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Homology
BLAST of mRNA_P-fluviatile_contig82.14816.1 vs. uniprot
Match: A0A6H5KEK1_9PHAE (Tudor domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KEK1_9PHAE) HSP 1 Score: 595 bits (1533), Expect = 1.310e-204 Identity = 397/590 (67.29%), Postives = 421/590 (71.36%), Query Frame = 1
Query: 127 MSRSALERQAHRSARSGTLPAPTSAPAGFLAGVDEQQQLTEXXXXXXEMRRNVLPIHGNDRTFNLNTLLAQTILASEYFQSLAAITTYLEVVDEIYSYCDHVAPWAPGTSRVPSSAFCLLMKLFVMRLTRPQMNEILMHQDSPFIRAIGFLYLRYTCPPKELWGWLEPYMDDEEEFKPSPTEGSMTMGQFVRKIISDMQYYGTMLPRIPVLIERKMKVQLLLHEEMKKREKVNFRIVNLLKPGTKVRAIYADEENDPSWYDAVIDSVEEDNRYWVTFPEYGNQELVRLGSIMLQAKTDKSPSRGATAAG---------------------------QGXXXXXRTGRTESGAGERKTNTQNKEFGG----------------------RVGRGRNKARDG--RXXXXXXXXXXXXXXXAKDXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXDARRDTSGGXSKA-----APVEEED---------DMSSSLLDMDTSKLYAQVMKREREASQAVGKDYAARPASYKGSLSLKLDRYTQRRKSRSRSPERTRGS 1701
MSRSALERQA RSARSGTLP PTSAPAGFL+ VD+Q LTE E+ NVLPIHGNDRTFNLNTLLAQTILASEYF+SL +ITTYLEVVDEIY YCDHVAPWAPGTSRVPSSAFCLLMKLFV++LTRPQMNEIL+H+DSPFIRAIGFLYLRYTCPPKELWGWLEPYMDDEEEFKPSPTEGSMTMG++VRKIISDM YYGTMLPRIPVLIERKMKVQLLLHEEMKKREK NFRIVNLLKPGTKVRAIYADE+NDPSWYDAVI+SVEEDNRY VTFPEYGNQELVRLGSIMLQAKTDKSP+RG+ + G G R G T + A R T + G R+GR A + XXXXXXXXXXXXXXX X XXXXXXXXXXXXXXXXXXXXXXXXX D R+D GG + AP DMS+SLLDMDTSKLYAQVMKREREASQAVGKDYAARPASYKGSLSLKLDRYTQRRKSRSRSP+R R S
Sbjct: 1 MSRSALERQAFRSARSGTLPMPTSAPAGFLSEVDDQ--LTEEQRQEEELHNNVLPIHGNDRTFNLNTLLAQTILASEYFKSLVSITTYLEVVDEIYRYCDHVAPWAPGTSRVPSSAFCLLMKLFVIKLTRPQMNEILVHEDSPFIRAIGFLYLRYTCPPKELWGWLEPYMDDEEEFKPSPTEGSMTMGKWVRKIISDMHYYGTMLPRIPVLIERKMKVQLLLHEEMKKREKANFRIVNLLKPGTKVRAIYADEDNDPSWYDAVINSVEEDNRYLVTFPEYGNQELVRLGSIMLQAKTDKSPTRGSGSGGGXXXXXXXXXXXXXXXXXXXXXXXXXAAGGGRGRREGTTRAAAEARGTADRTVNGAGATAAAAARLEEVAGIVIVIAMPRMGRETETAEEEGETXXXXXXXXXXXXXXXXXXXTRIAGAAGAEAGTGGXXXXXXXXXXXXXXXXXXXXXXXXXGAAVAAGAVHARTRETVRRAGPVSDRDVRKDGHGGGTNGRGSFPAPAXXXXXXXXXXXXXDMSTSLLDMDTSKLYAQVMKREREASQAVGKDYAARPASYKGSLSLKLDRYTQRRKSRSRSPDRQRTS 588
BLAST of mRNA_P-fluviatile_contig82.14816.1 vs. uniprot
Match: D7FPC2_ECTSI (Tudor domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FPC2_ECTSI) HSP 1 Score: 520 bits (1340), Expect = 7.520e-175 Identity = 424/617 (68.72%), Postives = 442/617 (71.64%), Query Frame = 1
Query: 127 MSRSALERQAHRSARSGTLPAPTSAPAGFLAGVDEQQQLTEXXXXXXEMRRNVLPIHGNDRTFNLNTLLAQTILASEYFQSLAAITTYLE--------------------------------VVDEIYSYCDHVAPWAPGTSRVPSSAFCLLMKLFVMRLTRPQMNEILMHQDSPFIRAIGFLYLRYTCPPKELWGWLEPYMDDEEEFKPSPTEGSMTMGQFVRKIISDMQYYGTMLPRIPVLIERKMKVQLLLHEEMKKREKVNFRIVNLLKPGTKVRAIYADEENDPSWYDAVIDSVEEDNRYWVTFPEYGNQELVRLGSIMLQAKTDKSPSRGATAAGQGXXXXXRTGRTESGAGERKTNTQNKEFGGRVGRGRNKARDGRXXXXXXXXXXXXXXXAKDXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXDARRDTSGGXSKAAPVEEED-------------------------------DMSSSLLDMDTSKLYAQVMKREREASQAVGKDYAARPASYKGSLSLKLDRYTQRRKSRSRSPERTRGSVGGSRGGREERRAEPSPPRRKAAPVMSAE 1788
MSRSALERQA RSARSGTLP PTSAPAGFL+ VD+Q LTE E+ NVLPIHGNDRTFNLNTLLAQTILASEYF+SLA ITTYLE VVDEIYSYCDHVAPWAPGTSRVPSSAFCLLMKLFV++LTRPQMNEIL+H+ ELWGWLEPYMDDE++FKPSPTEGSMTMG++VRKIISDMQYYGTMLPRIPVLIERKMKVQLLLHEEMKKREK NFRIVNLLKPGTKVRAIYADEENDPSWYDAVI+SVEEDNRY VTFPEYGNQELVRLGSIMLQAKTDKSP+RG+ XXXXX XXXXXXXXXXXXXXX XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX X DMS+SLLDMDTSKLYAQVMKREREASQAVGKDYAARPASYKGSLSLKLDRYTQRRKSRSRSP+R R S G E R AEPSPPRRKAAPVM+ E
Sbjct: 1 MSRSALERQAFRSARSGTLPVPTSAPAGFLSEVDDQ--LTEEQRQEEELHNNVLPIHGNDRTFNLNTLLAQTILASEYFKSLAGITTYLEGVKIVGLAAGDCHTMTYDVSGKAYGWGSYREKVVDEIYSYCDHVAPWAPGTSRVPSSAFCLLMKLFVIKLTRPQMNEILVHE--------------------ELWGWLEPYMDDEKKFKPSPTEGSMTMGKWVRKIISDMQYYGTMLPRIPVLIERKMKVQLLLHEEMKKREKANFRIVNLLKPGTKVRAIYADEENDPSWYDAVINSVEEDNRYLVTFPEYGNQELVRLGSIMLQAKTDKSPTRGSXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXDMSTSLLDMDTSKLYAQVMKREREASQAVGKDYAARPASYKGSLSLKLDRYTQRRKSRSRSPDRQRTSGXXXXXG-ERRAAEPSPPRRKAAPVMATE 594
BLAST of mRNA_P-fluviatile_contig82.14816.1 vs. uniprot
Match: K3WW49_GLOUD (Pre-mRNA-splicing factor 38 n=1 Tax=Globisporangium ultimum (strain ATCC 200006 / CBS 805.95 / DAOM BR144) TaxID=431595 RepID=K3WW49_GLOUD) HSP 1 Score: 304 bits (778), Expect = 3.410e-93 Identity = 156/297 (52.53%), Postives = 202/297 (68.01%), Query Frame = 1
Query: 127 MSRSALERQAHRSARSGTLPAPTSAPAGFLAGVDEQQQLTEXXXXXXEMRRNVLPIHGNDRTFNLNTLLAQTILASEYFQSLAAITTYLEVVDEIYSYCDHVAPWAPGTSRVPSSAFCLLMKLFVMRLTRPQMNEILMHQDSPFIRAIGFLYLRYTCPPKELWGWLEPYMDDEEEFKPSPTEG-SMTMGQFVRKIISDMQYYGTMLPRIPVLIERKMKVQLLLHEEMKKREKVNFRIVNLLKPGTKVRAIYADEENDPSWYDAVIDSVEEDNRYWVTFPEYGNQELVRLGSIMLQAK 1014
MSRSAL RQ+ + LA +QQ + ++++ LPI+GN T+NLNTLL Q IL S YF L + TY EVVDEIY DH P +PGT+R+PS+ FCLL K F+MRLT QM +L H DSP+IRA+GFLYLRYTC P++LWGW EPY+DD+EEF + T+G+++ ++ D+ Y+GT+LPRIP IE +KV+LLLH K+RE+ N IV LKPGTK+RA+YADE+N+P+ YDAVIDSVEE+N +WVTFPEYGN E V+LG I + K
Sbjct: 1 MSRSALTRQSQQK---------------VLAIRAKQQGGDDGDEYERRVKQDELPIYGNQTTYNLNTLLHQNILQSAYFHELYNLKTYHEVVDEIYYRVDHAEPLSPGTARIPSTCFCLLHKFFLMRLTMKQMQGLLKHTDSPYIRAVGFLYLRYTCDPEKLWGWYEPYLDDKEEFNAAANPNVKTTIGEWLVGLLEDINYFGTILPRIPKKIEDSIKVKLLLHGRKKEREQANLSIVEFLKPGTKIRAMYADEDNEPAMYDAVIDSVEENNEFWVTFPEYGNTEKVKLGDIEFERK 282
BLAST of mRNA_P-fluviatile_contig82.14816.1 vs. uniprot
Match: A0A6G0WVZ2_9STRA (Pre-mRNA-splicing factor 38 n=1 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0WVZ2_9STRA) HSP 1 Score: 295 bits (755), Expect = 6.570e-90 Identity = 159/310 (51.29%), Postives = 203/310 (65.48%), Query Frame = 1
Query: 127 MSRSALERQAHRSARSGTLPAPT-----SAPAGFLAGVDEQQQLTEXXXXXXEMRRNVLPIHGNDRTFNLNTLLAQTILASEYFQSLAAITTYLEVVDEIYSYCDHVAPWAPGTSRVPSSAFCLLMKLFVMRLTRPQMNEILMHQDSPFIRAIGFLYLRYTCPPKELWGWLEPYMDDEEEFKPSPTEGSMT-MGQFVRKIISDMQYYGTMLPRIPVLIERKMKVQLLLHEEMKKREKVNFRIVNLLKPGTKVRAIYADEENDPSWYDAVIDSVEE-DNRYWVTFPEYGNQELVRLGSIMLQAKTDKSPSR 1035
MSRSAL R + A + + AP S P AGV +++ + ++ N LP+HGN T+N+N LL I+ S+YF+ L + TY EVVDEIY DH PWA GTSR+PS+ FCLL+K MRL QM +L H DSP+IR +GFLYLRYTC P++LW W PY+DDEEEF S + +T MG +VR ++ D+ Y+ T+LPRIP I+ +K++LLLHE+ KKREK N IV+LL GTKVRA+YADEEN P+ YDAVID V+ D YWV+FPEYGN E + LG I KSPSR
Sbjct: 1 MSRSALSRHEFQQAMANRMNAPAYYAAVSVPTAS-AGVYSEEEARQ-------IKENELPLHGNLTTYNINKLLFDNIMNSDYFRKLYELKTYHEVVDEIYYRVDHAEPWAAGTSRIPSTCFCLLLKFCTMRLAVKQMQGLLKHVDSPYIRCVGFLYLRYTCDPEKLWEWYAPYLDDEEEFNASANDKILTTMGAWVRTLLEDVNYFNTILPRIPKKIQDGIKIKLLLHEQRKKREKENQDIVDLLVKGTKVRALYADEENAPAMYDAVIDEVDPTDQTYWVSFPEYGNTEKISLGDIEFDRPKKKSPSR 302
BLAST of mRNA_P-fluviatile_contig82.14816.1 vs. uniprot
Match: A0A0P1ARE8_PLAHL (Pre-mRNA-splicing factor 38 n=1 Tax=Plasmopara halstedii TaxID=4781 RepID=A0A0P1ARE8_PLAHL) HSP 1 Score: 292 bits (748), Expect = 6.950e-89 Identity = 148/278 (53.24%), Postives = 192/278 (69.06%), Query Frame = 1
Query: 226 DEQQQLTEXXXXXXEMRRNVLPIHGNDRTFNLNTLLAQTILASEYFQSLAAITTYLEVVDEIYSYCDHVAPWAPGTSRVPSSAFCLLMKLFVMRLTRPQMNEILMHQDSPFIRAIGFLYLRYTCPPKELWGWLEPYMDDEEEFKPSPTEG-SMTMGQFVRKIISDMQYYGTMLPRIPVLIERKMKVQLLLHEEMKKREKVNFRIVNLLKPGTKVRAIYADEENDPSWYDAVIDSVEEDNRYWVTFPEYGNQELVRLGSIMLQA---KTDKSPSRGATA 1047
DE + TE ++++ L IHGND T+NLNTLL Q IL S YF L TY EVVDEIY DH PW+PGT+R+PSS FCLL K +MRLTR QM +L H+DSP+IR +GFLYLR+TC P ELW W EPY++D EEF S T+G+++ +++ + Y+GT+LPRIP IE +KV+LLL KKR K N I++ LKPGTKVR++YADEEN+P+ YDAVI+SVEE N++WV+FP YGN E V LG I + ++SP+R +A
Sbjct: 22 DEPPEQTER-----HVKQDELSIHGNDTTYNLNTLLHQNILQSAYFHELYKFKTYHEVVDEIYYRVDHAEPWSPGTARIPSSCFCLLHKFCLMRLTRKQMQGLLRHKDSPYIRVVGFLYLRFTCDPDELWTWFEPYLEDSEEFNASANPSIKTTIGEWLIRLLEENNYFGTILPRIPKKIEDGIKVKLLLLSRKKKRAKENLAIISHLKPGTKVRSMYADEENEPAMYDAVIESVEEGNQFWVSFPAYGNTEKVSLGDIEFTSGKQHRERSPARSGSA 294
BLAST of mRNA_P-fluviatile_contig82.14816.1 vs. uniprot
Match: A0A225VT78_9STRA (Pre-mRNA-splicing factor 38 n=1 Tax=Phytophthora megakarya TaxID=4795 RepID=A0A225VT78_9STRA) HSP 1 Score: 289 bits (740), Expect = 1.440e-88 Identity = 148/276 (53.62%), Postives = 184/276 (66.67%), Query Frame = 1
Query: 214 LAGVDEQQQLTEXXXXXXEMRRNVLPIHGNDRTFNLNTLLAQTILASEYFQSLAAITTYLEVVDEIYSYCDHVAPWAPGTSRVPSSAFCLLMKLFVMRLTRPQMNEILMHQDSPFIRAIGFLYLRYTCPPKELWGWLEPYMDDEEEFKPSPTEG-SMTMGQFVRKIISDMQYYGTMLPRIPVLIERKMKVQLLLHEEMKKREKVNFRIVNLLKPGTKVRAIYADEENDPSWYDAVIDSVEEDNRYWVTFPEYGNQELVRLGSIMLQAKTDKSPSRG 1038
L G EQ E ++++ L I+GND T+NLNTLL Q IL S YF L TY EVVDEIY DH PW+PGT+R+PSS FCLL K F+MRLTR QM +L H+DSPFIR +GFLYLR+TC P+ELW W EPY+ D EEF S T+G+++ ++ Y+GT+LPRIP IE +KV+LLL K+R K N IV+ LKPG K+RA+YADEEN+P+ YDAVIDSVEE N++WV+FP YGN E V LG I + RG
Sbjct: 15 LRGQSEQDNPPEETQR--RVKQDELAIYGNDTTYNLNTLLHQNILQSAYFHELYKFRTYHEVVDEIYYRVDHAEPWSPGTARIPSSCFCLLHKFFLMRLTRKQMQGLLRHKDSPFIRVVGFLYLRFTCDPEELWTWFEPYLADPEEFNASANPSLKTTIGEWLVSLLEANNYFGTILPRIPKKIEDLIKVKLLLFNHKKERAKENLAIVDRLKPGIKIRAMYADEENEPAMYDAVIDSVEEGNQFWVSFPAYGNTEKVGLGDIEFDKGNQRRDRRG 288
BLAST of mRNA_P-fluviatile_contig82.14816.1 vs. uniprot
Match: A0A485KYT4_9STRA (Pre-mRNA-splicing factor 38 n=1 Tax=Aphanomyces stellatus TaxID=120398 RepID=A0A485KYT4_9STRA) HSP 1 Score: 291 bits (746), Expect = 2.940e-88 Identity = 155/300 (51.67%), Postives = 194/300 (64.67%), Query Frame = 1
Query: 127 MSRSALERQAHRSARSGTL----PAPTSAPAGFLAGVDEQQQLTEXXXXXXEMRRNVLPIHGNDRTFNLNTLLAQTILASEYFQSLAAITTYLEVVDEIYSYCDHVAPWAPGTSRVPSSAFCLLMKLFVMRLTRPQMNEILMHQDSPFIRAIGFLYLRYTCPPKELWGWLEPYMDDEEEFKPSPTEGSMT-MGQFVRKIISDMQYYGTMLPRIPVLIERKMKVQLLLHEEMKKREKVNFRIVNLLKPGTKVRAIYADEENDPSWYDAVIDSVEEDNR-YWVTFPEYGNQELVRLGSIMLQ 1008
MSRSAL RQ + A + + PA +A A A + + M+ N LP+HGN T+N N LL I+ S+YF+ L + TY EVVDEI+ DH PWA GTSR+PS+ FCLL+K MRLT QM +L H DSP+IR +GFLYLRYTC P+ LWGW PY+DD+EEF S + +T MG +VR ++ D+ Y+ T+LPRIP I+ KV LLLHE+ KKRE N I +LL GTK++A+YADE N PS YDAVID V+EDN YWVTFPEYGN E V LG I +
Sbjct: 1 MSRSALTRQEMQQAMANRMGAVDPAYYAAAAAAAANIANAGAVMYSEAEARHMKENELPLHGNQTTYNFNKLLFDNIMNSDYFRKLYDLRTYHEVVDEIFYRVDHAEPWAAGTSRIPSTCFCLLLKFCTMRLTVNQMQGLLKHVDSPYIRCVGFLYLRYTCDPEALWGWYAPYLDDDEEFNASSNDKIITTMGAWVRSLLEDINYFNTILPRIPKKIQDGYKVNLLLHEQKKKRETENQDIAHLLVKGTKIKALYADEVNAPSMYDAVIDEVDEDNLVYWVTFPEYGNTEKVGLGDIQFE 300
BLAST of mRNA_P-fluviatile_contig82.14816.1 vs. uniprot
Match: A0A5D6XEX5_9STRA (Pre-mRNA-splicing factor 38 n=1 Tax=Pythium brassicum TaxID=1485010 RepID=A0A5D6XEX5_9STRA) HSP 1 Score: 288 bits (736), Expect = 2.950e-87 Identity = 155/298 (52.01%), Postives = 202/298 (67.79%), Query Frame = 1
Query: 127 MSRSALERQAHRSARSGTLPAPTSAPAGFLAGVDEQQQLTEXXXXXXEMRRNVLPIHGNDRTFNLNTLLAQTILASEYFQSLAAITTYLEVVDEIYSYCDHVAPWAPGTSRVPSSAFCLLMKLFVMRLTRPQMNEILMHQDSPFIRAIGFLYLRYTCPPKELWGWLEPYMDDEEEFKPSPTEG-SMTMGQFVRKIISDMQYYGTMLPRIPVLIERKMKVQLLLHEEMKKREKVNFRIVNLLKPGTKVRAIYADEENDPSWYDAVIDSVE-EDNRYWVTFPEYGNQELVRLGSIMLQAK 1014
MSRSAL RQ+ + +L PA A VDE++ ++++ L I+GN T+NLNTLL Q IL SEYF+ L + TY EVVDEIY DH P +PGT+R+PS+ FCLL K FVMRLT QM +L H DSP+IR +GFLYLRYTC P++LW W PY+DD+EEF S T+G+++ ++ D+ Y+GT+LPRIP IE +KV+LLLH ++R K N IV LKPGTK+RA+YAD++N+P+ Y+AVIDSVE E++ YWVTFPEYGN E V LG I + K
Sbjct: 1 MSRSALTRQSLQK----SLAMRQQPPA---AEVDERR-----------VKQDELAIYGNPTTYNLNTLLHQNILQSEYFRELYNLKTYHEVVDEIYYRVDHAEPLSPGTARIPSTCFCLLHKFFVMRLTMKQMQGLLKHTDSPYIRVVGFLYLRYTCDPEQLWDWYAPYLDDKEEFNASANPNVKTTIGEWLVGLLEDINYFGTILPRIPKKIEDSIKVKLLLHGRKQERAKANLAIVEFLKPGTKIRAMYADDDNEPAMYEAVIDSVEGENHEYWVTFPEYGNSEKVTLGDIEFERK 280
BLAST of mRNA_P-fluviatile_contig82.14816.1 vs. uniprot
Match: A0A6A3QKY3_9STRA (Pre-mRNA-splicing factor 38 n=20 Tax=Phytophthora TaxID=4783 RepID=A0A6A3QKY3_9STRA) HSP 1 Score: 286 bits (733), Expect = 3.050e-87 Identity = 149/267 (55.81%), Postives = 184/267 (68.91%), Query Frame = 1
Query: 214 LAGVDEQQQLTEXXXXXXEMRRNV----LPIHGNDRTFNLNTLLAQTILASEYFQSLAAITTYLEVVDEIYSYCDHVAPWAPGTSRVPSSAFCLLMKLFVMRLTRPQMNEILMHQDSPFIRAIGFLYLRYTCPPKELWGWLEPYMDDEEEFKPSPTEG-SMTMGQFVRKIISDMQYYGTMLPRIPVLIERKMKVQLLLHEEMKKREKVNFRIVNLLKPGTKVRAIYADEENDPSWYDAVIDSVEEDNRYWVTFPEYGNQELVRLGSI 999
L G Q Q E EM+R V LPI+GND T+NLNTLL Q IL S YF L + TY EVVDEIY DH PW+PGT+R+PSS FCLL K F+MRLTR QM +L H DSP+IR +GFLYLR+TC P+ELW W EPY++D EEF S T+G+++ ++ + Y+GT+LPRIP IE +KV+LLL K+R K N IV+ LKPGTKVRA+YADEEN+P+ YDAVI SVEE +++ V+FP YGN E V LG I
Sbjct: 15 LRGQSAQDQPPE------EMQRRVKQDELPIYGNDSTYNLNTLLHQNILQSAYFHELYKLRTYHEVVDEIYYRVDHAEPWSPGTARIPSSCFCLLHKFFLMRLTRKQMQGLLRHTDSPYIRVVGFLYLRFTCDPEELWTWFEPYLEDPEEFNASANPSLKTTIGEWLVSLLEENNYFGTILPRIPKKIEDGIKVKLLLLSRKKERAKENLAIVDRLKPGTKVRAMYADEENEPAMYDAVITSVEEGSQFLVSFPAYGNSEKVSLGDI 275
BLAST of mRNA_P-fluviatile_contig82.14816.1 vs. uniprot
Match: A0A7S2B1R6_9STRA (Pre-mRNA-splicing factor 38 (Fragment) n=1 Tax=Florenciella parvula TaxID=236787 RepID=A0A7S2B1R6_9STRA) HSP 1 Score: 281 bits (719), Expect = 1.690e-86 Identity = 160/316 (50.63%), Postives = 203/316 (64.24%), Query Frame = 1
Query: 127 MSRSALER--------QAHRS----ARSGTLPAPTSAPAGFLAGV----DEQQQLT-EXXXXXXEMRRNVLPIHGNDRTFNLNTLLAQTILASEYFQSLAAITTYLEVVDEIYSYCDHVAPWAPGTSRVPSSAFCLLMKLFVMRLTRPQMNEILMHQDSPFIRAIGFLYLRYTCPPKELWGWLEPYMDDEEEFKPSPT-EGSMTMGQFVRKIISDMQYYGTMLPRIPVLIERKMKVQLLLHEEMKKREKVNFRIVNLLKPGTKVRAIYADEENDPSWYDAVIDSV---EEDNRYW----VTFPEYGNQELVRLGSI 999
MSRSAL+R QA S A G +P A G +A + +Q QLT + E RRN +P+ GND TFN+N LLA I+ S+YFQSL ++TTY EVVDEIY C +V PW+PGT R+PS+AFCLL KL +RLT M +L H+DSP+IRAIGFLY+R PK +W W E Y+ DEEEF P+ E MT+G++ KI++DM YY TMLPRIPV +ERK+K L+L E+ ++R N V+ L G +VRAIY DE+NDP+WY AV++ V EE W VTFPEYGNQE + LG I
Sbjct: 1 MSRSALDRFEQKQAQMQAQHSMGYGAPMGIMPMGPGAAYGAVAPLGAAFQQQPQLTGQELEDLEEKRRNEIPLWGNDTTFNMNPLLANRIIESDYFQSLQSMTTYHEVVDEIYHKCKNVEPWSPGTQRLPSTAFCLLTKLLTLRLTTKMMQGMLSHRDSPYIRAIGFLYIRVATEPKNIWNWFEEYIADEEEFAPTADPELKMTIGKWCTKILTDMSYYNTMLPRIPVPVERKIKAYLILFEDEQRRAGDNMAFVSELVSGLEVRAIYGDEDNDPAWYPAVVNEVVPPEEGRSSWPSVVVTFPEYGNQECLPLGKI 316
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 | 528.9 |
| Seed ortholog evalue | 3.1e-147 |
| Seed eggNOG ortholog | 2880.D7FPC2 |
| Preferred name | PRPF38B |
| KEGG ko | ko:K12850 |
| KEGG Pathway | ko03040,map03040 |
| GOs | GO:0000375,GO:0000377,GO:0000398,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005681,GO:0006139,GO:0006396,GO:0006397,GO:0006725,GO:0006807,GO:0006950,GO:0006970,GO:0008150,GO:0008152,GO:0008380,GO:0009628,GO:0009651,GO:0009987,GO:0010035,GO:0010038,GO:0010226,GO:0010467,GO:0016070,GO:0016071,GO:0032991,GO:0034641,GO:0042221,GO:0043170,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0044237,GO:0044238,GO:0044422,GO:0044424,GO:0044428,GO:0044446,GO:0044464,GO:0046483,GO:0050896,GO:0071011,GO:0071704,GO:0090304,GO:1901360,GO:1990904 |
| EggNOG free text desc. | RNA splicing |
| EggNOG OGs | KOG2888@1,KOG2888@2759 |
| Ec32 ortholog | Ec-15_003940.2 |
| COG Functional cat. | O |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko00001,ko03041 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | Pre-mRNA-splicing factor 38 |
| Ec32 ortholog | Ec-15_003940.1 |
| Exons | 11 |
| Model size | 1789 |
| Cds size | 1788 |
| Stop | 0 |
| Start | 0 |
Relationships
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817281.5708961-CDS-P-fluviatile_contig82:231026..231266 | 1622817281.5708961-CDS-P-fluviatile_contig82:231026..231266 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 231027..231266 - |
| 1693571924.499467-CDS-P-fluviatile_contig82:231026..231266 | 1693571924.499467-CDS-P-fluviatile_contig82:231026..231266 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 231027..231266 - |
| 1622817281.5856137-CDS-P-fluviatile_contig82:231956..232074 | 1622817281.5856137-CDS-P-fluviatile_contig82:231956..232074 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 231957..232074 - |
| 1693571924.5204334-CDS-P-fluviatile_contig82:231956..232074 | 1693571924.5204334-CDS-P-fluviatile_contig82:231956..232074 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 231957..232074 - |
| 1622817281.598446-CDS-P-fluviatile_contig82:232813..232975 | 1622817281.598446-CDS-P-fluviatile_contig82:232813..232975 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 232814..232975 - |
| 1693571924.9138882-CDS-P-fluviatile_contig82:232813..232975 | 1693571924.9138882-CDS-P-fluviatile_contig82:232813..232975 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 232814..232975 - |
| 1622817281.60998-CDS-P-fluviatile_contig82:233787..233904 | 1622817281.60998-CDS-P-fluviatile_contig82:233787..233904 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 233788..233904 - |
| 1693571924.9321225-CDS-P-fluviatile_contig82:233787..233904 | 1693571924.9321225-CDS-P-fluviatile_contig82:233787..233904 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 233788..233904 - |
| 1622817281.6210375-CDS-P-fluviatile_contig82:236135..236356 | 1622817281.6210375-CDS-P-fluviatile_contig82:236135..236356 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 236136..236356 - |
| 1693571924.950064-CDS-P-fluviatile_contig82:236135..236356 | 1693571924.950064-CDS-P-fluviatile_contig82:236135..236356 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 236136..236356 - |
| 1622817281.631789-CDS-P-fluviatile_contig82:237152..237284 | 1622817281.631789-CDS-P-fluviatile_contig82:237152..237284 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 237153..237284 - |
| 1693571924.9596877-CDS-P-fluviatile_contig82:237152..237284 | 1693571924.9596877-CDS-P-fluviatile_contig82:237152..237284 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 237153..237284 - |
| 1622817281.6413715-CDS-P-fluviatile_contig82:238137..238222 | 1622817281.6413715-CDS-P-fluviatile_contig82:238137..238222 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 238138..238222 - |
| 1693571924.9705257-CDS-P-fluviatile_contig82:238137..238222 | 1693571924.9705257-CDS-P-fluviatile_contig82:238137..238222 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 238138..238222 - |
| 1622817281.6508243-CDS-P-fluviatile_contig82:238870..238977 | 1622817281.6508243-CDS-P-fluviatile_contig82:238870..238977 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 238871..238977 - |
| 1693571924.9788973-CDS-P-fluviatile_contig82:238870..238977 | 1693571924.9788973-CDS-P-fluviatile_contig82:238870..238977 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 238871..238977 - |
| 1622817281.663665-CDS-P-fluviatile_contig82:239463..239523 | 1622817281.663665-CDS-P-fluviatile_contig82:239463..239523 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 239464..239523 - |
| 1693571924.9880683-CDS-P-fluviatile_contig82:239463..239523 | 1693571924.9880683-CDS-P-fluviatile_contig82:239463..239523 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 239464..239523 - |
| 1622817281.6744761-CDS-P-fluviatile_contig82:240090..240240 | 1622817281.6744761-CDS-P-fluviatile_contig82:240090..240240 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 240091..240240 - |
| 1693571924.998335-CDS-P-fluviatile_contig82:240090..240240 | 1693571924.998335-CDS-P-fluviatile_contig82:240090..240240 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 240091..240240 - |
| 1622817281.6850076-CDS-P-fluviatile_contig82:241727..242123 | 1622817281.6850076-CDS-P-fluviatile_contig82:241727..242123 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 241728..242123 - |
| 1693571925.0079088-CDS-P-fluviatile_contig82:241727..242123 | 1693571925.0079088-CDS-P-fluviatile_contig82:241727..242123 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig82 241728..242123 - |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig82.14816.1 >prot_P-fluviatile_contig82.14816.1 ID=prot_P-fluviatile_contig82.14816.1|Name=mRNA_P-fluviatile_contig82.14816.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=596bp
FAGQYRTRRLRRPLANQDHQAGRGEQARTPLPDHIAQQSAEKMSRSALER QAHRSARSGTLPAPTSAPAGFLAGVDEQQQLTEEQQREEEMRRNVLPIHG NDRTFNLNTLLAQTILASEYFQSLAAITTYLEVVDEIYSYCDHVAPWAPG TSRVPSSAFCLLMKLFVMRLTRPQMNEILMHQDSPFIRAIGFLYLRYTCP PKELWGWLEPYMDDEEEFKPSPTEGSMTMGQFVRKIISDMQYYGTMLPRI PVLIERKMKVQLLLHEEMKKREKVNFRIVNLLKPGTKVRAIYADEENDPS WYDAVIDSVEEDNRYWVTFPEYGNQELVRLGSIMLQAKTDKSPSRGATAA GQGGGGGGRTGRTESGAGERKTNTQNKEFGGRVGRGRNKARDGRDRDRDR VGRDGSRERAKDKGRRRSRSRSRDGKHRRDSRDRDRGSGSGRSRDSGRRD SRDRGGGGSGRGRSRSGSRDRYSRRDRDRDARRDTSGGGSKAAPVEEEDD MSSSLLDMDTSKLYAQVMKREREASQAVGKDYAARPASYKGSLSLKLDRY TQRRKSRSRSPERTRGSVGGSRGGREERRAEPSPPRRKAAPVMSAE back to topmRNA from alignment at P-fluviatile_contig82:231027..242123- Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig82.14816.1 ID=mRNA_P-fluviatile_contig82.14816.1|Name=mRNA_P-fluviatile_contig82.14816.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=11097bp|location=Sequence derived from alignment at P-fluviatile_contig82:231027..242123- (Porterinema fluviatile SAG_2381) TTTGCAGGGCAATATCGCACACGTCGTCTACGCCGTCCTCTCGCGAACCA
GGACCACCAAGCAGGCAGAGGAGAGCAAGCGCGCACGCCGCTTCCGGACC
ATATAGCACAACAATCGGCGGAAAAGATGTCTCGTAGCGCGCTGGAGAGG
CAGGCCCACCGGTCCGCAAGGTCAGGCACCCTGCCTGCGCCGACGTCCGC
ACCGGCCGGGTTCCTCGCCGGCGTGGACGAGCAGCAGCAGCTGACGGAGG
AGCAGCAGCGGGAGGAGGAGATGCGGAGGAACGTTCTGCCGATCCACGGA
AACGACCGCACCTTCAACCTCAACACGCTGCTGGCGCAGACGATCCTCGC
CAGCGAGTACTTTCAGAGCCTGGCAGCGATCACGACCTACCTGGAAGTAA
GTGTTTCTGAGAGAAGAGCTAGCGAGATGGTCTAAGTTTGAACGAAGACA
GGGTTGGCGGTGGTGGGATCCCAGGAGCATGAGGGAGTAAATCCACTGCC
GTTGTGGGTTTCACCTTTCACGCCATGCCCGATCTACACCCCTCCCCCTT
CCTCATAAAAAAACACCAAAAAAGGCGTTGGCCTTGGTGTGTGGTCCTCC
CCATAAAAACGTTCCACCACCAGATCTTTCTCAGGTGCGCGCACTCTCTG
CCACTGTGCTTGCCATTTTTTGTCATCGTTCTGCGCAGCAGTGAAAAGTT
GCCCGCGCGCCCTCACCCTTCTCCCATTCATGTTTCCGGCTTCTCGATCT
CTCTCGCTGGCTCTCGCAGACAGTGCTCGTAGAAAATGCACGGCTCCTGT
CCGCAACCCCCCCCTGTGGAGCACTGTGGGATTGCGTACAGTTAGTTGCG
CGCGATGATATTTAAGTTCGGTTTCAACTCGTCGACGGCTGTCCCATGAT
TCGTCTGTCCAAGTGAGCGAGTCCCGACGATATTACTCTATGCGCCCACC
GCACTATTGTTTGCGGCTAGGCATATGTGATGGCCATGAAGATGCCACGT
TTTGTGCCCCCAGTCCCGATCCCCGACACCTGTCCCTTTTCCCAAGTTCC
CGTGTGCCGATTTTTTTCCCTTCGCACATTCCTCAGTTTACGCCCAGAAC
GCCACCAAATCATCATCGCAGATTCCACGGTGGAATAGCGGTGGCGGCGA
CGAGATCCGTGCTTGTGATATTTTATGTTTTGGAGGTGCTGTGTCCGTGC
CGTTCCAGCTCGTATGCCCCCGGCCTTCTACTCTTTTCTCCGTCTCACGC
GCACACATTCCAAGCCTCTTCTGGCTGAATGGGTGTTTTTTTTTTCCTTC
TCTCCGACCTCTCCGACGCAGTATAACAATACCTTGTACACGCGCGTGAT
TTTCGGCGGAAATTTCACAGACGACTCCATTCTACCATCCCCCACCCTGA
GACATGAAACCGTCCAGATTCACGAAGCTTTTCAGAGTGTGTTCAGATTG
GGCGGACTTTGCGTGGGGTTTGAGATTCGGGACTGAATGAACCGCATACG
GCGGGGACGCCGGAAGGAGCGGAACGATTGACGTGGTCATTTTTTTCGTA
AGCGTGCCTAAGACATGTCCTTCGAATGCGTGACCCGAGCCTCCTTTGCG
CCGTCAAATCAAAAACCTGGTGGCTCGTGCCCGGTTCTTTTCTCTATCAA
CCAAAGTCCTGAGTTACTTTATCATATGAAAAGGTGGTGGACGAGGTTTA
TCCGTATTTCGATCACCCGCCCCCTGGGCCATTCCCGAGCACGAGCAGCG
TCCCTTCGCTTTGGTGTTTTCTTGTGTGTAAATCAACCATGCTGTGCGAT
TCAACCAAGTACACAAGGAGTTCGGGCACTCGTCCTTGTTTACCTTTTTT
TTTCGTCGAACGTCCACGAACATGAAACACCAGGTGGTGGACGAGATCTA
CTCGTACTGCGACCACGTCGCACCTTGGGCCCCGGGCACGAGTCGCGTCC
CCTCGTCTGCGTTTTGCCTCCTCATGAAGCTCTTCGTCATGAGGCTCACC
AGGCCGCAGATGAATGAAATTCTCATGCACCAGGTGTGTGCAGGTTTGTG
CAACATATGTTTTTTTTTTTCGGTAGTACGAGAATGTCGAGGGAGAAGTT
GTGATGGAATTTTTTTCTTCTATCGTGTGCATGTCGACGATGCGTCGTTT
CTGGAATTGCCGTGACTCTATGGTGTCGGGGTGTTGTCCATACTTCGATT
GTTTTCTGTCGCTGCGTCACCGGCGTCGTCATCGTTGTCAATGTTGTTGT
GGAGCTTGTCGTGGTAGTTTGCTAGTTTAGCTGTCTAAAAATATTGAATG
AATTCGTAGCTGGCTTGCTTTTCGCTTGTCGGCCTTTCGACATGTGTCTC
TAAATGTCTTTTGTCTCTTTGCATCCCTACGTGGAACGTGTCTCATTTTC
CCTACAAGCTGTCCCTGAAGAAATGTTATCCCACCGCGAGATTGATTAGC
CTTCCTGGGTTTCTTATCGTTCCCCGACCCTTTATCCTTGCCCTTCACCC
CCCCTGCTATCGCCACCGCCCACTTCTTGTGCCTGCTTGTATGGGCGCGT
CGTTTATCTTGCGTAACCTCCCGCCCCCCCGTGTTCTGAAATTCTGGTAG
GATTCGCCATTCATCCGGGCAATCGGCTTCCTCTACCTGCGGTACACTTG
CCCCCCGAAGGTGAGCACTTTTGGGCTCGCTTTGTTGTTTTTTTCAGGTT
GCAGCGTCAGGTCAAGCGAAGGCGAGGACTACAGCGGCGGCGATAAGAGA
CAAGGGCTCGGCGTTTTGTTTGTGTAGGCCGCCTGCTCGAACTTGAAATG
TTGGAGGGCATTGTGCCCCAAGGGTCCAGGACACGTCGATTCCTATTGCT
CGCACGAGGAACACGACGCGAGCGGGAAAAGTGCCTCCAACAAGCAGGAG
CTCATTCCTTCAGTAAGCGTTTATCGATAAATGTTGATTTTTTGTTGAAG
TTTAGTTGCCTTATTCTTTGGCAAGAATTCGATTCACGAAAATTTTATTT
CACCACAAGAAAGGAAAACGAAGATCACGACGTCCATTGGATGCCTGCCG
CCGTAAGCGGTACCGTATGCGCTCAAGACGCATTTTGTTAAGGTACTACT
GCTAAGCTCTCATCTACAATTCCATGCTTCTCATTCACTTTTGCAGGAAC
TTTGGGGTTGGCTGGAGCCCTACATGGATGACGAAGAGGAGTTCAAGCCA
TCCCCCACCGAGGGGAGCATGACCATGGGACAGTTCGTCCGCAAGATCAT
CAGGTGGGGCTCTCGCCAATCACTTGCCGACCAGCGTACGACCGCGATCT
GCCAATGATCGAAAAAAATACAAAATATTTCCAGGTGGCCACGCTCATGA
CAGAGCTCACAAGCGTGGTGTTGATGACGGCAAGGTTGTTCGCCACAAGG
TCGTGAGATTGACACCCTCAAAAGAAGACAACAGACAACTTGTAGAGAAA
GTGCGGGTGTGAAACAACAACTCCTGCTTCTATCGCAGCGATGAGAGAAC
TTGCGCGCGAACGAGAGGACACATGTTGGATAAATACATCATTCTTCAGA
TGTGTCGCGTTCGCATTCTCATGGGGGTGTGATGGCCCTGCTGCACAGTT
GTGTGCGGCCTCCCCCCACACGTCCATCTGGTTCCTTGCACATTTGGTCG
TGATTCTTCTCAAAGCGTTCTTGCAAGCCAACTGGCATTCTTGTGGTACA
AGACGGTGCCAGTCGGCGCACCCCCCTCCTTCCACGCACTCCGAATTTTA
GTCACCCTCCGTCAAAGCAGCCCGCGCGTAACCCGTCCCGCCATTCAACT
CAACATAAGCAACCATTTTCGTGCGTAACTAACGCACTCCCCACCACCTT
GCCTGCCCGTTCGCACACACCTCTCCAAACCGATTTTTTTATGTCTTGTA
GCGACATGCAGTACTACGGAACCATGCTTCCTCGCATCCCCGTTCTGATC
GAGAGGAAGATGAAGGTCCAGCTGCTGCTGCACGAGGTAAGCTTATGTAG
TTCACTCCCCTTTGTCTTCGTGTCTATATAACTTTCCATTTTGCGCCAGG
TTTTTTCATGAAAGAGCTATTTGCAGCTTGTTTGTGGGGGAAACATATAT
CGTGTCTCCTCTCAACGCTTGTGCTTCGATAAAGCGCAAACATGAAAGAG
AGAGAGAGATCCGTGGCTGCAAGCAACGTGCTCGTGGAGACGATCCGTCT
CGGGTGCGTAAGAACAAGAGAAAACATACGACAGGACGGTCGCTTCTCCT
GCTGATTCGCCCGTACGCTGCCGATGAGTGAATGAAGAATGCGTCCCTAA
AAAAATAGGACAAAACCAACAGCAAATCATACCAAAATACGGCCGATATC
CCCTTTTCGCCCTCTCACTCTGACCTGTACCTTGACCGAATGGCCAAGGC
TCAAATCCTCCAGCTCGTATCTCAGGACATTGGGAGGAGGAGCAAGTATC
GCTTCCGGCAACCGTACATCTTACCATAAGTACGGCGACAAGTCGAAGGC
AACACAGAGCATTCGCGTTGGTGAACATAGCAAAACGATTGCTGCATGAA
GAAGTGTGCATTACGAGGATATGACCGAGAGAGATGAGACCACGCCCGCT
CTGCCCTTTCCTAACATGACTCTCCAACATCACCAGGAGATCAATCAAAT
GAGCTGCCAACTTCAGAGCTTACGCCCTGACGAAAACACAATCCTCGTCC
GCACTAGGAAATGAAGAAGAGAGATAGGGCCAACTTCCGGGAAACCCTCC
CGACATCCCTTACCCGATTCTGGCTGCCATGGATCGACTCAGGCTTACCG
GAACCCTATTTCCTCGTCCTTGTCCCGCATTATCTTCAGGAGATGAAGAA
GAGGGAGAAGGTCAACTTCCGCATCGTGAACCTGCTTAAGCCCGGCACCA
AGGTCAGAGCCATCTACGCCGATGAGGAGAACGACCCTTCCTGGTATGAC
GCCGTCATCGACAGCGTGGAGGTGAGTGCCTGAGCGGGTGGGATGGTTGG
TGGACGGATTAGTGAATAGATGGGTGGGTGAGTGGGTGCGTGGATGGATG
ATGGGTAGATGGGGGAGATAGAAGGAGTGTTATTTGGTAGGTCGGAGGGA
GGGTGGATAGCTAGTGGGTGGGTGGGTGGGTGTGGGCAAGTGGGTGGATT
GGTCAGCGGTTGGCAAAAATGGATGGGTATGAGAAAAGTGCACGACACCT
TCGCGGTTTTCTCTCGAGATGCAGGTGTCGGTAGATGGGTATGATTGATA
GGTGGTTTGATGCGTAGCTGAAAGGGGAGGCGGATGGGTGGGTGAGTGTG
TGAATGGGCTGGAGGATGGGGGCATGGACAGCCCTGTGAAGGTGATATCG
TCTTCTCGCAAGCTCGATCCTAACGTGGATAGCGTTGAAGTGTATGGATG
CTTGTTTTGACGGTTCCGTAACGTTCATGTTTGTTTTTGGCGATGGTGGC
GGTCCTCCCACGCGTGATCCTTAGACGAACGATGCTGTGCTCACCAGCGT
GCAAACGGTTGGAAGGATAGGGATTGCAACTTCAGCGCCGTGTGTTGTCA
TCACCGATTGTAGTGGTATTGCTGTTGCGGTTGCAGCTGCGCTCCGTGGA
ATGCACGCGTCGTTTGAATCGTGATCTCCGATTCTCGGGTCGCTCCCCAA
CTTCAAGATATGCTCCGTCTCTTTCCCACTTTCACCTTGGCATCAAAGAC
TATCTCACACAGAAAAACGCACATGGTCCTCGCGACGGTTCGTTTCGTTC
CACGCGTCAACAAGCAGGAGGACAACCGCTACTGGGTGACCTTCCCTGAG
TACGGCAACCAGGAGCTTGTGCGGCTGGGGTCGATCATGCTGCAGGCGAA
GACCGACAAGAGCCCGAGCCGAGGGGCCACAGCAGCAGGCCAGGGGGGGG
GGGGGGGGGGGAGAACGGGTCGGACCGAAAGCGGAGCAGGTGAGAGAAAG
ACGAACACCCAAAACAAAGAGTTCGGTGGCAGAGTGGGGTGAGGGACGGG
GTAGGGGGGGATAGGGAAGAATACGAGTAGATAAGTTCGAAGGCGGAGCA
AGCGAGGTTGACGGGGGGGGGGTGTACTCATAGTCGTGCATGCCGTAGTC
GTTAGACCATTGACCTCGCATCCGTACAAAGCCGGGACGGAGCACGCCGA
GTTCTCACCGGACCAGGCTCTCACACCACCAAGCGCGAAGCGCCGTGAGG
TATTCGGCGAGTCGCATGAAGGGTGCGCTGCATCCTGCTAAGGGTGTTCG
GCATCTTGTGCATACTTAGGGTCCATTTAGTATAGTACGTACAATTTATA
CTTTCCAGTATTTTAGTAAGTATTTGGCTCACGGTACTGTACTGGGGGTT
TAGTACGTACCTCCACCCTGTACTGTACTTACTACTGCGTTTAGTACAGC
TCTTCATACGTACTATACGTACTATTGCGTTTAGTACAGCTCTTCATACT
GTACTATACGTACTATTGCGGTTAGCGCAGGTCTCAATACTTACTCTCGC
CCCAGTACAGTATTTCACCAAAATACTATACGTACTATTGCGTTTAGTAC
AGCTCTTCATACTGTACTATACGTACTATTGCGTTTAGTACAGGTCTCAA
TACTTACTCTCGCCCCAGTTCAGTATTTCACCAAAGTACTATACGTACTA
TTGCGTTTAGTACAGCTCTTCATACTGTACTATACGTACTATTGCGTTTA
GTACAGCTCTCAATACGGTACTATACGTACTATTGCGTTTAGTACAGCTC
TCAATACTATACTCGACCCAGTAACAGTATTCAATCATCCATACTGTACT
GGTACTGGCGGTTCAGTACGGGTTTCGATACTGGAATATAAATACTATAC
TGTACTAAATGGAACCTTGCAAGGGTCCATTTAGTATAGTACGTACTATT
ATACTTTCCAGTATTTTAGTAAGTATTTGGCTCACGGTACTGTACTGGGG
GTTTAGTACGTACCTCCATCCTGTACTGTACTTACTATTGCGTTTAGTAC
AGCTCTTCATACGTACTATACGTACTATTGCGTTTAGTACAGCTCTTCAT
ACTGTACTATACGTACTATTGCGGTTAGCGCAGGTCTCAATACTTACTCT
CGCCCCAGTACAGTATTTCACCAAAATACTATACGTACTATTGCGTTTAG
TACAGCTCTTCATACTGTACTATACGTACTATTGCGGTTAGCACAGGTCT
CAATACTTACTCTCGCCCCAGTACAGTATTTCACCAAAGTACTATACGTA
CTATTGCGTTTAGTACAGCTCTCAATACTGTACTATACGTACTATTGCGT
TTAGTACAGCTCTCAATACTGTCTGTACTATAGTACTATTGCGTTTAGTA
CAGCTCTCAATACTATACTCGACCCAGTACAGTATTCAATCATCCATACT
GTACTGGTACTGGCGGTTCAGTACGGGTTTCGATACTGGAATGTAAATAG
TATACTGTACTAAATGGAACCTTGCATACTTCGTTGCATACGGATGACAG
CTGCGTATGGCTTAATTTATTTTCTGGTGCTTTCACTTCCAGAGACAGTT
GTAAGCACTGTGTAACTGCCTCGAGGGTGCTTGACCATTTTAACACAACG
TGGTGCGATCATCCCCCTTGCGCGGAGTGAGGGTTCTCCACTCCGCACAA
CATCATCTTCTCGACCACCATTATGGCTACCGCCAGAAAAAACAGAGGAA
AAAAAAAGACGGTAACCTGGTTGCCGAATTCACGAAGCGAATTGGCTTGT
TTTACAACGTCGTTGCCAAGCGACGAAAACCCAATCCCGATGGCAAACAC
CGAGGTGAGAGCCAGCGGGAGAGGAGGGATTGACGGGGGGGGGAGTTTGG
TTGGAGAGTGATTTGCGACATAGGGACGAGGCAGAGTGAGGCAGGAACGG
GGAGGGTCGAAAGTGACCACAAGGTGAAGTAAAAAGCGCGGTACCTAAGA
AGTGCGGCTTGCGGAGGGGAGGCAGCGGAGGGAGGGGGAGGGGTCCATCA
ATCGTGTCGCCACCTGACAACAGGAGTCGATGACGGTGATGTTGATCCGT
CCCGACCATAACGATCAAGCGCTACTGCTGAAGGTATTCTGGCTGAGCTT
GCTGACTGCATTGTGGCACAAACAAAATGCAAATGCCAGGAGCTTCACGA
AACCCTGCTAGTGCCGGATTGCTATTGTATTGCATAAACCAACCATTTTT
CTCATACCAGGAGCGATAGCCGCGGCCGCAACAAGGCTCGCGACGGCAGG
GATAGGGACAGGGACAGGGTGGGCAGGGACGGCAGCAGGGAAAGGGCGAA
GGATAAGGGCCGTCGACGCAGCAGAAGCCGGAGCAGGTGAGCGGTAGGCC
CACCATCGGCCACCCGTGGAGTCGAAGTAAGCGGCAGGGGTGGGGTTCGG
AGGGGAGGAGAGGTATTCAGTGTCTGCTTCCTTCTTTCAACGTGATGTTA
CGTTTGTTTTGGGACAACAAAATCAAGCGTAAGCATATGGAAGTTCTGCA
GATAGGGGGCAGACCCAATCGCCACTTGCGCTCAGTGTTTGGCCTTTTAC
CCCGAATCAGTGGCATGCTGGTGCTATCTTTTACGCCCTACGGGGCAGTG
CCAACACATTATGGCGTCCGTCAGATTTGTGTGACCCCTTTCGAACGCAT
CGCGCTTTTATGGGACCGATTTGTTTTTTCGTGGCCGTATGAAACATAAG
CATTGAGATTTTTTAGACATCAGGGGATTCCCTTGGTCCCCTCCCGAGAA
TGAGTTGATACACTCCCAGGTTTTACTGAAGCAAGAGCTTGCAGAACGGT
GTCCCAATCCTGCTGGTCTGGCTGCCGCCCCCGAGGGAGGTGAAAGCAGA
GGCGCTGACTGGAGAACCGGCCCTGTGCACACGTCGCTCGCTTGTTTGGC
CTTATTTTGTGAAGTCGAGCGGCTGAAATTGCTGGCGCTGAGCTATCTCC
TGAGTGTGGAGTTGTTACGCCGAAAAGGCGTCGTCGCCTTGATTCTTCGG
CTTCCTTTTTTTTTTCCTGCCGTTCGCGGGAATAGTCGGCGACGGAGGTT
CAAGTTTTGTTGCTTTTGTTTTTCTTTCTAGATTGGCACGACCCCCCCCC
ACCCCCGCCGACGCTCCCTCCGTTATCTTCCTCCAAATCCAGAGACAGAG
ATGGCAAGCACAGGCGCGACTCTCGGGACAGAGATCGTGGCAGCGGCAGC
GGAAGATCTCGGGACAGTGGGAGGCGGGATAGCCGGGACAGGGGCGGCGG
CGGCAGCGGAAGGGGGCGTTCGCGGTCGGGCTCGCGCGACCGGTACTCTC
GGCGGGACAGGTGAGAGAGCGAGAATTGACGGTATCCGATCGTATTAGAT
CCGGGCGGATCGGTTGAGACCGGCTGACTGGCCGCCTAAGTGCCATATAC
GCTGCTGCTGCTGCTGCTGCTGCTGCTGCTGGAGAGCGTCAGGCGCTGTT
TTGGGGACCTGGTCCGGGCACGAGTCGTGGGATTGGATTGGATTGAGTTT
TGAGTGGCATGGATTTCGTTGTATTGGATTGAGTTTGAGTGGAATGGATT
GCGTTGGATTTTAGAATGGTGTGGATTGGGCTGGATTGATTGGATTGGAT
TGGATTGGATTGAATGTGGTTGAATCACATTGGAATGGAGTGGGTTTGGT
CGGAATGACGGGACAAACGGGAAGTTCCTCCCTTTTGTTGTGGTTGTTAC
GGCTGCTACTGCTGCTGCCGCCGCCGCCGCCGTTGTTTTCTCTTGTTTTC
CTCCTACGCGTGCGTACCGCTAGTCATCTGTCGTTGTTGTGTTATCGCAG
CAAACCATGTCCAGCCCGTTGTCGCAGAGCACAAAAGGGCATAGGTGCTT
CCCAAAATGAAGCCAACAGAGGAACGCCCAATAATGAAAACATCCACCCA
GAGGACACTTAACAAAGGTGCTCGTGCGATGTCCCTCCTCTACACCTTGA
CTGAAAGTACTGCGGATGCGTGGTGCGCTTTGTTGGTGTTTGTAATTCCT
CCCTTGTCTGTACTCCCCCCGTTTTGTTTGTCCCCCCCCCTTCTTGCAGG
GATCGGGATGCCCGAAGAGACACGAGCGGCGGGGGTTCTAAGGCAGCCCC
GGTGGAGGAGGAGGACGACATGTCGTCGTCTCTCCTCGACATGGACACCA
GCAAGCTCTACGCGCAGGTGCGAACCTTCGAGAGGGCCAACTTGGCTCGT
GCCGGTTGCCTCGCTTCGCACGTGTTCGCTCTGGTTGTTCGAGCAGTCAA
TCCGCCCTTTTCATGAAGCCGTTGTTTTGTGCAGTGACTCTAGTTGTGAC
GAAAGTGCGACATGAGTGTTGTGCGCTCACCGTGTTGTACGGGCTGTGAG
AGATCCGATTTTCAAAGTTCGGAGCGGGTACTGGTGCTGAACGATACGTT
TTCGAAAGCTCTCGATGAGACCTTTCCAATGCCGGCCTTTTCCGGCGTTG
GCATTTTGTGGGGCATTTGACCATTGAAGGTAGGCCCAGGTGGTCTGCTA
TATAGTCTGTGGGATACGGTACGTACCTGTATGGGGGTCATGCTTATCCT
CCATACTTCCTTGCATAAATAGAATTTGAAGGTCACGGCAACCTCGACTT
GGCACCTCACGAAGGATAAGACCAAGGCCAACCGAAAGCAACGGCCACTG
CCGGGGGTGGACGAAAGAGCGGGATGCGCCGCCAAGGCCGAAAGCATACC
TCGAAGTAATGACTTGCCCATCGCCGGTATGCAATTTCTTCTTTTCACCC
GATATGCGCACAAAATCGCCTACTCCGCGTCGAAATTATGTTTTGAAAAT
TCCGCAGCTCGCTTTGAAGCACACACGTACAATCGAACCGCCATCTATCC
GCACCAGGTGATGAAGAGAGAACGGGAGGCGTCCCAGGCCGTCGGCAAGG
ACTACGCCGCCCGCCCGGCGTCGTACAAGGGGTCCCTCAGCCTCAAGCTG
GACCGGTACACGCAGCGCCGCAAGAGCCGGTCTCGGAGCCCCGAGAGGAC
GAGGGGGTCCGTGGGGGGGAGCAGGGGGGGGCGGGAGGAAAGACGCGCGG
AGCCATCGCCGCCGAGGCGAAAGGCCGCTCCCGTCATGTCGGCGGAG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig82:231027..242123- >mRNA_P-fluviatile_contig82.14816.1 ID=mRNA_P-fluviatile_contig82.14816.1|Name=mRNA_P-fluviatile_contig82.14816.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3576bp|location=Sequence derived from alignment at P-fluviatile_contig82:231027..242123- (Porterinema fluviatile SAG_2381) TTTGCAGGGCAATATCGCACACGTCGTCTACGCCGTCCTCTCGCGAACCA GGACCACCAAGCAGGCAGAGGAGAGCAAGCGCGCACGCCGCTTCCGGACC ATATAGCACAACAATCGGCGGAAAAGATGTCTCGTAGCGCGCTGGAGAGG CAGGCCCACCGGTCCGCAAGGTCAGGCACCCTGCCTGCGCCGACGTCCGC ACCGGCCGGGTTCCTCGCCGGCGTGGACGAGCAGCAGCAGCTGACGGAGG AGCAGCAGCGGGAGGAGGAGATGCGGAGGAACGTTCTGCCGATCCACGGA AACGACCGCACCTTCAACCTCAACACGCTGCTGGCGCAGACGATCCTCGC CAGCGAGTACTTTCAGAGCCTGGCAGCGATCACGACCTACCTGGAATTTG CAGGGCAATATCGCACACGTCGTCTACGCCGTCCTCTCGCGAACCAGGAC CACCAAGCAGGCAGAGGAGAGCAAGCGCGCACGCCGCTTCCGGACCATAT AGCACAACAATCGGCGGAAAAGATGTCTCGTAGCGCGCTGGAGAGGCAGG CCCACCGGTCCGCAAGGTCAGGCACCCTGCCTGCGCCGACGTCCGCACCG GCCGGGTTCCTCGCCGGCGTGGACGAGCAGCAGCAGCTGACGGAGGAGCA GCAGCGGGAGGAGGAGATGCGGAGGAACGTTCTGCCGATCCACGGAAACG ACCGCACCTTCAACCTCAACACGCTGCTGGCGCAGACGATCCTCGCCAGC GAGTACTTTCAGAGCCTGGCAGCGATCACGACCTACCTGGAAGTGGTGGA CGAGATCTACTCGTACTGCGACCACGTCGCACCTTGGGCCCCGGGCACGA GTCGCGTCCCCTCGTCTGCGTTTTGCCTCCTCATGAAGCTCTTCGTCATG AGGCTCACCAGGCCGCAGATGAATGAAATTCTCATGCACCAGGTGGTGGA CGAGATCTACTCGTACTGCGACCACGTCGCACCTTGGGCCCCGGGCACGA GTCGCGTCCCCTCGTCTGCGTTTTGCCTCCTCATGAAGCTCTTCGTCATG AGGCTCACCAGGCCGCAGATGAATGAAATTCTCATGCACCAGGATTCGCC ATTCATCCGGGCAATCGGCTTCCTCTACCTGCGGTACACTTGCCCCCCGA AGGATTCGCCATTCATCCGGGCAATCGGCTTCCTCTACCTGCGGTACACT TGCCCCCCGAAGGAACTTTGGGGTTGGCTGGAGCCCTACATGGATGACGA AGAGGAGTTCAAGCCATCCCCCACCGAGGGGAGCATGACCATGGGACAGT TCGTCCGCAAGATCATCAGGAACTTTGGGGTTGGCTGGAGCCCTACATGG ATGACGAAGAGGAGTTCAAGCCATCCCCCACCGAGGGGAGCATGACCATG GGACAGTTCGTCCGCAAGATCATCAGCGACATGCAGTACTACGGAACCAT GCTTCCTCGCATCCCCGTTCTGATCGAGAGGAAGATGAAGGTCCAGCTGC TGCTGCACGAGCGACATGCAGTACTACGGAACCATGCTTCCTCGCATCCC CGTTCTGATCGAGAGGAAGATGAAGGTCCAGCTGCTGCTGCACGAGGAGA TGAAGAAGAGGGAGAAGGTCAACTTCCGCATCGTGAACCTGCTTAAGCCC GGCACCAAGGTCAGAGCCATCTACGCCGATGAGGAGAACGACCCTTCCTG GTATGACGCCGTCATCGACAGCGTGGAGGAGATGAAGAAGAGGGAGAAGG TCAACTTCCGCATCGTGAACCTGCTTAAGCCCGGCACCAAGGTCAGAGCC ATCTACGCCGATGAGGAGAACGACCCTTCCTGGTATGACGCCGTCATCGA CAGCGTGGAGGAGGACAACCGCTACTGGGTGACCTTCCCTGAGTACGGCA ACCAGGAGCTTGTGCGGCTGGGGTCGATCATGCTGCAGGCGAAGACCGAC AAGAGCCCGAGCCGAGGGGCCACAGCAGCAGGCCAGGGGGGGGGGGGGGG GGGGAGAACGGGTCGGACCGAAAGCGGAGCAGGTGAGAGAAAGACGAACA CCCAAAACAAAGAGTTCGGTGGCAGAGTGGGGAGGACAACCGCTACTGGG TGACCTTCCCTGAGTACGGCAACCAGGAGCTTGTGCGGCTGGGGTCGATC ATGCTGCAGGCGAAGACCGACAAGAGCCCGAGCCGAGGGGCCACAGCAGC AGGCCAGGGGGGGGGGGGGGGGGGGAGAACGGGTCGGACCGAAAGCGGAG CAGGTGAGAGAAAGACGAACACCCAAAACAAAGAGTTCGGTGGCAGAGTG GGCCGCGGCCGCAACAAGGCTCGCGACGGCAGGGATAGGGACAGGGACAG GGTGGGCAGGGACGGCAGCAGGGAAAGGGCGAAGGATAAGGGCCGTCGAC GCAGCAGAAGCCGGAGCAGCCGCGGCCGCAACAAGGCTCGCGACGGCAGG GATAGGGACAGGGACAGGGTGGGCAGGGACGGCAGCAGGGAAAGGGCGAA GGATAAGGGCCGTCGACGCAGCAGAAGCCGGAGCAGAGATGGCAAGCACA GGCGCGACTCTCGGGACAGAGATCGTGGCAGCGGCAGCGGAAGATCTCGG GACAGTGGGAGGCGGGATAGCCGGGACAGGGGCGGCGGCGGCAGCGGAAG GGGGCGTTCGCGGTCGGGCTCGCGCGACCGGTACTCTCGGCGGGACAGAG ATGGCAAGCACAGGCGCGACTCTCGGGACAGAGATCGTGGCAGCGGCAGC GGAAGATCTCGGGACAGTGGGAGGCGGGATAGCCGGGACAGGGGCGGCGG CGGCAGCGGAAGGGGGCGTTCGCGGTCGGGCTCGCGCGACCGGTACTCTC GGCGGGACAGGGATCGGGATGCCCGAAGAGACACGAGCGGCGGGGGTTCT AAGGCAGCCCCGGTGGAGGAGGAGGACGACATGTCGTCGTCTCTCCTCGA CATGGACACCAGCAAGCTCTACGCGCAGGGATCGGGATGCCCGAAGAGAC ACGAGCGGCGGGGGTTCTAAGGCAGCCCCGGTGGAGGAGGAGGACGACAT GTCGTCGTCTCTCCTCGACATGGACACCAGCAAGCTCTACGCGCAGGTGA TGAAGAGAGAACGGGAGGCGTCCCAGGCCGTCGGCAAGGACTACGCCGCC CGCCCGGCGTCGTACAAGGGGTCCCTCAGCCTCAAGCTGGACCGGTACAC GCAGCGCCGCAAGAGCCGGTCTCGGAGCCCCGAGAGGACGAGGGGGTCCG TGGGGGGGAGCAGGGGGGGGCGGGAGGAAAGACGCGCGGAGCCATCGCCG CCGAGGCGAAAGGCCGCTCCCGTCATGTCGGCGGAGGTGATGAAGAGAGA ACGGGAGGCGTCCCAGGCCGTCGGCAAGGACTACGCCGCCCGCCCGGCGT CGTACAAGGGGTCCCTCAGCCTCAAGCTGGACCGGTACACGCAGCGCCGC AAGAGCCGGTCTCGGAGCCCCGAGAGGACGAGGGGGTCCGTGGGGGGGAG CAGGGGGGGGCGGGAGGAAAGACGCGCGGAGCCATCGCCGCCGAGGCGAA AGGCCGCTCCCGTCATGTCGGCGGAG back to top
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