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Homology
BLAST of mRNA_P-fluviatile_contig12.1398.1 vs. uniprot
Match: D7FJD1_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FJD1_ECTSI) HSP 1 Score: 101 bits (251), Expect = 1.430e-21 Identity = 65/155 (41.94%), Postives = 90/155 (58.06%), Query Frame = 3
Query: 195 SLTGAWVLDVARSESMAPYLHLLDVPLAHIPAQLELEQVVPSRNVIVLNEGVLTLYKRTAVNHFTEALELGVEKVFQAPNSGIIKRVTASLINDDELSGYVYAGNTVVPGGCN-VSVVDARRLEPGGESHTQTLTVQNNATGERCTIRRTWVRVP 656
SLTGAWVLDV RS+++ YL + P + AQL EQ PSRNV+VL++ L ++K T+VN+ TE+ EL E+V P++ KR ASL+ A T +P + +V+ RRL G +H Q L ++N TG + RRTWVR P
Sbjct: 5 SLTGAWVLDVYRSDTLEAYLRCMGAPDRVVEAQLAGEQACPSRNVLVLDDSRLVVHKHTSVNNLTESYELDQERV--TPSTYGEKRAIASLLQPGRHDAL--AIKTALPTDTSDFGLVETRRLVGDGSTHIQELLLRNLDTGAQSITRRTWVREP 155
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 |
| Hectar predicted targeting category | other localisation |
| Exons | 6 |
| Model size | 1534 |
| Cds size | 549 |
| 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 |
| 1622815503.955211-UTR-P-fluviatile_contig12:1138465..1139292 | 1622815503.955211-UTR-P-fluviatile_contig12:1138465..1139292 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1138466..1139292 - |
| 1693562072.850158-UTR-P-fluviatile_contig12:1138465..1139292 | 1693562072.850158-UTR-P-fluviatile_contig12:1138465..1139292 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1138466..1139292 - |
| 1622815504.032092-UTR-P-fluviatile_contig12:1144240..1144315 | 1622815504.032092-UTR-P-fluviatile_contig12:1144240..1144315 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1144241..1144315 - |
| 1693562072.9218597-UTR-P-fluviatile_contig12:1144240..1144315 | 1693562072.9218597-UTR-P-fluviatile_contig12:1144240..1144315 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1144241..1144315 - |
| 1622815504.042991-UTR-P-fluviatile_contig12:1151236..1151319 | 1622815504.042991-UTR-P-fluviatile_contig12:1151236..1151319 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1151237..1151319 - |
| 1693562072.931371-UTR-P-fluviatile_contig12:1151236..1151319 | 1693562072.931371-UTR-P-fluviatile_contig12:1151236..1151319 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig12 1151237..1151319 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815503.9675288-CDS-P-fluviatile_contig12:1139292..1139412 | 1622815503.9675288-CDS-P-fluviatile_contig12:1139292..1139412 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1139293..1139412 - |
| 1693562072.861051-CDS-P-fluviatile_contig12:1139292..1139412 | 1693562072.861051-CDS-P-fluviatile_contig12:1139292..1139412 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1139293..1139412 - |
| 1622815503.9777062-CDS-P-fluviatile_contig12:1141068..1141261 | 1622815503.9777062-CDS-P-fluviatile_contig12:1141068..1141261 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1141069..1141261 - |
| 1693562072.870253-CDS-P-fluviatile_contig12:1141068..1141261 | 1693562072.870253-CDS-P-fluviatile_contig12:1141068..1141261 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1141069..1141261 - |
| 1622815503.9934156-CDS-P-fluviatile_contig12:1142499..1142600 | 1622815503.9934156-CDS-P-fluviatile_contig12:1142499..1142600 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1142500..1142600 - |
| 1693562072.878196-CDS-P-fluviatile_contig12:1142499..1142600 | 1693562072.878196-CDS-P-fluviatile_contig12:1142499..1142600 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1142500..1142600 - |
| 1622815504.0077868-CDS-P-fluviatile_contig12:1143716..1143780 | 1622815504.0077868-CDS-P-fluviatile_contig12:1143716..1143780 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1143717..1143780 - |
| 1693562072.8893118-CDS-P-fluviatile_contig12:1143716..1143780 | 1693562072.8893118-CDS-P-fluviatile_contig12:1143716..1143780 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1143717..1143780 - |
| 1622815504.0208924-CDS-P-fluviatile_contig12:1144169..1144240 | 1622815504.0208924-CDS-P-fluviatile_contig12:1144169..1144240 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1144170..1144240 - |
| 1693562072.9078727-CDS-P-fluviatile_contig12:1144169..1144240 | 1693562072.9078727-CDS-P-fluviatile_contig12:1144169..1144240 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig12 1144170..1144240 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig12.1398.1 >prot_P-fluviatile_contig12.1398.1 ID=prot_P-fluviatile_contig12.1398.1|Name=mRNA_P-fluviatile_contig12.1398.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=183bp
MAAAAMQQQHGASLTGAWVLDVARSESMAPYLHLLDVPLAHIPAQLELEQ VVPSRNVIVLNEGVLTLYKRTAVNHFTEALELGVEKVFQAPNSGIIKRVT ASLINDDELSGYVYAGNTVVPGGCNVSVVDARRLEPGGESHTQTLTVQNN ATGERCTIRRTWVRVPMSRNDLQRLGGRAVGE* back to topmRNA from alignment at P-fluviatile_contig12:1138466..1151319- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig12.1398.1 ID=mRNA_P-fluviatile_contig12.1398.1|Name=mRNA_P-fluviatile_contig12.1398.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=12854bp|location=Sequence derived from alignment at P-fluviatile_contig12:1138466..1151319- (Porterinema fluviatile SAG_2381) GTAGGAGAAAACATTCAGCTTTTGCCCGGAACCCGCCCTGGAAAACTTTC
GCTGCCGAAAAGTCGCCGCGGGCAGACACACTGGTGAGAAAGAACACTGG
CGAGTCCTGGCGAGAGAGAGAGACTCGAGAGCACAACCTAACGCGCGTTT
AACATTTTGGCCGAACCCTCAGGAATCCGGCACATGGATATCTCGTTTCC
CTCTCCCTCATCGTCCATCCATGGTAGCACAACCCACACATATCAATGAG
AGATCGGAGAGATTCGGGAAATTGGCGTGTGTTGGTGCAATCTACTCTTA
TGTGTTCTGAATGAAAATGGTAGGAGAGATGGACCACATGAGACCTAGAT
CTAATAGTTTGCCTTGATCCCTGTCTCCCGCGAGGGACCAATAACGCACA
CACATACACCAATTTTTTTGTCTCTTGCCGCGCGCGGTGACCACTTGTCT
CAAAATGTGTTGTGTGCAACACTCGGGGTGTGTGTGCGCGGCTCGGGGTG
TGTGCGCGGTGTGCGCGGGGGCTCCGGAAGACTCGTCACCCCAGAGGCCA
AACCAGAAGGGTCTTCTCATCATCATCCGAAAATACTAGCGCAGTGGTTG
AGATGTCGAATCCTTACGACCCTGAAGGCCAGGGGGAAATATATACCCCG
GAGTATGTAGAGAGCGCGAGAGAGAGGGGGGTGAGGGAGAGAGAGAGAGA
GAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAAAGGGA
GAGAGACAGACAGACAGACAGAGAGAGAGAGAGACAGACAGACAGACAGA
CAGAGGCAAAGTGCCAGAGACAGCGACAGAGACAGAGAGCTGGGGAAAAG
CGAGAAGGAGACGAGGCGGTTGCGCGGATCTGCATGTGATGGTGTTGGGT
CGACTGTTTGGCCCATGTGTCGTCTGAAGACAAACAACACCGGAGGCGAA
CTGGAATACTCCCTGTCTTTTGCACACCGTGATACAACAACACGCATTCC
ACAATACGACTGCTATCACGTTGTCGAAAGAGACGATCCTCTTTCTGTCT
CTCCGAGCCGGCGTGGTTTTTGTGTGTGCGTGTGGTGGCACGCAAGGATG
GATGAATCTGTGTTGTCTAGTCGTGTCCGCTTCTTGTGTCTGTTTTTTGT
TTTTGTGTGTTTCTACGTTTTCGCCTCTTCAATGACCGGTATTTATGGCT
GACCGATCTCGCCCCCTCGATCCTTTATTTTGGCACGATCGGAACAAAAA
GTCGGATTTTTCACTTTTTATGGGACCCAATCCTTTCGCGAATCCTTGCC
CAAGATCGGAAATTCGACCAGCAGATGCTCGCCCCCCGTTCCGATCTTGA
CCCAAGATCGAAATGAAGGCCAAGCTCGCTCGATCTTCACATCCTCACGC
GGCGGGACTCAACTTGTTTTTCCGAGGTCGGACCGCATTCGGCCACCCTC
TTACCGGTCCTGCATCCTGCATTCATACATCACAGCACGAACGCTCTCCC
CACAATCACACCCACACCCACACGCCTACACACGATCTCACTCATGGCCA
AGGATGACCACGAAATCTTGATGCTGGCCGAGGCGGCGCGGCCGCCGCGG
CCAGCGTGCGAAGTATGATTCAAGTCATGCAAGCGACAATGACGACGAGA
GCATATGTAGTGGTGGAGCAGATGGAACAGCACGGTTGTTGGTCCTAGAG
GAGGAGGGAGAGGACGAAGAGCGACCTATGCAGAGGCGGCGATCTTACCC
CTGACCGGAATACTGGGGTTCCACCTGGGGAGAGATGCTGCGGAAGCTGC
AAGAGCTGACCGCTTCGGAAGGAGGGCTGGACCCCAGGTGTCGAGAAGCG
CAGCAATTCGGCAGAACCTTTCGAGTCCCGTACGAGCTGTCTCCGGAAGG
CGTGGCCGCCGCGTCCACGTATCCCACGATGGATCAGCAGACGTCGCAGG
CCGAGAGTGCCTCCCGGTGGAACTGAAGGCGCGTGTTTGTTTGTTTATTC
TCATCTAGCAAGTGAATCGAGCGGTCTCTTTTTTTGCATAATCAAATGCC
GCCTTCGAAGTATGTACACGTGCCTACAGCAGAAGGAGACGGCCGCATAC
AGCGTGAGAGATCCCAGGATGCACTGCTGCTGTGATCAGCCACCCTCACT
TGTGTGCATATCTGACGAATGATGGGGACCCTTAGGTTGCAAAACCGCAC
AACTGTGAGTTTGACGCCATTGCAGGAACAAGCGGCAAGATACATACAAT
TGCTTGGAAACCATCGCCAGACTCGTGGTTGCCACATAGCCAGCCGACTG
TGCTCGCTGTTTACCCCGGCAGTATGAAAAGAAATTGTCTCGTGTTTAGT
TTGACACCACAAGCCTTTTCGTAACATGTAAGAGTAGAGGAATACTGCAG
TCGTGATGGCTACGGTAGTGATGGGATTGCGCTGCTGCACTGCCATGTTG
CGTGTGGAGGCGCATGCTGTATGGGAGTGGGTGCGTCTAATTTTTGCGGG
CATCATCCTTCCGTGTTGTATTATTGCGTGTGTGCAAGTATCCATGTTCT
TTGGTCGCACTCTGTCATTTCTAGCTCAAGGCCCTCATATTCACAGATTT
TCCTACCACCCTACCCTGATCACCATACTGTCCGCAGGTACTTGGGGCGT
TGAAGGTCCCAGGGGGAGGAAACAGCTTTCCAGATGTGGCTCGCTTCTCT
CGGATGAGCATCTCCACAGCGGAGGCCTCTTTCCACCGTTTTTGCGAGAC
GTTTTCTGCGGGGCTGTGGGATGCGTTGTTGAAACTCCCAGAAGGCGAAG
ACCTGAAGAAGGTGGCGGAAATCTTCAAGACGTGGGGGTATCCGGGAGTA
ATGGCCTCAATGGAATGCTGTCATTATTGGGAGGCCTGCCCCTAGTCAGA
TCAACGCAAGCACACCGGGAAGGAGGGATACCCAACCGTCGTCGTGGGAG
CAATGTGTGACCATTCCGGCCGCATTATCGCAGCGATCAAGTCTTGCGCG
GGAGCTGAGAACGACAAGACCACTGCGCCCGTTACAAGTCGATCTGGCGA
GTGCCGGACGAGGAGCGATGGAAGAGCTACAAGTACAAGCTGTACAACCC
CGATGGCACGCAGGTGGAATACACTGGAGCGTGGATCATCGTCGACGCGG
GCTACCCGATGGTGAGGCTACCCGTGCACGTAGGTTCATGGATTCCAGGA
TTCCAAAATCTTAACCGGCCACGTTTGCACTTGTCTGTAGCTTCGAACTT
CTTGCTTTGGGGCGGAAGGATGCAGGATCTGAAGCACGGATCTCAGAAAA
GGATTAATGTGAGCAACCGAGGAATCGCCCCCCTCCTTCCCACACAAACA
CTTTGGAAAAATGGGTCTACGCACATTGCATGAGTGCACTCACCTCTGAG
CAGCAACTGAATCCCCCGCCCTCCTTACCTCTTCACCTTTACCCCGTGGA
AGGGGAAGTACCCCCCGCCGGAAGCTGCCGACCCATGGGCTCTTGAGTCG
AGTAACATTCCGCACCGCAATGCCACCGTAAATAGCAATGCATGTTCCGT
CCACGTGATTGTTGTTGTTGTGGATGTTGCTTCCCCGCGGGCCCATCGCT
CTTGGTTTCTCTCGTGAGGGCCACATTTGCGTGCTTTTCGGAATGACTTC
AGGAATCTGTTGATTGCGACAGGTGATATCGCGGTAGTGTTTCGATGCCC
TCCCCCTCCCCCCACCTTTTTTGGCGGTAACCATAATGGTGGTCGAGAAG
ATCATGTTGTGCGGAGTGGAAAACCCTCACTCTGCGCAAGGGGGATGATC
GCACCACGTTGTGTAAAAATGGTCAAGCACCCTCGAGGCAGTTACACAGT
GCTTACAACTGTCTCTGGAAGTGAAAGCGCCATAAAATAAATTAAGCCAT
ACGCAGCTGTCATCCGTATGCAAGGAAGTAAGCACAAGATGCAGGATGCA
GCGCACCCTTCATGCGACTCGCCGAATACCTCACGGCGCTTCGCGCTTGG
TGGTGTGAGAGCCTGGTCCGGTGAGAACCGGGCGTGCTCCGTCCCGGCTT
TGTGGGGATGCGAGGTCAATGGTCTAACGACTACGGCATGCACGACTTTG
AGTACACCCCCCCTCCCCCCCCCTCCCCCTCCCCTGTCCCGCTTTTATCG
ACGTTCATGGTTCATTCAGGGAGAGCGCTTTCACTCTGAGTTCGTATCCG
AATAACCTCAACGATATGAATTGTGCTACGTCCGACATGTTCCACGCGAC
ACCATGCACCTTGTGCCGCATCGGGAGCATCAGGACCATGCTCGCCATTG
CATGCAATATGGGATGCAAGAGGCAAACGCTGCACACACACCCGGACACG
GGCCAAAACTATCCAAAGAGCAGCCGGCACTCAAGCTGCTCGGGACGGAA
GCGACGAAGCTCTGTCAGTCCATCACAGGGAGCCTGCTCTACCTCGCACA
ATGGACCACGTACGGTCTGTGTCATCAAGTGAACCAGTCAACGAAAGCAT
GCAGCAAGCCCTCCGAGATCCACATGACGACCGCCAAGCACATCCTGCGC
CATCTCCGAGGAACGCCTGACATACCGATCATGTGCGAGCGAGAGAACAG
TTCCGGTTTGTCATACACCGACGCATCGTTTGGAGCAAATCCCAACCACC
GCAAGTCAAAAACACGATATCTGTTCTTCCTGGCCGGAGAACCGATCAGC
TTCGGGTCCAAAACACAATCACTCCCTGCGCAGTCGACCGTAGAGCGAGT
TATCAACTCTCAGCTACGGAGTCAGGGAAGCAGCCTACGTCTCGAACTTC
CTGACGGAGCTGGGATTCAACACGCTTTCCCCAGTTCCCATCAACAGCGA
CGACGCGGGAGCACTCAGCATGGCCGGCAACGTGATTTTCAGCTCGAGGG
CAAAGCACATTGCCCTCCGATTCTTCTTCGTTCAAGAGCTCATCTCGACG
AACAAGATCACTCTCCACACCAAGCCAACTCAGCAGATGCTGGCAGATAT
CGCCACAAAGCACCTCAGAAGCAGAGGTTCCAAGAAGTGTTTCAGCAGAT
CAAGGACTTCACCTGCTGCTAACTGATGGATCTTCAACGATCAGGATGAG
GTGGATTTTGATTTGTGGCGTGAGAAAATTATCGACAAGGAGGGTTTCCT
TCACAAGAAGGGAGCTCAGGCGAACGACATCCACATCTGAGGGCACGAGC
TCGGAAGGAAGCGGCAAGGAAGGAGGTCCGCTTTAACGTTCCTCGTTTTC
ACTTTGTCAAGAGTACTCAGGTTGAATCCTGTCCGCTCATGTGGGCCCTG
CTCGGCGAAGAATATATTTTGCCCCCCGGATGAACTAGCCGTTTTGAACT
AGGATGGTGACAGGATTCGAAGAGTGAGCCTCGACGCTTAGGAGACCACC
CTTGGTGCATCCCAAGCTTTCTGCATCTTCTCAATGTCTCCGTGTTCTGT
CGTTCTCTGTGTTCCCTTTTCTACTCGTTACGCGTTCGCGACCATTGAAG
GGTTGCATCAGAGTGCCTGCTTTCAGACGTAAGTGCTGCCTTTTTTGTGC
CGTGAGTGTGCGCAAATTGGCATCAAACCAGGTTTACCTGCGTTCGGCAC
TGGTCCATGCGTTTTGTTTGCAGACGTTGCGCACATCAGAAGTATCTGTA
TGTTGAAAGTCCTCGTTGACATTGGGCTCTACTACCTCCGTCGTGGGGTT
TTGTCAGGGATAATTATACACCCGCACCAGACTGCACTGTGGACCGTGCA
CGAGTAGAACACATCAGTAGCAGTGGGTAGCTTCGATATGTGTTTGTGTC
GTCAGTATTAGCTTACGGCAACGATTCACGGTAACAGCAGCTACAACAGA
CGTCGTGAGTGCTGAAACAGCAAGTAGCGGGACTGTGGTATAGTCAGTTC
GGAAGTTTCTGTGATGTTTTTCTTGCGGTCCCCGGAGTCCTTCAAAAGTC
GGTCGAACTTGACAACATCTCCGATATTATTTGTTTTTTATTTTTTTTGT
TTTTTTGAGAGAGAGCTGCGCCCTCGCGCCCCGTGCTCTCACTCCTTCTA
ACCATCTACGCAAACCTGACCTGTAAGTCAGCAATAAACAACATCTTTGG
GTCTTCCCTTGCCCCGAGAGCCACGCCGAGTGACTTCTGCACTCTTGCGT
ATACCTCTGGTGGTAAAACTCCAGACCGAGTCTACCTGAAGCACAGCGCT
GCACACATCTCTGCTATCGCTGCACACCCTGCGTCGTTAACTTTCCCGTC
GTTTCCCAGAGGATATCTGCGGAACGAAACGCCATCTTCTCCGCTCTCTT
GATAGCCCTACGTTATCCTCCCTTCTTTGCAGTTTCGTGCGGCTCGAACC
GTGCTACTACTTGTGTACGATCAGGATAGTGTATCTCTCTGGAAGTACAA
GGGCCACGTGTGGGCGTTATCGCAGCAAAACGATGCCAACGTGGGGGGGG
GACGAGCGGCTTGACGTCTTGAATCGAGAGGGGTTCACGAGGACGGAGTG
GATGGACGAAGACTTGCAACGCACAAAGCTGACGTAAACACGAAACCAAA
TGATCGAAAACGAAGGGGGGTTGAAGCACCAAGCAATGGTGTTGAAGCAC
TTTAGGCACCCCCTTGCGCTGCATGAATGCTGAGTAGATAATGATGCATC
TCAACCGACGAATGCCATTGACTTGTTGTTGTCTTGGCCCCGAGGAACGC
AAAAATCCTTTGCACATCCGAAATCGTAAAGCAGGTTCAGATTTTAGGCT
GGAAGATAATTGAGACGCAGGTGAAATTGCGATTGCCAAAGAGCTGGAAA
AGCAAAAAACACGCGTGGAAAACATACGCGGGAGCGATTTTCATCGATCG
CCGTGGGAAGCACTTGCGATTCACATCTAACAATCAACCCCAGGGGTGTG
CTGCATCTTCAAGGGCGATGGCGGTTGGTTTCCTTGATCTAACATGTAGT
TTTATATTTTTTCCCTGGTTTTTCCCATGCCGTTTGGGTGGATCACACGT
TCAGACAGGCTCTTCGAACGCATAAATTATTCACGGGGCGGCGTGAGCGC
CGAGCGAGGTACAGATTTACTCATCACACATGGCTGCGGCTGCGATGCAG
CAGCAGCACGGTGCTTCCCTCACAGGGGCGTGGGTGCTGGACGTGGCAAG
GTTGGTTTGTTGTTCCAGCATGAGTCTTGGTTTTGGTGCGTGGCTCCTAG
TTATTAGGCGATGCATGAGTCGTGTAGGAAGTGAAGCACGCCAGCCTTGT
TTTGGTGTGCTGCTCCTTGCCAGGCTGAATGATTTGGGTAATGGGGAGTT
GCTGAACCGGCAGAAAAAAGTTCGGCAAACAAAGTGGAATGTTTTTGAAT
GACGGCGGGAAAAGTCCACATGTTGGGATCGTGGTTGACGACTGCAAATA
TATGAAAGGCAAACGACGTGAACAGCGTCCCCCGCTCCCGCTCCCCCCTT
CGCGCTCTCGCTCCCTCAACCTTCCCAACCCCGTCCCTGATATCTGGACT
CGCTCTCCGCGCCTTTTCCGCCTTGAATGAATAATCAAGATCGGAATCGA
TGGCTCCCTACCTCCATCTCCTGGACGTTCCGTTGGCTCATATTCCGGCA
CAGGTAAATGTCAAGTACAGCAGCGGCTATGATGAACGATAATAACAAAA
AGCGCGAATGTAACAATGAAAATTGCTTGTCGTGAATCCGTCAAGTCAGG
ATCTTTCAGTGTTCGATGTAAGAGGATGGCGGACTTTTAAGCTGACTTTT
TCGTCTCGGTGGATCCTCACGTATATCGTGGCCGTTTCTAATGGTGCAAA
CTCTTGGCGCTCGCCGCTTTTCTTTTGGAAGGGGCTCCGTGGTTTTCAGA
CGCAGGCACCCCCCAAACCCACCCCGTCCCGCCCGCCCGGACAAGTCAGT
GGCAGTTTTCTATTCTAAGCAGTATCTAGTTTTTGTATTATTTGGGGCGC
CGCGCCAGCACCTTGGCATTACTACGCGAACACAGCCGATGTACAACATT
TTTTTGTTCTATTTGTGATGCGAAGCAGATGCACACATGCTCACATTCGC
ACACACACCGACGTCAACGTGCATGACGTACGGTGTCGTTTGCGCTCCAC
GCCACCCCGGAAAACCTGAGGCGGCAAGTCACGATGCCTTTCCCCCCCCC
CTTTCCCCGTTTTGTTTTTGCTTTTATCCCAGAATTGTTTTACGTAGGAG
TCGGTATACGGGGGCGTATCCTAGTCTTGAGCAGTGCATCCTGCCCTGTA
GCTCACGAGCCCCCTTGCCCACAGCAGCTTCAACCTGTGCTTGTCTCGAA
AGGCGCATACGAGCGAGAGCGATAATCGTTGTTGTGCTCCACGGTGGCAC
GGCGTCATATCTTTGTGCAGCGCCATTTCAGCTGACAAATCTGGAACAAT
TGTGGGGGCGGACGTCATTTACCGCATTTAATGTTGACTTTTTGTTACAA
AAAGACCTTGCTCAGGAGTGTAAGGCGTGCTGATAGAGTCGGGGCATAAG
TACGTTTCTGGTATGATGAATCGGTGACCGACTCCGCTGTCATGTTTCTC
CCTCTTGTTCTTTCTCCCTTCTTTGTTTTTGTGTCTCGCCCTCTCTGTTG
CCGCTTCCAACCCTTCTCTCTCCACGACTCACTCCCCCTCTCCCTCCCCC
CCCCCTCCCTCCCTCTCTCTCTCTCGTGCTGTCTCCGCGTGTGCCGCGCC
ACTGCCAAACACATCGCAGTTGGAGCTGGAGCAGGTCGTCCCGAGCCGCA
ACGTCATCGTTCTCAACGAAGGCGTGCTCACCCTCTACAAGCGCACGGCG
GTCAACCACTTCACTGAAGCGTGAGTGCCGGCCGTCTGTGTGTACGTAGG
GCAGAAGATTCGAAGGCGCCTACACCCTCTTCTCCGCTTTCCCATTTTCG
CTCCCGTCGTCCCTTCCTTTGTCGTCTTTTGTCTTTCGAAGAACCGCCGG
TGCGGCACGAATCATGCAACGGCCGGGTTTTGTTCTGCTTGCTCATTTCT
TCGGCCTCGAACTTTTTCTCTCTACCGTTTTTGTCAGCTTTTTTCCTTCC
GTCATCTGCTCGATCGGTGCCCGAGACAGACCCTGCTTTCGTTTTGCAGG
CGGAAGAACTCTGTACCGTGGCCTTCGGTAAAGACGCCCGCCAGAAATGC
ATCATCTCCGTGTCTATATATATAGGGTCTAATTGTTCGGCCCCTCTTTG
CGGAAGGCTTTGTTCGTTCGAAGATCTTGACTCCGCGAAATGCATCGATT
CTCAGAGGGAAAACCAGATACCTTCCCCGCGTTCCCAACACGGCGTCTAC
TTCTCGATTCACTGGTGGGACCGCTCGGTCCTCGCCACTTCTCTCAAGGA
GGGTACAGCAGCAGCGGCTACGAGCCAGGACAATCGACACTGCAGGAAGT
ACAGATACTTCGAGTATTCGCGAGTCAGAAACACACTTGTCGTGAACACG
CGAAATCTATGCACCCTTTCTGGTCGATAGTATTAAAGAAACCCGGATAA
GAGATTTGCGGCTGCTCTCGTGCCGCCACTACATGGCTTTTATACGTATT
TGGAGGACCTCCTCCCCGGTCACCCCCACACGCTTATCTCCCGGGCGATA
TCGGGTACCCATGGGTTTTGGATGGAAAGAACTATGTCCCGGATGAGTTT
TGGAATATTCTCGACGGGAGCGCGTGAGCTGCATGGTGCGCCGCGTACCG
AGTGGCCGTCAATCACTATGAAACAGATTGAAAGTATTCTTGTGTTGTTG
TTCTCTTGTGCGACCCTGGCTGGTGCAACCGACGCTAATAGGCTCTCAGC
TACAGCATATCAGACAATAACAATGTCAACAAAAGCAGCAGCGGCAGCAG
CAGCAGAGCATCAGCAGCAGCAGAGCATCAGCATCAGCAACAGCAGCAGC
AGCAGCAGCAGCAGCAACAACAACAACAACAACAACAACAACAACAACAA
CAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACAACA
ACAACAACTTCACCCCCCTCCCTCGTGGTCGAATGTCTTTCTTTCGCGAC
CTTCGCAGCTTGGAGCTTGGCGTGGAGAAAGTATTTCAAGCCCCCAACTC
CGGAATCATCAAGCGAGTGACGGCTTCCCTCATCAACGACGACGAGCTGA
GCGGCTACGTCTACGCGGGCAACACGGTTGTCCCCGGAGGTTGTAACGTG
TCTGTGGTAGACGCGCGACGGCTCGAGCCCGGTGGAGAGTCCCACACCCA
GGTAGGTTCTTGTGTGCAAACAATGGCTTTGGGCCGTGTTGTCGTCGTAG
CGATCGCCCTTGTTGTTTGTTGTTACATATGTAGGTACAGCTGTTGCTGC
TGCTGTTGCTGCTGCTGCTGCTGCTGTTGTTGTTGTTGTTGTTGTTGTTG
TTGTTGTTTTCAGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGGTGAT
GGTGGTGGTGTTGTTGATGTTGTTGTTGTTGTAGTTGTTGGGTCCCATCT
ATTCTGGCGCCAGTGTTCGGCCGTATGGACGCACTAGCGGGGTTGCGCAG
CTGTGGGAGGTAACAACTGGAGTCCTCTTGGTTTTGTGCCGTGGATGGTC
TGTGTTTTTGTGACGAGTTCTTGCGAGGTCAAGGCTGCCCTTTATTCATG
GGAGGTACCGTTGTTGACCACAATCGATCGGCTGCTGCATTTTGTCGGTA
CTTGCCTTTTCCCCCAGTTTGAGACCAAACCCGCCTGTCTACGCGAAAGG
TGACAAAATCACGGTAGAGTCGATCGTGGGCTGAGGCCGACGGCGACCGT
AATGGGGGCAAGAAGCGAGTCCTGGCGTTGCCGAGAAACGAGAACTGCCT
ACGTGAAGGCTCCACCCAACTAAGAAACGGGTCGCAGAAGTACGCAGGAG
GATGTTTGCCACAAAATGATTTCCTTTCGCGAGATCACAAAACAAGCAAG
CTCGTTGTGTGCTCGGCTGTTTTTTTTTGTTTCGGATCGCCTTTCTTTTT
CGTTTTTTTGTTGAGAACAAAATTTGAGCCATTGACCGTTTTTCTTCGGG
AAAAAACATGAAAGTTAATTTTCTTCCCGTACGGAGGCAAGACTTTACGA
GCGGGCTCGCGGCCTTTTCCAGCAATAGGCTGATGTGGAAGACGCACGGT
GGAAGGAAGGCGACGCCGAAGTACGTCTCGGTCCGCATTTTTAGGCTTAA
TGCCATGGAGATTTTGAAGATCTTCTGCAGCAACTTCCGCATAGAAGAAA
GTAACCGGCTCGTGGAAATGAAGAACCATCGGTCACACCAGGCAGGCAGT
ACGGCACAGGGAGCGTTTCACGTTTTTTTCAATCATCGTTGCAGCAGCGG
CGCTCGGCGGAAACAAACATATTTCGTGCATGGAGTATACTCCGAAGTAT
ATGCGAAGTTTACCTCGAAGTACATTTTGTTAAATCATACACAACGGGGA
AGGAGTTTTGTGTGCGTCCGTGTTTTCGTTTGCGCGCGCGCGTGCTTTGT
GGTTTTGCTTATTGCGGTTACGCTGCTGGCCGGCTGAGAGATCACCGAAA
AACTTTCGACGAAGAAGTTTCCGCTGAAAGCAGCACACGGTTGTATCTTA
GCCCAGGGCCCGATTTTTTGGTGCACGGGTGTTTGCTTGTTTGCAACTAT
CCCTCAAAGCCTTCTGGATCGAGCCTGCCACTTGCGCCCTCCTCGTTATT
ATCTGTCACACGTCGTGTTCGGCAACACCCTCTCGCCTCCGCCTCGTACG
CCGCCTCCTTGTCCTGCGCATTCCCCCCCTATACGTGTATAGAATGTGTT
GGCATCACCTTCAATCCCGCCTTGTCCTCTTCTGTTCCGTTCTGTTCGGT
TCTCCTGTCTCCTGTCTTGTGCCTTTTTTTGTTTTTTTAATGGTACTGCC
CCACCAGACCCTCACCGTGCAGAACAACGCCACCGGCGAGCGGTGCACCA
TTCGACGGACCTGGGTGAGGGTACCGATGAGCCGGAACGACCTGCAGAGG
CTGGGTGGACGGGCCGTCGGCGAATAGATGGTTGAGGCAGCGAAGAACGA
ACGCTTCAGGTCGACAAAATAAGTCTGTGAAGCCCGGTGGTACGCGCCGC
GGGGCGACCGAGAGACTTACCTTCGTGTGTGTATTTATTTGTTATTTTCT
TTTCAATCCTCATGATTCTAGCTGCGCCTGTCGCGTCCCCCTCGCCCTCC
CTTCCCATCCCCTGCGTCCTTGATTGAGGTGCATTGATGTGCTTTTCTTG
GTTTTCTGTCTGTTTCCTTGTCTGTTTCCTTGTCTGTTTCCTTGTGTGTT
TCGTGGTGACTTCCCCTCGTCGTCGTCGTCGTCGTTGTTGTTGTTGTTGT
TGTTGTTTCCTGCCGGAGTATGATGGCCACACGTAGACGGTGGTGGTGGT
GGTGATGATGAATGACCGGGCGTGTTGAGGGTCAGTCCACAAGGGGTTTT
GTGCGCATCGGTTCGTCAGATCTGGGAATCTTCTTGGTGCGTGTAGTGGC
TGTTCTCGTGCGCGTGTTCAGTGAGACTTGGATATTTCGTCAAGCAATCA
CTATATTGTGGTACGATAAGTGCTTTAGGCTTCACATCTTTTTCCGTGCT
TTAATCTTTCTCCGTGCTTTAATGTTTCTCCTTTGTTTGAAGTTTGATAC
AAGGTTTTGAGTTGCAGGTTTAGTTTTAGGAAGGGTTCTGAATCTACCCT
GTGCTTTCTACGTCATTAGCCTTTCGCGCTTACATTCAGAGCCGACTGGA
TTTCGAAGAGTTTAGAGTTGTTTATTTGTTTTTTCTTTCGAATTGCCTTG
CATTAAATTTTCTCTCCGGGGCAGGAGAGAGAGGGAGGAAAAAACTAACA
CTCG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig12:1138466..1151319- >mRNA_P-fluviatile_contig12.1398.1 ID=mRNA_P-fluviatile_contig12.1398.1|Name=mRNA_P-fluviatile_contig12.1398.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=1098bp|location=Sequence derived from alignment at P-fluviatile_contig12:1138466..1151319- (Porterinema fluviatile SAG_2381) ATGGCTGCGGCTGCGATGCAGCAGCAGCACGGTGCTTCCCTCACAGGGGC GTGGGTGCTGGACGTGGCAAGATGGCTGCGGCTGCGATGCAGCAGCAGCA CGGTGCTTCCCTCACAGGGGCGTGGGTGCTGGACGTGGCAAGATCGGAAT CGATGGCTCCCTACCTCCATCTCCTGGACGTTCCGTTGGCTCATATTCCG GCACAGATCGGAATCGATGGCTCCCTACCTCCATCTCCTGGACGTTCCGT TGGCTCATATTCCGGCACAGTTGGAGCTGGAGCAGGTCGTCCCGAGCCGC AACGTCATCGTTCTCAACGAAGGCGTGCTCACCCTCTACAAGCGCACGGC GGTCAACCACTTCACTGAAGCTTGGAGCTGGAGCAGGTCGTCCCGAGCCG CAACGTCATCGTTCTCAACGAAGGCGTGCTCACCCTCTACAAGCGCACGG CGGTCAACCACTTCACTGAAGCCTTGGAGCTTGGCGTGGAGAAAGTATTT CAAGCCCCCAACTCCGGAATCATCAAGCGAGTGACGGCTTCCCTCATCAA CGACGACGAGCTGAGCGGCTACGTCTACGCGGGCAACACGGTTGTCCCCG GAGGTTGTAACGTGTCTGTGGTAGACGCGCGACGGCTCGAGCCCGGTGGA GAGTCCCACACCCAGCTTGGAGCTTGGCGTGGAGAAAGTATTTCAAGCCC CCAACTCCGGAATCATCAAGCGAGTGACGGCTTCCCTCATCAACGACGAC GAGCTGAGCGGCTACGTCTACGCGGGCAACACGGTTGTCCCCGGAGGTTG TAACGTGTCTGTGGTAGACGCGCGACGGCTCGAGCCCGGTGGAGAGTCCC ACACCCAGACCCTCACCGTGCAGAACAACGCCACCGGCGAGCGGTGCACC ATTCGACGGACCTGGGTGAGGGTACCGATGAGCCGGAACGACCTGCAGAG GCTGGGTGGACGGGCCGTCGGCGAATAGACCCTCACCGTGCAGAACAACG CCACCGGCGAGCGGTGCACCATTCGACGGACCTGGGTGAGGGTACCGATG AGCCGGAACGACCTGCAGAGGCTGGGTGGACGGGCCGTCGGCGAATAG back to top
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