEEAEVDMLA AAEANATGALAGEEGGEEAEFDVFGLTEPSEAVLGGRSSATAAPRARTEG WEEEEKAGNVLGPTVQPAADLSAEPVPPEGRATESDATPVRRAFDSDAAQ VIGNRDAALRDDVQDVERDLTGETNSPLAVQARDSGLTQAREAEGLGEEG IAGPSGPTPGGAGDGGEGSCAVSGEDGGLGDDQRVGSASVEAQDSESGGG GGGGDVEAKSAAPDGKSRGVLDAAAVRAGLLEGHSQGPESVSSVEGGREG ESGEIGTDRTAPPGERGDNDDVVFLQFELEAKELELTRLLTEAEVDNDEA DKLEEEVGRLGALAAEKEKYCRSSAKALELFPNAEAETTELQKRCAAAEA RMQAARKAFDKAMKPLEATVRLQREELARRKARCHSLIEVMRGMYAECRK MTLEGRSLRASARKMEAWERQARGEVLGGHNDGEDSNNSGSEMEWGEDED NGEEAIRRREAGALLRSDMDKRITSLCEDATSQKQEIAISLSEVIDSRRD VNGAWELLGRSEVIPEERLFAAAKQAKLDGGGKANKERAKDMIDAYRLLQ VLGDVFSKVVEAVAEVGRQEEECRLVEGKTETMLSRRGATDHLLLLSRDL NRVKEDAFALEQRLDQALEQERLHQQAAEEERLNETPAESEDGLRGEGEH PTSEVVKGATTQEEEYQTRAKTGCGGEHDRGWNGGERAPFQAPQHDDAAE AIPQRDLQGYGGFAEESREGVPRTPPDHYGGGEDVDEGSVGVGSEEQEDE FVGEDEEDNVWQ* back to topmRNA from alignment at P-fluviatile_contig15:947000..957389- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig15.2425.1 ID=mRNA_P-fluviatile_contig15.2425.1|Name=mRNA_P-fluviatile_contig15.2425.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=10390bp|location=Sequence derived from alignment at P-fluviatile_contig15:947000..957389- (Porterinema fluviatile SAG_2381) CAGGAGCCACAAGCGCAGCCCGTGGCTCCTTGCTCCGGCATCATGGCGGC
CCATCCTCCGCCTGGAAGGAGAGAAGCAGATCAGGCGAGGCCGCCGTGGG
ATCCCTAGTCTTTGTGCCGGCGCTCATGCGTTGGGTTCTGGGGCTTGCCC
GCGCTGTCATTTGTCAACAACCACGATCCCCTGCTGCTGGCCTTGCTTCC
ACACGCTTTTGGTCGAAGTGATCACTGCGAGAGCGGTGTCGTTGTCTGCA
CTCATTTATCCCGGTGTAGGCCACCTCCAGGAGACAAAGCAGGAAGGCTC
TCGCAATCGATACGACCTTGTTCAACACCCCCAGGTGCACATTTTCACGT
GCTGGCCTCGTTGTGGTCTCCTTAGACGGTTGCCTTTCTTCCATGTCTTT
CCTTGACTACGACCCCCGCTTGTATGCCACCTCTAGGAGACAAAGAAGCA
AGGCTCTCGCAATCGAGATGATCTCATTTGCGTCTCCCAGGCAGCATATT
TCTATTAGACTCCGCGAGCTGCGAAAACCGGATGCCAACGCACCCCACCT
CTCTTCCATGTTTTCCCTGGCCTGTACAACTGCCCCGCTTGTTCGTGTCT
GCCTGCCGCTTCCACCTTTCTACACGTACTGCCTCGATCGGACTCTGCTA
CCGACGGCTCGTCGTTCAATGTCTTCAATTGTGTGTTCATTCGCGTTCGC
CGATCACGCGCCCTGCGGCAGCTGCTGCTTCTGCTCCTGCGGGAAAACGG
CTGGTGAGTTTCCCCCCCGCCCCCCGCCCGCCCCCGTGTGCCGCCGCCGC
ACCCAACCACCGGCACCTCCTTCATGTACGGTTTCGATTTCTGGAAGCGG
ATCTCGGTTGGTTTCCTGCATGCTATGAAGGAGCGCGGGAGTATGTGGTG
CTTTGCATCCAAAATCACAGTCTGTCGCGTTCCTTCGCCGGGCATGTGGT
GCTCTCTCTCGATGTCCATGTTGGAGTTCGTTCGACACTCGCTGTTCTAC
GGGCGACCCACACAAATTTTTCGAGGCGGGGACACGGGGTAGAGGATTCG
CGCAACCCAGACTTTCGGCTTGGTATGCGCGTACCTTGCCGTTCTTTCCC
CTTTCATGCCATTGTCGATTGACGATTGTCGTAAAAAGCAGCCGCTGAGC
GGCGCCGCTCAGACGGCAGGGAGGCGATGGACGATACGTCCCAATGGTTG
ACCTCAGGCCGGAGAAAAATGAAGCTGGTCAGGGCCCATGCTGGCGCTGT
CGAGATCGATACCGCACGCTACAAATCCCGAAGCGCCCGACGTACCAGAC
AATGCACGTGTTGCGATGAATCGCCTGAAAATACGCATCGAACCTGACTT
GTCGAGCCGCTGGTTTGCCGCTGCTGTCACCTCACGCGCGCGCAGTTACC
TCCCGGCCGGCGTGACCTCGGTGGAGCAGTTGAGCTCCGATGCCCTCATC
CGGGCGGTTGGGTCGATCACCTCGGGGATAGACGGCTCGCGCCCCCCGAT
AGAGGCGTTTTCGACGAGAGGCTCTCACCCAGCGGAACGGCTACACGCGT
GCAGGCTCGTCGCCGGTCGGGTTAGGGTGAGTCAGTCGTACGCGATCGAC
GGACGGCGTGCGGCCAGGACGCATGGCGGCGACCGTTTTGGGCAGCCTCA
ATCCTGCGAGCTACGGCGGTCTCACGGTTGTTCTCATACCTCCCGCAGGC
TGGAAGATTGGCGTACGTTTAGATATGTGCGGCGCGAATCTTCCGGGCTA
CGTGTCTCGCGTTTGTGCCTGTACCTTCTGCGGGCAGGCAGATTGGTCGA
TCTTGAAACGCGGGAAGAAGAGCGGGGTGAAGGAGCGAACAGGCAGTGCC
GCAGATTTCTCTGTGTGCCGACCGCTGGACATTGTTCGGAGCAATGCTTG
TGGCAGACTAATGTATGCTTTTGTGTCTACGCAGGATGTGGGCTACGCTG
AGCCCTTCTCGGCGCACCAGCTCATGTACCCGGGGGGGGAAGATACGCGC
GAACTGCTGCTGGAGCTGCTGTCGATGCTGCCACCCGAAGGGGTGAGATG
TTTGCAACTATTCGAAAATCGAGGATCCCGATGCTGTTGTCACAACATAC
GTATCTCGTCGGGGGATGGACATGGACAGCCCCGAGATCAGCACCGAAGA
GAGAACGTATCCTTTGATGGACGAGATGTATCAAAGTTTTGTAGGTTCGC
AACAGCGCATAGTGAAGTTTTGGGCCTCAGTGGATGGTGTCGGGGTCGAA
TGCATTCATGTCGATCTCCTGGAAGATTTTTTTCTGTGTCACAAACGTTC
TTTCGCCCGTTTTCGAGGTCTATGCTTCAGACCCCATGCCAAAGTTGCTG
ACCGGTGCTCCGAATGGTCGAGTAGAAATACAGTCGTCCTCCGTACGGTT
CACAGCAGCCCACTCATTACCTGTGCGACAAAATTCGCGCCAGCTTTTGC
CGTCGCCGCTTACTTTCCGCACTTCTCGCGATCTCGGACATTCCGTAGGT
GCCAGTGCTCCCTGCTCAGCCGTCGCCTGGCGCTAGAAGTCCGCCGCTTC
CGGGGCAAGAGCAACAGCGGCATCAGCAGCCGCGGCCGCAGCAGCAGGGA
GCCCACGATTTCCTGTCCGGCGACCCCTCCGAAAATGCGGTCGAAGGTAA
TGACCCGGTGACCAGCGACGTCGGCGTTAGGCATGAGAACGGCGGCGACG
CCGCATCGCAGTCGGAAGAAGGAGGCGACGGGAGTGAGGAGGAAAGCGCC
GCCGCCGCCGCCGCCGATGGCGATCAGGACGGGGGCGACGCGGCGTCGAC
GGCTGGGAGAGGAGGCGACGGAGATGAGGTTGCAAGTTCCGCCGCTGGTG
CCACCGAGGTCGAAGATGCGGCATCGTCGCCGCCGGGGGAGGAGCAAGTG
GAAAACGGGGATCAGCTTGGCGCTGCCGGCACCAAGGAGAACGGTGACGG
GGCCGCCTCGCTTTTGGCAGGAGGGGATGCGGAAATTGGGAAGCAAAGCG
CCGCTGTCCTAGTCGATGAGTATGGCCATTATCCCGCGCCAATGGGAGAA
GAAAAACAGGGCGAACGGGAGGGGGCCGCCGAACCACTTGCACGCAGTGC
TGACAACTGCACATTGGAGGGGAAGGAAGAGTTGGGGGAGAGAGGGGATG
ACGAGGAGGAGGAGGAGGAGGAATATGAGGAGGGGTCAGCCGGACATGAA
GCCGAGGCGGACACGCCACCTGCTACAGGAGTTGTCGAGGCGGTGGTCGG
TTTTTCTCAATCGCCTGATGGAGAAGGCACGGCTGTTGGCGAAGCGACAG
CTGATGAGGGGGAAGGAGCGGCGGAGGCGGAGGAGGCAACGTCAACGGAG
CCTGCTCCGCCCGGGCCGGCGGACAATCAAGCGACGTTTAGAAGGTGGAG
CAGCAACCCGCCGGCAGGGAGCGACACGGGTGGCGATGACAGCAGCTCCC
TTCACGCGAGCTTGGACAATCCGTGGCACGACGAACTCACGGAAGGCGGC
GAGGAGGATGGAGAAGAGAACGTGTTCGGGCCCGTGGATTCGTCTGAAGC
AGAAGCTAGCGCAACGAGAGCGTTTCAAACTCGGGAAGACGTGGAGGGAG
AGGAGGAAGCGGAAGTTGACATGTTGGCTGCAGCAGAAGCTAACGCAACC
GGAGCGCTCGCAGGAGAGGAGGGAGGGGAGGAAGCGGAATTCGACGTGTT
TGGGCTGACCGAACCGTCGGAAGCAGTGCTGGGGGGGAGATCATCGGCAA
CGGCAGCCCCCAGGGCGAGGACGGAGGGGTGGGAGGAAGAGGAGAAAGCG
GGCAACGTGTTAGGGCCCACGGTGCAACCGGCAGCAGATCTGAGCGCAGA
ACCTGTCCCGCCAGAAGGGAGGGCAACAGAGAGCGATGCCACTCCCGTTA
GACGGGCATTTGACTCCGACGCCGCTCAAGTCATCGGGAACAGAGACGCC
GCTCTCCGCGATGACGTTCAGGACGTAGAAAGAGACTTGACGGGCGAAAC
CAACTCTCCTCTCGCCGTGCAGGCAAGAGATTCAGGACTGACTCAAGCCC
GGGAAGCAGAGGGATTGGGCGAAGAAGGGATAGCCGGACCGTCCGGCCCG
ACACCAGGAGGGGCGGGTGATGGCGGCGAGGGGTCGTGTGCCGTCTCGGG
GGAAGACGGTGGCCTCGGCGATGATCAGCGAGTCGGATCCGCAAGTGTAG
AAGCGCAGGATTCGGAGAGTGGTGGGGGTGGGGGAGGTGGTGATGTTGAG
GCGAAGAGTGCGGCTCCTGACGGAAAAAGCAGAGGTGTGCTAGATGCGGC
AGCCGTACGTGCCGGCTTGCTTGAGGGGCACTCTCAAGGGCCAGAGAGTG
TGAGCAGCGTGGAAGGAGGGAGAGAGGGAGAGTCAGGGGAGATAGGGACG
GATAGGACAGCACCACCGGGCGAAAGAGGGGACAACGATGACGTGGTTTT
CTTACAGGTGGGATCACCATGGCGCGGAGCAGCGAGTTTCCTTATTTCTG
TGCACGCGTCCGGCAGGCTTTGTATTTTGTTTTCTGTGCGATGCTGCTCG
AGTGTTATCTTGAACTCGATCAGATGCTCCGGAGATTATTATTGTGCGAA
GCAGCTCAAGGATTTCTTGGCGCCACGTGAATCGTTAGCGCATTGTAGCC
TTGTCGCCGCTCTTTTAGCTGTTGTTTGATTGTCATTCTGGCAATTCGTG
CTTCCTCGTGGGTTGTGGATGTCGTTGTTGTCGACATTTTCAGTTCGAGC
TGGAGGCGAAGGAATTGGAGCTCACAAGGCTTTTGACGGAAGCCGAAGTG
GACAACGATGAAGCAGATAAGGTAGGATCTGCGGGGAATGGACAGGATAA
TCGGCTAGGGAATGGGTTCAACTAAGTTTTTTTGCTGTCTTCAGTCCACT
TAAAAAACTCGTCCGAGATCTGATCCCCGAGATCTGATCTCAGTATTTTT
GAAAGGGGTGGAAGTGACCCTGTAAGTCAGGGTCGAGCCCCCCCTAGGCG
ACCCTTGCACTGCCCCCCCCCCCCCCCCTTCACAGCTAGCCATGAAAAGG
TGCCCTTTAGATGCACCAGCGTTTAGTGCCCCGTGCCATGCCTTGTTCGT
GGTTGTGCGTGCAGTGGTTTCCGAGATCTAGCCAGCTATCACATTGAGTG
GTCAATGGGCTGTCTACCGCCGACCTCCATGCGATTCGATGGCCCACCCT
CGACTCAAAGGCTAAAATGCACCCGTCACAACGCACGGGCAACACACGCA
GAGATCTTCGGCAACTGTGTAAAGCTCGACGTTTATCACGTTGAGTGACA
CCACCGCTTACGATCTCTCCGTTGTCATTGGCCTATCGGATTCTGAACGT
GCGAAACAGCTCGAGGAAGAGGTGGGAAGACTGGGCGCCCTGGCGGCGGA
AAAAGAGAAGTACTGCCGATCCTCCGCAAAAGCGCTGGAGCTCTTTCCAA
GTAAGAGTTTGAGGGTCAGGGCAAGGGTGTGGGTCAGGACGAAGCCTGGC
ACAAACGCTTGAATGCCCTCAAGTTTTCCGTGTTCTCCTGTAGGAATGCG
TCATTTTGTGAATTTCCTGAAACTTGCCCTGGGTTTGCATGGAATGATTG
GAAGCGTTTTCATGCTTTCGCAATCTTTCGCGAGTTTCGATGAAGCAAAA
TTAAGTCGCGGTCTTTGCCTCGTTTAGGGAGAAGTGAGTGGAGGTGGAAA
TTTGTCCCGGTGTGCCCTCCTTTCCGAATTGGACTGCAAAAGAAGAACCC
CGATTGGCCACCCCCTTTTCGACGTGTCCTTCCTCACTCCGTGCTCCTGA
AGCTGCCTCCCCCCGTGTTTGTTTCCGCTTTCGGACAGTTCTCAGCCCGA
CGTGCCATTGGTATTGTGCTAGCCCCTTTCGGTGGAAATCTAGTCGTTGG
AAAGGTCGCTGGGTGAGCATGTTTAGACGAAGGAAAGTGCGATGGCCCAA
GCCATCAGGAACGATGTAGATCCTTACGGGAGCTGTGCACGCCACCTCGT
TAGAAGTCTGCCAGTGCGACGTTTTGCCTGCTCTCCTGCACATCAGCAGG
CACGCTGCGCTCGGGTGTCACGTAACTTCGCCGCTCGAAGCGTCTAACCT
AGCAGTTGACCGACGGAGAGTCATGCACACGTTTGTTTGACAAAATCGCC
GATCGATGCTGCAGATTGATTCACCACAGATCGCAGGTGATCTTGAGACG
AGGGATGTTCTACATGTTTGCCGGGCCGTGATCTATCGCCCGTTGGTGAT
CTAGATCTTGATCTATCCGACGTGTGGGATGTTGACTTTCTTACTGTTGG
TTCCCGGCCTCCTTTGTCCCGTCTGTTGTTCTTATTCGCCGCTTGCCAGA
CGCCGAGGCGGAGACCACCGAGTTGCAAAAGCGATGCGCTGCTGCCGAGG
CCCGCATGCAGGCGGCGAGAAAGGCTTTCGACAAGGCCATGAAACCCCTC
GAGGCCACGGTGCGCCTCCAGCGGGAGGAGCTCGCGAGACGAAAGGTTCG
TGCATCGGAAGGCCATGGCTTGCTCATGCCTGGTCGGAGTTGATGCCGTG
CACTCTCTTTCCCTCGTTATCAAAGGCCACGCCTCCCACTCGTTGGAGCA
TCCAAGATTTGTTCTTACAGGGGAGAAGTCGAACCGTTTCAGTCGAGGCG
GCACAGACAAAAACCTCATCCAACTTGCACACCACCCACCGAACTGTCCC
TCCCCCTGGCAGGCGCGGTGCCATTCCCTCATCGAAGTGATGCGCGGCAT
GTACGCGGAGTGCCGGAAAATGACCCTTGAGGGGCGGTCCCTCCGAGCCT
CCGCCAGGAAGATGGAGGCCTGGGAGCGCCAGGCTCGAGGGGAAGTCTTA
GGAGGGCACAACGACGGGGAAGACAGCAACAACAGCGGTTCGGAGATGGA
ATGGGGGGAAGACGAAGATAATGGCGAGGAGGCCATCCGAAGAAGGGAGG
CTGGGGTAAGAGCTTTTCATAATGAGCTGCACTAGTTGTTCGAAAATAAC
GCTTTTGGGTGGGATTGGGTGTCAAATATGAACTGGGTGCTCGCCCGATA
CGGTTCGGATGCGCGGGGAGGGCGTCGTACCCTTACGTATACGGACTTTG
TTTTCCTCTCTATCTGGGACGCCTCGGCCCCTAGCATTTTGCCACGGCAC
GCTCGTGTGACAAGCACGTGCTATCCTCCCCACCCAGCCAGATATTTATT
AAAGAAATGCCGTGCGCATCTTTCTGATTTTTGCGTCACCTCACGAGTTC
AGCACGCGTTGTTGCTCACACTATTTCCTGTCTCCAGCGCATTCTCTCAT
ATATTGAACCTTATCTGTCTCACAATATTTCGCAATACTCAAGAAGCAGT
TTTAGCATTTTGTTCATGGTTGCGAACCACTTTCACTTGCGTACGCATCG
ATTCATGCCATCTTCCACTGCATCGATTGCGGCGAGATCTCGCGTCATCT
ACGCCAACGGGCGCTTGTGTGTGAGGTATGCACAAGGACGACCACGATTG
CTAGACAATAAGAGACACTTTCCTGTCGTTTCTGCATTGACTATCGACCC
CAGGCGCTGCTTCGTTCGGATATGGACAAACGCATCACCAGCTTGTGCGA
GGACGCCACCTCCCAAAAGCAGGTGCAGCGGGGGGGAGGGCGGGGGGAGG
CGTATAGTGTGGGTTGATTAGTGCAAGTCCCCCGCATGATGCGGGTGACA
TCTGTTGGCAGAAATATTCACCACGAACTAAAATCTATACAACGCCCACG
TCTGGATAATGCGGGTGCCCGTGACAGTGCGGGTGAAAATTCCCGTCCCA
CCCCCGCACTAGAGCCCCCCCCCCCCACTGGACCGAAATCGACGTGAAGT
CGGAAGTGGGCAGACGAGCACAACAATTTCAAGTGTGCACTTCTCGAACC
CTAGGCGGGACTGCGATGGCAGTTGGCCTCCTCCTGATCGACCTTATTCG
CCGAGCGGGTGCTTGGTTGTGGCCGGTTTTGATCTGCTGCTGCTGCTGTG
TTATCGTTGTTGAAGACTTGGTGATAACTAGGTCGACCATCGTGCAACAA
CACACGATGCCCATGCCTGTGTTTCCGCAGGCTGTTTCGCAGGCAGGCTC
TTCCCTGAGAAGAAGGTCCGCTGGCCGCAGACACCCATTAGTCCTGTGGT
TCGTTGTGACTAGGAGCTTTAAATCTCGGACACCGGTTCAGCAGCTGCCC
GTGTCGTGAGCGCAGCTGTGAACACACATCAAGAAGGGCGGTCGGCAGGC
TCCCGTCGCAAATAGTTTTCCTTCTTGTTCTCGCCATTCCCGCGGAATAT
CGCTTCCACAGCATTTCGTGTCACTGTGCTTTCTGGGCAGGAAATTGCCA
TATCTCTGTCGGAGGTTATCGACTCGCGGCGAGACGTCAACGGTGCGTGG
GAGTTGCTAGGGAGGTCAGAAGTGATACCCGAGGAAAGACTCTTCGCGGC
GGCCAAGCAGGCCAAGTTGGACGGCGGAGGTAAAGCCAACAAGGAACGGG
CGAAGGATATGATCGACGCCTACAGGTGAGCGCATGGCGTGCGGTGCAGG
CTGTCGGCGGAGCCGACGCTCGGGCGTCCTCGAGTCCGCTGGTCTCTGCG
GCAGTGGTTTACAGCTTGGGATATCTCGTCGTGGGTGCGTCCGCTGCTTC
GTTCTTGGTGGTTGGGCTTGTCGGCTACGCAGTGAAAAAGAACCTGGTGC
CCGTATGTGGGCTCGACGGTAGCTTGCTATTCGAAATTTTCCTCTTGTAT
ATTCCTGGTGGGAATTTTTTCCGAAAAAAAGTGGGTCCACCTTCCCGCCG
ATGCTGTGTCAATTCCCTTTTCCTCGCTGTCACATCACCCCTTACCGAAC
TGCGCAAGGCTCCTTCAAGTGCTTGGCGACGTGTTTTCGAAGGTTGTGGA
AGCAGTTGCAGAGGTGGGGAGGCAGGAAGAAGAGTGCCGGTTGGTCGAAG
GCAAAACGGAGACGATGCTGTCGCGCCGAGGGGCAACCGACCACCTCCTG
GTAAGATCCAAGGAGAACTTACAAAGTCGCTCATTTCTTCTCTACGTGAG
GGTCGATTAGAGAGTGGGGCAGGAGTTCGATTTCGGCTGCACGGATAGGA
TCATTTGTTCCAAATGGTTTTGTTGACATATGCTGAGTTTCCCACGGCGG
GCCTTCCGCCAAGCTTAAAACCCAACCGAGCTCAGCACGATATGGTTGTG
GAGGCTTGGCTTTCAAAGAGAAAACTCGAGGTATGACGAGGCATAAGTTC
TTTTGAAGTGGAATGTTCGCCCTAGATTTGCCCTAATTACCTCCGAATTT
TGTGGCGTTACAACGCTTTGTAGGTATGAAATACTCTCGCTTGATTCGAG
GCCAGACTCAACGCATCGTGAAGCAAACCGCGTTGAGTCAACAGCTCGCA
GCTCATGAGCAAGGGGCGGGTGCCCTGAATCGTTTGCGGCAGGTAGCTTT
AAGTCTCCTAGTTGATAGACGGGCGTGCAGCTTTAACACCACCCTTAGAA
AGGTGCTTCGCAACGCTTGCAATGCAACCCTTTGCCCTCTGAATGCTACA
CAAGCCTGAAAGGAGTGGCCCCGACAGGTCAGGGGCGATGTTAGAAAACG
GAGCAGCCTCCATCCACCACGATTGACGCTGTGGCCTCAATCGCCCCATG
TTCCCGTTGCAGCTGTTGTCGCGGGATTTAAACCGAGTAAAGGAAGACGC
CTTCGCCCTCGAGCAACGGTTAGACCAAGCCCTGGAACAGGAAAGACTTC
ACCAACAAGCCGCGGAGGAGGAACGACTGAATGAGACTCCAGCGGAGAGC
GAAGATGGCTTGCGCGGGGAAGGAGAGCACCCAACAAGCGAAGTAGTCAA
AGGGGCAACGACGCAAGAAGAGGAATACCAGACGCGAGCTAAGACTGGTT
GTGGTGGTGAACACGATCGAGGTTGGAACGGCGGAGAAAGAGCACCATTC
CAAGCGCCGCAGCACGACGACGCTGCCGAAGCAATACCTCAGAGGGATCT
CCAGGGATACGGAGGATTCGCCGAAGAAAGCCGGGAAGGAGTGCCACGGA
CGCCGCCAGACCATTACGGCGGCGGTGAAGATGTCGATGAGGGAAGTGTT
GGCGTTGGTAGTGAAGAGCAGGAAGACGAGTTTGTAGGGGAGGATGAGGA
GGACAACGTTTGGCAGTGACATGGTCTGGTAGCCCAAATGACGAGCTTTT
TTGAACAAAAGCGTTTTTGGTGTGTGGACCAATTGGTGCTACCAGCGTTT
CTGCCGACGTGTTAATTTTGTCTCAGGTTCAAAAAGTGCTGACGCATTCA
AGCCCGCCTCTCTTTCAGTGCCTTGTCCCTGCATATCGACCCCCCTGAAG
CCTGTCTACGTTTGTCTCCGAAGAATCTGTCAAGAACGAC back to topCoding sequence (CDS) from alignment at P-fluviatile_contig15:947000..957389- >mRNA_P-fluviatile_contig15.2425.1 ID=mRNA_P-fluviatile_contig15.2425.1|Name=mRNA_P-fluviatile_contig15.2425.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=6978bp|location=Sequence derived from alignment at P-fluviatile_contig15:947000..957389- (Porterinema fluviatile SAG_2381) ATGTACCCGGGGGGGGAAGATACGCGCGAACTGCTGCTGGAGCTGCTGTC GATGCTGCCACCCGAAGGGATGTACCCGGGGGGGGAAGATACGCGCGAAC TGCTGCTGGAGCTGCTGTCGATGCTGCCACCCGAAGGGGTGCCAGTGCTC CCTGCTCAGCCGTCGCCTGGCGCTAGAAGTCCGCCGCTTCCGGGGCAAGA GCAACAGCGGCATCAGCAGCCGCGGCCGCAGCAGCAGGGAGCCCACGATT TCCTGTCCGGCGACCCCTCCGAAAATGCGGTCGAAGGTAATGACCCGGTG ACCAGCGACGTCGGCGTTAGGCATGAGAACGGCGGCGACGCCGCATCGCA GTCGGAAGAAGGAGGCGACGGGAGTGAGGAGGAAAGCGCCGCCGCCGCCG CCGCCGATGGCGATCAGGACGGGGGCGACGCGGCGTCGACGGCTGGGAGA GGAGGCGACGGAGATGAGGTTGCAAGTTCCGCCGCTGGTGCCACCGAGGT CGAAGATGCGGCATCGTCGCCGCCGGGGGAGGAGCAAGTGGAAAACGGGG ATCAGCTTGGCGCTGCCGGCACCAAGGAGAACGGTGACGGGGCCGCCTCG CTTTTGGCAGGAGGGGATGCGGAAATTGGGAAGCAAAGCGCCGCTGTCCT AGTCGATGAGTATGGCCATTATCCCGCGCCAATGGGAGAAGAAAAACAGG GCGAACGGGAGGGGGCCGCCGAACCACTTGCACGCAGTGCTGACAACTGC ACATTGGAGGGGAAGGAAGAGTTGGGGGAGAGAGGGGATGACGAGGAGGA GGAGGAGGAGGAATATGAGGAGGGGTCAGCCGGACATGAAGCCGAGGCGG ACACGCCACCTGCTACAGGAGTTGTCGAGGCGGTGGTCGGTTTTTCTCAA TCGCCTGATGGAGAAGGCACGGCTGTTGGCGAAGCGACAGCTGATGAGGG GGAAGGAGCGGCGGAGGCGGAGGAGGCAACGTCAACGGAGCCTGCTCCGC CCGGGCCGGCGGACAATCAAGCGACGTTTAGAAGGTGGAGCAGCAACCCG CCGGCAGGGAGCGACACGGGTGGCGATGACAGCAGCTCCCTTCACGCGAG CTTGGACAATCCGTGGCACGACGAACTCACGGAAGGCGGCGAGGAGGATG GAGAAGAGAACGTGTTCGGGCCCGTGGATTCGTCTGAAGCAGAAGCTAGC GCAACGAGAGCGTTTCAAACTCGGGAAGACGTGGAGGGAGAGGAGGAAGC GGAAGTTGACATGTTGGCTGCAGCAGAAGCTAACGCAACCGGAGCGCTCG CAGGAGAGGAGGGAGGGGAGGAAGCGGAATTCGACGTGTTTGGGCTGACC GAACCGTCGGAAGCAGTGCTGGGGGGGAGATCATCGGCAACGGCAGCCCC CAGGGCGAGGACGGAGGGGTGGGAGGAAGAGGAGAAAGCGGGCAACGTGT TAGGGCCCACGGTGCAACCGGCAGCAGATCTGAGCGCAGAACCTGTCCCG CCAGAAGGGAGGGCAACAGAGAGCGATGCCACTCCCGTTAGACGGGCATT TGACTCCGACGCCGCTCAAGTCATCGGGAACAGAGACGCCGCTCTCCGCG ATGACGTTCAGGACGTAGAAAGAGACTTGACGGGCGAAACCAACTCTCCT CTCGCCGTGCAGGCAAGAGATTCAGGACTGACTCAAGCCCGGGAAGCAGA GGGATTGGGCGAAGAAGGGATAGCCGGACCGTCCGGCCCGACACCAGGAG GGGCGGGTGATGGCGGCGAGGGGTCGTGTGCCGTCTCGGGGGAAGACGGT GGCCTCGGCGATGATCAGCGAGTCGGATCCGCAAGTGTAGAAGCGCAGGA TTCGGAGAGTGGTGGGGGTGGGGGAGGTGGTGATGTTGAGGCGAAGAGTG CGGCTCCTGACGGAAAAAGCAGAGGTGTGCTAGATGCGGCAGCCGTACGT GCCGGCTTGCTTGAGGGGCACTCTCAAGGGCCAGAGAGTGTGAGCAGCGT GGAAGGAGGGAGAGAGGGAGAGTCAGGGGAGATAGGGACGGATAGGACAG CACCACCGGGCGAAAGAGGGGACAACGATGACGTGGTTTTCTTACAGGTG CCAGTGCTCCCTGCTCAGCCGTCGCCTGGCGCTAGAAGTCCGCCGCTTCC GGGGCAAGAGCAACAGCGGCATCAGCAGCCGCGGCCGCAGCAGCAGGGAG CCCACGATTTCCTGTCCGGCGACCCCTCCGAAAATGCGGTCGAAGGTAAT GACCCGGTGACCAGCGACGTCGGCGTTAGGCATGAGAACGGCGGCGACGC CGCATCGCAGTCGGAAGAAGGAGGCGACGGGAGTGAGGAGGAAAGCGCCG CCGCCGCCGCCGCCGATGGCGATCAGGACGGGGGCGACGCGGCGTCGACG GCTGGGAGAGGAGGCGACGGAGATGAGGTTGCAAGTTCCGCCGCTGGTGC CACCGAGGTCGAAGATGCGGCATCGTCGCCGCCGGGGGAGGAGCAAGTGG AAAACGGGGATCAGCTTGGCGCTGCCGGCACCAAGGAGAACGGTGACGGG GCCGCCTCGCTTTTGGCAGGAGGGGATGCGGAAATTGGGAAGCAAAGCGC CGCTGTCCTAGTCGATGAGTATGGCCATTATCCCGCGCCAATGGGAGAAG AAAAACAGGGCGAACGGGAGGGGGCCGCCGAACCACTTGCACGCAGTGCT GACAACTGCACATTGGAGGGGAAGGAAGAGTTGGGGGAGAGAGGGGATGA CGAGGAGGAGGAGGAGGAGGAATATGAGGAGGGGTCAGCCGGACATGAAG CCGAGGCGGACACGCCACCTGCTACAGGAGTTGTCGAGGCGGTGGTCGGT TTTTCTCAATCGCCTGATGGAGAAGGCACGGCTGTTGGCGAAGCGACAGC TGATGAGGGGGAAGGAGCGGCGGAGGCGGAGGAGGCAACGTCAACGGAGC CTGCTCCGCCCGGGCCGGCGGACAATCAAGCGACGTTTAGAAGGTGGAGC AGCAACCCGCCGGCAGGGAGCGACACGGGTGGCGATGACAGCAGCTCCCT TCACGCGAGCTTGGACAATCCGTGGCACGACGAACTCACGGAAGGCGGCG AGGAGGATGGAGAAGAGAACGTGTTCGGGCCCGTGGATTCGTCTGAAGCA GAAGCTAGCGCAACGAGAGCGTTTCAAACTCGGGAAGACGTGGAGGGAGA GGAGGAAGCGGAAGTTGACATGTTGGCTGCAGCAGAAGCTAACGCAACCG GAGCGCTCGCAGGAGAGGAGGGAGGGGAGGAAGCGGAATTCGACGTGTTT GGGCTGACCGAACCGTCGGAAGCAGTGCTGGGGGGGAGATCATCGGCAAC GGCAGCCCCCAGGGCGAGGACGGAGGGGTGGGAGGAAGAGGAGAAAGCGG GCAACGTGTTAGGGCCCACGGTGCAACCGGCAGCAGATCTGAGCGCAGAA CCTGTCCCGCCAGAAGGGAGGGCAACAGAGAGCGATGCCACTCCCGTTAG ACGGGCATTTGACTCCGACGCCGCTCAAGTCATCGGGAACAGAGACGCCG CTCTCCGCGATGACGTTCAGGACGTAGAAAGAGACTTGACGGGCGAAACC AACTCTCCTCTCGCCGTGCAGGCAAGAGATTCAGGACTGACTCAAGCCCG GGAAGCAGAGGGATTGGGCGAAGAAGGGATAGCCGGACCGTCCGGCCCGA CACCAGGAGGGGCGGGTGATGGCGGCGAGGGGTCGTGTGCCGTCTCGGGG GAAGACGGTGGCCTCGGCGATGATCAGCGAGTCGGATCCGCAAGTGTAGA AGCGCAGGATTCGGAGAGTGGTGGGGGTGGGGGAGGTGGTGATGTTGAGG CGAAGAGTGCGGCTCCTGACGGAAAAAGCAGAGGTGTGCTAGATGCGGCA GCCGTACGTGCCGGCTTGCTTGAGGGGCACTCTCAAGGGCCAGAGAGTGT GAGCAGCGTGGAAGGAGGGAGAGAGGGAGAGTCAGGGGAGATAGGGACGG ATAGGACAGCACCACCGGGCGAAAGAGGGGACAACGATGACGTGGTTTTC TTACAGTTCGAGCTGGAGGCGAAGGAATTGGAGCTCACAAGGCTTTTGAC GGAAGCCGAAGTGGACAACGATGAAGCAGATAAGTTCGAGCTGGAGGCGA AGGAATTGGAGCTCACAAGGCTTTTGACGGAAGCCGAAGTGGACAACGAT GAAGCAGATAAGCTCGAGGAAGAGGTGGGAAGACTGGGCGCCCTGGCGGC GGAAAAAGAGAAGTACTGCCGATCCTCCGCAAAAGCGCTGGAGCTCTTTC CAACTCGAGGAAGAGGTGGGAAGACTGGGCGCCCTGGCGGCGGAAAAAGA GAAGTACTGCCGATCCTCCGCAAAAGCGCTGGAGCTCTTTCCAAACGCCG AGGCGGAGACCACCGAGTTGCAAAAGCGATGCGCTGCTGCCGAGGCCCGC ATGCAGGCGGCGAGAAAGGCTTTCGACAAGGCCATGAAACCCCTCGAGGC CACGGTGCGCCTCCAGCGGGAGGAGCTCGCGAGACGAAAGACGCCGAGGC GGAGACCACCGAGTTGCAAAAGCGATGCGCTGCTGCCGAGGCCCGCATGC AGGCGGCGAGAAAGGCTTTCGACAAGGCCATGAAACCCCTCGAGGCCACG GTGCGCCTCCAGCGGGAGGAGCTCGCGAGACGAAAGGCGCGGTGCCATTC CCTCATCGAAGTGATGCGCGGCATGTACGCGGAGTGCCGGAAAATGACCC TTGAGGGGCGGTCCCTCCGAGCCTCCGCCAGGAAGATGGAGGCCTGGGAG CGCCAGGCTCGAGGGGAAGTCTTAGGAGGGCACAACGACGGGGAAGACAG CAACAACAGCGGTTCGGAGATGGAATGGGGGGAAGACGAAGATAATGGCG AGGAGGCCATCCGAAGAAGGGAGGCTGGGGCGCGGTGCCATTCCCTCATC GAAGTGATGCGCGGCATGTACGCGGAGTGCCGGAAAATGACCCTTGAGGG GCGGTCCCTCCGAGCCTCCGCCAGGAAGATGGAGGCCTGGGAGCGCCAGG CTCGAGGGGAAGTCTTAGGAGGGCACAACGACGGGGAAGACAGCAACAAC AGCGGTTCGGAGATGGAATGGGGGGAAGACGAAGATAATGGCGAGGAGGC CATCCGAAGAAGGGAGGCTGGGGCGCTGCTTCGTTCGGATATGGACAAAC GCATCACCAGCTTGTGCGAGGACGCCACCTCCCAAAAGCAGGCGCTGCTT CGTTCGGATATGGACAAACGCATCACCAGCTTGTGCGAGGACGCCACCTC CCAAAAGCAGGAAATTGCCATATCTCTGTCGGAGGTTATCGACTCGCGGC GAGACGTCAACGGTGCGTGGGAGTTGCTAGGGAGGTCAGAAGTGATACCC GAGGAAAGACTCTTCGCGGCGGCCAAGCAGGCCAAGTTGGACGGCGGAGG TAAAGCCAACAAGGAACGGGCGAAGGATATGATCGACGCCTACAGGAAAT TGCCATATCTCTGTCGGAGGTTATCGACTCGCGGCGAGACGTCAACGGTG CGTGGGAGTTGCTAGGGAGGTCAGAAGTGATACCCGAGGAAAGACTCTTC GCGGCGGCCAAGCAGGCCAAGTTGGACGGCGGAGGTAAAGCCAACAAGGA ACGGGCGAAGGATATGATCGACGCCTACAGGCTCCTTCAAGTGCTTGGCG ACGTGTTTTCGAAGGTTGTGGAAGCAGTTGCAGAGGTGGGGAGGCAGGAA GAAGAGTGCCGGTTGGTCGAAGGCAAAACGGAGACGATGCTGTCGCGCCG AGGGGCAACCGACCACCTCCTGGCTCCTTCAAGTGCTTGGCGACGTGTTT TCGAAGGTTGTGGAAGCAGTTGCAGAGGTGGGGAGGCAGGAAGAAGAGTG CCGGTTGGTCGAAGGCAAAACGGAGACGATGCTGTCGCGCCGAGGGGCAA CCGACCACCTCCTGCTGTTGTCGCGGGATTTAAACCGAGTAAAGGAAGAC GCCTTCGCCCTCGAGCAACGGTTAGACCAAGCCCTGGAACAGGAAAGACT TCACCAACAAGCCGCGGAGGAGGAACGACTGAATGAGACTCCAGCGGAGA GCGAAGATGGCTTGCGCGGGGAAGGAGAGCACCCAACAAGCGAAGTAGTC AAAGGGGCAACGACGCAAGAAGAGGAATACCAGACGCGAGCTAAGACTGG TTGTGGTGGTGAACACGATCGAGGTTGGAACGGCGGAGAAAGAGCACCAT TCCAAGCGCCGCAGCACGACGACGCTGCCGAAGCAATACCTCAGAGGGAT CTCCAGGGATACGGAGGATTCGCCGAAGAAAGCCGGGAAGGAGTGCCACG GACGCCGCCAGACCATTACGGCGGCGGTGAAGATGTCGATGAGGGAAGTG TTGGCGTTGGTAGTGAAGAGCAGGAAGACGAGTTTGTAGGGGAGGATGAG GAGGACAACGTTTGGCAGTGACTGTTGTCGCGGGATTTAAACCGAGTAAA GGAAGACGCCTTCGCCCTCGAGCAACGGTTAGACCAAGCCCTGGAACAGG AAAGACTTCACCAACAAGCCGCGGAGGAGGAACGACTGAATGAGACTCCA GCGGAGAGCGAAGATGGCTTGCGCGGGGAAGGAGAGCACCCAACAAGCGA AGTAGTCAAAGGGGCAACGACGCAAGAAGAGGAATACCAGACGCGAGCTA AGACTGGTTGTGGTGGTGAACACGATCGAGGTTGGAACGGCGGAGAAAGA GCACCATTCCAAGCGCCGCAGCACGACGACGCTGCCGAAGCAATACCTCA GAGGGATCTCCAGGGATACGGAGGATTCGCCGAAGAAAGCCGGGAAGGAG TGCCACGGACGCCGCCAGACCATTACGGCGGCGGTGAAGATGTCGATGAG GGAAGTGTTGGCGTTGGTAGTGAAGAGCAGGAAGACGAGTTTGTAGGGGA GGATGAGGAGGACAACGTTTGGCAGTGA back to top
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