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Homology
BLAST of mRNA_P-fluviatile_contig1.162.1 vs. uniprot
Match: A0A6H5K243_9PHAE (VKc domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K243_9PHAE) HSP 1 Score: 555 bits (1430), Expect = 5.220e-191 Identity = 309/422 (73.22%), Postives = 341/422 (80.81%), Query Frame = 3
Query: 207 MSVRSPPCSAGALIRVLAPLALVAFTMIPGSDAFLTKTCGRPSVKSL-RCSSSS---SGGRLASGGDMCRGGQPPRCCVTGRGTGRRWSKDGREAATRLRMATGGVPNNDDGGAAASSYKAWPAINRKVIGGLASLGALESAYLTYQKLNPAGLDLLCGASGGCLDVLNGPYSNVLGVPLSAFGTLGYLTAAALAVVPLFVKGEA--FDKASRSLLLVVSTAMGVFSVYLLSLLKFKIGYPCPWCLTSAGLSLSMCTVAWMRRAVPERTKAVVVGACTTLITAFACLTIFVVTETALDIRQAEASPGELVGLQLVAAPAIDTESSPQQAVRIGKKLRSLDAKMYGAYWCTHCFNQKEMLGKQAMANVKYIECSNRGVDNQVEMCKAANIPGFPTWDIEGKLYPGEQTLEELEQIVGLAPFKG 1454
M++R+PPCS AL+R +A L L T+IP S AF+ + GR S K+ RC SS S R S R V G G S G ATRL M G + + DG +S Y AWPAINRK IG LAS+GALESAYLTYQK++PAGLDLLCGASGGCLDVLNGPYSNVLGVPLSAFGTLGYL AA LAVVPLF K E+ DK +RSLLLVV+TAMGVFS+YLLSLLKFKIGYPCPWCLTSAGLSLSMC VAW +RAVPE+TKA VVGACTTLITAFACL +FVVTETALDIRQAEASPGELVG+QLVA P IDTESSPQ A+RIGKKL+SLDAKMYGAYWCTHCFNQKEMLGK+AM+ VKYIECSNRGVDNQV+MCKAA+IPGFPTWDI+GKLYPGEQTLEELE+IVGLAP+KG
Sbjct: 1 MTMRAPPCSP-ALLRFVA-LVLATLTVIPSSLAFVATSSGRLSFKTQPRCGGSSVMFSRARRPSS-------NANRRPVGGSSVG--GSVRGGTTATRLIMGAGNISEDADG-EESSDYSAWPAINRKAIGALASVGALESAYLTYQKIHPAGLDLLCGASGGCLDVLNGPYSNVLGVPLSAFGTLGYLAAAGLAVVPLFAKEESASVDKTTRSLLLVVTTAMGVFSLYLLSLLKFKIGYPCPWCLTSAGLSLSMCIVAWTKRAVPEKTKAAVVGACTTLITAFACLAVFVVTETALDIRQAEASPGELVGVQLVAPPLIDTESSPQ-ALRIGKKLKSLDAKMYGAYWCTHCFNQKEMLGKEAMSKVKYIECSNRGVDNQVDMCKAADIPGFPTWDIDGKLYPGEQTLEELEEIVGLAPYKG 409
BLAST of mRNA_P-fluviatile_contig1.162.1 vs. uniprot
Match: D7G9E2_ECTSI (Possible vitamin K epoxide reductase, plastid protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G9E2_ECTSI) HSP 1 Score: 535 bits (1377), Expect = 2.160e-184 Identity = 270/318 (84.91%), Postives = 292/318 (91.82%), Query Frame = 3
Query: 507 GVPNNDDGGAAASSYKAWPAINRKVIGGLASLGALESAYLTYQKLNPAGLDLLCGASGGCLDVLNGPYSNVLGVPLSAFGTLGYLTAAALAVVPLFVKGEA--FDKASRSLLLVVSTAMGVFSVYLLSLLKFKIGYPCPWCLTSAGLSLSMCTVAWMRRAVPERTKAVVVGACTTLITAFACLTIFVVTETALDIRQAEASPGELVGLQLVAAPAIDTESSPQQAVRIGKKLRSLDAKMYGAYWCTHCFNQKEMLGKQAMANVKYIECSNRGVDNQVEMCKAANIPGFPTWDIEGKLYPGEQTLEELEQIVGLAPFKG 1454
G+ + D G +S Y AWPAINRK IG LAS+GALESAYLTYQK++PAGLDLLCGASGGCLDVLNGPYSNVLGVPLSAFGTLGYL AA LAVVPLF K E+ DK +RSLLLVV+TAMGVFS+YLLSLLKFKIGYPCPWCLTSAGLSLSMC VAWM+RAVPE+TKA VVGACTTLITAFACLT+FVVTETALDIRQAEASPGELVG+QLVA P IDTESSPQ A+RIGKKL+SLDAKMYGAYWCTHCFNQKEMLGKQ M+ VKYIECSNRGVDNQV+MCKAA+IPGFPTWDI+GKLYPGEQTLEELE+IVGLAP+ G
Sbjct: 4 GITSEDGDGEESSDYSAWPAINRKAIGALASVGALESAYLTYQKIHPAGLDLLCGASGGCLDVLNGPYSNVLGVPLSAFGTLGYLAAAGLAVVPLFAKEESASVDKTTRSLLLVVTTAMGVFSLYLLSLLKFKIGYPCPWCLTSAGLSLSMCVVAWMKRAVPEKTKAAVVGACTTLITAFACLTVFVVTETALDIRQAEASPGELVGVQLVAPPLIDTESSPQ-ALRIGKKLKSLDAKMYGAYWCTHCFNQKEMLGKQVMSKVKYIECSNRGVDNQVDMCKAADIPGFPTWDIDGKLYPGEQTLEELEEIVGLAPYTG 320
BLAST of mRNA_P-fluviatile_contig1.162.1 vs. uniprot
Match: A0A1Z5JS18_FISSO (VKc domain-containing protein n=2 Tax=Fistulifera solaris TaxID=1519565 RepID=A0A1Z5JS18_FISSO) HSP 1 Score: 220 bits (561), Expect = 4.050e-62 Identity = 125/301 (41.53%), Postives = 190/301 (63.12%), Query Frame = 3
Query: 558 WPAINRKVIGGLASLGALESAYLTYQKL-NPAGLDLLCGASGG-CLDVLNGPYSNVLG--VPLSAFGTLGYLTAAALAVVPLFVKGEAFDKASRSLLLVVSTAMGVFSVYLLSLLKFKIGYPCPWCLTSAGLSLSMCTVAWMRRAVPERTKAVVVGACTTLITAFACLTIFVVTETA-LDIRQAEASPGELVG--LQLVA--APAIDTESSPQQAVRIGKKLRSLDAKMYGAYWCTHCFNQKEMLGKQAMANVKYIECSNRGVDNQVEMCKAANIPGFPTWDIEGKLYPGEQTLEELEQIV 1433
W R+++GG+A G LE+++LTY KL + + LC +GG C VLNGPY+ + G +PL+A G + Y+T AALA+ P D +R LL V+T+MGVFSV+L++LL + C +C+ SA S+SM + W+ +PE V A ++ + F +V T+ + A G+LVG LVA +P T +S +A+ + KK++++D + YGA+WC+HCF+QK+ +GK+AMA + YIECS G++ Q ++CK ++PG+PTW+I GKLYPGE+TL+ELE+IV
Sbjct: 44 WNPRLRRIVGGIAVAGTLETSFLTYSKLAESSAAEQLCSITGGSCSSVLNGPYAVIPGSEIPLAAVGVVAYVTVAALALGPTLANSPKDDTDNRILLTAVATSMGVFSVFLMTLLFGVLKESCAFCVASAIFSISMAKLLWLGGCLPEENAKTGVSA--SISSGFVAFMAAIVLFTSNIPPTSAVNFAGQLVGSSTSLVAGESPPTITTTSSTKAMVLAKKMQTMDTRFYGAFWCSHCFDQKQAMGKEAMAMIPYIECSRDGLNAQTKLCKEKDVPGYPTWEINGKLYPGEKTLDELEEIV 342
BLAST of mRNA_P-fluviatile_contig1.162.1 vs. uniprot
Match: W7TFV8_9STRA (Vitamin K epoxide reductase n=1 Tax=Nannochloropsis gaditana TaxID=72520 RepID=W7TFV8_9STRA) HSP 1 Score: 218 bits (555), Expect = 1.420e-60 Identity = 126/307 (41.04%), Postives = 181/307 (58.96%), Query Frame = 3
Query: 546 SYKAWPAINRKVIGGLASLGALESAYLTYQKLNPAGLDLLC----GASGGCLDVLNGPYSNVLGVPLSAFGTLGYLTAAALAVVPLFVKGEAF------DKASRSLLLVVSTAMGVFSVYLLSLLKFKIGYPCPWCLTSAGLSLSMCTVAWMRRAVPERTKAVVVGACTTLITAFACLTIFVVTETALDIR-QAEASPGELVGLQLVAAPAIDTESSPQQAVRIGKKLRSLDAKMYGAYWCTHCFNQKEMLGKQAMANVKYIECSNRGVDNQVEMCKAANIPGFPTWDIEGKLYPGEQTLEELEQIV 1433
S WP NR+++G L LG LE+AYLTYQKL L LC G S C DVLN Y++ LGVPL+ G + Y T ALA+ P+ E D SR+ LL V+T M FS YL+ +L ++ CP+CL SA LS SM + W+++ P TK++V A ++T L F + + Q GE+ G + P I T S+ + + +L+ LDA+MYGA+WC+HC+ QK+ LG++A + YIEC+ G ++ ++CKA IPG+PTW+I+G+LYPGE++L++LE IV
Sbjct: 90 SVGVWPRENRQLLGLLGGLGFLETAYLTYQKLTTDDLTSLCTSVAGLSMRCGDVLNSEYASFLGVPLTLPGAVAYGTVTALALWPILAGNEGSRERAEADLNSRAPLLTVTTGMATFSAYLMWVLATQVRELCPYCLASASLSFSMAALTWVKQVEPNATKSLVYKAGAVVVTGLFSLGAFAYASARIMVMSQGPGEGGEVGGSR---PPPITTHSTARSEA-LALRLQDLDARMYGAFWCSHCYEQKQSLGQEAYRRIAYIECAPDGFASESKICKARKIPGYPTWEIKGELYPGEKSLDQLEDIV 392
BLAST of mRNA_P-fluviatile_contig1.162.1 vs. uniprot
Match: A0A7S2K3D4_9STRA (Hypothetical protein n=2 Tax=Leptocylindrus danicus TaxID=163516 RepID=A0A7S2K3D4_9STRA) HSP 1 Score: 217 bits (552), Expect = 2.700e-60 Identity = 129/328 (39.33%), Postives = 182/328 (55.49%), Query Frame = 3
Query: 516 NNDDGGAAASSYKAWPAINRKVIGGLASLGALESAYLTYQKL--NPAGLDLLCGASG----GCLDVLNGPYSNVLGVPLSAFGTLGYLTAAALAVVPLFVKGE--------AFDKASRSLLLVVSTAMGVFSVYLLSLLKFKIGYPCPWCLTSAGLSLSMCTVAWMRRAVPERTK-AVVVGACTTLITAFACLTIFVVTETALDIRQAEA-------SPGELVGLQLVAAPAIDTESSPQQAVRIGKKLRSLDAKMYGAYWCTHCFNQKEMLGKQAMANVKYIECSNRGVDNQVEMCKAANIPGFPTWDIEGKLYPGEQTLEELEQIV 1433
+NDD ++ W RK + LA++GA E+A+LT K ++ +C SG GC DVL+ PY+N+ G+PL+AFG Y T A L+++PL K E D +R LL +ST M FS +L+SLL + CP+C+ SA LSL + TV W A +TK A + G + +IT + E D + + + GE +P T+ S +A+ + K L +LDAK +GA+WC+HC+ QK+ LGKQAMA + YIEC G ++Q CK IPG+PTW+I G L+PGEQTL+ELEQIV
Sbjct: 62 DNDD-----ANGTVWNPSARKTLAALATIGAAETAFLTGVKTLGGEGAINSICSVSGNALGGCSDVLSSPYANIAGIPLTAFGFAAYTTVAILSILPLLNKEENDSSSTAGGDDSFNRLALLTISTGMATFSAFLMSLLLLVLKEMCPYCILSAVLSLGLGTVTWFGGAASNQTKRAAIAGLSSVMITTLTMFGLVFTAEANYDASSSSSGSTTALLAQGETPPELTNQSPPAITQDSSDRAMILAKDLNALDAKFFGAFWCSHCYEQKQTLGKQAMAKIPYIECDKDGKNSQRGFCKEKKIPGYPTWEIAGTLHPGEQTLDELEQIV 384
BLAST of mRNA_P-fluviatile_contig1.162.1 vs. uniprot
Match: A0A7S2RXM7_9STRA (Hypothetical protein n=1 Tax=Rhizochromulina marina TaxID=1034831 RepID=A0A7S2RXM7_9STRA) HSP 1 Score: 210 bits (535), Expect = 5.660e-58 Identity = 133/341 (39.00%), Postives = 186/341 (54.55%), Query Frame = 3
Query: 417 PRCCVTGRGTGRRWSKDGREAATRLRMATGGVPNNDDGGAAASSYKAWPAINRKVIGGLASLGALESAYLTYQKLNPAGLDLLCGASGGCLDVLNGPYSNVLGVPLSAFGTLGYLTAAALAVVPLFV-KGEAFDK-ASRSLLLVVSTAMGVFSVYLLSLLKFKIGYPCPWCLTSAGLSLSMCTVAWMRRAVPERTKAVVVGACTTLITAFACLTIFVVTETALDIRQAEASPGELVGLQLVAAPAIDTESSPQQAVRIGKKLRSLDAKMYGAYWCTHCFNQKEMLGKQAMANVKYIECSNRGVDNQVEMCKAANIPGFPTWDIEGKLYPGEQTLEELEQIV 1433
P +TG G G R + +G E A+G D +RK+IG LA LG LE+ Y+ K G A C +VLNGP+S+V GVPL+ G Y TAA LA+ PL V +G + A++ L+ V++AM FS YL+ +L K+G CPWC SA LS + T W R V + + +V A T + + A +FVVT T + + +A E L P I T S ++A+ + K L + AKMYGAYWC+HCF+QK+ LG +AM + Y+EC+ GV++Q ++C+ IPG+PTW I GK +PGE TL ELE+
Sbjct: 56 PWAPLTGAGAGARAAPEGSEEPLGAGAASGSPAGLTDD-------------DRKIIGTLAGLGVLETGYINAFKAGLLGSGAPLCAGMSCSEVLNGPWSSVFGVPLTVPGMAAYATAALLALAPLVVSRGNMPTRIATQKGLIAVTSAMATFSTYLMLVLFLKLGSWCPWCFFSACLSTLLATFTWFRTGVKDSWRVGLVSAGATAVLSAA---LFVVTSTDVALAEARGYLDERAQDILYTPPPI-TRHSSERALSVAKALEAKGAKMYGAYWCSHCFDQKQSLGMEAMGRIPYVECAKDGVNSQTKLCRENKIPGYPTWVIGGKQHPGEMTLSELEEFA 379
BLAST of mRNA_P-fluviatile_contig1.162.1 vs. uniprot
Match: A0A0G4EVC6_VITBC (VKc domain-containing protein n=2 Tax=Vitrella brassicaformis TaxID=1169539 RepID=A0A0G4EVC6_VITBC) HSP 1 Score: 209 bits (533), Expect = 7.980e-57 Identity = 120/322 (37.27%), Postives = 193/322 (59.94%), Query Frame = 3
Query: 558 WPAINRKVIGGLASLGALESAYLTYQKLNPAGLDLLCGASGGCLDVLNGPYSNVLGVPLSAFGTLGYLTAAALAVVPLFVKGEAFDKASRSLLLVVSTAMGVFSVYLLSLLKFKIGYPCPWCLTSAGLSLSMCTVAWMRRAVPERTKAVVVGACTTLITAFACLTIFVVTETA-------------LDIRQAEASPGELVGLQL---------VAAPAIDTESSPQQAVRIGKKLRSLDAKMYGAYWCTHCFNQKEMLGKQAMAN-VKYIECSNRGVDNQVEMCKAANIPGFPTWDIEGKLYPGEQTLEELEQIVGLAPFKG 1454
WPAINRK++ + +G +E+A+LTY KL A + +C +GGC VL GPYS V G+PL+A L Y L+++PL + ++ +R +LL ++TAM FSVYL+S+L F++ CP+C SAGLSL++ ++W+ VP+ ++ ++ T ++ A L ++ V E + +E G G L P I T SS + ++R+ KKL+++ A+MYGAYWC HC++QK+ GK+A ++Y+EC+ G++++ + C ++PG+PTW+I G+LYPGE++L LE+I G+AP G
Sbjct: 88 WPAINRKLMAFVGGVGLVETAFLTYTKLF-ASVASIC-PTGGCYTVLGGPYSTVFGIPLTAPAMLAYGLVTYLSLLPL--SKPSAEQWTRPMLLALTTAMATFSVYLMSVLVFQLQEFCPYCYLSAGLSLTLFLMSWLWSIVPDGLQSRIIRYATAVVMAVMSLGVYSVQEPGNLAAVVAFVRNPVASLAGSEGEEGYEAGWFLDRLFESEGPFVPPEITTASSAR-SLRLAKKLQTMGARMYGAYWCPHCYDQKQTFGKEAFEGYIEYVECAREGLNSERDRCDKRDVPGYPTWEINGELYPGEKSLATLEKIAGIAPPDG 404
BLAST of mRNA_P-fluviatile_contig1.162.1 vs. uniprot
Match: UPI001E1DA96A (vitamin K epoxide reductase homolog n=1 Tax=Mercenaria mercenaria TaxID=6596 RepID=UPI001E1DA96A) HSP 1 Score: 200 bits (508), Expect = 9.690e-55 Identity = 122/316 (38.61%), Postives = 182/316 (57.59%), Query Frame = 3
Query: 573 RKVIGGLASLGALESAYLTYQKL--NPAGLDLLCGASGGCLDVLNGPYSNVLGVPLSAFGTLGYLTAAALAVVPLFVK----------GEAF-----------DKASRSLLLVVSTAMGVFSVYLLSLLKFKIGYPCPWCLTSAGLSLSMCTV-AWMRRAVPERTKAVVVGACTTLITAFACLTIFVVTETALDIRQAEASPGELVGLQLVAAPAIDTESSPQQAVRIGKKLRSLDAKMYGAYWCTHCFNQKEMLGKQAMANVKYIECSNRGVDNQVEMCKAANIPGFPTWDIEGKLYPGEQTLEELEQIVGLAPF 1448
R+++ GLA++G LE+A+LT KL +PA + C + GC+DVL+GPY+ +G+PLS FG Y A LA PL + GE D A+R LLL +S+ + VFS Y + LL I CP+C+ SA LS S+ + A++ RAV E +A+++G + ++A A IF ++ + Q + P AP TE S +A+R+ +KL MYGAYWCTHC++QK+ LGK+A A + Y+EC GV +Q ++C+ IPG+PTW+I+G+LYPGE +E+LE++ P
Sbjct: 23 RRLLAGLAAVGVLETAFLTAAKLFASPANI---C-RTRGCVDVLSGPYATFVGIPLSLFGIAAYAAFAWLAAWPLAAREAVEVVVSDDGEVECRTAEEDYAVKDAATRPLLLALSSVLVVFSSYFMFLLTVVIRDTCPYCVFSAALSTSLFLITAFVSRAVREPLQALLIGGSSAFVSAVAAGAIFFLSSPGGLLAQMPSEPQ---------APPEITEQSDTRAMRVARKLNQRKTTMYGAYWCTHCYDQKQKLGKKAFAKITYVECDRGGVASQAKLCREKRIPGYPTWEIDGELYPGELQMEDLEKLANGEPL 325
BLAST of mRNA_P-fluviatile_contig1.162.1 vs. uniprot
Match: R7Q9N1_CHOCR (VKc domain-containing protein n=1 Tax=Chondrus crispus TaxID=2769 RepID=R7Q9N1_CHOCR) HSP 1 Score: 202 bits (514), Expect = 2.290e-54 Identity = 125/305 (40.98%), Postives = 182/305 (59.67%), Query Frame = 3
Query: 573 RKVIGGLASLGALESAYLTYQKL--NPAGLDLLCGASGGCLDVLNGPYSNVLGVPLSAFGTLGYLTAAALAVVPLFVKGEAF---------------DKASRSLLLVVSTAMGVFSVYLLSLLKFKIGYPCPWCLTSAGLSLSMCTV-AWMRRAVPERTKAVVVGACTTLITAFACLTIFVVTETALDIRQAEASPGELVGLQLVAAPAIDTESSPQQAVRIGKKLRSLDAKMYGAYWCTHCFNQKEMLGKQAMANVKYIECSNRGVDNQVEMCKAANIPGFPTWDIEGKLYPGEQTLEELEQIV 1433
RK++ ++ +GA E++YLT+ K+ +P + C A+ GCLDVL+GP+S+ LG+PL+ G L Y A LAV PL E D A+R +LL +STA+ +FS YL+ LL F I CP+CL SA LS S+ + A++ RAVP A+ VG +T +++ A +F V A +PGE P T S +RI KL+S +AKMYGA+WC HC++QK+ GK+A AN++YIEC G+++Q ++C+ IPG+PTW++ G+L+PGE L ELEQ+V
Sbjct: 144 RKILTAVSMVGAAETSYLTFNKIFSSPGAI---C-ATQGCLDVLSGPFSSFLGIPLTLLGALAYGVFAYLAVWPLSADEEEDEEGTLLTPEEVYGIRDAATRPILLALSTALFIFSCYLMFLLFFVIQSYCPYCLFSAVLSTSLFMLTAFVGRAVPRVGDALRVGIVSTGVSSIAAALLFFV---GYPQHVAAQNPGE------PQEPPAITMRSTSDTLRIASKLKSKNAKMYGAFWCNHCYDQKQRFGKRAFANIEYIECDKHGMNSQYQLCRDKRIPGYPTWELNGELFPGEIDLPELEQLV 435
BLAST of mRNA_P-fluviatile_contig1.162.1 vs. uniprot
Match: A0A7S3P7K1_9STRA (Hypothetical protein n=1 Tax=Amphora coffeiformis TaxID=265554 RepID=A0A7S3P7K1_9STRA) HSP 1 Score: 199 bits (507), Expect = 1.000e-53 Identity = 131/315 (41.59%), Postives = 180/315 (57.14%), Query Frame = 3
Query: 558 WPAINRKVIGGLASLGALESAYLTYQKLNPAGLDLLCGASGGCLDVLNGPYSNV--LGVPLSAFGTLGYLTAAALAVVPLFVKGEAFDKA---SRSLLLVVSTAMGVFSVYLLSLLKFKIGYPCPWCLTSAGLSLSMCTVAWMRRAVP-ERTKAVV---VGACTTLITAFACLTIFVVTETALDIRQAEASPGELVG--------------LQLVAAPAIDTESSPQQAVRIGKKLRSLDAKMYGAYWCTHCFNQKEMLGKQAMANVKYIECSNRGVDNQVEMCKAANIPGFPTWDIEGKLYPGEQTLEELEQIV 1433
W RK +G +ASLG +E++YLT+ K+ AG + CGA C VL+GPY+ V LG+P++ G Y A+LA+ PL V G DK +R L +ST MGVFSV+L++LL + CP+C+ SA LS+S+ ++W+ P ER K + VG + L V + + A G L G I T SSP+ A+ I +L +L+AKMYGAYWC+HCF+QKE LGK+AM + YIECS G ++QV +CK IPG+PTW+I GKL+PGEQ L+EL +IV
Sbjct: 98 WNPRLRKTLGIIASLGIIETSYLTWTKV-AAGGETFCGAD--CASVLSGPYATVPGLGIPVATLGLAAYTCVASLALGPL-VFGTTADKEEENNRLALTALSTTMGVFSVFLMTLLFGVLKESCPFCVFSAVLSISLAKLSWLGGVPPPERLKDGIKYSVGGGLAAVLGILVLYAGVPEDATSQVNFA----GTLAGGRDSXXXXXXXXXXXXXXXXXXISTSSSPR-ALEISNELATLNAKMYGAYWCSHCFDQKEQLGKEAMQRIPYIECSREGTNSQVSLCKEKQIPGYPTWEINGKLFPGEQALDELFEIV 403
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 | 536.6 |
| Seed ortholog evalue | 1.1e-149 |
| Seed eggNOG ortholog | 2880.D7G9E2 |
| GOs | GO:0003674,GO:0003824,GO:0003955,GO:0005575,GO:0005622,GO:0005623,GO:0005737,GO:0006091,GO:0008150,GO:0008152,GO:0009507,GO:0009536,GO:0009987,GO:0010207,GO:0015979,GO:0016043,GO:0016491,GO:0016651,GO:0016655,GO:0019684,GO:0022607,GO:0034622,GO:0043226,GO:0043227,GO:0043229,GO:0043231,GO:0043933,GO:0044085,GO:0044237,GO:0044424,GO:0044444,GO:0044464,GO:0055114,GO:0065003,GO:0071840 |
| EggNOG free text desc. | Vitamin K epoxide reductase family |
| EggNOG OGs | 2QRER@2759,COG4243@1 |
| COG Functional cat. | S |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| Hectar predicted targeting category | chloroplast |
| Ec32 ortholog description | possible vitamin K epoxide reductase, plastid protein |
| Ec32 ortholog | Ec-28_000580.1 |
| Exons | 8 |
| Model size | 2078 |
| Cds size | 1263 |
| 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 |
| 1622815298.2512996-UTR-P-fluviatile_contig1:2114105..2114299 | 1622815298.2512996-UTR-P-fluviatile_contig1:2114105..2114299 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 2114106..2114299 + |
| 1693561439.0063396-UTR-P-fluviatile_contig1:2114105..2114299 | 1693561439.0063396-UTR-P-fluviatile_contig1:2114105..2114299 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 2114106..2114299 + |
| 1622815298.348361-UTR-P-fluviatile_contig1:2125023..2125644 | 1622815298.348361-UTR-P-fluviatile_contig1:2125023..2125644 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 2125024..2125644 + |
| 1693561439.2440507-UTR-P-fluviatile_contig1:2125023..2125644 | 1693561439.2440507-UTR-P-fluviatile_contig1:2125023..2125644 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 2125024..2125644 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815298.2634356-CDS-P-fluviatile_contig1:2114299..2114645 | 1622815298.2634356-CDS-P-fluviatile_contig1:2114299..2114645 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2114300..2114645 + |
| 1693561439.0155258-CDS-P-fluviatile_contig1:2114299..2114645 | 1693561439.0155258-CDS-P-fluviatile_contig1:2114299..2114645 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2114300..2114645 + |
| 1622815298.2738626-CDS-P-fluviatile_contig1:2115288..2115470 | 1622815298.2738626-CDS-P-fluviatile_contig1:2115288..2115470 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2115289..2115470 + |
| 1693561439.0232573-CDS-P-fluviatile_contig1:2115288..2115470 | 1693561439.0232573-CDS-P-fluviatile_contig1:2115288..2115470 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2115289..2115470 + |
| 1622815298.2841904-CDS-P-fluviatile_contig1:2116008..2116125 | 1622815298.2841904-CDS-P-fluviatile_contig1:2116008..2116125 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2116009..2116125 + |
| 1693561439.0322134-CDS-P-fluviatile_contig1:2116008..2116125 | 1693561439.0322134-CDS-P-fluviatile_contig1:2116008..2116125 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2116009..2116125 + |
| 1622815298.2931304-CDS-P-fluviatile_contig1:2120714..2120807 | 1622815298.2931304-CDS-P-fluviatile_contig1:2120714..2120807 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2120715..2120807 + |
| 1693561439.1789186-CDS-P-fluviatile_contig1:2120714..2120807 | 1693561439.1789186-CDS-P-fluviatile_contig1:2120714..2120807 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2120715..2120807 + |
| 1622815298.3030148-CDS-P-fluviatile_contig1:2121820..2121979 | 1622815298.3030148-CDS-P-fluviatile_contig1:2121820..2121979 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2121821..2121979 + |
| 1693561439.1934311-CDS-P-fluviatile_contig1:2121820..2121979 | 1693561439.1934311-CDS-P-fluviatile_contig1:2121820..2121979 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2121821..2121979 + |
| 1622815298.3149612-CDS-P-fluviatile_contig1:2122472..2122550 | 1622815298.3149612-CDS-P-fluviatile_contig1:2122472..2122550 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2122473..2122550 + |
| 1693561439.2147024-CDS-P-fluviatile_contig1:2122472..2122550 | 1693561439.2147024-CDS-P-fluviatile_contig1:2122472..2122550 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2122473..2122550 + |
| 1622815298.3250291-CDS-P-fluviatile_contig1:2122832..2122966 | 1622815298.3250291-CDS-P-fluviatile_contig1:2122832..2122966 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2122833..2122966 + |
| 1693561439.2269282-CDS-P-fluviatile_contig1:2122832..2122966 | 1693561439.2269282-CDS-P-fluviatile_contig1:2122832..2122966 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2122833..2122966 + |
| 1622815298.3364308-CDS-P-fluviatile_contig1:2124869..2125023 | 1622815298.3364308-CDS-P-fluviatile_contig1:2124869..2125023 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2124870..2125023 + |
| 1693561439.2354712-CDS-P-fluviatile_contig1:2124869..2125023 | 1693561439.2354712-CDS-P-fluviatile_contig1:2124869..2125023 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 2124870..2125023 + |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig1.162.1 >prot_P-fluviatile_contig1.162.1 ID=prot_P-fluviatile_contig1.162.1|Name=mRNA_P-fluviatile_contig1.162.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=421bp
MMTTMSVRSPPCSAGALIRVLAPLALVAFTMIPGSDAFLTKTCGRPSVKS LRCSSSSSGGRLASGGDMCRGGQPPRCCVTGRGTGRRWSKDGREAATRLR MATGGVPNNDDGGAAASSYKAWPAINRKVIGGLASLGALESAYLTYQKLN PAGLDLLCGASGGCLDVLNGPYSNVLGVPLSAFGTLGYLTAAALAVVPLF VKGEAFDKASRSLLLVVSTAMGVFSVYLLSLLKFKIGYPCPWCLTSAGLS LSMCTVAWMRRAVPERTKAVVVGACTTLITAFACLTIFVVTETALDIRQA EASPGELVGLQLVAAPAIDTESSPQQAVRIGKKLRSLDAKMYGAYWCTHC FNQKEMLGKQAMANVKYIECSNRGVDNQVEMCKAANIPGFPTWDIEGKLY PGEQTLEELEQIVGLAPFKG* back to topmRNA from alignment at P-fluviatile_contig1:2114106..2125644+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig1.162.1 ID=mRNA_P-fluviatile_contig1.162.1|Name=mRNA_P-fluviatile_contig1.162.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=11539bp|location=Sequence derived from alignment at P-fluviatile_contig1:2114106..2125644+ (Porterinema fluviatile SAG_2381) TCGACCTAGATTGTTTTCGAGGGGACCCTGCCCAAGCCGCGCACAAGCCC
AAGAGCACGAGCACGCTGCGGACACCGCGTCTATGGATTGAATTTATATT
CCCTTGACCTTTTGTGTGAGTCCCTACTGCAAAAGAACGAGAGAATCCAG
CAACTGACTTAAGCAAGCGCGCTATCATACAAGCTCTATCATCTATGATG
ACAACGATGTCGGTGCGATCTCCGCCTTGCTCCGCGGGTGCCCTGATACG
TGTGCTCGCGCCGCTGGCCCTCGTGGCTTTCACAATGATCCCCGGTAGCG
ACGCCTTCCTTACAAAAACCTGCGGGAGACCAAGCGTGAAATCTTTGCGA
TGTAGCAGCAGCAGCAGCGGCGGCCGTCTCGCCAGTGGTGGCGACATGTG
TCGGGGAGGGCAACCTCCGCGTTGCTGTGTCACCGGCCGAGGCACAGGCC
GCAGATGGAGTAAGGACGGGAGAGAAGCCGCAACGAGATTGAGAATGGCC
ACCGGCGGTGTCCCCAATAATGATGACGGAGGTGCTGCAGGTGAGAGAGC
GAGAGAATGGCTCAGCAATTGAGCAGGTTTTTGTGCATACTGGTCTGATC
TAATTCCCCCGTGATTTCAAGTCCTACACCACATGAGCACATGTCGGTGA
ACGTTTTTGGGCACGTACATATACTGTGTGCCATGTTCCGCGCGCGCACA
GGCTCTGCGCTCTCGGCCTTATTTTAATGTTCAATCATGTCGCCACTTCC
AACGGAATGCAAACGTCCTAGAAAACGAGAGCAGCGAGGTTCTGATATTT
CTTGTGCTCAAACACAAAGCATGCATGTAGCGTAGTCAAGGTGCGGAGTC
GGCAATCGAGGAGCGAAGCGGACGCAGCTTTTCCTGCGTATGGAAGGGGT
TGGCAACTGTAGGGTTAAAAGCAGGTTTCGGGAATTTGGATCTGTGGAAC
CTCGCCGGGCGAAGTCAATCGACCGCGTCCGCTGAAACTGGTTCGGGAGA
GGGCACGCGCAGGCTGCGCAACATGGCGGACGACGAATGCCTGGGGGGGA
ACAGCTACCGTTCAAATCAACATTAATCTTATTGGGCCGAAAAAGAGAGC
AAGAGTGTTCGGCGCCATTTGATGGACACGCACAGCGTCCACACGTGTCC
GCATTCAAATTGTCTTCGTATGCTGGATTGCAGCGTCGAGCTACAAGGCA
TGGCCGGCGATCAACCGAAAGGTGATCGGAGGGTTGGCCAGTCTCGGGGC
GCTCGAGTCGGCATACCTCACGTACCAGAAGCTCAACCCGGCGGGGCTCG
ACCTGCTGTGCGGGGCTAGCGGGGGCTGTTTGGACGTGCTCAACGGACCT
TACTCAAATGTGTTGGTGAGTAGGATGGGTTAGGGCTTGGTTCTCCGGAT
AGAGTATGTGTGCGTGCCTTGTGTCGACGTGATCCCCTCCCTCGCCTGTC
CCCCCTCGCACACTGGGCAGCTCGAGCAACACCCAACGAGTACCACACTT
TACAGCCCGGCGCGATGATGTACGCGTCATACTCTCGTTTTGTGGTGCTG
GTTTTGTTGTGCATTCGACAAGACCGGTCATCATCCAACCTTGGCGACCT
CCTAGTAGCAAGGATGTCAGCATCACGGGATGCGGAATGCAAACCGCGTC
CAAAGGAGCAAGAAACAAAGCACGCACGTGGTGCCTGATGGTGGAGGTTT
ACAAATGGAGTGCGAATGGTTGCGGCGGGTGTACTGTGTGTCTTCTTCCC
TGCTCCAATGCGTTGAAAGAAGGAAGCCGTCATTGGAGCGATGGGTGTTC
GTTTCGTGCCTTTGGCTATCGTCATCTGCCTTTGTGCTTCGCGGCTTCTG
AAACTCGCTCTTGCCCTTTCCTTCTCCGCCGGCGCACACGTGGCGGCGCG
CAGGGGGTGCCCTTGTCGGCTTTCGGCACGCTCGGATACCTGACAGCGGC
CGCGCTGGCTGTAGTACCCCTTTTCGTCAAGGGAGAGGCCTTCGACAAGG
CAAGCCGCTCCTTGTTGCTGGTGAGTTTCGTACAACAAGCCCTTTCTGTT
GAATATCGTTGCACTTTTAGGTGGTGGTTATGTGATGGGAGCGGCAGTTC
TTGCTACTATTGTGTGCACGTCGTTCCTGTCAGCCGGTTTCACAGCCTTC
CCTGAACTGTGTGTTTGGAGGGGCGCGGGCTGGCGCGTAGAGTTGATGTG
GTGGATAAGTTGCAAACACAGGACAAAACACACATAATGCACACACATAA
GCATAATTTAGTGTCGACCGGCGTTCGGTCTGCTTCCGGGCGGGCGACCC
TGCCAACGAACGGCCTTGTTTGTCCACGGAGTCATCGGGAACGGTTTTCT
CCCGCAGTCAAAGCCTTTGGAGATTTGCTTGGGTTGGCGCGGGCTGTTAG
GGCGAGCGAGCGAGCAAGCAAGCGCCGCCTGCTCCTGTAGCCACGCCGAG
TATGTGTCGGCGCGCAAGTCTGAAAAAAGGACAGCGAAAATAGAACTCAA
GACGGCTCACGCCGGATGTAGATACTCCCCGGCTTCTTGTACCCGAGCCG
CCCGCGCCGTGTGTCTTTTTAAGGAGACTGCAGTGCTGCGTTGACAAGGA
AGGACCGGCCTCTTATCATGGATACGATCTAATCCCTACGCAATGGACTA
CGCTCGGGTCTCGAACAAGAATTTTGTCTCCTTTCTTTTTGGCGTGTGCG
AAAAGCCGAAGCACCATCATGAGATTGACTATCCTTCGTGCGAAAATTCT
GATGATAACCCCAGCAGTAAAGCTACCCTTCGGCAGCTAAGACTCCGTGT
GGCTTGTAGGAGAGTCGGAAGACTTGCTCACTGGTCTGCCGTCTCCACTA
GCGACAGAGAAGCTCTTACTGTTCGACTCCTCAACGCCCCCATGAAACGC
CTGTTTCTTTCTCGCTCCTCTCTTCCGTCAAGAGTCACACCCCTTTTACT
CCGAGCGGCACGTGGGGCCTCGAAGGCTCTGCCCATTTGAAATCCTCGCT
GTATGTCAACTTCTGCATTGGTGGTGTGTTTGATTATTTGAAAACTCCCA
AAAAAAAAGTGTCCAGGACAATGGAACATTTTTTATTCGGCTCGTTTTTT
GTTGAATCACACCCACGACAACCTTCCGCCTTGAATTTGTGTCGAGTGGA
TGTGACCCGGCTCGACTTTTTTGAAAAGCACGTGTCTGACGGCGTCACTT
TGCGACAAATGCGGGTATGCTGGCTCAACAAACGGTTTCTTACTGTTCGC
CTCGGCTCAAGTTCGTGGCAACCGGGAGTGTTCGAGCTCAACATCGCGAA
AAGTACATGTTTCGGCTCGACTTTGCGATACGTGAGAGTGATCCGGCGAA
ATTTTGCCACGCGCGTGTGTTTCGGCTCGTTTTCGATGTCGGAGTGTATC
CTACCTCAGCGCTCTATTTTGCGACGAGGGAACGTGTTTCGACTCAGCTT
GTCGGCAACTTCGTGTGCTTCGGCTCATCTATGGAATACTCGCGTGTGTT
CGATTAGATAGCTCAAGTTTATGACAAGCCGATGTTTTGCGGCGCAACTC
AGCCTGATTCCGCGACAAGCGAGTCTGCTTGATGTTTGCCACAGGATGCA
AAGTCCGGCGGTATTTTGCTACTCAGGCCAATGCGTTCCGGCTCAATTTT
TCCACCAGCGAGTGTGCTCTGGCCCGACTTTGCGACAGCGTCTCTATTCT
GGCTCAACATTACCTCAACATGAGCGAAAAAATGCAAACGGCTCAACTTC
GCGACAACCGAGTGTGTTCCGGCTTAATTTTGTCACAAGCAAGAGTGTGC
TCCGACTCAAGTTTCGATTTGGCGAGGATGGATAACCCTCACGTCCCGCC
GGATATCCCGCAGGTAAGAGTAGCGCGAGGGCTGCTGGGGTTGCGTTACT
GTCGTTGTGTTGTTGCTGCTGTGTTTGCTGTTGTTTTTCTTGTTCTTGTT
GTAATTGGTGTTGATGAGAGAACTATAGCAACGGGAGTTCCAAATCCGGA
GATGTGTGTACGTGAGAGGTAAAAGGAAACCCTTTCCTACTGTTTCCAAT
GGGTGCCTGCACCTCCCCTTCCTAATCCCTCTCGCCGTTGACTGAACTGT
CATGATTGAAAGAAGGCAATACTTTCGAGAAATGGTTCTGTATTTCGCTG
TAGTTGCCATCCACGCCTTCCGAGTCCAACAGCAGGAGAAATTTTTCGTA
TTTTCTCGCAAAGCGACTGGACCATTGTACCGACCATTGTACCGACCATC
GTACCGATCTGGCCTACCCGGACTATCCTATCGCGACTATTCCCACCGGA
AATTTCTCTTCCAGATTATCCTACCGGGACTGTCCTACCTCAACTATTTC
TATTGGGGCAGTCCTAACGGGACCAATACTGTCGGGACTATTCCACCGGG
ACTATCCCACCTGGACTTTCGACTGTCTCTTTGTTTTCGATATTCCTATT
CCTACCGCAACAATTCCTGCCGGAACAAACACTGCCGCCACTATTCTACC
GGGACTATCTCCCCAGGACTTTCGACTCTTTTCTTTTTTATATTCCTAAT
TCTACCGCGACTATTCCAGCCGGGACTTATGCTATCGGGGCTATTCCACT
GAGACTTTCCCATCGGGACTGTTTACCTCGGCTAATTACCGGGCTTATTC
TACCGAAATCATCCTACCGGACGTTCCTGTCGGGTTTAATCTACCCAAGC
TTTATTACCGGACTATATGACCGGGACGATCCTACCGAAACTACTCTATC
GAGCCCGTTTCACCCGACTATCGTACTGATTCTATCTGCCGGAGCTATCG
TACCTGAACTATCCTACCGAGGCTTTTCACCGGACTAAGAATGAAAGGTG
AAGGTGAAGAGAGGATATTGTTCAAAATTTGTAAGGGTAAAATATTAGTT
CCAAATATGGAGGGAGTTTGTGGTCCAAACATTGCTTTCTGTCATGCGTG
TTGTTCGGTGACTTGTCGGAAGGCAAACGATATTACTCCGTAGTACATTT
TATCGGACTTTCCTACCGTCACTATTCAACCGCCTTCTTTCGCGGGACTA
TCCTCCCGGGACTATCCCCACCAGACTATTCGTCGCGATCTTATGTCATA
AAGCACTAGATGCGGGAGCACACTTCGTTGTCTCATGGCTGAGCCAACAC
ATACTCCCTCGTCGCCCTCGTCGCAAAATGGAGCCGACCTGAGCCAGAAC
ACGCTCGATGATTGCAATTGTTGCAATGTTGATTCGAAACACTCGTTTGT
CAAACAGTTGCCGAACTGAGCCCGAACAGACTCGCTTCTGACACAATGGA
GCCGGCCGGAACACACTCGTTGGTGGCAAAGCTGGGCTGGAACATACTCA
CCCGTCGTAATATTGAGCGAAATCAAGCCGGCATACACTCGTTTGTCATG
CCGACTTGTGCTACAGTCGAATCATAAACTTGCTGCCGAATTGAGCCACA
ACATAATCGTTTGTTGCAAGGCTGCCGAATTGAGCCGTAAAGAAGTCGTT
TGTCGCAAAGTTAGGCCGGAACATAATCGCAAAGGTGATCCTGAACGCAT
TCTCTCGCAAATCGCTCAATTTCGCGACAAGCTAGTGTTTTTCGGCGCAA
CTCCGCTACAAACAAGTGGGGTATGGCTGAACTCGGCTCCATTTTGCGGC
GTGGGAATGTGTGTCGGGTCATCTTCGAGACAACGTAGCATACCGGACAG
GACAATCGAGCTTGTCCCACCTCAACTCTGCGATAAACGAGTATGCTACG
GCTCAACTTAGCTCCATGCGATTCGGCTCAACTTGGCGAAAAGAGTGTTT
TCCGGCTTATTTGGCTACAAACGAGTGCAAACGGTGTATTCCGGCTCAAC
TTTGCGACGGGCGAGTGTATCTCTGCACTCCACAATCATGTTGCGGCTCA
ACTTGGCTCAATTTCGCCACAAGCGAGCGTGTTCCGACTCAACTTTGCCA
CAAGCGAGTGTCCTCTTACCTTTGTGACAAAGTAGCCATGTGACGGCTCC
GTTTCGACCCAACTTTGCGACATCCGAGAATGACCTGGCTCAACCGGCTC
AGTGTCGCGACGAGGAAGTGTGTACGAGTGCGCTCTGGCTCAATTATCAC
AAGCGCTTGTGCTCCGGATCAAGTTTGCAATACGCAGGTGTGTTCCGTTC
CAATTCGGCAATAAGCGAGTGTGTTCCGGCTTCAAAGTGCCACAAGCAAG
TGTGTTCCTGGTCAATTCGACTCAATTTTGCCACCGGCGAGGGTGTTCCG
TTACGACCTGGCCACAAGCGAGTGTTTTCCGGCTCCACTTCGGGACCACC
AACGAGTGTGCATCGGCTTGAATTTGCGACAAGCAAGTGTGTTCCGGCTC
AATTTTTCGACAGACGGTGTGTTTGAGCCCAACTTAAGAAGCAAGCGTGT
TCTGGCTCACCTCCACGACAAATGGTGTGTTGTGGCCAAAGTCGGATCAC
GTTTGCGACAAGCGAGGGTCCTCCGGCTCTTAGAACGAACGTGTGGCCTG
TTGTATCACCGAAGCCTCAGCTAAATCGAACTTCATCAAAACGTTGATCC
CCTCGGTCTCGTACACGACGTCCGGGGCCTATGTTTACCAACCCTCTTGT
TTTTCTCAGGTGGTTTCTACCGCCATGGGGGTGTTCTCCGTCTACCTGCT
GAGCCTGCTCAAGTTCAAGATCGGCTACCCGTGCCCGTGGTGCCTCACAT
CGGTGAGTCCGCGAGTGCGCAAGGAGGACACGGCCGTGCTGCAGGCGGTG
CAGGAGTTTCCTGGTGTCTGGTCAACCGCAACAATGGTCTCGCACCCAAC
GCAAAACACATGACGCCCGGCGGCCGCGAAGGCCCCGTTATCGGCTCGGG
TCCATGCATTTTCGCAGCCTCCGCAACCACAAGTCATTTGTTACGCAAGA
AGAACACAGTGGGATCACAAACGACATTTTTTATTTTGATTTTAGCGGTC
TTGAAGTTGCACGGGAAACCCTGCAGTGGCTGTATCTCTTGCCCGACGCA
CCCGGGGCCGAAAGGAGGGGTGCCCGGATCAGACACGGGATTGGCTTGAT
TTGTGATTCGTGGAGAGCAGCCGCCCACCGCGAAATTGAAACACCCCGGT
CGGTGCGCCGGAACTGCGTGCGCCGGGAACGAGAGGCGCCAGGAGAGCAA
GTGGAGAGTTGGTGCGTCGAGAACGACGATCCACAGACAGCACATCCGAT
CTCGTCACGCCCAAAACTTCAAGCACGACACGAAACGAAACGACACCCGA
AGCGGTACGAACAAGCTGTAACCTCCGTGCTGTCGGGCTGTGAGCAGGAG
TCGTCGATGAATAGATGGATAGATAGACTTGGTCTGGAGGCGTTCTGTCT
TACGTCTCTCTCTCGCTGTTGACGATCGTGTTTTGTCTGCCTGTACTGCC
GCTTTCATTTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCT
CTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCT
CTCTCTCTCTCTCTCTCTCTCTCTCCCTCTCTGTCTGTCTCTCTCTCTGT
CTCTCATTCGCTCGCTACCTCCCTCTCTCTTTCCCTCTCCTCCCCGTCTC
TTCCCTCAATCTCGACGTTGGATCGCGGTCGTCATGTTTTCGCGATTATT
GTTCCGCCGTCATCGCGTGCGTCGTGTCCCTCTCTTCTGTCTTCTGTCTT
CTCTTCTCTTCTCAGGCCGGCCTGTCGCTGTCGATGTGCACCGTGGCGTG
GATGAGGAGAGCGGTCCCGGAGCGGACCAAAGCGGTGGTCGTCGGCGCCT
GCACTACGCTCATCACGGCCTTCGCGTGTTTGACCATCTTCGTCGTCACT
GAGACAGCCCTCGACATCCGACAGGTACGTGCACGCAAATTCATCAGTAT
GTTGGCCACGCGCGTGATTCGCCACGTTTCTCTGTACACTGGAGACGTCT
TGCAGCGTTGTTGCCGTCCCGCTGCCTATGGATTCCCCGACGAGACATTT
GAGTCGGAGTTACCCGCTCATCCCCAGTTGAAAAGGCAGGGGCGGCACCG
GATGCAGTGTATCCAGGATTCATTCGCCCTTTGTTTGGGACTCGGGACGG
TTGGTTCTCGACCGTGCCGGCAGCACCCGCTACACTTTACTCCCTTGTGA
CACCCTGCTCCCTCCTCTCCTTGTTTGGCTTCCGACAAGCAGAGTACAAC
CGTCGACGTGGTTTCAGAGTATCAAAGGGTAGCACGCGCTTGGAATGACT
CACTACTGTCTGCGGTTTTGTGCTCGACGTGCGACTGTGGAATACAGCTG
GCGTAGCAAGATACCTGTGTTCCCTTACGCGCCCATTTTATTTGCTCCGT
GGATCCTCTGCTGTTAGGCGGAGGCATCCCCCGGGGAACTGGTCGGGCTT
CAGCTCGTGGCGGCACCTGCGATCGACACGGAATCATCGCCCCAGGTGCG
AGATCCGATATGCACCAATGAAGGAAACACGTTCGGGTACGAAATTGTTT
TGCCACCTGTTGACGTCGCAGGTTGTTTCGTGACGAAAACTTCTTTTATG
CTCCAACCCGTCGCCCAGTGGACGCTTGGTCGGCTCTACCGGCGATCAAC
ATGTCATGTTTGTGGTGAAATCCGACGGGACTTAAAGTTTGCCATCGAAG
CTCCGCGTGTGTCTTCCAACTTTCACGGCATAGGTGACGATGTGAAACCG
CTCGCGCTCATATGTGTCTGGTACAAGCAGGCGGTTCGGATCGGTAAGAA
ACTCAGGTCCTTGGACGCCAAGATGTACGGGGCTTACTGGTGCACTCACT
GCTTCAACCAAAAGGAAATGTTGGGCAAGCAGGCGATGGCGAACGTCAAA
TACATCGAATGGTAAGCACGGAGGGGAGCTAAAAACTGCCGTTTTGGGGG
TGGATGTGCGTGCGTAGGCAACGCTTCGCCGTCGACGCTTCGCACATGGG
GATGAGTGGACCCAGGCTTCATGATTTTGGTGGGGTGGAGGCAAGTTACC
TCCGTTTCAGTGGCCGCGATGTAGGTTTGCACTTAAAATGGCAAGCACCT
GAGTAATGGTGCCGGCGTGCTCCATTCAGTGCTGTGCCCCTTCCGAAGAT
TTCCTGCGCGACAAATTCCAACAAATTTGCGAAGCTGGTGCTCCAGCGGT
CTTGACTGACGGTGATGCACCACGGCGGTAGATTACTGCCGAGGCTATCT
ATCCACGGACCCAAATTGTGTCAAATGCTAGCCACAACAGCGCTTGCACT
CTGCGATCCAAAGAAACTTGGCAGAGACTGGCCAATTGAAACACCAAAAT
CGCCTCAAGAAGCGGCGACCTCAGTCGTCGACGAGTCCAATTTTCCGACG
ACGGGGGCGCGTTGCACGTAGACCGATTGGCGTGACTTGCTGCAGTCACC
GACTGTATCACTAAGTGGAAGCACAGCAATTACTCATCGTAAAGTAGCGA
GAAGAATGGCCAAGTGTCGTTGGAGAGCAGCGTTCAAGCACGGTCATCTC
GCCGATGTTGCTAAACGGGATATACGAAGGTAAGGGTGGTTTATGGCATC
GGATTCTCCTTTAATACTGCTGTTGTCCAGCACTTCCGACTACATGGTAC
CACGTTGAGCAGACAGGGTATGCACGACTTGCTTTTGAGCTGGGTTAAGG
ATTTTTCTCGAGGGCTTGGACATGTTTCCGTGGGCTTTGTCAACGGTGGT
CTGAAGAGTTCTGTGGCACAGACCGCGCGCAGAACTGCGGTGGGTGCTAG
AAACTATTCAAGGATGGGCAACGAGCGGAAGGAAGGTCTTCCTGTATTGA
ATCAGTCCGTCGAAAGACTCTTGGAGAAAACAGTTACCTTGAAAGTTCTC
GAGCAGGCAGCGTGGAGAAAACTTTTTCCGTAGACGACGGCGTCTTCTGT
GTCCCCTTGGTGTCAAATATTGAGTTCGATTGCTGCAATCTCGATTGGTC
ACCAGTGTTTCACGAATCATTTTCGAGACGCCTTCCATGAAGTCCATGGA
CACCCGCCCTACCACGCCCCGGTAGTCATCCTTCCACAGAGCTTTTTGAG
CTTCAACAATCGCCTCGACTTATTGTGAAATACACTGCGTTTTTATGCGG
TATGGCGTCCACGTCGGTTGACGGATCATGTTTTCCTTGGAAAAAGGGGT
GAAGTGTGTACCCGAGTTCCGCGAGGTGTGTCACCATGAAGTACCATCGG
CCGTATCGTTTTTGGTGAAGGGCAACTCTTTCCCCGCTCGCCTTGACCGA
GCCCCGCCCGACGGAAATAAGCATGTTATCGCTTCTCAGGCGCGAAGTTT
TTCGTCCTCTCTTCTTGAATCGGATCTCGCACGGCCACGTCAATGGATTG
GCTTCCGTTCCAGTGTATCTTTTCCAGCTCGACCAAGAGGTGCCGTTTGC
ACCGTAGCTTTTTCTTTGTCGGCGACGCACCTCCCTTGGGCCTTCTCAAG
TCTCCCTTAATATTCAGGTCAACAGCGAAGACGACACAAACACCCTTTGA
AGCAGGACTCACCTCCCTTGAGCCTTCTCAACTCTCCCTTAATATTCAGG
TCAACAGCGACGACGGCACAACACCCTTTGAAGCAGGACTCACCTTCCTT
GATTGAGCCTTTTCAAGTCTCCTCATACTGCTCAGGTCAACAGCAAAGCA
CGGAGAACACCCTATGGAACAGGACCGGAGGGGCCACGTGAAAGGCTCCG
ATTTTTCGATAACACTGACGACCGCACGACCATTGGACCTCCTCGTTCTT
TTGTGTTCGCGCAGCTCCAATCGCGGGGTGGACAACCAAGTCGAAATGTG
CAAGGCAGCCAACATCCCAGGGTTCCCCACGTGGGATATCGAGGGGAAAC
TGTACCCGGGAGAGCAGACTCTGGAGGAGCTCGAGCAGATCGTTGGCCTC
GCGCCGTTCAAAGGGTGAACGATGATGCTCGGCCGTTCCTCCTAGGGTGA
CATGCATCTGGTTGACTCGTATTTTTTCGTAATGCAAAGAATGGCCTTCA
GTTAATGGAGGAGGGGAAAAGGAGGCCACAGTCACGGCCGTCGTCGGAAC
TGAGCGGATTGGCTGCGATCGAGCGCCGGGGTTCGGACAAGAAAGGTGTA
GTACGGAGGTGGATGCGGCTATTAATAGCTCTCCTTTGGAATGCGGTGGA
ATGTTTGTTGCTAGACTTGCAGCCGTCTCGGGTGACTGAAGCACTCGGAT
GATTTGCACTACTCCGATAGAGCGAGCCGTGGAGAAGCCACTCTTCCCTG
AACGCACGCACCAAAAGTACGACTGTGCACGCAGAATCCGCTCTCAATAC
ATTCTGAACGGTTCAAACAGCTCTCGCGCGTAAATTATAGTCCAGTGCTG
AGTAGGGGCGGTGGAGAGAGGTTTTCTGTGCTCAAGGCAATCGCCCCACG
TGTACTTGTAGAGACTTCGCAGGGATACGCGTTGCAAAATGAAACGGTCT
TCACTTGGCAAACACACCTGTCCTGCTGTCTGCTGCTACAGTTCACACAA
GTCAGAATGCGCAGAGAGACAGATGGCGTTGTATCTAGG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig1:2114106..2125644+ >mRNA_P-fluviatile_contig1.162.1 ID=mRNA_P-fluviatile_contig1.162.1|Name=mRNA_P-fluviatile_contig1.162.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2526bp|location=Sequence derived from alignment at P-fluviatile_contig1:2114106..2125644+ (Porterinema fluviatile SAG_2381) ATGATGACAACGATGTCGGTGCGATCTCCGCCTTGCTCCGCGGGTGCCCT GATACGTGTGCTCGCGCCGCTGGCCCTCGTGGCTTTCACAATGATCCCCG GTAGCGACGCCTTCCTTACAAAAACCTGCGGGAGACCAAGCGTGAAATCT TTGCGATGTAGCAGCAGCAGCAGCGGCGGCCGTCTCGCCAGTGGTGGCGA CATGTGTCGGGGAGGGCAACCTCCGCGTTGCTGTGTCACCGGCCGAGGCA CAGGCCGCAGATGGAGTAAGGACGGGAGAGAAGCCGCAACGAGATTGAGA ATGGCCACCGGCGGTGTCCCCAATAATGATGACGGAGGTGCTGCAGATGA TGACAACGATGTCGGTGCGATCTCCGCCTTGCTCCGCGGGTGCCCTGATA CGTGTGCTCGCGCCGCTGGCCCTCGTGGCTTTCACAATGATCCCCGGTAG CGACGCCTTCCTTACAAAAACCTGCGGGAGACCAAGCGTGAAATCTTTGC GATGTAGCAGCAGCAGCAGCGGCGGCCGTCTCGCCAGTGGTGGCGACATG TGTCGGGGAGGGCAACCTCCGCGTTGCTGTGTCACCGGCCGAGGCACAGG CCGCAGATGGAGTAAGGACGGGAGAGAAGCCGCAACGAGATTGAGAATGG CCACCGGCGGTGTCCCCAATAATGATGACGGAGGTGCTGCAGCGTCGAGC TACAAGGCATGGCCGGCGATCAACCGAAAGGTGATCGGAGGGTTGGCCAG TCTCGGGGCGCTCGAGTCGGCATACCTCACGTACCAGAAGCTCAACCCGG CGGGGCTCGACCTGCTGTGCGGGGCTAGCGGGGGCTGTTTGGACGTGCTC AACGGACCTTACTCAAATGTGTTGCGTCGAGCTACAAGGCATGGCCGGCG ATCAACCGAAAGGTGATCGGAGGGTTGGCCAGTCTCGGGGCGCTCGAGTC GGCATACCTCACGTACCAGAAGCTCAACCCGGCGGGGCTCGACCTGCTGT GCGGGGCTAGCGGGGGCTGTTTGGACGTGCTCAACGGACCTTACTCAAAT GTGTTGGGGGTGCCCTTGTCGGCTTTCGGCACGCTCGGATACCTGACAGC GGCCGCGCTGGCTGTAGTACCCCTTTTCGTCAAGGGAGAGGCCTTCGACA AGGCAAGCCGCTCCTTGTTGCTGGGGGTGCCCTTGTCGGCTTTCGGCACG CTCGGATACCTGACAGCGGCCGCGCTGGCTGTAGTACCCCTTTTCGTCAA GGGAGAGGCCTTCGACAAGGCAAGCCGCTCCTTGTTGCTGGTGGTTTCTA CCGCCATGGGGGTGTTCTCCGTCTACCTGCTGAGCCTGCTCAAGTTCAAG ATCGGCTACCCGTGCCCGTGGTGCCTCACATCGGTGGTTTCTACCGCCAT GGGGGTGTTCTCCGTCTACCTGCTGAGCCTGCTCAAGTTCAAGATCGGCT ACCCGTGCCCGTGGTGCCTCACATCGGCCGGCCTGTCGCTGTCGATGTGC ACCGTGGCGTGGATGAGGAGAGCGGTCCCGGAGCGGACCAAAGCGGTGGT CGTCGGCGCCTGCACTACGCTCATCACGGCCTTCGCGTGTTTGACCATCT TCGTCGTCACTGAGACAGCCCTCGACATCCGACAGGCCGGCCTGTCGCTG TCGATGTGCACCGTGGCGTGGATGAGGAGAGCGGTCCCGGAGCGGACCAA AGCGGTGGTCGTCGGCGCCTGCACTACGCTCATCACGGCCTTCGCGTGTT TGACCATCTTCGTCGTCACTGAGACAGCCCTCGACATCCGACAGGCGGAG GCATCCCCCGGGGAACTGGTCGGGCTTCAGCTCGTGGCGGCACCTGCGAT CGACACGGAATCATCGCCCCAGGCGGAGGCATCCCCCGGGGAACTGGTCG GGCTTCAGCTCGTGGCGGCACCTGCGATCGACACGGAATCATCGCCCCAG CAGGCGGTTCGGATCGGTAAGAAACTCAGGTCCTTGGACGCCAAGATGTA CGGGGCTTACTGGTGCACTCACTGCTTCAACCAAAAGGAAATGTTGGGCA AGCAGGCGATGGCGAACGTCAAATACATCGAATGCAGGCGGTTCGGATCG GTAAGAAACTCAGGTCCTTGGACGCCAAGATGTACGGGGCTTACTGGTGC ACTCACTGCTTCAACCAAAAGGAAATGTTGGGCAAGCAGGCGATGGCGAA CGTCAAATACATCGAATGCTCCAATCGCGGGGTGGACAACCAAGTCGAAA TGTGCAAGGCAGCCAACATCCCAGGGTTCCCCACGTGGGATATCGAGGGG AAACTGTACCCGGGAGAGCAGACTCTGGAGGAGCTCGAGCAGATCGTTGG CCTCGCGCCGTTCAAAGGGTGACTCCAATCGCGGGGTGGACAACCAAGTC GAAATGTGCAAGGCAGCCAACATCCCAGGGTTCCCCACGTGGGATATCGA GGGGAAACTGTACCCGGGAGAGCAGACTCTGGAGGAGCTCGAGCAGATCG TTGGCCTCGCGCCGTTCAAAGGGTGA back to top
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