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Homology
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: D7FS91_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FS91_ECTSI) HSP 1 Score: 302 bits (774), Expect = 1.360e-95 Identity = 169/272 (62.13%), Postives = 188/272 (69.12%), Query Frame = 1
Query: 337 GSLNMVASGSGSRSSTLMGIMKDQTRVDESAAVSAPPSPSLRPLLPAERGINTAMNSFNAGVVNVLKGLMIQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDVSSER 1152
G L MVAS + ++ +Q+ S + + SP RP LPAER +N MN FNAGVV+ LKGLM+QYYGERTYARFYALETIARVPYFGYLCVLHLYETLG+WRQAEYLKVHFAESYNELHHLLIMEELGGN+LFRDRWFAQHAAFFY V LYLSNPRNAYNLNQHVEEHAFSTYD FL++N+E L+QQPAP+ + G L VRNDEWEHVKTMKAMQ DV +R
Sbjct: 29 GRLGMVASNPMDVAPKGRPLLDEQSPTSASDSSATVVSPG-RPRLPAERNVNAFMNDFNAGVVDFLKGLMVQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGKWRQAEYLKVHFAESYNELHHLLIMEELGGNVLFRDRWFAQHAAFFYFFVVVGLYLSNPRNAYNLNQHVEEHAFSTYDSFLSDNQEALKQQPAPEASL--------------------GCL---------------------VRNDEWEHVKTMKAMQLDVPPQR 258
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: A0A835Z1V4_9STRA (Putative alternative oxidase n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z1V4_9STRA) HSP 1 Score: 288 bits (736), Expect = 4.590e-90 Identity = 143/226 (63.27%), Postives = 168/226 (74.34%), Query Frame = 1
Query: 478 ERGINTAMNSFNAGVVNVLKGLMIQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDVSSERR 1155
+ + T S N +V LKGL+ YYG+R YARFYALETIARVPYF YL VLHLYETLG WRQA+YLK+HFAES+NELHHLLIMEELGGN F DRW AQH AFFY VLY++NP+NAYNLNQHVEEHAF+TYDKFL + +EL+ PA +A +YY +DKLYVFNGLH+ N F+E D ARP + L+D F +RNDE EHVKTM AMQ+ + R
Sbjct: 13 DAAVRTEGGSINKTLVGFLKGLLDTYYGQRDYARFYALETIARVPYFSYLSVLHLYETLGWWRQADYLKIHFAESWNELHHLLIMEELGGNDKFFDRWLAQHTAFFYYWFVCVLYITNPQNAYNLNQHVEEHAFATYDKFLKAHGQELKNAPATPVAKQYYRKDKLYVFNGLHNSNQD----FDELDQARPEVETLYDVFQCIRNDEAEHVKTMAAMQDQAAERAR 234
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: B8CC74_THAPS (Uncharacterized protein n=1 Tax=Thalassiosira pseudonana TaxID=35128 RepID=B8CC74_THAPS) HSP 1 Score: 230 bits (587), Expect = 2.260e-67 Identity = 125/225 (55.56%), Postives = 155/225 (68.89%), Query Frame = 1
Query: 487 INTAMNSFNAGVVNVLKGLMIQ--YYGE-RTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQE--DVSS 1146
++ ++ N + LKG + + GE R YARFYALETIARVPYF YL VLHLYETLG+WR+ +YLK+HFAES+NE+HHLLIMEELGG+ F DR+ AQH AF Y + LYL NP AYNLNQ VEEHAF+TYD FL EN E L+ +PAPK+A +YY +Y+F+ E +L RP I NL+D FVA+R+DE HVKTM+ +Q DVSS
Sbjct: 66 LSDSVKEANRFAIGFLKGTIFDTFFVGEDRAYARFYALETIARVPYFSYLSVLHLYETLGKWRRVKYLKLHFAESWNEMHHLLIMEELGGSERFFDRFLAQHCAFGYFLIVITLYLINPVQAYNLNQDVEEHAFATYDTFLKENAEMLKTKPAPKVAIEYYRHGDMYMFDEFQT----------ECELRRPEINNLYDVFVAIRDDEMAHVKTMEKLQTELDVSS 280
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: K0SXL9_THAOC (Uncharacterized protein n=1 Tax=Thalassiosira oceanica TaxID=159749 RepID=K0SXL9_THAOC) HSP 1 Score: 228 bits (580), Expect = 9.160e-67 Identity = 122/221 (55.20%), Postives = 152/221 (68.78%), Query Frame = 1
Query: 487 INTAMNSFNAGVVNVLKGLMIQYYGE---RTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDV 1140
I+ A+ N ++ LK + + E R YARFYALETIARVPYF YL VLHLYETLG+WR+A+YLK+HFAES+NELHHLLIMEELGG+ F DR+ AQH AF Y ++LY+ NP AYNLNQ VEEHAF TYDK+L +NEE+L+ PAPK A YY +Y+F D G F RP I NL+D FVA+R+DE HV+TM+ +Q ++
Sbjct: 36 ISDALKELNKSSIDFLKSTVFDSFFEGEDRAYARFYALETIARVPYFSYLSVLHLYETLGKWRRAKYLKLHFAESWNELHHLLIMEELGGSERFLDRFLAQHIAFGYYAVVILLYVLNPVQAYNLNQDVEEHAFETYDKYLKDNEEKLKNLPAPKAAIDYYVDGDMYMF-----DEFQTGCEFR-----RPKIENLYDVFVAIRDDEAAHVQTMEQLQTEL 246
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: A0A7S2R6W0_9STRA (Hypothetical protein n=1 Tax=Eucampia antarctica TaxID=49252 RepID=A0A7S2R6W0_9STRA) HSP 1 Score: 224 bits (571), Expect = 6.050e-65 Identity = 128/217 (58.99%), Postives = 150/217 (69.12%), Query Frame = 1
Query: 499 MNSFNAGVVNVLKGLMIQ--YYG-ERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDV 1140
M FN V LKG + + G +R YARFYALETIARVPYF YL VLHLYETLG+WR+A Y+K+HFAES+NE+HHLLIMEELGG F DR+ AQH A Y V LY+ NP AYNLNQ +EEHAFSTYD F+ EN EEL + PAP IA +YY LY+F D+ G T E R RP + L+D FVA+R+DE EHVKTM +QEDV
Sbjct: 72 MKEFNKFTVGFLKGSIFDNIFKGKDRDYARFYALETIARVPYFSYLSVLHLYETLGKWRKANYIKIHFAESWNEMHHLLIMEELGGADNFFDRFLAQHIAVVYYWIVVCLYIWNPIMAYNLNQAIEEHAFSTYDVFVKENPEELGKYPAPAIAKEYYRDGDLYMF----DEFQTG--TCEPR---RPKMVTLYDCFVAIRDDEAEHVKTMAYLQEDV 279
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: A0A7S1GJA0_CYCTE (Hypothetical protein n=1 Tax=Cyclophora tenuis TaxID=216820 RepID=A0A7S1GJA0_CYCTE) HSP 1 Score: 222 bits (565), Expect = 5.010e-64 Identity = 124/221 (56.11%), Postives = 148/221 (66.97%), Query Frame = 1
Query: 487 INTAMNSFNAGVVNVLKGLMIQ--YYGE-RTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDV 1140
+ M FN V +K L + GE R +ARFYALETIARVPYF YL VLHLYET+G+WRQA YLK+HFAES+NELHHLLIMEELGG + DR+ AQH A Y LYL NP AYN+N +EEHAF TYD+FL ++EEEL+ Q AP IA +YY LY+F+ + T E R RP I NL+D FVA+R+DE EHVKTM +Q DV
Sbjct: 68 LGNEMQEFNKQAVGFVKNLFFDSVFSGEGRDFARFYALETIARVPYFSYLSVLHLYETIGRWRQANYLKIHFAESWNELHHLLIMEELGGADRWFDRFVAQHVAVGYYWVVAFLYLYNPTLAYNINHAIEEHAFLTYDQFLKDHEEELKNQAAPTIAKEYYRDGDLYMFDEMQTG------TCEPR---RPEIKNLYDVFVAIRDDEAEHVKTMAFLQTDV 279
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: UPI00201FF935 (hypothetical protein n=1 Tax=Chroococcidiopsis sp. CCMEE 29 TaxID=155894 RepID=UPI00201FF935) HSP 1 Score: 218 bits (555), Expect = 2.680e-63 Identity = 114/210 (54.29%), Postives = 147/210 (70.00%), Query Frame = 1
Query: 520 VVNVLKGLMIQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDVSSE 1149
+VN L+ L+ +Y R Y RF+ LET+ARVPYF Y VLHLYET+G WR+A++LKVHFAES+NELHHLLI E LGG+ + DR+ A AF Y V++Y+ +PR+AYN Q VEEHA+ TYD FL E+ EEL+ PAP+IA KYY + LY+F+ + P +ER RP+I NL+D FVA+R+DE EHVKTM A Q+ S E
Sbjct: 5 LVNFLEALLNTFYRSRLYPRFFVLETVARVPYFAYTSVLHLYETMGWWRKADWLKVHFAESWNELHHLLIAESLGGSRYWIDRFVAHTGAFVYYWIIVLVYIFSPRSAYNFMQQVEEHAYHTYDAFLKEHGEELKTLPAPEIAIKYYREGDLYMFDEFQTTHPP-----QER---RPIIQNLYDVFVAIRDDELEHVKTMIACQQPDSQE 206
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: A0A6S9CEJ6_9STRA (Hypothetical protein n=2 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A6S9CEJ6_9STRA) HSP 1 Score: 220 bits (561), Expect = 3.110e-63 Identity = 121/221 (54.75%), Postives = 148/221 (66.97%), Query Frame = 1
Query: 487 INTAMNSFNAGVVNVLKGLM--IQYYGE-RTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDV 1140
+N + FN +V +K ++ I Y GE R YARFYALETIAR PYF YL LH YET G WR+A YLK+HFAE +NELHHLLIMEELGG + DR+ AQH A Y + +Y NP AYNLNQ VEEHA++TYD+FL + L++QPAP++A YY LY+F+ D T E R RPVI NL+D FVA+R+DE EHVKTMK +Q DV
Sbjct: 86 LNEDIEEFNRNIVGFIKKIVFDILYRGEGREYARFYALETIAREPYFAYLGALHFYETAGVWRKANYLKIHFAEEWNELHHLLIMEELGGADKWIDRFIAQHIAVAYYWIVLAMYFYNPTLAYNLNQAVEEHAYATYDQFLNKYSAGLKEQPAPQVALDYYRDGDLYMFDEFQTD------TCESR---RPVINNLYDVFVAIRDDEAEHVKTMKLLQADV 297
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: UPI001684229E (plastoquinol terminal oxidase n=1 Tax=Leptolyngbya sp. FACHB-261 TaxID=2692806 RepID=UPI001684229E) HSP 1 Score: 217 bits (552), Expect = 4.030e-63 Identity = 114/205 (55.61%), Postives = 143/205 (69.76%), Query Frame = 1
Query: 520 VVNVLKGLMIQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQE 1134
V+NVL Y +R + RFY LET+ARVPYFG+L VLHLYETLG WR+A++LKVHFAES+NELHHLLIME LGGN + DR+ AQHAA Y V LY+ +PR+AY+ + +EEHAF TYD+FL NE +L+ QPAP++A YY LY+F+ + PG RPVI L+DTFV +R+DE EHVKTM A Q+
Sbjct: 12 VINVL-------YRDRPFPRFYVLETVARVPYFGFLSVLHLYETLGAWRKADWLKVHFAESWNELHHLLIMESLGGNQKWVDRFLAQHAALVYYWIVVGLYILSPRSAYHFMELIEEHAFHTYDEFLKLNEADLKTQPAPQVAIDYYRDGDLYMFDEFQSCSVPGD--------RRPVIETLYDTFVNIRDDEAEHVKTMVACQQ 201
BLAST of mRNA_P-fluviatile_contig1.4.1 vs. uniprot
Match: A0A252DRM1_9NOSO (Plastoquinol terminal oxidase n=3 Tax=unclassified Nostoc TaxID=2593658 RepID=A0A252DRM1_9NOSO) HSP 1 Score: 217 bits (552), Expect = 5.200e-63 Identity = 119/239 (49.79%), Postives = 155/239 (64.85%), Query Frame = 1
Query: 520 VVNVLKGLMIQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEYLKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYXXXXVVLYLSNPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLYVFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAMQEDVSSERRP*RGMEFIGYILVDGTKIRCVKSMIGN 1236
+V+VL ++ Y +R Y RFY LET+ARVPYF YL VLHLYETLG WR+A++LKVHFAES+NELHHLLIME LGG + DR+ A+ A Y V LY+ +PR+AY+ + VEEHA+S+Y KFLT+NE EL+ QPAP+IA YY LY+F+ + P ER RP I NL+D FVA+R+DE EHVKTM A Q+ + + F ++ + KS +GN
Sbjct: 5 LVSVLVFVVNTIYRDRPYPRFYVLETVARVPYFSYLSVLHLYETLGFWRKADWLKVHFAESWNELHHLLIMESLGGAAFWGDRFLAKTTALVYYWIIVALYMISPRSAYHFMELVEEHAYSSYHKFLTDNETELKAQPAPEIAISYYRNGDLYLFDEFQTSHTPA-----ER---RPAIDNLYDVFVAIRDDEMEHVKTMVACQKSNAQ-------LSFKSPHSLEAETVMLEKSAVGN 228
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 | 304.7 |
| Seed ortholog evalue | 5.8e-80 |
| Seed eggNOG ortholog | 2880.D7FS91 |
| KEGG rclass | RC00061 |
| KEGG ko | ko:K17893 |
| KEGG Reaction | R09504 |
| GOs | GO:0003674,GO:0003824,GO:0005575,GO:0005622,GO:0005623,GO:0006629,GO:0006720,GO:0006721,GO:0006996,GO:0008150,GO:0008152,GO:0008299,GO:0008610,GO:0009058,GO:0009579,GO:0009657,GO:0009916,GO:0009987,GO:0016043,GO:0016108,GO:0016109,GO:0016114,GO:0016116,GO:0016117,GO:0016491,GO:0016679,GO:0016682,GO:0042440,GO:0044237,GO:0044238,GO:0044249,GO:0044255,GO:0044424,GO:0044464,GO:0046148,GO:0055114,GO:0071704,GO:0071840,GO:1901576 |
| EggNOG free text desc. | ubiquinol:oxygen oxidoreductase activity |
| EggNOG OGs | 2CMS2@1,2QRMM@2759 |
| EC | 1.10.3.11 |
| COG Functional cat. | C |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko01000 |
| Hectar predicted targeting category | signal peptide |
| Ec32 ortholog description | Alternative oxidase |
| Ec32 ortholog | Ec-05_004910.1 |
| Exons | 8 |
| Model size | 1825 |
| Cds size | 1083 |
| 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 |
| 1622815271.7468827-UTR-P-fluviatile_contig1:41589..41667 | 1622815271.7468827-UTR-P-fluviatile_contig1:41589..41667 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 41590..41667 + |
| 1693561324.3507352-UTR-P-fluviatile_contig1:41589..41667 | 1693561324.3507352-UTR-P-fluviatile_contig1:41589..41667 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 41590..41667 + |
| 1622815271.8507602-UTR-P-fluviatile_contig1:53586..54250 | 1622815271.8507602-UTR-P-fluviatile_contig1:53586..54250 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 53587..54250 + |
| 1693561324.587341-UTR-P-fluviatile_contig1:53586..54250 | 1693561324.587341-UTR-P-fluviatile_contig1:53586..54250 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig1 53587..54250 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815271.7566707-CDS-P-fluviatile_contig1:41667..41921 | 1622815271.7566707-CDS-P-fluviatile_contig1:41667..41921 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 41668..41921 + |
| 1693561324.430669-CDS-P-fluviatile_contig1:41667..41921 | 1693561324.430669-CDS-P-fluviatile_contig1:41667..41921 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 41668..41921 + |
| 1622815271.7649992-CDS-P-fluviatile_contig1:45969..46175 | 1622815271.7649992-CDS-P-fluviatile_contig1:45969..46175 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 45970..46175 + |
| 1693561324.4455383-CDS-P-fluviatile_contig1:45969..46175 | 1693561324.4455383-CDS-P-fluviatile_contig1:45969..46175 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 45970..46175 + |
| 1622815271.773843-CDS-P-fluviatile_contig1:46612..46743 | 1622815271.773843-CDS-P-fluviatile_contig1:46612..46743 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 46613..46743 + |
| 1693561324.5068681-CDS-P-fluviatile_contig1:46612..46743 | 1693561324.5068681-CDS-P-fluviatile_contig1:46612..46743 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 46613..46743 + |
| 1622815271.7834768-CDS-P-fluviatile_contig1:47557..47655 | 1622815271.7834768-CDS-P-fluviatile_contig1:47557..47655 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 47558..47655 + |
| 1693561324.521803-CDS-P-fluviatile_contig1:47557..47655 | 1693561324.521803-CDS-P-fluviatile_contig1:47557..47655 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 47558..47655 + |
| 1622815271.7990398-CDS-P-fluviatile_contig1:48220..48311 | 1622815271.7990398-CDS-P-fluviatile_contig1:48220..48311 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 48221..48311 + |
| 1693561324.5304132-CDS-P-fluviatile_contig1:48220..48311 | 1693561324.5304132-CDS-P-fluviatile_contig1:48220..48311 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 48221..48311 + |
| 1622815271.8101897-CDS-P-fluviatile_contig1:50296..50380 | 1622815271.8101897-CDS-P-fluviatile_contig1:50296..50380 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 50297..50380 + |
| 1693561324.5379076-CDS-P-fluviatile_contig1:50296..50380 | 1693561324.5379076-CDS-P-fluviatile_contig1:50296..50380 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 50297..50380 + |
| 1622815271.8233762-CDS-P-fluviatile_contig1:51081..51222 | 1622815271.8233762-CDS-P-fluviatile_contig1:51081..51222 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 51082..51222 + |
| 1693561324.554229-CDS-P-fluviatile_contig1:51081..51222 | 1693561324.554229-CDS-P-fluviatile_contig1:51081..51222 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 51082..51222 + |
| 1622815271.836116-CDS-P-fluviatile_contig1:53508..53586 | 1622815271.836116-CDS-P-fluviatile_contig1:53508..53586 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 53509..53586 + |
| 1693561324.5733032-CDS-P-fluviatile_contig1:53508..53586 | 1693561324.5733032-CDS-P-fluviatile_contig1:53508..53586 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig1 53509..53586 + |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig1.4.1 >prot_P-fluviatile_contig1.4.1 ID=prot_P-fluviatile_contig1.4.1|Name=mRNA_P-fluviatile_contig1.4.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=361bp
MTQNACVRRSLALRAAAALSILLLSPSPNQRASAFSLQLPRTTAARLREG RDAGGSGRPLKAAYCGVRRKPSDDVGDRGFRRSAGMGSLNMVASGSGSRS STLMGIMKDQTRVDESAAVSAPPSPSLRPLLPAERGINTAMNSFNAGVVN VLKGLMIQYYGERTYARFYALETIARVPYFGYLCVLHLYETLGQWRQAEY LKVHFAESYNELHHLLIMEELGGNLLFRDRWFAQHAAFFYFFVVVVLYLS NPRNAYNLNQHVEEHAFSTYDKFLTENEEELRQQPAPKIAAKYYGQDKLY VFNGLHDDNAPGGLTFEERDLARPVITNLFDTFVAVRNDEWEHVKTMKAM QEDVSSERRP* back to topmRNA from alignment at P-fluviatile_contig1:41590..54250+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig1.4.1 ID=mRNA_P-fluviatile_contig1.4.1|Name=mRNA_P-fluviatile_contig1.4.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=12661bp|location=Sequence derived from alignment at P-fluviatile_contig1:41590..54250+ (Porterinema fluviatile SAG_2381) CATCAAGCTTCGATTCGACTGCCGCCCCACACAACCTCATCTCCCTCTTG
TGTATCTCTCCTCCACTGCTCAATAAAAATGACTCAGAACGCTTGCGTGC
GTCGTTCACTAGCTTTGCGAGCGGCTGCAGCGCTGTCTATCCTCCTCCTA
TCCCCGTCACCAAACCAGAGAGCTTCCGCTTTCTCCTTGCAGCTTCCGCG
GACGACGGCAGCGAGACTCCGGGAGGGACGGGACGCAGGAGGGAGTGGCA
GGCCATTGAAAGCAGCCTACTGCGGGGTACGGCGGAAACCTTCTGATGAT
GTGGGAGATCGCGGATTTAGAAGGAGCGCCGGGTGAGTGGAGGCGGAGTG
GATGTCGCCGAGCGGTGTCTTGCTTGCAGAAGAAGAGAATGACAGAGCAA
AGCGAGGAAGAGAGAGCGACCCCTCTCAGGGAGGGAGCCTCGACGGAGTG
GTAGATGGCGTACGTGGGACGTATGAAGTCGGTGATGGCACGTGGCCGAT
GAGCTCTACGTACATCGATACGCCTATTCGCTTTCCCACACCACGAATGC
TGTTGCAAATGCGCGACTTGTTTCCGTGGAAAGATTGGAAAGATCATGCA
CCCCAACAGAAACGGCCCATACCGTCCGGCGGTATCGTTGCCACGCGCGG
CGGCGGCGGCGCGTCGATAACCAACCGCTGTCCTCGACGTCTGGCGTGTC
GGCTGGGCAACTTCATCGACCGTGCATTCCACTTCGATATTCCCATTTGC
TTCTTCGTAGGCTCGCGGGAAGTGCGGGATGTGTACGAGGTGTGGTCTGA
AAGTTGTTGTTGATGTTTACGCTGAACCGCAACATTCCCTCTCGCCGGGG
GCACCGGAGCCGCGTCCCACTCCACACTCGCAGAAGCAGGCACGCACCGT
AGCAGGCGCGCGTTCTGCTCGTCTGTCGGGTTCGCCAAGGGGAGGGGAGG
GAGAACCATAGCTTCACGGTTTTTGCTGTTCGCGGCGTGATTGTGAAAAC
TCTTAAGCTGTTTTCAGTTTGTTTTGTAGCTCGCTTGTGGGCTGGCTAAG
AGCCAGAGATTTCAACGCGTTACTTCCTCTCTTCCTGATGCGAATCCCCG
CACGCGCAGCCTCGCCCCGGCTTTTTGCGACCTACTCACCACTCACAATG
AAGGCCAGTACCGCATGTGGAAGGTCGGGGCGACTGCGCGAGAAATACAG
GAAGAAAACGGCCCCTTTGTGTCCTTCCTCATGAAGCATGCTTCCATCAT
TTCGTGGAGGCACGTGTACTATCATATGTCAGGCATGAAAACGAGTGTTC
CGTCATCACGGACGGTCAGGATACGCTTCCCTTGTAAGGGTAGTATTCAC
ACCACCCCTGTTGTCTCGAGTGTTTTCCCTGTTCGTGGGCAACCGGAACC
CGACCGGCTTGCGGCCGGTAGACAGCCCTTCTTTTTTCCAACAATCTTCT
GAGCGTTTTGAGCGGACCAATCACCACCTCCGCCAAGGCTTGTCAGACCG
ACAGGCTTGCGGCGAGTAGACGGCCCTTTTTTCCCCCAATAGTCTTCTTA
GCGTGTTCAGCGGGCCAACCCACCACGTCCGCGATGACTTATCAGAAGTT
TCGAGCATTCGGTTATCAGCTGTTAGTTCGATCTGCCTCGGCACAAAAAG
CTTCTTTTTTCAGAATCGTGGACAACATCACGAGAAGAGAAAGAAGACAG
GGCCGGATTCGAACCCGCGACATTTCGCTTTCAAAGTGGACGCCTTGTCG
CCGACGCCATCGTGGAAACGAGTGTTCCGCCCTCGACAGACGGTCACGAT
ACGCTTCCGTTGCAAGGGTAGTATCCACAGAGGAGATTATTGTCTTTTCG
TCGCACCTCACGGCGGCCTATTCTGTCATTTCTCCAGCACGAGGGTCTCC
TCGCGGGGATTTATGTCGAGTTGCTGGTTGCCGTGTATCCACTATCCGAA
AGACCTTGAAATTGAAAAGTAATAGTTCAATACCGCATTTTTTCGAGTCA
GCGCACCGGTACAGTGGTTTCTCACACCCCGGAGTCATCGCACCGGGGTG
CGCAGAAAATACAAGGGTGTGACCAAAATCGATTTTCGCACTGGGCACGG
CGTCATGGCACCGGTGCAATTCCACCGATATGAAAGTTCGCTCCGGGCGT
ACGATTTCGAGCTACCGCATGTGGCTCGGGGCCACTGTCGGGAGAGGATC
GGCGTGCCACCCTTACCGTGTTCACACCATTGCGGAGCATGCGAAAGGAT
GAACCGAGTGGTTTTCACGTGCGGTCCTGAATCGGTGATTTTGAACAACC
AGTCAGACATTTTCCATACATCCCCGCAACGTGCAACCAACCGGTTGCGG
AAGGAACTCATCTGGTGTACCACTGGCGACAAGAACTACAGAGCGGAGGA
CACAGGAGACGAAAAGCCATGCGGAGACGACCTGATGCCCGCGTACGCAC
CAGGGAATCACATGGAAACCCGTAGCACGCCCCGTCATCTCACACACCCG
ACAGCGTACCGTATTGCTGGTTCCCAGCCGCTGCATTGGTACACAAAATC
CTATGAATCGCCTACTACTACGCCTTGCAGACGGCAAGGTACCTAAACAG
ATCACGCAACAGTTTGGTTCACAGCACGAAAAGACGGCATCTGCTGATCT
TGCGTGGTTCAGACAACACCGTGGGACGACGTTGTCGTATTCATTATCGC
ACCGGGGTTTCTTTATACAGCTCAATAGATCAGAGGTAGGGGTGCTGTAT
TGTTCAGTTTCGCGCCTATCAGGGTCATCGCACCGGAGAGGTGCGTTGGA
AATGCAAGATAGAATGATTTCATCGTATTTTCGCACAGGGCACGGTGACT
TCGCACCCCTCGGATTCGTCGCACCCCGTTGCGATGAAGAACCGAAAGAC
ATTGGTCTTGACCCATTCGCACTTCGGTCGCTGACTCGAAAAAATGCGGT
AGATCACATGAATATTTGAATACGTTGCGAGCCGGCGGGTATCTCTTGGA
CTATTCGACTACCGCGAACAACAACCGTCGCAGCATAGCAGCAGAGTTGA
GCAGCGCCAGCACGACATTGCCGATAAATATTATCCACCCCAAGCCACGT
GTTAGTCACTTTGTCTAATAGTGCACTCGACCATTCGGGTTCTTCATGTA
GAGCAAGGAGTAGTCGCAGTCCACCGCGGGATATTGTTGTTATTTACTCT
CCTGGGTGAAAAAACACCGTGTCGCGTTGTGTTTTGCTGTGCTGTCTTTT
TGCCGTGCCTAGTTGAGTCGGCTCTTGGTTTGAGTTCCCGCAGCGGCGAT
CGTGTACAGCAGTTTTCGTGACGATGAGTTTACCGGAGACTCATTTTGCT
CGACAGGTCCAGGCGTTGTCCTCGGACAAGTATCACCCCGCGACCGGCGC
TCGTCGCTTTTTTCTGTTCTTGTTTTTTTCGTCACGTTAAAGCAGCATCG
CTCGCAGGGGAGGTTCTCGCCGAAGCGCTGATCCGTTGTCGTACACAAAG
CTCTTGAAGAGTATTTTCGATTTCTTCGTCTCAAGTTGTGCGACCGACTT
CTCTCTCCGCACGCGTTGCAGAATCTGTCGCAACATATAAAAAGGGCGAA
CAGGAATGACCGAACCCACAGATTCCGCAACGAATCATCAACCGTTGACC
TGTGCGGGATCGGAATCTGACCGCGGTGTAGTGTAGATAGTTTCCGCAAA
TGTGCTGCAGGAGCACCGGCCATGACGCCCCCCTTTGTGTTGCCACTGTC
CGTTTCTTCAATGAAAAGCTCGGTGCAAAATCGGCCTCAAACCGGGTTAT
CCAGACATCACACGAGCCCCTCGATGTCCCACGCTGTACGAGATCGGAAT
GCGTCTGGAGATATTTGATCCGGGTCGCCATCTCGCCAATTTTGCAGGCC
AAATGATGAAATCGAGTAGAGCATCCCCCCTCTGCGCTCGCCTTGGCTTT
TGCAATTGTGCGATGTTTATATTGAACCCCTCACTTAACACGAAGGACTG
TCTCTTAATTTCATCGAGGTAAAATCTTCCTGCTGCTGCACGAAAGTCTC
GACAAATGTTCTTTGCTTTTCTGCCAGTGGGCTACTTTGCGTCTCTCCCA
CACTGCCAGCAGCCGAAAGGCCGAAGATCGATGTTTGACTACATATGGCC
ACGCGTTGTCGATGCAGTTGGCAGTGATGATGCATTCGTCGCCTGCCGCA
GAAGGTTGGCTCGTCACCTAGCCAATGTTAATATGGACGCGACCAAATAG
TCAAAGACCCATATCAAAGATGTCGCCTTGTGCTTGCCCTTTGATCTCTT
GCCCCTCACCCTTCCACGCTCAATTTCCCCGTGTCGGGGTGTCAACGTCG
AAACTCGCGTCAACTGCACGACTTCTGCAGAATGGGATCATTGAACATGG
TGGCCAGCGGGAGTGGCAGCAGGAGCAGCACCCTGATGGGCATCATGAAA
GACCAAACGCGGGTCGACGAGTCTGCAGCCGTTTCGGCGCCGCCATCGCC
TTCGCTGCGGCCGCTGCTGCCAGCCGAGCGCGGCATCAACACCGCCATGA
ACAGCTTCAACGCCGGCGTCGTGAACGTTCTCAAGGGTAAGCAAGCAGGC
CTCGTGTGCGTAAAGCAGGGACAGATGAAACGTTTTTGCCAAGACCCTCG
AACATCGTGCGTACGCCCTGCCGAGACCGTGATTGCCCGCGTCGCCGCGC
TTGATTCAACCTTCTGAATGCCTAAATGGAACGCCGGAATCTAAACATTT
TCAGCAGGCACGTTCCCCAGCAAAAATGCTCACGAGTCTGCGATGAAGTC
CTGGGCCCTGGTTTTAAAAGCATTTTACGAAAACGGTTTCCCTGAGGTGG
CTGTTACGCCGGTCCGCGAAACACGAGAAACTGTGCACCCCATCTCTTAG
AAAGCTTGCCACGGTTTTGCATTCGGTCCTCATCGTGTTGCTCGCGGGGC
TCATCCCGCCCCAACCCTCATTAATCGCCACGTTCGCAGTCAACCTCGCC
TCTTGTCTGTCCGCATTTGCTAGGCCTCATGATTCAATACTACGGCGAGC
GGACGTACGCGAGATTCTACGCGTTGGAGACGATCGCCCGCGTGCCGTAC
TTCGGGTACCTGTGCGTCCTCCACCTCTACGAGACGCTCGGGCAGTGGAG
ACAGGTGTGTCGGCGGAGCCCCCTCCCCTCAATTGTTGCCCCTCCTCGTT
CGGCTCTTGTTCTGCGTTCCGAGTCTTTGGTTGCTGTTGTTTTTTTCACT
CTATGTTCTCGTCGTCGTTGTTGTGTGTAAGTTAGGTGTGTTGGTTTTAA
TATTGCCACTTGCTTTGCCGTCGGCTGCGTTTGTCGGGTGTCCGACGCAC
ACGCGCTATCGTGTTCGTCTTGATCAGGACCCGCTGTCGTCGCCGCCCCC
CCTCATGACGTACCTTCCGTATTGGTTGAACGCCGTGCCCCTCTCCACTT
GTTGACTTCTGCTACCCACGGTATTTTCATTCGTGGCGAGGACATCTGCT
GCTGATGGCCTGTTGTTTGTGACAGTGTCGGTGGTTGTGGTAGTTGCTCG
TCTCCCGGCGTTTATGTTGCTGGCACAAGGTACCTCACCATTTCCAAGGA
TTTTGTTCCTCCCAGAACCCCCGCTCTCGACGCTCCCACTCAAGAATTGA
GTGAACCCAGATTGTGTCTCAGCCGGATATCACGCGTTTGCAGATGGTCT
CGTGGGTGAGACAATCTGGCAGACAAAAGACGTGATCGCAGGATCCGACC
CCGTTTCGCATCAAGCAGGGATTTCCGGGAGGGGCACTCCCCCCCCTCGC
CGATGCTGCTGCTAGTGTTGGCAGCCACTCCGCCTTCCATCCGACGTTCG
CTTGTCCTCAAAGGCGTACCCGTATGTCTGCGCTTGGTGTCGCGCACGCT
CTCGACGCTCCGTGGCTGACGATTGGTAACTTTTCATGCTGATACGTCTC
TCCGTGTTCAAAAAACAGGCTGAGTACCTGAAGGTGCACTTTGCCGAGAG
CTACAACGAGCTCCACCACCTGCTGATCATGGAGGAGCTAGGAGGGAACC
TGCTGTTCCGAGATAGGTACGTAAGCAGGACTGTGTGTGCTGCCAGCTTT
GGTTGTCCCTGTTGATTGTCGGCTCTTTGTTTTGAGCCGCTCGTACATCG
GGTACAGGGTGTTCGTCTTCGTCGAAACGGATCGTGGTGTTGCCCATTCC
TAGTATTGATAGCGTCATTATTCCTCTACCTCCCGAAAATCGCTGGCTGT
GGCTCTTTTCTTGTTTTCCCTTTACTGGAGCTCTCGCGCTCAGATCGACG
ATGGCCCTTGGTGAGGATGGTTTTATTCCTGAGCCAAGTGATTAATCATA
AATCGAGCGCCCAGAGTGTGCACAATCCACCGGGCGTTCTTGTGGTGTTG
TTTTTATTCACAGGTTGCTGGCGCGTCTCCTGTTTTGTGAACTTTTGCTG
GACCTTTCGCAATGTAACCGTTACTAGGTACGACAAGTTTCATATCTGCC
GCAGATCCCATTATGTTGCTCAACCTTCGATCGAGGTCTCCTTTGCGGAG
GTTTGCTTGCACGGTAAGCAACTTTGTGTCGGTGCCTTTTGTTCCCTCTC
TTTTGCCTCCCCATCCCATGCCCCCCGCAAGGTGGTTTGCGCAGCACGCC
GCGTTTTTCTACTTCTTCGTGGTGGTTGTGCTCTACCTGTCCAACCCCAG
GAACGCGTACAATCTCAACCAGGTCTGGCCTGGCTTGCCCTGCTGTCGTT
TCTCAGTCGTTTCCATGACGTCTTCGTGTTTTCGCCCCGCGTTGAAACAA
GGAAGTAGGGCGTTGCACTGACAGCCGATCCACCGTGTGTTGCATGTTTC
CGGCGCTGGGTCGGGAGTTGCGACCGAAAATTGTCGTTGGCGAAACCAGC
CCGCATAGAGCCCGAACAGACCCCCCCATCCTCCCCGCGCTACCGCTGGC
TCTCACCTCGGTGTTTGCCATCGGGATTGGGTTTTCGTCGCTTAGCAACG
ACGTTGTAAACCAAGCCAATTCACTTCGTGAACTCGGCAACCAGGTTACC
GTCTTTTTTTTTCCTCTGTTTTTTTTGGCGGTAACCATAATGGTGGTCGA
GAAGATCATGTTGTGCGGGGTGGAGAACCCTCACTCCGCGCAAGGGGGAT
GATCGCACCACGTTGTGATAAGATGGTCAAGCACTCTCGAGGCAGTTACA
CAGTGCTTACAACTGTCTCTGGAAGTGAAAGCACCAGAAAATAAATTAAG
CCATACGCAGCTGTCATCCGTATGCAAGGAAGTAAGCACAAGATGCCGAA
CACCCTTAGCAGGATGCAGCGCACCCTTTATGCGACTCGCCGAATACCTC
ACGGCGCTTCGCGCTTGGTGGTGTGAGAGCCTGGTCTGGTGAGAACCCGG
CGTGCTCCATCCCGGCTTTGTAGGGATGCGAGGTCAATGGTCTAACGACT
ACGGCATGCACGACTATGAGTACACCCCCCCCCATCCTCCCCCAGTAAGA
GCAGAGTTGGGGATTAACTCCTTAAGAACGAGAAGAGACAGGAGGAAGTT
GACATGGCAATACCGTATGGAAAACATGGGAAAGGAGAGGTTACCGAGAA
TACCTTGGGAGGCGAGATGGGTAAACAAGGCCAAGGGTAGACAACCCATT
GAGTGGGCTAAGGTTGTACAGGGAGTGTGGAGTGGGTTAGACATTGACGA
ACGGGAGACGACGGGAGCGGAAAGCTTAGAAGGGTACAAGAAGAGTATCT
CAGAAGCCTTTGAAAATCGAGAAGACCAGAGCTTGCGGAAAGAGACCAAG
GAAAAGGAGGTTCTAGAAGTGTACGGAAAGCTGAACGAAGGAATAGGATT
CAAGGAGTACCTGAACGGACCATTGGATGAAGGGACAGAGATGAAGGTCA
AATTTAGAACGGGCGACATTGACCTTCGGGAACGTAGAAGGAGGTTTAGG
AAGGTAGACAACGACGAAGACAAGTTCAAATGTGACTGCGGTGCCGAATG
CGAAGACCGGGCACATGCAGTTGCGGAATGCCCGTTATACGATCAGGAGA
GCGAAGGGTACATGGTTGAGCTGGAAAAAGTAGACAGTCGGTACAAAGAG
ATGTTTGAGGCATGGAACAACAAGGAGAAGACTGTAGCGGTACTCAGGTG
TAAGATGTGGCCCAGGAAGGACAGGTATACAGTAGACAGGTTAGGGAAAA
CATTTTTGAGCCACCTGGCAAAGTAGGAAGGAACGATTGGCCATCGGTGG
TCGATCCTGCGGGAAAATTGCTCCGTCCTCTCGAGGACGCGTGGTCAATG
GTGTAACAACTAAGGCATGCAAAACATGAGTACGccccccCCCCCCATCC
TCCCCCCCCATCGCCTGGCGTGTTTATTCCCCGCGTAGCGACCTTTGCGC
TGTGTTGGTAAGCAGTCTCCAAAATGACGCGCGACGCGCACGCACGGGCA
TTAAAAATCGGATTCATGCGCAACAATCCGATATTTGGAAACATCAACTG
GCCACCCAGCTAACCAACCCAGCTAACCAGAAGAAGCTGGGCGAGGGTGT
CGAGAGAGTCGTGCGCTTCCTTGGGGCACTTGTGCGGCAACAGGTTGTCC
TCGTGTACCTCGGTCCCGCCACTCGGCCCACCCGCCTCCCGTTCGTGCAC
GCCGTCTCTTTGTTTGCTACCTACGAAACAAAATTGGGTGTATTGGCGGA
AACACAGCACGTGGAGGAACACGCATTTTCCACTTACGACAAGTTTCTCA
CGGAAAACGAGGAGGAGCTCAGGCAACAGCCCGCGCCGAAGGCGAGTCTG
GCGTCCCGACTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGCCTGACTGAC
TGACTGACTGACTGACTGGCTGACTGAATGCCTTCATTAATGGCCAGTTG
ATGCCTCCGAATGTGTTTTCCCTTGCACATCATGCCCTTCGTTTTTCTGC
ATTGTTTCTCGCTGTCGGCGGCGTTGCCTTTGGTGGTGGTGATGCTACAG
TTTTCTTGCTGGGGCAGTCGATGTTGCGCCACGCCCGCTGCTGCTGTTGT
TGATTTGGTAGATTTGGCTAACTATAGGTGTTGGTAGATTTAGCTATGAG
GATTCTTTAGGACGCCACATGCGAGCCCCAGAGGGAGAACGGAAATGCAA
CGTCCTTAAGTCGGAAAATTAGTTCCAGGTACGGCGGGGGGGCCTGTGTT
GTGTTGCTTGAACAGAGCGGGTCCCCGGTAAAGTGCGGGTAAAATCGCTT
GGCGTGAAAGCTCCCTAGTTTGCTACTCGGAGTAGAATAAAACAAAAAAG
TGCTAGTGCTCGCTTTTTTGTGGTTGACACTTCCCGTCCTACCCCCTCAC
GCACAATAGCCCCCCACTGTACTGTTCAAACAACTTGACTCCCGGCCCCC
AACCTCTGCACCACGCTTGCGCTCGCCCCGTCAAATTTCCCGCGGCGCTG
GGTTGCGCCGAATTCTGTGGATCGATTGATGTGCCGCCGCAGATCGCCGC
GAAGTACTACGGCCAGGACAAGCTGTACGTGTTCAACGGTCTGCACGACG
ACAACGCCCCGGGAGGGCTGACCTTCGAGGAGAGGGACCTGGCGCGGCCG
GTGATCACAAACCTCTTCGACACGTTCGTCGCGGTGAGGGATTTTTTTTT
TTTTTGTTTTGGCGGGCCTTTTGAAAAACCAAGTTGCCAAGTACTCTTTT
TTTCCAGGTGCTTCACAAACGTTCTCGTGTCGGTAACTCCGTCGCGACGA
TTTATTCGCGATCGTATCCGTAGGTAAAAGTTCATCGGCTTTGGAGCCTC
AGGCACGGGGGTCATGAACACCTCAACCATCATCCATGTACGCAAAGAAA
CAAACGAGGGCAAATCAGCACATCAGAAGAGCCACCGACCACAGGACGAC
AAACGCGTTGAAATGCAAACAAAAAGTAGTGCACCCATGTAGCATGTCGT
CCCAGGCCGCAAGCTTTGCGGTGTCAAAACACAAGGGCGAGGGCGAGGTG
AGATGGGCGTTCCCGTGGGGCGAGGTTTGGTGTTTCGTGCAGGGCTTCAA
AGGTTGCGGGTGGGAGATGAGGTTGTACGTGGAAGGACTGAAATGAACCA
AAGACACACGGCACCACCGGAGGAGCCAGGCTGTCCCTACCAAGGGGACA
CACGGATGCCAATCCCGCTCGTCCTGCCCAAACTTCGACTAGGTCAAAAA
TTCGGGGGGGGATCGTCCTATAGCGGAAGGGGCATTATTTTCCGGTCATC
GCGGTCGGGGATGTTTGTTCTCCATCCCCGTCATTCCCCCACGAGTGCGG
GGGTACAGGGCGTGGTGGACTACATTGCGTGTACTTCGGCGGTTGACAAG
CGTGGGTGCCGCAGCAGGTAGGGGCGGGGAATGTTGACGTGTAGGCTTCC
GTTCAAGCGCGTTGTGCGTGGGTGCGTCCTCGCGGTGTTCGTGCTGCGGT
CTTCTTGGTCGTTGCCCAGGCTCAAGCGGCACCGGCCGAAGCCGAGGAAG
GCCGCAGCAGCGGCGAAGAGATAGCCGGTGGCGAGGACAACGATTCTCAG
GCCGAAGATACCGTGGGCTCCAAGCGCAACGACAGCGCGGCCACACTCAC
CGCAAAACGTGCTGGAAGCCAAAATATCGAGCGCAGCGATGCGGTTAAAG
CTGGCTAACACCCCCCGCTCCTCTCTGCTGCGACACCCACGCATTTCAAC
CGCCGAAAGCCCGCATAGGGCGCATCCAACCCTAGACACGCTTGAACCTA
TTCTTCAGGGCATCCCTCTTCTGAAAACCGAAGCGGGTGTCATGAGTGTC
GGGCTTCGGGTGGCCGGGGTACTCGCACTTACGTTTGGATTTCTAGTTTT
TCAATGGCTGCCAGACTGGGCGCGCTATCCTCCCGTTCGACACCATCAGT
GGAAACGACGGTTGCATCCTCGACATACGTCTGGGAAATCCGACCCTGGT
ACTGGTATTATCCATATTGCCACCCCCTTAATAGACCCCCCCCTCCCGCT
GGCTCTCACCTCGGTGTTTGCAATCGGGATTGGGTTTTCGTCGCTTGGCA
ACGACGTTGTAAAACAAGCCAATTCACTTCGTGAACTCGGCAACCAGGTT
ACCGTCTTTTTTTTCCTCTGGTTTTTTTGGCGGTAACCATAATGGTGGTC
GAGAAGATCATGTTGTGCGGGGTGGAGAACCCTCACTCCGCGCAAGGGGG
ATGATCGCACCACGTTGTGTTAAAATGGTCAAGCGCCCTCGAGGCAGTTA
CACAGCGCTTACAACTGTCTCTGGAAGTGAAAGCACCAGAAAATAAATTA
ACCCATACGCTGCTGTCATCCGAATGCAAGGAAGTAAGCACAAGATGCCG
AACACCCTTAGCAGGAGGCAGCGCACCCTTCATGCGACTCGCCGAATACC
TCACGGCGCTTCGCGCTTGGTGGTGTGAGAGCCTGGTCCGGTGAGAACCC
GGCGTGCTCCGTCCCGGCTTTGTAGGGATGCGAGGTCAATGGTCTAACGA
CTACGGCATGCACGACTATGAGTACACCCCCCCCCCTTAATAGAGCCTTA
TTCTTCGTGGCTGAGCAAGAAGACTCTTGAGAGTAACCGGACCCGTCTCT
TCGTCTACGCGCCATCGTAGGACGGAGGGCTCCGTCCTCGACGGACGTTT
GGAATGCCCGCTCCTTGAAGGGTAGTATCCCCATACACCATCTTCTCCAA
GCCGTGGAGACGGCGCGTCTGGTGGGCTGTCCCTCTTGCCATCGCGCGAC
TAAGAAATTGGTGGAGTAGTATGACCAGCATTGGGCTACAGCAACAACGA
CGGTACAGGTCGAGCGAGAGAAGAATTGTAGGAATATCACGTGGCGTGCT
GCCGTTGTGTAAACAGTAGTTCACCCGTCCGCCTCCCACGGATGTCGTTT
TTGGTTTCTCGGCCCGCAGGTGCGCAACGACGAGTGGGAGCACGTGAAGA
CCATGAAGGCCATGCAGGAGGATGTATCGTCGGAGAGGCGACCATAACGT
GGAATGGAATTCATCGGATATATCCTTGTGGATGGGACGAAAATCCGTTG
CGTGAAATCCATGATAGGCAATCCCTTGGCTTTGTTATTTCCGGGATCAC
TTTTGTTTGAACAATTAGCAAGCTCAGCCGTGGCTCTTCATTTTGGCAGC
AAACGAATCGTAGGACTGTCAGCGAGGAAGATGCGTTGTGGAACAACTGT
GGGTGGGTCGTGTGGAGTCGTGATATGGGTTGACGCTGGATTGGCATTTT
TGTTTTTTTCGCCGTTCTCGATCGTTCGATCGATGAGAAGAGGGGGCAGT
ATGGTATTCTTTCTCTGCTGCGCTTGTTCGCCGCTGCGTTGTTGGGCTGT
CGCGTGTATGTTTCGACGCAATCGTGACATTTTGATTTATTTTTGGCTTT
TCGAGGGGGGGTGCGGGGGAAGGGAGAGCAGAAAAGCCGAGAGGCAAGCT
GCCCGCTGGGGAGCAACCAAATATGTGCGTTTAGTGCTACAAGCGCGTTG
GATCCTGAAAATTGAACGCTTGTGGAATGTGGGTATGCACTCATGTGGTC
GTCCCGTTTGTTTTGGCACCAGTCCAGACACCAACTTCTTCCGGTGTCCT
TTTTCGACGGACCAACCGGGGTCACAGGACGAAGGACACAGTGGAATGCG
CGAACCAAAAG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig1:41590..54250+ >mRNA_P-fluviatile_contig1.4.1 ID=mRNA_P-fluviatile_contig1.4.1|Name=mRNA_P-fluviatile_contig1.4.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=2166bp|location=Sequence derived from alignment at P-fluviatile_contig1:41590..54250+ (Porterinema fluviatile SAG_2381) ATGACTCAGAACGCTTGCGTGCGTCGTTCACTAGCTTTGCGAGCGGCTGC AGCGCTGTCTATCCTCCTCCTATCCCCGTCACCAAACCAGAGAGCTTCCG CTTTCTCCTTGCAGCTTCCGCGGACGACGGCAGCGAGACTCCGGGAGGGA CGGGACGCAGGAGGGAGTGGCAGGCCATTGAAAGCAGCCTACTGCGGGGT ACGGCGGAAACCTTCTGATGATGTGGGAGATCGCGGATTTAGAAGGAGCG CCGGATGACTCAGAACGCTTGCGTGCGTCGTTCACTAGCTTTGCGAGCGG CTGCAGCGCTGTCTATCCTCCTCCTATCCCCGTCACCAAACCAGAGAGCT TCCGCTTTCTCCTTGCAGCTTCCGCGGACGACGGCAGCGAGACTCCGGGA GGGACGGGACGCAGGAGGGAGTGGCAGGCCATTGAAAGCAGCCTACTGCG GGGTACGGCGGAAACCTTCTGATGATGTGGGAGATCGCGGATTTAGAAGG AGCGCCGGAATGGGATCATTGAACATGGTGGCCAGCGGGAGTGGCAGCAG GAGCAGCACCCTGATGGGCATCATGAAAGACCAAACGCGGGTCGACGAGT CTGCAGCCGTTTCGGCGCCGCCATCGCCTTCGCTGCGGCCGCTGCTGCCA GCCGAGCGCGGCATCAACACCGCCATGAACAGCTTCAACGCCGGCGTCGT GAACGTTCTCAAGGAATGGGATCATTGAACATGGTGGCCAGCGGGAGTGG CAGCAGGAGCAGCACCCTGATGGGCATCATGAAAGACCAAACGCGGGTCG ACGAGTCTGCAGCCGTTTCGGCGCCGCCATCGCCTTCGCTGCGGCCGCTG CTGCCAGCCGAGCGCGGCATCAACACCGCCATGAACAGCTTCAACGCCGG CGTCGTGAACGTTCTCAAGGGCCTCATGATTCAATACTACGGCGAGCGGA CGTACGCGAGATTCTACGCGTTGGAGACGATCGCCCGCGTGCCGTACTTC GGGTACCTGTGCGTCCTCCACCTCTACGAGACGCTCGGGCAGTGGAGACA GGCCTCATGATTCAATACTACGGCGAGCGGACGTACGCGAGATTCTACGC GTTGGAGACGATCGCCCGCGTGCCGTACTTCGGGTACCTGTGCGTCCTCC ACCTCTACGAGACGCTCGGGCAGTGGAGACAGGCTGAGTACCTGAAGGTG CACTTTGCCGAGAGCTACAACGAGCTCCACCACCTGCTGATCATGGAGGA GCTAGGAGGGAACCTGCTGTTCCGAGATAGGCTGAGTACCTGAAGGTGCA CTTTGCCGAGAGCTACAACGAGCTCCACCACCTGCTGATCATGGAGGAGC TAGGAGGGAACCTGCTGTTCCGAGATAGGTGGTTTGCGCAGCACGCCGCG TTTTTCTACTTCTTCGTGGTGGTTGTGCTCTACCTGTCCAACCCCAGGAA CGCGTACAATCTCAACCAGGTGGTTTGCGCAGCACGCCGCGTTTTTCTAC TTCTTCGTGGTGGTTGTGCTCTACCTGTCCAACCCCAGGAACGCGTACAA TCTCAACCAGCACGTGGAGGAACACGCATTTTCCACTTACGACAAGTTTC TCACGGAAAACGAGGAGGAGCTCAGGCAACAGCCCGCGCCGAAGCACGTG GAGGAACACGCATTTTCCACTTACGACAAGTTTCTCACGGAAAACGAGGA GGAGCTCAGGCAACAGCCCGCGCCGAAGATCGCCGCGAAGTACTACGGCC AGGACAAGCTGTACGTGTTCAACGGTCTGCACGACGACAACGCCCCGGGA GGGCTGACCTTCGAGGAGAGGGACCTGGCGCGGCCGGTGATCACAAACCT CTTCGACACGTTCGTCGCGATCGCCGCGAAGTACTACGGCCAGGACAAGC TGTACGTGTTCAACGGTCTGCACGACGACAACGCCCCGGGAGGGCTGACC TTCGAGGAGAGGGACCTGGCGCGGCCGGTGATCACAAACCTCTTCGACAC GTTCGTCGCGGTGCGCAACGACGAGTGGGAGCACGTGAAGACCATGAAGG CCATGCAGGAGGATGTATCGTCGGAGAGGCGACCATAAGTGCGCAACGAC GAGTGGGAGCACGTGAAGACCATGAAGGCCATGCAGGAGGATGTATCGTC GGAGAGGCGACCATAA back to top
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