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Homology
BLAST of mRNA_P-fluviatile_contig11.1250.1 vs. uniprot
Match: A0A6H5JYC7_9PHAE (Metallophos domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JYC7_9PHAE) HSP 1 Score: 418 bits (1075), Expect = 1.620e-140 Identity = 201/243 (82.72%), Postives = 219/243 (90.12%), Query Frame = 2
Query: 224 ELKAEVIVVGDVHGCYSEMVCLLDKCGYRLGNREDKERFSVVLAGDLVNKGPNSVDVVRTAREEGFLAVRGNHDNFALAAATGVGRYAKDSATSKEGSSGW----PWVKQLSSEDLEWLSALPYTLSFPSLGCIVVHAGLVPGVDLQDQDAEAMSCMRNVVETEGGGGYEPRTPATEGVAWAKVWKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTAVILPGRKVVCIPAEAVWSAPG 940
ELKAEVIVVGD+HGCY EMV LL++CGYRLGN+ED+ERFSVVLAGDLVNKGP SVDVVRTAREEGFLAVRGNHDNFALAAATGVGR++ KEG G PWV+QLSS+DL+W+SALPYTLSFPSLGCI+VHAGLVPGV L QDAEAMSCMRNVVE EGGGGYEPRT +G+AWAK WKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTAV+LPGR+VVC+PAEA+WSAPG
Sbjct: 81 ELKAEVIVVGDIHGCYGEMVSLLERCGYRLGNKEDRERFSVVLAGDLVNKGPGSVDVVRTAREEGFLAVRGNHDNFALAAATGVGRFSP-----KEGEGGGAKPPPWVEQLSSDDLQWISALPYTLSFPSLGCIIVHAGLVPGVPLNGQDAEAMSCMRNVVEMEGGGGYEPRTLPDQGLAWAKAWKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTAVVLPGRRVVCVPAEAMWSAPG 318
BLAST of mRNA_P-fluviatile_contig11.1250.1 vs. uniprot
Match: A0A8K1FHR1_PYTOL (Uncharacterized protein n=1 Tax=Pythium oligandrum TaxID=41045 RepID=A0A8K1FHR1_PYTOL) HSP 1 Score: 209 bits (533), Expect = 2.300e-60 Identity = 110/242 (45.45%), Postives = 152/242 (62.81%), Query Frame = 2
Query: 221 VELKAEVIVVGDVHGCYSEMVCLLDKCGYRLGNREDKERFSVVLAGDLVNKGPNSVDVVRTAREEGFLAVRGNHDNFALAAATGVGRYAKDSATSKEGSSGWPWVKQLSSEDLEWLSALPYTLSFPSLGCIVVHAGLVPGVDLQDQ---DAEAMSCMRNVVETEGGGGYEPRTPATEGVAWAKVWKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTAVILPGRKVVCIPAEAVWSAP 937
+ L + VI+VGD+HGC+ E+V LL + D+ + +++L GDLVNKGP S +VV+ AR++ L VRGNHD+ AL+A D+ +K G +VK S ED+ +L LP+T+S P+ ++VHAG+ PGV L+ Q D M + E +E + +E V WA WKGP+H+YFGHDAK G Q+EAFATGLDTGC YGR LTA+ILP R++V + A A +SAP
Sbjct: 25 IPLTSRVIIVGDIHGCFDELVELLAVAEF------DESKDTLILVGDLVNKGPKSPEVVQFARQKNALCVRGNHDDAALSAYYAWKSGGDDALPAKYG-----YVKSFSEEDIRYLEELPFTISLPAQNAMIVHAGIKPGVALEGQHPIDMYKMRFLEYESTNEEPAAFEVKPSDSEVVQWATQWKGPQHIYFGHDAKAGLQQEAFATGLDTGCCYGRQLTAIILPTRELVAVKARAQYSAP 255
BLAST of mRNA_P-fluviatile_contig11.1250.1 vs. uniprot
Match: A0A024GF73_9STRA (Metallophos domain-containing protein n=1 Tax=Albugo candida TaxID=65357 RepID=A0A024GF73_9STRA) HSP 1 Score: 204 bits (518), Expect = 2.620e-58 Identity = 122/242 (50.41%), Postives = 147/242 (60.74%), Query Frame = 2
Query: 239 VIVVGDVHGCYSEMVCLLDKCGYRLGNREDKERFSVVLAGDLVNKGPNSV-DVVRTAREEGFLAVRGNHDNFALAAATGVGRYAKDSATSKEGSSGWPWVKQLSSEDLEWLSALPYTLSFPSLGCIVVHAGLVPGVDLQDQDAEAMSCMRNVVETEGGGGYEPRTPATEGVA--------WAKVWKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTAVILPGRKVVCIPAEAVWSAP 937
VI+VGDVHGC E+ LL KC ER ++L GDLVNKGPNSV VR R L+VRGNHD ALAA R+ D ++ + +VKQ SSED+E+L LP T++ P VVHAG+VPG+ LQDQD ++ MR + EG E + A E WAK WKGPEHVYFGHDAKRG Q E FATGLDTGC YGRSLTA ILP + +V + A+ V+S P
Sbjct: 17 VILVGDVHGCLEELQQLLMKC------EATPERDLIILVGDLVNKGPNSVLQFVR--RSPNMLSVRGNHDEAALAAYV---RWKNDEDVPEK----YNYVKQFSSEDVEFLRDLPLTITLPEYNVAVVHAGMVPGLALQDQDPVLLTRMRFLERQEGSTIDEIKWKALEKCQIENEATSLWAKQWKGPEHVYFGHDAKRGLQLEEFATGLDTGCCYGRSLTAAILPQKILVSVEAKQVYSEP 243
BLAST of mRNA_P-fluviatile_contig11.1250.1 vs. uniprot
Match: A0A5D6Y7R9_9STRA (Metallophos domain-containing protein n=1 Tax=Pythium brassicum TaxID=1485010 RepID=A0A5D6Y7R9_9STRA) HSP 1 Score: 201 bits (511), Expect = 1.110e-56 Identity = 119/243 (48.97%), Postives = 146/243 (60.08%), Query Frame = 2
Query: 233 AEVIVVGDVHGCYSEMVCLLDKCGYRLGNREDKERFSVVLAGDLVNKGPNSVDVVRTAREEGFLAVRGNHDNFALAA--ATGVGRYAKDSATSKEGSSGWPWVKQLSSEDLEWLSALPYTLSFPSLGCIVVHAGLVPGVDLQDQDAEAMSCMRNVVETEGGGGY----------EPRTPATEG---VAWAKVWKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTAVILPGRKVVCIPA 916
A V+VVGDVH C E+ LL C + R ++VL GDLVNKGP V+VVR ARE L VRGNHD+ ALAA A G A+D++ SK + +V+QLS ED+ +L LP+TL+ P+ IVVHAGLVPGV L Q M MR + + GG E R A E WA W+GP+HV+FGHDA G Q+EAFATGLDTGC YGR LTA ILP R++V + A
Sbjct: 34 ARVVVVGDVHACADELQLLLRACAFNAA------RDTLVLVGDLVNKGPKPVEVVRFAREANALCVRGNHDDAALAAYYAWRTGGGARDASDSK-----YRYVEQLSPEDVRFLEELPFTLTLPAQNAIVVHAGLVPGVPLHAQRPLDMYKMRFIEPVDQDGGIDEPVREWAALETRAAAREAGQLFQWATQWRGPQHVFFGHDAVPGLQREAFATGLDTGCCYGRQLTACILPAREIVQVQA 265
BLAST of mRNA_P-fluviatile_contig11.1250.1 vs. uniprot
Match: A0A7S2XZH9_9STRA (Hypothetical protein n=1 Tax=Fibrocapsa japonica TaxID=94617 RepID=A0A7S2XZH9_9STRA) HSP 1 Score: 202 bits (515), Expect = 1.170e-56 Identity = 114/227 (50.22%), Postives = 142/227 (62.56%), Query Frame = 2
Query: 239 VIVVGDVHGCYSEMVCLLDKCGYRLGNREDKERFSVVLAGDLVNKGPNSVDVVRTAREE-GFLAVRGNHDNFALAAATGVGRYAKDSATSKEGSSGWPWVKQLSSEDLEWLSALPYTLSFPSLGCIVVHAGLVPGVDLQDQDAEAMSCMRNVVETEGGGGYEPRTPATEGVAWAKVWKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTAVILPGRKVVCIPA 916
VIV+GDVHG Y E+V LLD CG R+D + +V GDLVNKGP V+ VR AR V GNHD A+ A R K+ K+ + +V+ L+ ED +WL LPYT+S P +VVHAGLVPGV L+DQ+ M MRN++ ++ +E TEGVAWA W+GPEHVYFGHDAKRG Q+ FATGLDTGC G LTA ILPG ++V + A
Sbjct: 20 VIVIGDVHGSYDELVSLLDACG-----RKDSD--IIVFVGDLVNKGPKPVECVRFARSSPNAYCVMGNHDLKAIKAF----RSWKNGGKLKK---KYKYVEDLTQEDYDWLYNLPYTISLPDRNALVVHAGLVPGVSLEDQNLVEMVTMRNLLRSDDNS-WEALERPTEGVAWASAWEGPEHVYFGHDAKRGLQQWRFATGLDTGCCKGLHLTACILPGAEIVSVAA 231
BLAST of mRNA_P-fluviatile_contig11.1250.1 vs. uniprot
Match: A0A1S3K9H2_LINUN (uncharacterized protein LOC106179988 n=1 Tax=Lingula unguis TaxID=7574 RepID=A0A1S3K9H2_LINUN) HSP 1 Score: 196 bits (498), Expect = 8.520e-55 Identity = 115/277 (41.52%), Postives = 153/277 (55.23%), Query Frame = 2
Query: 128 EFKTLFPRLLHAVAPIFTDRTHDVAGRNCVPVELKAEVIVVGDVHGCYSEMVCLLDKCGYRLGNREDKERFSVVLAGDLVNKGPNSVDVVRTAREEG----FLAVRGNHDNFALAAATGVGRYAKDSATSKEGSSGWPWVKQLSSEDLEWLSALPYTLSFPSLGCIVVHAGLVPGVDLQDQDAEAMSCMRNVVETEGGGGYEPRTPATEGVAWAKVWKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTAVIL--PG-RKVVCIPAEAVWSAP 937
EF T P++LH V N V V VVGD+HGCY E+ LL K K+ V+ AGDLVNKGP S DV++ RE AVRGNHD + Y+++ S ++ + WV L+ D+++LS LPYT+S PSL +VVHAG+VPG+ L Q M+ MRN++ +E +GVAW +WKGP +Y+GHDAKRG Q+ FA GLDTGCVYG+ LT V + PG R+ V + A+ V+ AP
Sbjct: 38 EFDTPLPKVLHQVLD-----------NNIVQ---NRRVFVVGDIHGCYDELQALLMKADVL------KDDAVVIFAGDLVNKGPKSTDVLQFIRENTEKYQLYAVRGNHDEKVIL------EYSRNKDPSYTLTNKYKWVTDLTENDIDYLSELPYTISIPSLKSLVVHAGIVPGIPLAKQQPIHMTTMRNIISLNNNQ-FEISKYEKDGVAWGSLWKGPNCIYYGHDAKRGLQEHPFAVGLDTGCVYGKKLTGVFIHSPGTRRYVSVDAQTVYRAP 287
BLAST of mRNA_P-fluviatile_contig11.1250.1 vs. uniprot
Match: A0A813JGW0_POLGL (Hypothetical protein n=1 Tax=Polarella glacialis TaxID=89957 RepID=A0A813JGW0_POLGL) HSP 1 Score: 195 bits (496), Expect = 1.870e-54 Identity = 109/239 (45.61%), Postives = 145/239 (60.67%), Query Frame = 2
Query: 239 VIVVGDVHGCYSEMVCLLDKCGYRLGNREDKERFSVVLAGDLVNKGPNSVDVVRTAREEGFLAVRGNHDNFALAAATGVGRYAKDSATSKEGSSGWPWVKQLSSEDLEWLSALPYTLSFPSLGCIVVHAGLVPGVDLQDQDAEAMSCMRNVVETEGGGGYEP-RTPATEGVAWAKVWKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTAVIL-----PGRKVVCIPAEAVWSAP 937
+++VGDVHGC E+ LL + DK R ++VL GDLVNKGP+S +V+ AR+ G VRGNH++ L A GVGRYA + ++ + G Q+ +E + W+ LP+TLS P L +VVHAGL+PGV L+ Q + M +R+V ++ G+E TP +WAKVW GPEHV FGHDAKR Q FATGLDTGC YG LTA+++ R+ V A V SAP
Sbjct: 55 LLIVGDVHGCAEELRSLLKAESF------DKGRDTLVLVGDLVNKGPSSGEVIAIARDNGAFCVRGNHEDELLEAWHGVGRYANGLGSYRQNAKG-----QVDAEAVRWVQELPFTLSLPWLKLVVVHAGLIPGVPLEKQKVKDMMWVRDVRPSDSDAGWEGLETPQEGSYSWAKVWSGPEHVVFGHDAKRKLQTHEFATGLDTGCCYGFQLTALVVNPDDASDRRFVHAQAGKVHSAP 282
BLAST of mRNA_P-fluviatile_contig11.1250.1 vs. uniprot
Match: A0A3R7JUV9_9STRA (Metallophos domain-containing protein n=3 Tax=Phytophthora kernoviae TaxID=325452 RepID=A0A3R7JUV9_9STRA) HSP 1 Score: 192 bits (489), Expect = 8.160e-54 Identity = 112/250 (44.80%), Postives = 149/250 (59.60%), Query Frame = 2
Query: 221 VELKAEVIVVGDVHGCYSEMVCLLDKCGYRLGNREDKERFSVVLAGDLVNKGPNSVDVVRTAREEGFLAVRGNHDNFALAAATGVGRYAKDSATSKEGSSGWPWVKQLSSEDLEWLSALPYTLSFPSLG-CIVVHAGLVPGVDLQDQDAEAMSCMRNV------VETEGGGGYEPRTPATEGVA----WAKVWKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTAVILPGRKVVCIPAEAVWSAP 937
V V+++GDVHGCY ++ LL KC + D +R V GDLVNKGP S++V+R R+ G L VRGNHD+ AL+A + S T+K +P+V+Q +D+ +L LP++LS P+ G IVVHAG+VPGVDLQ+Q + MR V +ET E + +E WAK W GP HVYFGH A G Q+E+FATGLDTGCVYGR LTA ILP ++V + A+ + P
Sbjct: 23 VSPSTRVLIIGDVHGCYDDLQLLLTKCEFSA----DTDRL--VFVGDLVNKGPKSLEVLRFVRDSGSLCVRGNHDDAALSAYYNWVHGGRVSGTAK-----YPYVEQFLKDDVLFLEQLPFSLSLPAHGNAIVVHAGVVPGVDLQEQRPIDLYKMRFVQCQTAGIETSPWVALEKKKFKSESGGEPHMWAKQWTGPRHVYFGHAASAGLQQESFATGLDTGCVYGRKLTACILPSHELVHMDAKEQYEVP 261
BLAST of mRNA_P-fluviatile_contig11.1250.1 vs. uniprot
Match: A0A2D4C6V3_PYTIN (Metallophos domain-containing protein (Fragment) n=1 Tax=Pythium insidiosum TaxID=114742 RepID=A0A2D4C6V3_PYTIN) HSP 1 Score: 191 bits (486), Expect = 1.050e-53 Identity = 109/241 (45.23%), Postives = 143/241 (59.34%), Query Frame = 2
Query: 236 EVIVVGDVHGCYSEMVCLLDKCGYRLGNREDKERFSVVLAGDLVNKGPNSVDVVRTAREEGFLAVRGNHDNFALAAATGVGRYAKDSATSKEGSSGWPWVKQLSSEDLEWLSALPYTLSFPSLGCIVVHAGLVPGVDLQDQDAEAMSCMR----NVVETEGGGGYEPRTPATEGVA---WAKVWKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTAVILPGRKVVCIPAEAVWSAP 937
EV+V+GDVHGC+ E+ LL Y D +VL GDLVNKGP S +V+R A+ G AVRGNHD+ ALAA Y +A + +V+ + D+E+L++LP+T+S P IVVHAGLVPGV L Q M MR N ++ YE R + + WA VW+GP+HV FGHDAK G Q+E FATGLDTGC YGR L+A ILP + ++ +PA V++ P
Sbjct: 9 EVVVIGDVHGCFIELQDLLAAIQY------DATTDHIVLVGDLVNKGPQSTEVLRFAQRAGVSAVRGNHDDAALAA-----YYRWKAAGDASPPEKYAYVRDWTQVDVEFLASLPFTISIPGHNAIVVHAGLVPGVALGQQKPFDMYKMRFVGPNPENSQELVAYEKRPXXGDSDSIQQWASVWQGPQHVIFGHDAKAGLQREPFATGLDTGCCYGRQLSACILPSKDIMSVPAREVYAPP 238
BLAST of mRNA_P-fluviatile_contig11.1250.1 vs. uniprot
Match: A0A1W0A3B3_9STRA (Metallophos domain-containing protein n=1 Tax=Thraustotheca clavata TaxID=74557 RepID=A0A1W0A3B3_9STRA) HSP 1 Score: 191 bits (486), Expect = 1.520e-53 Identity = 105/243 (43.21%), Postives = 140/243 (57.61%), Query Frame = 2
Query: 221 VELKAEVIVVGDVHGCYSEMVCLLDKCGYRLGNREDKERFSVVLAGDLVNKGPNSVDVVRTAREEGFLAVRGNHDNFALAAATGVGRYAKDSATSKEGSSG----WPWVKQLSSEDLEWLSALPYTLSFPSLGCIVVHAGLVPGVDLQDQDAEAMSCMRNVVETEGGGGYEPRTPATEGVAWAKVWKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTAVILPGRKVVCIPAEAVWSAP 937
V V+++GDVHGC+ E+ LL C Y N +V GDLVNKGP S VV R G L VRGNHD+ AL A YA+ ++TS++ + + +V+QL+ ED+ +L LP+T++FP L +VVHAG+VP V L++QD + + MR + + GG + G WA + G +YFGHDAK G QK A GLDTGC YGR LTAVILP K+V PA + P
Sbjct: 10 VSADKRVVIIGDVHGCFDELELLLQACNYSPAND------LLVFVGDLVNKGPKSPQVVHFVRTSGALCVRGNHDDAALHA-----YYARRTSTSEKEPTAFAERYDYVEQLTPEDISFLEQLPFTITFPELNALVVHAGVVPNVPLEEQDPKNLYKMRFLEKNSDGGFIASEVKSEHGALWAPQYVGSPFIYFGHDAKAGLQKCEHALGLDTGCCYGRELTAVILPENKLVSTPALKMHCVP 241
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 | 179.1 |
| Seed ortholog evalue | 2.3e-42 |
| Seed eggNOG ortholog | 2903.EOD21704 |
| KEGG rclass | RC00002 |
| KEGG ko | ko:K01525,ko:K22132 |
| KEGG Reaction | R00125 |
| KEGG Pathway | ko00230,map00230 |
| GOs | GO:0000322,GO:0000323,GO:0000324,GO:0000329,GO:0003674,GO:0003824,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0005773,GO:0005774,GO:0006793,GO:0006796,GO:0008150,GO:0008152,GO:0009987,GO:0016020,GO:0016311,GO:0016787,GO:0016788,GO:0016791,GO:0031090,GO:0042578,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0044237,GO:0044422,GO:0044424,GO:0044437,GO:0044444,GO:0044446,GO:0044464,GO:0098588,GO:0098805,GO:0098852 |
| EggNOG free text desc. | phosphoprotein phosphatase activity |
| EggNOG OGs | COG0639@1,KOG0371@2759 |
| EC | 3.6.1.41 |
| COG Functional cat. | T |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko01000,ko03016 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | Metallo-dependent phosphatase-like |
| Ec32 ortholog | Ec-16_000830.1 |
| Exons | 5 |
| Model size | 1675 |
| Cds size | 666 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815473.9813688-UTR-P-fluviatile_contig11:2947283..2947422 | 1622815473.9813688-UTR-P-fluviatile_contig11:2947283..2947422 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 2947284..2947422 + |
| 1693561975.236156-UTR-P-fluviatile_contig11:2947283..2947422 | 1693561975.236156-UTR-P-fluviatile_contig11:2947283..2947422 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 2947284..2947422 + |
| 1622815473.9979682-UTR-P-fluviatile_contig11:2947443..2947536 | 1622815473.9979682-UTR-P-fluviatile_contig11:2947443..2947536 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 2947444..2947536 + |
| 1693561975.2486067-UTR-P-fluviatile_contig11:2947443..2947536 | 1693561975.2486067-UTR-P-fluviatile_contig11:2947443..2947536 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 2947444..2947536 + |
| 1622815474.0158708-UTR-P-fluviatile_contig11:2958527..2958572 | 1622815474.0158708-UTR-P-fluviatile_contig11:2958527..2958572 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 2958528..2958572 + |
| 1693561975.5619538-UTR-P-fluviatile_contig11:2958527..2958572 | 1693561975.5619538-UTR-P-fluviatile_contig11:2958527..2958572 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 2958528..2958572 + |
| 1622815474.0654485-UTR-P-fluviatile_contig11:2960608..2961340 | 1622815474.0654485-UTR-P-fluviatile_contig11:2960608..2961340 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 2960609..2961340 + |
| 1693561975.608122-UTR-P-fluviatile_contig11:2960608..2961340 | 1693561975.608122-UTR-P-fluviatile_contig11:2960608..2961340 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 2960609..2961340 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815474.030929-CDS-P-fluviatile_contig11:2958572..2958844 | 1622815474.030929-CDS-P-fluviatile_contig11:2958572..2958844 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 2958573..2958844 + |
| 1693561975.5775936-CDS-P-fluviatile_contig11:2958572..2958844 | 1693561975.5775936-CDS-P-fluviatile_contig11:2958572..2958844 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 2958573..2958844 + |
| 1622815474.0408556-CDS-P-fluviatile_contig11:2959686..2959880 | 1622815474.0408556-CDS-P-fluviatile_contig11:2959686..2959880 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 2959687..2959880 + |
| 1693561975.5872629-CDS-P-fluviatile_contig11:2959686..2959880 | 1693561975.5872629-CDS-P-fluviatile_contig11:2959686..2959880 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 2959687..2959880 + |
| 1622815474.0508952-CDS-P-fluviatile_contig11:2960408..2960608 | 1622815474.0508952-CDS-P-fluviatile_contig11:2960408..2960608 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 2960409..2960608 + |
| 1693561975.5987034-CDS-P-fluviatile_contig11:2960408..2960608 | 1693561975.5987034-CDS-P-fluviatile_contig11:2960408..2960608 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 2960409..2960608 + |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig11.1250.1 >prot_P-fluviatile_contig11.1250.1 ID=prot_P-fluviatile_contig11.1250.1|Name=mRNA_P-fluviatile_contig11.1250.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=222bp
MVCLLDKCGYRLGNREDKERFSVVLAGDLVNKGPNSVDVVRTAREEGFLA VRGNHDNFALAAATGVGRYAKDSATSKEGSSGWPWVKQLSSEDLEWLSAL PYTLSFPSLGCIVVHAGLVPGVDLQDQDAEAMSCMRNVVETEGGGGYEPR TPATEGVAWAKVWKGPEHVYFGHDAKRGFQKEAFATGLDTGCVYGRSLTA VILPGRKVVCIPAEAVWSAPG* back to topmRNA from alignment at P-fluviatile_contig11:2947284..2961340+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig11.1250.1 ID=mRNA_P-fluviatile_contig11.1250.1|Name=mRNA_P-fluviatile_contig11.1250.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=14057bp|location=Sequence derived from alignment at P-fluviatile_contig11:2947284..2961340+ (Porterinema fluviatile SAG_2381) CAAGCAAGTCCGACAGGTTTACGATCGTCCGGACTACTGGGAGTCCATCT
GGGGGGTGTGGCTGCGGAGACTCCGAGAGCTAAGTGCTTCGGAAGCTGGA
TTGGACCCGACTTGCCGGGAAGCTCGAGAGTTCAAGACTGCCTTCCGGGT
ACCGTACGAGCTCTTTCCGCGCCTCCTGCATGCTGTGGCGCCAATATTCA
CGGACAGAACGCACGACGTAGCAGGCCGAAACTGCGTTCCTGTGGAACTG
AAGGTGTGTCTATTGTTTCGCGGAAGAAAACATGTTGGGTGAGGATGTAG
CCAAGGGTGTCTTGTCTGTGTGTTGCGTTTGTGTGTTGCGTCTGTGTGCG
GGGCGACTCTTCGCCCGTGCTGACCAGCGCCAAGAGCATACCCCCGCCGC
AAAGGCGCGCCGACGCGTACCAGCCAGTCCAGTTATATGCTTCTGTACCA
TTCGCAAGATGCCCGTAGTGTTTGTAGTTTTGCGCCCGCCCGTCCACACG
CCGGATGTATATCCATAACACACACAGCAGCGTGCGAACACACAGCAGCG
TGCGATCCTGCACACGCACAGCAGCGCACGCACAGCAGCGTGCCGTCCAC
TCGCACTTGTCATCACGGCACAGCAGTCGCTTGGCGATTTTTTGCGTCTC
GCAACGGACCACTGCTGTTGTGTCCGGCTTCAATCTACATACATCACCGT
GCGGGCATGCCGGAAGGATTCTCTCTGCTGCACGTAGCAGCAGGCCTGTC
GCAGCAACCCAACCTCGGCACGCCCTGTCCATCGCACACACGCCGCCGCT
ACTGCCATGCTGAGTGGGAGCTGTACGAATTCACACCTTCGCTTACGCTA
TCCTACACCGACCACCCTGTGTAACGGCCTGGTGCACCGCAGGTGCTGGG
GGCCTTGAAGGTGTTGGCTGGGGGGAACGCATTCAGCGACGTGGCTGCGT
TTTCGAAGATGAGCCGCACGACCGCCGAGAATTCCTTTCACCATTTTTGT
GAGAAATTTTCCGAGGCTCTCTGGGACAAGTGGGTCCAACTGCCGGAAGG
TGAGGACCTGAAGAAGGTGGTGGAGACGTACCGAAAGTGTGGCTACCCGG
GGGCGATGGCCTCGATGGATTGCACTCACTTTAAGTGGGAGGCGTGCCCG
TTCTCCGAACAGCGAATCCACACCGGCAAGGAGGGCTTTGCAACGGTCGT
CGTGGAAGCAATGTGCGACCACTCCGGCCGCATCATTGCGGCAACGAAGT
CTTACCCGGGATCCGAGAACGACAAGACCATCAGCGTCCGCGACGAGTCC
ATCTGGCGAATTCGAAACCAGGAGCCGTGGAAGAGCCTGAGGTTTGACCT
TTTCAACGCTGATGGAACGGAGACGGAGTACGAGGGCGCATGGATCATCG
TCGATGGAGGGTACGCGAAGGTAAGGCAGTTGGGGGCTCATGCCCTACCC
CTCCCTCTGTGTGTTAAACATGCGCGTTTGCGCTTGTGAAACCGATGTGC
TCTTAACGGTGCTTTGCGCTTGTCATACCCGCTTGTGAAACCAGATGCAG
TCCCCCCAGCCTCTctcccccCCCCCCATCTTTTTCCGGGGTAGCGTAAT
TTCATTTTTTGGAAGCAAGCACCCCTCTCTGTTGGACCTAGCCCGCAGCG
GCGACAGCACGAGGCGTGCGCTTGTGTTGCACTCTGTTGTGTACAATACA
TGAGCAAGGTGGTAGTCATACCCAACGAGACCTCGCCCACTGCAAAATAA
AAATAGTATCACTTGCGTGCGAGTGTTGCCTTCAACGTCGAAAACGGATG
CGTGGTTTAGCCCCCTGACCCAACCCTGTCTCTCCCGCTTCCCTCTCCGC
TTCCCGACCCACCCCCGCCTTCCCCGCTTTCATAGGTCCCGCTGCTCATC
CCACCGATCAAGACACACCACACCCTCGAGGAACACGCTTGGAGCAGGCG
GTGGAGAGCATCCGCAAGGACATCGAGTGCCTTTTTCGGCAGGATCAAAG
GGCGCTGGAGGCTTTTCAAGGGCGGAATCCTCTTCAACAAGCGGGAGAAG
ATCGACAACGCGTGGTTCACGGCGTGCATTCTCCACAACATGCTCCACGC
GTACGACATGCTTGGCGACATGGAGGAGGACGCAGACTGGGTTGGGTCAG
CAGGAGAGGTCGGGGAGGGCGACGGAAGAAGGGGTGGGGGCGGCGGGCAT
GGAGGAGGAGGAGAAGGAGAATCCCGCGCCTGGTTTCGAGCAGTTTCGCC
AGAAGCTCGTCAACCACTTCGCGTGCGCCTGGGGCAAGAACCAGGTGTTG
TGGTTCAAGCCGGCGCATGGATAGTGTTGTGCGAGCGTATATTTGACTAG
TTTTTCACGTACATACCGAACGCGGTAGGGGAGGGCCGGTTCAGGGTAAC
GGTATCCGGTGTGCATGTTTTCTTGGCTCGGAGGGTCAGTCATGTTCTAT
TTTGGTTTACCGCAATGCACTTTATTTTGCGTTTGACGGCGTGGTTGTTT
GTGTGTGGACTGTGAAATGAACAAGAAATAAGTGTACATGATTGCTTCGA
AGTATAAACCATTCCATACTTCGAGGTTGGGTGGTTGCGTTGTTGCCATG
CAATCCACGAGCGATGTGGATTTTTCCTCAAGCAGGCGACACGCTTGTTA
CGCGCACAATCGTTTAGCATCCCTGGTATCGCATGCTCTGTTGTAACTGC
TTGCCCAAATGCTGTCGCGAACCAGGTCGCCATAGTTTTTACATAGAGCA
GACCTTTTGGAGGTGAAAGCGCGTGTTCCTCTTTTATTTGGTGTGTGAAC
AGAAATTGGGCACTCCTCGCCGTAGGTGGCGCATATACACCGTTGTTGCG
GTAGTCGTTGCGGATTCATTGGTGTCATTTAAAAAGTGGTGCTGTGAGCC
CCTGTGTTCAACACCACCACACCATATTTTGTTCGCTTGGTAGAGAGTCT
GGCGCTTGAACCCCCGGGTAAGCAGTCGGCTGCAACCACAATAGTTGTGC
TGGCAGAAGGCCAAAACAATAATGCAGGTAATGAGAATTAAAAAACCAAC
GCGTCGACACAAAAGTGGTCCTTTCGTTTGTCGATGGGTCCTTTGGTGTA
TTGTGCCCTCCTGGACGTGAAGTTTACATTGTCTCAACACCACGGTGGAA
TCAGGCCATGCAAGCTACAACGCTCTTCCTTTTTTCGACGAGCACCCCCT
CCCTTCTTCTCAATCGGAGGTTCGAGTTTCACTGCAGCACCACGCGAAAC
GGCGCCTTGAAGATCACGACACTACCTTATATTGTTTTCAACCACCACTA
ACTCCCCCCCCCTACACGCTTCGTCCCCGGTTCAATCTGGCACCGAGGCG
AACCCTGAGCCCCACCCTGTCGAGCGTGTCAATAAAAACTCCCATTTTCC
GAGGCTTGTCATGTTGGCATCGCTACACAATGACAAAACTTGCAAGAAAT
CTGCCAACACCCACTGCATAAGTCAAGCACCCGGAACCATAGATTTCACT
GCAGCACAACTAGCACTCGTCAAGCAAGCGTTCAAGTTCACCTCGGATCT
CTTTCTCGTCCCCGATACGAAGCATCAGTTTTTTTTCCAAAGCGGTGATC
TTCGCCGCGCGCTTCGTGGCCTCAGCTCCTTGCTCCTGGAGTTCCACCAT
CCTCTTGAGGTTGGCGCCGATGCTCTCCACATGAGAGCTGGCTGCCTCCA
TCACCGCCAGGCCTTTCTTCCGAGTGTCCAGCGCCTCCATCCTGGCCGCT
TTGTTCTCTTTTTCGATTGCCGCCTGTTTTTCGGATTCTTTCTCCCGCTT
GATGGCAGCGTAGTGCTGGCGGCGGCTCACGGCGTCACCGTTGGGGTTGA
GCCGCCCCATCGCCGCCGGGCTGCTGATGGGGTCGTCGTCGTTGACTTCG
ACCGCTCCTTCCCTGTTGTTCTTGCGCTTCCTGCTGCCGGGGCCGCTCGA
GGACGCGAGGTGCTTCCATTCGGAGGGACACTGGCCACTCCACGGGCTGA
ATGCAGCTGCCAGCATCAGCAAAGGGTAGTACCAGCTGTCGGGCACGTCG
ACCTCCCCTTCGCTCCTGCCGCCAGAGCCTGCGCCCGCCCCCGCCCCCGT
CGCCGCCTCCTGCTCTTGGCGGATCGCGGCGGCAGCCGCTACGGCTAAAG
CAGCGGGGGCCCCGACCGGCTCACACCTCGAAGCCGGGCCCGAAACAGGT
GTCGGGGGCGGGAGTGTGGCCGCTGTACCGGTAGCGGCAAGACCACGCCG
GTGTTGGTTGAAGAGGTGGTCAGCGGAGGATTGGCGCCCCCTTTCCCCCC
TCCCCCGGCGGCTAGCGCCGCAAGGCGCGGGCCATTCGCCGTCAGGGTCG
GCGGTGCGTCCGGATCTTTGCCCTTTTCGAGCAGCTTAAGATAACCCGAG
GACTCCAGGTACATGTCCCTGTTGAGGTGCTCGAAGACCTCCTCCGTCTG
CGTCCCAGACGGCAGTTCTGCTGGGGTTCTCCGGCGCGATCCTGCGCAAA
AGTAAAGGGGGCAAGGGGCGTATGTACAACAAAGACGAGCAATAATGTGA
AAACAAAGCTATTTAACATGTGTTGTGTGTCATTTTTTTTGGGGCAAAAC
GCAGCGAAGAAATATATTTCTCGACAGTGTACATGGCCCTCGCGTACAGT
CTACACATGGACGTCTTAACCAAAAGCAGACCACAAAACATATGACAAAC
AATGAACAACACTTTGTGTATTGGGGCGACAAAAAGCGTAGTGGATGGAG
GCAACAAGGGAACGCGCTCCTGCATCAACGCTTGACCACACTTTGCCTTT
ATGAAGTAGCGGCAACGGTGCGAGAGGTTTCAATATTTCATGTACCAGCG
CTGCCACGACAGATCGGGGGTGCGGGGTGAGTGGTCGGTGCTAGTCAGAC
GAGGAACAAGCACGCCTTAGCCACGAGTGTGCATCAAGGGGCACCCAACC
CCCCACAAACACACATCGCGTAAACCCTCGCGGTACAGGACACACCCCCT
GCAGGATGCGCCGGTGAAATACATGGCAAGAAAACGCTCTCAGCACCAAT
GTAGGCGATTTACTCACTTCTGCATGTGCAGCTGGCACTTGGTAAACAGT
TCTTTTATCTTCTTGTACTTCGTCATGACGGTGTCTGGGGCTTCCATGAA
AGTCTTCGGGTTGCTCCCTCCTGTCGGTTGTCGGTTGTTCCAAAATTACA
GAAGGTGTAGGGGAAAAGCAAGTCAAGCGGGGAGCTGCGACTACGAACGG
CAGGGATAGATGGTGACCCATGGCCGCGCGAGAAGCTTACAACGGTACCA
ATGGCCGGCAAATGTTCGTACTTCCCGTCCCCCTGCGGTTGCAACCGCTG
GTGCTGCTGGTGCTGGTGCTTCAAATTCAAAATCCGCTGCACTGCCGGTG
GCTATTCGGTCCCTTTCCTTTCTATCCATGCATGTTATCGTTCTTTCTGC
TGCTCCCCCATGTGTGGGAGAAGACATTGATTGTCATGGCGCCACGTAAG
TGCGGTACTGAACAGCCGTTATTATGCTCACACACAGGTGTCATACATGT
ACTTCGAAGTACATTTTTCGAAAACTCATCAGCCGTTGGGTTCACGCACT
CACCTCAAAATTTCAAAAAGCGCAATCATGTGTTTTTCATGTAAGGGCTG
GCGCCCACGAAAGAGGCTTGCGGGATGCAAACGAGAGGAAAGCGAACATC
ACGCCATACGAAGCACTCTTGCGCGGCCTACCTGTGCCGAGCGTGGTGTA
GTAGATCCTGTCCTTCCACTTGTGGGGCATTCGCGGCCGCTCGTTCGCTC
TCTTCGATGGCCCCTCCAGAAGCATGATGAGCCCGGGGACCGCGATCTCT
TGCATGCATCTCGATGCTGCCATGTTGCGGTCCGCCTTCGACATCTTCTG
CGCCTCCTTCACGGAGAGAGCTGACCACACGAGTGGCAGAACCTGGAGTG
CCTTCAGCGAGGCCTGGGATATACTCTTCCCACCGTACACGTCTGTGAAG
CGTTTGAAAGCGTACATGAAGTCGCCGCCAAGGATGATCGGGAGCTCCGG
CGCCTTCTGTGACTTTGCGAAATCAACTGCCATCCTGATGGGTTGCTGTA
GAGTGGAAACTTTGTTGTAGCGACCCTTGCTGTGGGTTTTGGTAGGTATG
TGTTGAAGCTGTGTGCGCCACGCTGCAGGGGTCCGCGATGGAGCTTGATG
GCGGGGAAGAGTACGGTAACCCCCCGACTCTGACAGTCTCGGCAAGATAT
CCTTTCTGGTTTCCGTAACAAGCGGGACGAAATGTTCGCCTCACAATCTT
TTAGAAGATAATCTTGGAGAAATTTTGAAGATTTCGTCGATAAGATTTTG
TTCTCATTAACATGGGTGTTACACCCCTCGTGCGTAAGATTTATTTTTGG
AAATCGCTTCCCCCGGTGAAAAATTAATGTATCGGGAGGGCTATTATTTT
CCTGCAAAACCGGATACACCCGGTGAAAAATCAACGAATCTATGTCGCCA
GGCCGAAAAAGTGGGGGGGGATAAAGGGACACGACCCCGGTGAAAAAACT
CCGATGATTACGGTGGGTGCCTAGTGAGCACCGTGAGTGGTGCCGCGGAA
GATCTTCGACGAGAGCCGGCGGAGCTCAAGCTCCGCCTGGAGACATCAGA
AGCGTCAAGGACAGCCGCAGAGACGGCTAGGACGGCCGCCGCTGAGGAGG
CAGAGGCTGCAAGGAAAGCCGGTGTCGACAGGGCAGAAGCTGCGCGAAAA
GCTGATGTCGAGATGCAGAAGAGTCACATGACGAACATGATGCGAATGAT
TCAGTCGCTAACGGGACTGAACAGCGGACAAGCGGAAGGGCTAGAAAGGT
CGACGCAAGCGGCGCCGACAACAGCCTTTAAGCAAGAGGTTCTCACGGTG
TCGAACCACGGAGGAATGGCGCACGCGGTGCCGACGATGAACCAGAAGCA
AGACACCCGCATCGTTAATACCCGATCTAGAGCGAGAGGCTTGCTCGTCT
ACATCGTCTCGTCAAGAACTTCCGGAGAGGTTCTTCGCGCCCGGGGAGGC
TGCGACCCAGAGCAGTCAGCTTGGCGGAGGTGGACAAGACTGGGGTTTTA
TCCCCCACGGTGAGTCCACCATCACGCGGTACTCTACTCACAAGCCCAAG
ATGGACGCGCCCGTGCTGTCCAAAAGGCTGGAATTAAAGAGTTTCGAGCA
AGACCTTCGGATCTATCCACAAACCATGGACTTCGAAAGCGTGTTGATGA
CGGACCCGCCCATGGATGTAGGGGATCCGGGCAACGATCGTTCCGCTATG
ATGTGGCGGTGAATCACCCAGAGAATACGACAAGCAATTGCGAGCTTGGG
TATTCCTCTCAAACGACTTCAAAGGAAGCCGACAAATGGTGTTTTCGCCG
GAACTCGTCCCCTACTGTTTTGTTGGAGAAAATCAAGGAGTAGTACGGCC
ACAAGACTATCGGCGAGCTAGTGTTCTTGAGAACAAACTACAATATTTCA
AGATTGGTAAAGGGGCCAACCCTACCGAGGTGCAGATTGAACTAGAGGAC
CTCCGTGAGGAAATGCTCGAAGCAGGCAAGAATTGCGACGAGCGTACCTT
TTTTTTTTCTTCTCCATTTTCCCCAATGCCCTCCCTCTTGAGGTTCGGGA
GCTAAACCGTAAGACCGACGTCGACCGCAACGAGATCATGAACTTGGTCT
ACGCTCAGTATGAGCTGTTGTCCAAGAAGAAAAAGCAGTCGTCTCGCACG
CCTTCATGAGTGATGGTGGGCGCGGGAAAGGCGGAGGCCGCGGCCGTGGC
GGCGCGAAGCGTGGAAGGAGCCACGGAGGGGCGCGCGGGTCAGGTCAATC
CGAACGAAGAACGGGGGAGAAGAGAACGAGAAGGAGAAGCAGCCTGATAA
AGGATCGATCTGCTTTAATTGCCGTGGTTGTGGACACCTCGCTCGCGGCT
GTAAGTTTGAAGTATGCAAGCGGTGAAAGGGCCGGGGGCACAAAGAACGT
ATCTGCCCATTCCCGGCGGATATGGAGTCTGCCCTGGCGATGACCTTGCC
TGAACCTAATGACACGGCCGTGCAAGCTTTGCCTACCACCGATCAACTGC
CCACACTCACCCACTGCTGTTGAAGAAGTCTGCGGAGCAGCAAGGAGTGC
AGTTGGAGAAGGACAGCGAGCTTGTGCCCTGTGTGGGATGCTCAGCAGCT
AAGGGCTTCCTGGCTCTTGCAAAGAAAACCACCGAGTGCAGAGCTACCAA
ACGAACGGTTAGAGTTTTCGAAGACCTCACTGGCCGTAAAGTCGTCCAGT
CCCTAGGAGGTACGCTTTCCCATGACGACATTCTCTGTATTTGTGGGAGA
ACTTCATTATATCCAAGTCAGAGGCCCCGAAGCGCGGGAGCAGTTGCTTG
CAGACACCAAGGAGTTCGGCACCTCCGGCATCCTCAGGTCAGGCGGTGCG
GCTGAGCACCGGAACGGCCGATTTACCGAGATCTGCCGACAGCACACGAC
CAAGCGGAAGTTCACGTCAGCGGACAGGCCCTAGCTTAATGGGGTAGCGG
AACGCGGGCTGGCCCTCGTCGAGAAGGTGGCTAAGGCGGCAACTCTTCAG
GTGAAAGAATCTTTCAAGATCGAATCCTTACCGGCGACCAAATGGCTCTG
GCCAGAGGCCCACAACTACGCATGCGATGCCTCGAACCAAACAGCGACAT
CGTCCACCACGGACTTCAAGTCCTCGTACGAGGTGTTCTTCGGGAACCCG
CCTCCTCCGACTTCACTGGAGTACCTTCAACCGTGCTTGTACACGGTCTA
CCCTAAGCGCAAGATGGATGCGCGAGCGAGGAGGCTTGAATTATGAACCG
CCTCCCTTTACCCTGTGTTGCTCACCGCGAACCTCGATGTGAGGAGGGAG
AGTGATCAAAGGCCTTTGGCGATTCAAAGAAGCTGTAGAATTTGAATGTG
GCTTGCGGTAAGGACCCGGCTAGACATTGCAAACGCCGTGCGTGCTGTGG
CGTGCCACTCCCTGCACCAGACTGAACGTCATTGGAAGGCGACTGAACGT
CATTGGAAGGCAGTACTTCAAATTTTTCAGTACCTACTTGGGACGAAGGA
TCTAGGCCTTACATTTGAACGGGGATCGGGACTGGATTTGCCTCTATTAT
CGACTCGGATTACGCAGAGAAGGCGAATGATAGAAGGCCTATTTCCGGCA
CAGCAGTAGTTCTCGGGAATGCCGCGGTCCAGCACCAAAGCAGTGCGCAA
AGGATCGTCTCTCAGTCAAGTGCCGAGTCCGAGTACGTAGCACTTGGTGA
TGGCGTGAAGGATGCTCTCTTTGTGAGACACATAGGTAGTTTCATGCTCC
CATTCCTTTCGGAGGAGTGCATTCAGGTCCGCGTAGACAACGATTGGCTA
CTTCGATGACCAATCCCCCTAGCTCGGGCAGACCGAAGCACATCGGCGTA
GGATTATACTACACCCGGCAGTTGGCGAGGTCGAAGACGATCGCAGTAGA
TTACGTTCCTTCCGGGGACCAGCGTGCAGATGTACTGGTCTTCTCTTTGA
GACCACCGGGATTACCCGATGAATATTTGCATCTGAAGGATAGGTAGATA
TTCTGATGATTCGTTATTTTCTAGGATCGATGCGATGATGCTGAATTTTT
TTATTATTTTTGATGTTGCCATTCGAGGGGTTTTTATCCGGAGGCCGGGT
TTCCCTTCGCCAGTTACTTGATTTATGTTACAGGCTTGTCCCTGTTGTTC
AGAGCCAGGGAGGGTGTTGATGTGTCGTATCCAAAGTGACGGTATCGTGT
CGGTTCAACATTGGATACACGATTGGTGTTCGAGTTGAGCCGCATTGTGT
TCCGAGTAACTTGCACGACGATATGTGAGCTGGTGCTCACTCTCTCCCTC
TCTCTCGTATCTCTCCTCTATCTGTGTCCATCTTGCGTCTTTACTGTGTG
AGGTGAACCGATAATGCAAGTTCTAAACGTCAACTGCTTGCCGGCTGCGG
TCAGTCGGGGTTCACCGACCAGGTGCTTAAACTTAAACAAGTAGGGAGAC
GGCGAGCGAGAACAAGAGTGCTGTGTAGGGTGACGGTACGAGCGTTTCTC
TGATGCACATTACAGCACTCTACCTCCCAATCACCTTTCTAAAATCAAGA
ATATCCCATGATGAAAATCAAGTCTAAAGAGCGAAAACGGTACTGGCTCA
AATAAGATGAGTTTTTGGAGCAGTCCCGGCCTGAGCAGATTATATGAAAG
AGGATACTCTGCAGCCGCGCTAGGTGCCGTTGGCACAGGCCTGTTTTGGG
TGCTGCGATATCGTCGGGTTCAGTAGCGGTTCAAAAACTCCGCAATCTGG
ACCGACTCATCACATCTTCAACTACTGCGCTCGCTGCCACAGACCGAATT
ATCCTGAAATGCGGGTCCAAATGTACCTTGTGTCACAACCCGCCGCGGAT
TGCCCACAGTCCAGAAGATTGATGTCCAGGGCGGCAAGTACTGCCGTGGC
AAAGGATTGGTTTCGATTCCGATTGCGGTGTTATCGAGCTGCTGTTGCGA
CCATCGATAACTTCTCCCCAGCAACAGATTTCAGCAAACCAAGGTAAGTC
GCCTCTCTATCGTGACTTCTCATGATTTCGCCTCTCAGGTAGGTGGTCTA
CTCAGCTAACGCCTTATCCTCGGGAGTTGTATAAGGGGACTGTCAGCTTT
TGCAACCCCCCTTTGCCAGCCACCCCCGAGAGAGTGCACCTTGGAGAGGC
TCTCGGCACAATTTTGTCTCACTAAGCAACGCAGCTAGAAGTGCATTGGA
CCCGGATTGGCAGGACAGCTCCCAATCTGCCGACGCACGCTCAAAATACT
TTTAGCAGTGGGACGATCCACACTTTATCGTTGTAACCCAGATCCTGATA
ACGCATACAAGGCAATTCGCGGCTTTGGTCAACAAGCTGCTGTGTGGTCG
GAAACGTGCGATCCACCGACCGAAAAGCACAACAGACCCCGTATCGACAA
CAGCAGTCAGTTTGGTGTGGCAAACTAGAACGCATGCAGCAGCTGACAAG
GCGAGTCGGCTCGATCGGTTCGATGTCGGCAGTCACGATCGAGTCGATGC
TTCCTCTGTCGCCCAACCGAACTCCGCCATTGTCCCTGCCGACTGTCCCT
GCCGACATTCGTTCTCGCGAATGCGCTTGAGAGCTCAGGCTGTGCCCACC
GCTTTTGTTTTTCTTTTAATTCGCTCTGTGTGTGAAAAAAAAAGGCGGAG
GTTATAGTAGTGGGAGACGTTCACGGATGCTACAGCGAGATGGTGTGCTT
GCTGGACAAGTGCGGCTACCGGCTAGGCAACCGGGAGGACAAGGAGCGCT
TCTCCGTGGTGCTGGCGGGAGACCTGGTCAACAAGGGCCCCAATAGCGTT
GATGTCGTGAGGACGGCGAGGGAGGAGGGCTTCTTGGCGGTTCGCGGCAA
CCACGACAACTTCGCCCTCGCGGCGGCGACCGGGGTCGGCCGATACGCCA
AGGATTCGGCGACCTCGAAGGAGGGGAGTTCCGGATGGCCATGGGTGAAG
CAACTATCCAGGCACGTGCCCTGTTGCGTTTGGTTTCGATTCTGAACGAA
CAGACAGGACTTGGAGGGAATATTGTCCTGCCTGGCAGGAGGGAGGGGGT
GATGTATCGATCGGTTTGCGTCCCCGCACGTCTTGAAACCACCTGCATTC
CCATCCCCGTGTTTCTGCGACTCCTGAATGTTGGGTGTCGAATGGCATCG
ACGCGCTGAAAAGAGTTACGACATTTTGCTGCGCGAAGCAAGGTATAGCT
AAGCAAGGTTGAACACTTTTTCAACTGGGCGCTGTGTTTTGAGGCAGTCA
TAAGTGTCGAGTTGATCATGTTGGCGAGGCGAAAGGACTTGAAACTGAGC
GAACGGGGATGGTCCTACCGAGTGGGAATCATCACGAGTCGCTCGACACA
CCAGCACAGTATACTTCTATGGCTTCCTGCAGGAGCGAGAAGCCCAAACG
AAGACGATCAACCCATCGTAAGCTGCTGTACAAGAATGTGTTCGCACGAG
ACGGTGTACACTGCAAGCAGGTTGCAGCACAGTTCTTCGTGCGATCCGCC
GAACGCGTCAGTACGGCGTTTCGCGGTTGTTTCAGAGTTCTCTAATAGCG
TGGTCACGTGATCTCCAGTTCGGTTTTAGTGAGATGTGCGAGATCGGTAA
CCTGATGCCTACGGTATGCTTGACCATGACCCCTGCCCCCTGCCCTGCCT
TCTTTCCGTCCTTTACCCCGATGGCACTCGATTCTCTTCCAACAACGCAT
GCCCTCCACCCGCCTGTCTCGCTCACTTCCCTCTCCCCGAACACTCACCC
TTCGCGAAACCTTACACGCCGCACGTACACGTACTTACACCCGAACGGAA
CAGCGAGGACTTGGAGTGGCTTAGCGCCCTCCCGTACACGTTGAGCTTCC
CGTCATTGGGCTGCATCGTCGTGCACGCCGGGCTCGTTCCCGGGGTGGAT
CTCCAGGACCAGGACGCCGAGGCCATGTCGTGCATGCGGAATGTCGTGGA
GACGGAGGGCGGCGGGGGCTACGAACCCCGAACCCCCGCGACCGAAGGTA
CGCAGTGCACACACCCCGGCGACGCTTTTTGTCTTGCCTCTTTATTATTG
GCCATCACTTTTGAATACGGAGTATTATTGTTGATACTTCTCTGGCGGAT
TTGGTGGGGACTTGAACGGTGCATGTCAAACGCATGTCTCACAGGAAACG
AAAAGCAAGACGCGTTTCTTCGTTGCTTACGCATGGCTGACTTGCTGCTC
GTCTGCCTAATTGACTGATCCCCCCTCGGAAGCCCCGTCCGGGCGATGCG
TAGAGTTTGGTTCTCTCAGGGGGCGTTGCCGCGAGTCTGCCAGCAGGACT
GTCACGTGGGTATCTTGCGCACGGGCGCGAGATAGGCGAATACCGCCACC
ATGACCCACGGCAGGATGGCGTCAGTTTCCGCCTCCAGGTTGCGCACGTG
CAAGAGCGATTCCCTCGGTCAGAGTCTTTCTCAAGCGTCTTCGACCCCCG
TCCTCTCCGCCTCGTTCGCCCCTGCTCTGTTTTCGGCGGCTTTCCCTGTA
TTGTTTTTCGCCGGCAACGAGAAAGGTGTCGCTTGGGCGAAGGTCTGGAA
AGGGCCAGAACACGTGTATTTTGGCCACGACGCGAAGCGGGGATTTCAGA
AGGAGGCCTTTGCCACCGGCCTGGACACCGGGTGTGTGTATGGGAGGTCG
CTGACGGCGGTCATCCTGCCCGGCCGAAAGGTCGTGTGCATCCCCGCGGA
AGCTGTGTGGTCGGCACCTGGCTGAGCACTGTGACAAGTAGAAAAAGGCT
GGAAGCAGCTGACCGTGTATGTTGCTTTTTTCCTGTGCCCCTTTGGTTGA
CGAGGGTTGAACGTTGACAATGTTGACGGATTTTGTCCATGTTGTTTGTG
TTGGTATCGTGGACGCGGTCGTGGGCACGGGGAGTGGAGAGTGTGCAAGA
CCTTTTTGGTAAAATCCAGCCATTTTTGCTTAATTCCCTCCGCCACTTTG
TTTCAGGGGGGGGAGGCTGGGGTCACCGACTTGCTGTCGGGAGCTCTCTT
CTGCTGGTATGCCTCCATTGATGCGCGTGATGCTGTGTGCAATCATTCTC
GCCAATGAAGGTGCTGAGGTATGGAACTCCTGAAAGCTGCGTCTGACATC
GTCTGTACGTGTGACTCTTGAAGGTATTTTGACTGTTCGGCTTCCAATTG
CAGTATCTCTACGTTTGGAGACATGGAAGTGCCTTCAAAAGGTCCATAAA
TCGCGGTAGCCGGACAGGTCTTGCCGGTCCGTTGCTTTTTAGTCAGGTGT
GTGATCGCCTTGGCGCTCCAGTTCATTGCCGGATTTGTGAAAGCTTCGCC
CGAACAGGTGGAGAGTTTTGCCACCCGCAAGCGAGGGCGCTTGAAAAAAA
TGTAGTCTTTGCATCCCTCGCAGAGAGAGTATTGTGCTTCGCAAAGTTCC
TCATCGAATCTCGACTTCCAGGAGGGCCGCAATGGGACATCTGATTTTCC
TCTCCAC back to topCoding sequence (CDS) from alignment at P-fluviatile_contig11:2947284..2961340+ >mRNA_P-fluviatile_contig11.1250.1 ID=mRNA_P-fluviatile_contig11.1250.1|Name=mRNA_P-fluviatile_contig11.1250.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=1332bp|location=Sequence derived from alignment at P-fluviatile_contig11:2947284..2961340+ (Porterinema fluviatile SAG_2381) ATGGTGTGCTTGCTGGACAAGTGCGGCTACCGGCTAGGCAACCGGGAGGA CAAGGAGCGCTTCTCCGTGGTGCTGGCGGGAGACCTGGTCAACAAGGGCC CCAATAGCGTTGATGTCGTGAGGACGGCGAGGGAGGAGGGCTTCTTGGCG GTTCGCGGCAACCACGACAACTTCGCCCTCGCGGCGGCGACCGGGGTCGG CCGATACGCCAAGGATTCGGCGACCTCGAAGGAGGGGAGTTCCGGATGGC CATGGGTGAAGCAACTATCCAGATGGTGTGCTTGCTGGACAAGTGCGGCT ACCGGCTAGGCAACCGGGAGGACAAGGAGCGCTTCTCCGTGGTGCTGGCG GGAGACCTGGTCAACAAGGGCCCCAATAGCGTTGATGTCGTGAGGACGGC GAGGGAGGAGGGCTTCTTGGCGGTTCGCGGCAACCACGACAACTTCGCCC TCGCGGCGGCGACCGGGGTCGGCCGATACGCCAAGGATTCGGCGACCTCG AAGGAGGGGAGTTCCGGATGGCCATGGGTGAAGCAACTATCCAGCGAGGA CTTGGAGTGGCTTAGCGCCCTCCCGTACACGTTGAGCTTCCCGTCATTGG GCTGCATCGTCGTGCACGCCGGGCTCGTTCCCGGGGTGGATCTCCAGGAC CAGGACGCCGAGGCCATGTCGTGCATGCGGAATGTCGTGGAGACGGAGGG CGGCGGGGGCTACGAACCCCGAACCCCCGCGACCGAAGCGAGGACTTGGA GTGGCTTAGCGCCCTCCCGTACACGTTGAGCTTCCCGTCATTGGGCTGCA TCGTCGTGCACGCCGGGCTCGTTCCCGGGGTGGATCTCCAGGACCAGGAC GCCGAGGCCATGTCGTGCATGCGGAATGTCGTGGAGACGGAGGGCGGCGG GGGCTACGAACCCCGAACCCCCGCGACCGAAGGTGTCGCTTGGGCGAAGG TCTGGAAAGGGCCAGAACACGTGTATTTTGGCCACGACGCGAAGCGGGGA TTTCAGAAGGAGGCCTTTGCCACCGGCCTGGACACCGGGTGTGTGTATGG GAGGTCGCTGACGGCGGTCATCCTGCCCGGCCGAAAGGTCGTGTGCATCC CCGCGGAAGCTGTGTGGTCGGCACCTGGCTGAGTGTCGCTTGGGCGAAGG TCTGGAAAGGGCCAGAACACGTGTATTTTGGCCACGACGCGAAGCGGGGA TTTCAGAAGGAGGCCTTTGCCACCGGCCTGGACACCGGGTGTGTGTATGG GAGGTCGCTGACGGCGGTCATCCTGCCCGGCCGAAAGGTCGTGTGCATCC CCGCGGAAGCTGTGTGGTCGGCACCTGGCTGA back to top
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