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Homology
BLAST of mRNA_P-fluviatile_contig65.13113.1 vs. uniprot
Match: D7G8U4_ECTSI (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D7G8U4_ECTSI) HSP 1 Score: 261 bits (667), Expect = 1.670e-73 Identity = 140/224 (62.50%), Postives = 171/224 (76.34%), Query Frame = 2
Query: 200 VGADVLELYCRFRAKDEPDMPQKAWLELLEKTIPKLKRRRNLLEIHEATRLAYVMMLVGSGRDPPLASRAIAAMLVDHWCDRVPCSFLQKDAIRYAAVASVELSEAYDKESTARKLEAGVQAAVAGLGLRGLGVFRREWSRDRDILFKGGAACIVKEINEVARECRRAHSDADAVLVLQGYIAQKKMDTFEDDFMNWASVQLQKLPETLVDQA-LTSSSSPAAP 868
V A+VLE Y RFR+K E D K WLELLE T+PKL+RRR LLEI +ATRL YVMMLVG+GRDPPLASRAIAAMLVDHWCD+ PC+FLQKDAIR+A V E SE DKES A++LE+GV+ A+ G GL GLGVF +W RDRD+L GGAA + +EI VA+ CR A +D DA+ +L+ Y +++M TFEDDFM W VQL+KLP TL D+A T+S+ P+ P
Sbjct: 35 VAANVLEHYIRFRSKAE-DASFKGWLELLELTMPKLERRRGLLEIDKATRLCYVMMLVGTGRDPPLASRAIAAMLVDHWCDKGPCAFLQKDAIRHATVVDGEYSEGLDKESIAQQLESGVEDALDGTGLEGLGVFA-DWRRDRDVLCPGGAASLREEIMGVAQRCRDAPNDLDALSILEEYTEERRMGTFEDDFMAWGRVQLKKLPATLFDRAGFTTSAPPSTP 256
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 |
| Ec32 ortholog description | hypothetical protein |
| Ec32 ortholog | Ec-15_004250.1 |
| Exons | 5 |
| Model size | 1687 |
| Cds size | 1686 |
| Stop | 0 |
| Start | 1 |
Relationships
The following polypeptide feature(s) derives from this mRNA:
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817061.0042965-CDS-P-fluviatile_contig65:16339..17270 | 1622817061.0042965-CDS-P-fluviatile_contig65:16339..17270 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig65 16340..17270 - |
| 1693570983.453412-CDS-P-fluviatile_contig65:16339..17270 | 1693570983.453412-CDS-P-fluviatile_contig65:16339..17270 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig65 16340..17270 - |
| 1622817061.0141988-CDS-P-fluviatile_contig65:18163..18375 | 1622817061.0141988-CDS-P-fluviatile_contig65:18163..18375 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig65 18164..18375 - |
| 1693570983.4653163-CDS-P-fluviatile_contig65:18163..18375 | 1693570983.4653163-CDS-P-fluviatile_contig65:18163..18375 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig65 18164..18375 - |
| 1622817061.0256724-CDS-P-fluviatile_contig65:19083..19158 | 1622817061.0256724-CDS-P-fluviatile_contig65:19083..19158 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig65 19084..19158 - |
| 1693570983.482801-CDS-P-fluviatile_contig65:19083..19158 | 1693570983.482801-CDS-P-fluviatile_contig65:19083..19158 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig65 19084..19158 - |
| 1622817061.0358732-CDS-P-fluviatile_contig65:19536..19695 | 1622817061.0358732-CDS-P-fluviatile_contig65:19536..19695 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig65 19537..19695 - |
| 1693570983.495378-CDS-P-fluviatile_contig65:19536..19695 | 1693570983.495378-CDS-P-fluviatile_contig65:19536..19695 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig65 19537..19695 - |
| 1622817061.0458934-CDS-P-fluviatile_contig65:25227..25536 | 1622817061.0458934-CDS-P-fluviatile_contig65:25227..25536 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig65 25228..25536 - |
| 1693570983.505431-CDS-P-fluviatile_contig65:25227..25536 | 1693570983.505431-CDS-P-fluviatile_contig65:25227..25536 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig65 25228..25536 - |
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622817061.055927-UTR-P-fluviatile_contig65:25536..25537 | 1622817061.055927-UTR-P-fluviatile_contig65:25536..25537 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig65 25537..25537 - |
| 1693570983.5163236-UTR-P-fluviatile_contig65:25536..25537 | 1693570983.5163236-UTR-P-fluviatile_contig65:25536..25537 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig65 25537..25537 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig65.13113.1 >prot_P-fluviatile_contig65.13113.1 ID=prot_P-fluviatile_contig65.13113.1|Name=mRNA_P-fluviatile_contig65.13113.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=562bp
MPRGVRARAETGLNKEGTLCRYPRSVMASSTLENPVSDVELLEDAFPQRR RQQQANEGADALRERQVGADVLELYCRFRAKDEPDMPQKAWLELLEKTIP KLKRRRNLLEIHEATRLAYVMMLVGSGRDPPLASRAIAAMLVDHWCDRVP CSFLQKDAIRYAAVASVELSEAYDKESTARKLEAGVQAAVAGLGLRGLGV FRREWSRDRDILFKGGAACIVKEINEVARECRRAHSDADAVLVLQGYIAQ KKMDTFEDDFMNWASVQLQKLPETLVDQALTSSSSPAAPASAARAPSAPA APALSLPVSSAPFARAGSAPATSAQAPSLAPAAPAPQESSASAPPAQPAV PAPLPAPTPATRSSPVVEQEGTALVAASGGARGGSSGGGGGSINSAPTSS GTSGTTSKPANDETGDRGSRMAMKIASISGSSQSESKSESESSGSSGSPG RRRRRRRRRGPAMGKHSASIAVAAAATAAVPQPPSAATEEGGAAGIEREG RSRISVQAGSKNEPLLIDEDDDEEDRARSNDSINGGSSGGRGSSGSGGGA RVGREREKIGQE back to topmRNA from alignment at P-fluviatile_contig65:16340..25537- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig65.13113.1 ID=mRNA_P-fluviatile_contig65.13113.1|Name=mRNA_P-fluviatile_contig65.13113.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=9198bp|location=Sequence derived from alignment at P-fluviatile_contig65:16340..25537- (Porterinema fluviatile SAG_2381) AATGCCGAGAGGCGTGCGTGCGAGGGCGGAGACGGGGCTAAACAAAGAGG
GAACACTTTGCCGGTATCCTCGAAGCGTGATGGCGTCTTCTACGCTGGAG
AATCCTGTGTCTGATGTTGAGCTGTTGGAAGATGCGTTCCCCCAAAGGCG
GCGGCAGCAGCAGGCCAACGAAGGCGCGGATGCCCTGCGCGAGAGACAGG
TTGGAGCGGACGTGCTGGAGCTGTACTGCCGTTTTCGCGCCAAGGATGAG
CCGGACATGCCGCAGAAAGCATGGCTGGAGCTCCTAGAGAAGACAATACC
CAAACTGAAGGTGCGAGGGGGGAGGATCGAGGACAACAGCTCTGCATACC
GCAGCGGAAACTTGAACTTCTTTCTCTCTTACTGCACCCCGACCTTCCGT
GTAGATTGCTGCTTCTCTCTTGCCCCTCGAATCAAGTGATGTGAGTGCAA
CCTCCGAAATGGCAACACTGACAGCGAAGTACCAGCCTCAACTCCGCACA
CGCCATCAGAGAGTGCGTGTGGGGACCTTGCCGCCGTTGTTGGTCCCACC
GCGCGTGTACAGCAGGAGGGGAGGAGGGGAGCGCTCCCTATACAGTCCCG
CGCGCTCGTCTGTGACCCTTTCCTTACACCAGTGTCGAATGTTGTTCCGG
ATCCGTCACCCACAAGTGACCCTCGCTCGCTCTCTCTTCCTCTCTCTCTC
GCTCCCACTCTCTTTCCTTCCGCCAAGAGGAGGCCACGCGTGTGAGAGAT
TCCTTGGGCTCAGCCAAGGTTTCGTGCTGCCGTCGTATTGTTGTCTTCAG
TACAGTGGGGGGCACGATATGAGAGACACCTATATACGAGAAAGCCCGGA
TGTAAGAGAATACTTTTCGCTTCACGGATCAAAATCGATTTAAGAGAAAT
TCGGGCTTGTTTCAGTTTCAGAGAAATTCTCTTAATAAACACGGATTAAG
AGAAATTCGGGCATATCCGGGATATTTTCTCTTAAACCATGGCCACATAG
AAAGAGGTACAGACCACACGTGCACACAGCTGCAGACACCATGCCCTGTG
CAGCAGGAAGCAGCTGCGCATGTGTGCCCGACCACACGCCAGTGGCGCCC
GGGTTCACAAACCACAGATGCCGGATATGCAAGGGGTACCTGCACGGCAT
CTGTGGCGTGCCGGACCCAAAAGGCACCAGCGAGCTGCAGCGCGTTTGCA
TCATATGCTGAGCCTCAAAAGAAGCCTCTGACGGTCGCAAGAGTTCAAGA
GCTTGGGCTGCTGAGAGCGCGCCTACGAAGCGTCACTGCTCGGGGAGCAA
ATGCAAGGGCCCAGCGGACAACAGTAGCGGCGTGAAACTCGGCAACTATG
TCGCCAAAAAACCTGGCGGCGCAGACAAGCGGACGCGCGTCACGGCTGCG
GAAAAGGCGCGAGCCCTTGACCTCTTGAAGGAGAAGGGCATTGTTGCAGT
CATGACCGAGTTCAAGACGGGTAAGAGCAACATCTACGCGTGGCAGAAAC
AGGCGGACAAGATTCGGGAGCAAGCAGCGGGCGCCGGCGCGGGCTCAAAG
CTAGCAGGGGAGGGGATTTTCCAAAGGTGGGTTTAAAAAAACATCTTTAT
CGTCCTCTTCGTCTTTTTTATCGGGAATCAATAATAAATTGGTGAATTGC
AGCAGGTGCGAGGAAAATAAAATCAGCGGAATTGAGTGCTCACGACCTGC
ATTCGCTACATAAAGGTGCATTCAAGCAAATAAATATCTGGTGTATCTTA
CAGCAGTACAGTACTGAGTGCTGCTGTTTTGTTTTTTGCAACTTAATACA
CATCTACTTTAGTTTGCTTTCTTGTTTGTCGGCGTTACATCAAACGCCGC
AGCAGTAACACCGTACGGCAAACGCCGTACGGCCATTTGGTCGGCTGATC
CGCGACGCTAAGGTTGCGTAGGTAGTTGGTGATATGAATGTCTCTGCTAT
GCTGTCCGTCCTTGACTCGACCGCACGTCATGCACTGACAACCACAATTT
TGTACAAGTACGGGTTAATATTTTCTGCAGCAGCAGTGCCTTTTGTGTGG
CCGAACCAGCTGCCTCGCATGTCTCTTGCGCTGTGCATCCTACTGCGGAC
TGCTTTATGCTTAAACTCCGTCTCATGTTTTGCCGAATCTCCAGGTGGAA
GCAGCGGTGGTGGAGCTCATCGCGCAGGCCAGGACACTCGTTTCCCCGTG
GATCAGAAGATCATGGTCACCTTCGCGCGCAAAGCTAAAGCAACTCTCCA
GGCCGAAGCATCATCGGCAGAACGAGACCGGCTCAGCGAGTTCTCCGCCT
CCGAATCGTGGGGTGAAGAAGTTCGTCGCCCGGCTGGGCTTCAAGTCCAA
GAGGTTGTACGACGAGGCAGGGAGCGTCGACGATGCAGCCATCGCAGGGC
AACTCCGCGCCATCCGCGAGGAGATTGCGAAGTACGACCTGGACTGCATC
CTGAACTGTGACGAGACTGCGCTAATGTACAGGTTGCTCCCCCACTGCTC
GTACCTCGCACGTGGAGAGAATCGGCTGACGGCGCGGGGGGTGAAAGGCA
TGGCAGCGAAGGATCGCATCACGCTGTACGTGTTGGTGCATGCCAGCGGG
CGGAAGGGGCCGATGTCGGCCATCGGCCACTCCAAGAACCCCCGGTGCTT
CCAGCTGAGAGAGAAGTTGCCTTTCAAGTACTTCAGCCAGTCGGACGCAT
GGTCAGACTCCAAAGTCTTTGGCCCGTGGTGGAACGAGGCACTTCTTCCG
CACGTGCGTTCCTTCACGAGCAAGCCCGTTCTCCTCCTCATGGACAACCA
CGCCAGCCACGACAAGCTGCTCGACCCCCGGGGGCAAGTGAAGGTTCTCC
CGCTGCCGCCGCGGTCCACCTCCAAACACCAGCCTGCGGATGCTGGCATC
ATCGCAGCTCAGAAGAGGCTCAGGAGCTTGCTGCTGGAAGTCCGCGTGAA
CGGGATGGTCGACGCAGCCAAGAACCGAGAGGCGGCGATGAAGCGCGGGT
GGCAGGCAAGCGTGGGCTGGCGGACGGGTTCGACCCTCACCTCCTGCACG
CCATGAACCTGGCCGCAAAAGCATGGGACCTCGTGTCGGAGGAGACCGTC
AGGAAGTGAGTAGCTTGTGGCCTTTTAAATCTGCACACGTATGATATATT
TTGTACGCCTTCGAGTGCATGGTGAACATGCTTTGTTTTTTTTCTCGCAT
CAGTTGAGTTGTAGAAGGATATGAATTGCTGTACACCGGCCTGTTATTTT
GTGTGCCTCCGTTGGTTGCATGATGTTTTTGTTTTGTGTTTTGTGTTAGT
TTGTAGAGGTATTTGTACCGCTGTGTGTAGGCCTGTGTGATTTTTGTCCG
TCCTTTGAGCTGCATCCGGAGAGTCTCGCAAAGTGAAACGAGCCGCGAAA
CATATACATAACCTCTGTTTTTTGTACACCCACGTTGCGTTTTGCTTTTG
TGCGCCGCCCTACCGCAGCTGCTGGAGGAAAGCAGACATTCTCTCCGCCC
CCCAGGTGGCGGAGAACAGCCAGGAGGATGGCCGTACGAAGGCCAAGGGC
GACGCCACGCAAGTGGAGGACCTCGAGAGTTTGATCTCGCGGCTGTCGAT
CGGAGCCAAGGTTGGAAATGTCGATGACGACCTCTGCCAGACTCTCTCCG
ACTTGAGCGTGGTTCCGGGAACGAAACCAAGTGCGAAAGCCGCGGCCGCG
GTGGAAGCATGGGTGAATTTGGAGGACGACGAGAAAGTAAAAACAGCTAT
GTACGAGGACATGATAGAGGACCTGGCGGACGAGAAAGGCGGGGGGTTAG
ACGGGGATGCCGAGGTGGTAGACAGACCAGGCCAAGGAAGGCGAAACGGA
CCAGGGCTCAGAGGCGGCGGCCCCGCTTCCGCCGCTGCCGTACTCAGAGG
TAGCAGCACAATTTGTTGAACTCGAGGATATCGCAGAGAAGAGCGGCATG
TCCATATCATTTTACCTAAGCAAGGCTAAGCTAGAATGGATGAGTACGGG
TCGAGGGTAACAAAGCAGACGTGCATGAGGGACTTCTTCAAGAAAATACT
TCATCGGGTTTGAGGCTGTCGTGCCGAGGGGCACGCGTTGGTGTGCTGGG
CGTGTTATGTTGATTGTAGCGCGTTTATGCGCAGGTACCATTTCTTCTTT
GCCCGCTAATGTTTTGGGGTTGGAATACATGCGGCACATGGATGGTTGCA
TTGAGCTGGAACGTGTACGGGTGAGTGAGAAGTCCATGCCGTTGAAATTT
GTAACGTCACACATAATACATACCAACACCGGGAACACCAGGTCTGCTGC
TTTTACATTTGCTGCGAAATTAATTGCTGTTTACACCAACATATCAAGCC
AGCCCCAGGTTATGGCGTTAGCTGGCGTAAAAATCTTCATTTCATCTCCT
CAACAAGCTCCCACGGTGGTGCAGGCCATGGCCCTCACCGTGAGCGGGCG
CATCAAATTTGGCTAATGTATTAGACAAATTATCTCATTTCCTTCACATA
ATTAAGAGAATTTCTATTATTTCGATCTAAGAGAAATTCGGATATAATAA
TCTCAGCTTGACGGGTGTTCTCCTATATTGTGGCCCCCACTGTACTTCGA
TTACAGTCCACGCTCCCCCCCCCCCTCGCGCACAAGGGGCGGCTGAAACT
TTTTCTCGTTCGCACGCCCGAGACCCAAACATTGGGGTAGCCGCAAGGAT
CCCGAAAAGCAAGGAGAGGCTTCGAGGCACCAGTTTCTCAGGGGACCATA
CATGTGCCACGCAAGGACATGTGGAAAGCAAGATGCATATCGAAAAGGAG
TGGTGCGCGACACTTTAGTCCACACGTTGTGCCAGGAGCGAAACAGGAAT
GGACAGACGAGTGTGTGCGCACGCCTTGGGCAGCGAAGGTTGGCGGTGAA
ACAATCGAGAAGAAGGTCGCACCACTCCGTCGGGGCAGAAGTTCTTGACA
CGAAAAAAACGCCAGAAGGTGGAATTCCTCCGTAGGAGAGTATCAGAACA
ACCCCAAACCCTTGAGAGGGATTGATCTATCTTATCAGAGTGTCAGCAAT
TAGTACCAGCGCAAACTATTTGAGTCACGTTGGAACTCGTGCCACGCGGC
CGTCTTGCGCACGCGCGCTGGTTTGGAATGGGAAGGGTTAGGGGGGGGGG
TTGGAAGGAAAGCAAGCGAGAGGCGCAAAGAGGTGCACACCGCCAGCTCT
CCGCACATCGCGCGTCTCCTCTCCAAGGTGTCCTCTACCGATGAAGAACT
GAAGGTTGGGGCTCCTCCGCGGGACTCCTGCGGCAGGAGCTTTTTTTTTC
GTCGTGAAGGCCGTGTCCGTTGTCTGGGAAGGAAAACCAACGAGAGGCAA
GGGAGTCACGCAGTACTCAGAACCAGCACACCAGTATCTAGAACGTCACC
CGCGCAGTCGGTATCCTCGCTGGAACACGCGCCGAAAAAACCGGTGCGCG
GCTGTGTCCGTTTTCGGTTGCTCTGCTGTGTCGTCGTGCAATCCGCGCAC
ACAAAGCCGAACGAAACTCGAAAACCCGAACCTTAGCTAAAACCCCAATA
TCTGTCGACCCTCGTTTCTCTGCTTCATTTTCGTCTCCTGGAAGTTTCCA
TCAAATCAACCAACCGAGGATGATTGATAGTGTCCGTAAATCGAAACCCC
GGTTTGAAGCATTCCTCCGGCTTTTCTGCGAGGGAGTTGAGGGCGGCTGT
CTTTTTGTTCATCCTTCTCTGCCAGGAACTACTCACACGAGGGATTTCCT
TCGGGTGTCCCTTCTCTTCAATGTTTTCAGCGTGCATTCGTAACGATTAA
CAAAAATAATTTGTCGACCCCAACAAATGTCTCGCCGCTCAGCGCCGCCG
GAACCTGCTGGAAATCCACGAGGCGACGCGTCTGGCGTACGTGATGATGC
TGGTCGGCAGCGGGCGAGACCCCCCCTTGGCGTCCAGGGCGATCGCCGCG
ATGCTCGTGGACCACTGGTGCGACAGGGTCCCGTGCTCCTTCCTCCAGAA
GGTGAGGTCCCATGACTTCAAATATCGAGGGCATTTCGCTCGTGAGCAAG
CAAGCGAGCAGGGAAAAGAGTCAGGCTAGTAAGCAACCAAGCAAGTAAAC
CCGCGCTCGCTGTGCTCCATCTGTCGCCGCCTTCGGCTCCCCTTCTCTCC
CTCTGTCTCTCTCTCTGTCTCTGTCTCTGTCTCTGTCTCGCTTCGTTCTT
CCGTGACTCCTGATTCGATGATGATCAATAGCAACCTTCTCAGGCGAGTT
GTCCAGCGTGGTCGACCCTCCCGCCCCCCTACCCTTCGTGACACGTGACA
ACGGCTGCCATCCACCCCCATCGACCATGATGTTGCCTGCAACTCTTCCC
CGCCTCCCCGTTCCCCTTCCCTCGTGCAGGACGCCATTCGCTACGCTGCG
GTGGCAAGCGTGGAGCTCTCAGAGGCCTACGACAAAGAAAGCACCGCGCG
AAAGGCGAGAGGGCGCGGCTGCGGCTGCAGCTGCTTCTGCTACTACTGCT
GCCGCCGCTGCTGCTACTGCTGCTATCGTCACTGTTGTTGCCAGCAGGCG
TTAGAAGTGCACGCATGATCGGGAATATCGATCTATTTTAGGGAATTTTT
GTGCGGAGAGCACCCTCCTTTTTTTGTAAGACTCCGGGCTTTCCTTTGTG
GGTTGCCAAGCGCTAACAGCAGCAAGTGTCTGAGCCAAGGAGTTCTGTGA
AGAAGACATCTCAGTTTATGACACATGTGTCTCGTAAAGGAAAGGAATAG
GAAAGCTGTCGCGCGATTGGTTTGCAGATGTTTTGGACGGTTTGGCAGTC
GCCCCTTCTTGAGTACCAACTCAGCCCCGCGCCCCGGACGAAGCGTTGCC
TTTGCCTCGCTGCAACGAGGATGGCGTCTCTCAAGCGGTATGCCTTCCAG
CGCCGTCTTCGCCAACAATAGCACGTTCAAGCACCCACCCACCACACATG
CAACATGCATGCACGTTGCATTTTTGGTTGCATGCGATCACTCCACGGCT
CCTCTAAACAAGCACAAGCCATACCACTTCTTATGGGGGGCCCCAACCTT
TAATCTTTCCACTTCATCGCGATGTGTAGCAGAAGTAGTTCCTTGACGAA
GCATCTCTAACAGGTGATCCTCCCCCTTTGCCCTATTGCGGGAAATGCTC
GCTCACGGACAGCTCGAGGCAGGGGTCCAAGCCGCCGTTGCCGGGTTGGG
TCTGCGGGGCCTGGGGGTCTTTCGGCGAGAGTGGAGCAGGGATCGAGACA
TACTCTTCAAGGGCGGGGCCGCCTGCATCGTGAAGGAGATCAACGAGGTG
GCACGGGAGTGCCGGCGGGCCCACAGCGATGCCGACGCGGTTCTGGTGCT
GCAGGGGTACATAGCCCAGAAGAAGTAAGCTTTCTTTGTTGTTGCGCCTC
GTTCTTTTGTTGCCCTTGCCTCGTTTTGTAGCTTTTTGCTGTTTTCGTGC
CTCAGTTCGCACTCCACTCTGCACTCTGTACCTGGTGGAGGTAGTACGCA
TTTGAACGTTTTGTGTGTCACACAGATAAACGGTTGCAAGTGAACAACCG
CCCAAGTGTGAGCATTGCCCGCAGAACACATAGTACCACGCTGCGGTTGC
CGCCGTACAAAGAGGCACGTCTGTTAGATGGTGTCGCTTTTATTGGTATG
CGGGCGCGGCTAGATGGTGTCGCCTGTTTCAGTATTCGGGCAGCGTTGGA
TGATGTCGCTTTATCGGGATGCAGAAAGGGCCCTCTTGTGGCGCTTCTCG
TCTCCTTGCGGCACCTTATGACGTTTTCTGGCCAACGCCGGCATGCTCAT
GTCTACAGACGGCTCTTTTTCTGCGCAATGCTCGTGCCCTTGCCGACGGA
AGCAACGGCCAAGCAGGCGGGTGTTGGCCTCGTCCTTGAGGGACGTCAAC
ATCGACAGCGCTGCCCACGTTTGGGGCCGTGCCGAGTTTTTTAGGGGAGA
CGATACGAGGCAGACTACGTAACAGAGTAATCGCACCTTGAATCTGCAAG
CCACTTCCCACTCGTTAAGGGCAGTTTTGAGACAAGATTTTCATTTTTGT
CAGGAGAGCGGGAAGGTCCGCGATCCGCCCCCTTCATCTCCCGCCCGTCC
TTCTCACACAAGGGTTGGTGAAGTTCGACGCACTCAGGATTCGGGCATGC
TACGCTCTAGTTTCCTGCTACCATTTTTCGCTTCCCACCGCCAACTTTGT
GTTTTTATACGTCGGCCCTTGTTATCTGACTGCGTCATTTTTTTTTTCCG
TGTTCGATCCCTCCCAGAATGGACACGTTCGAGGATGATTTCATGAATTG
GGCAAGCGTGCAACTCCAGAAACTTCCGGAGACGCTAGTGGACCAGGCTC
TCACGTCATCCTCGTCGCCTGCAGCACCAGCATCTGCAGCACGTGCGCCA
TCAGCACCGGCAGCACCAGCACTATCATTACCAGTATCATCGGCACCATT
TGCACGGGCAGGATCAGCACCAGCAACGTCAGCGCAAGCACCATCATTGG
CACCGGCAGCACCAGCACCACAAGAATCATCGGCGTCAGCCCCGCCAGCC
CAACCAGCAGTCCCTGCGCCCTTACCAGCGCCCACTCCAGCGACGCGAAG
CTCTCCAGTGGTAGAGCAGGAGGGAACGGCATTGGTAGCTGCCAGTGGCG
GCGCTAGGGGTGGAAGCAGCGGGGGCGGCGGCGGGAGTATTAACAGCGCC
CCCACGAGCAGCGGCACCTCAGGCACTACGTCGAAGCCGGCCAACGACGA
AACCGGGGACCGCGGTAGCAGGATGGCGATGAAGATCGCAAGCATAAGCG
GCAGCAGCCAGAGTGAGAGTAAGAGTGAAAGTGAGAGCAGTGGCAGCAGC
GGTAGCCCCGGTCGGCGGAGGCGGAGGCGGCGGCGGCGTGGCCCCGCTAT
GGGCAAGCACTCCGCATCTATTGCGGTTGCTGCCGCAGCTACGGCCGCCG
TGCCGCAGCCTCCGTCGGCCGCTACGGAGGAGGGCGGTGCTGCCGGAATT
GAGAGGGAGGGGCGCTCGCGTATATCCGTCCAAGCCGGGTCGAAGAATGA
GCCTTTGTTGATCGATGAGGATGACGATGAAGAGGATAGAGCGAGAAGCA
ATGATTCTATCAACGGCGGTAGCAGCGGCGGCCGCGGCAGCAGCGGCAGC
GGTGGAGGTGCGCGGGTCGGGCGAGAGAGGGAAAAAATTGGACAGGAG back to topCoding sequence (CDS) from alignment at P-fluviatile_contig65:16340..25537- >mRNA_P-fluviatile_contig65.13113.1 ID=mRNA_P-fluviatile_contig65.13113.1|Name=mRNA_P-fluviatile_contig65.13113.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3372bp|location=Sequence derived from alignment at P-fluviatile_contig65:16340..25537- (Porterinema fluviatile SAG_2381) ATGCCGAGAGGCGTGCGTGCGAGGGCGGAGACGGGGCTAAACAAAGAGGG AACACTTTGCCGGTATCCTCGAAGCGTGATGGCGTCTTCTACGCTGGAGA ATCCTGTGTCTGATGTTGAGCTGTTGGAAGATGCGTTCCCCCAAAGGCGG CGGCAGCAGCAGGCCAACGAAGGCGCGGATGCCCTGCGCGAGAGACAGGT TGGAGCGGACGTGCTGGAGCTGTACTGCCGTTTTCGCGCCAAGGATGAGC CGGACATGCCGCAGAAAGCATGGCTGGAGCTCCTAGAGAAGACAATACCC AAACTGAAGATGCCGAGAGGCGTGCGTGCGAGGGCGGAGACGGGGCTAAA CAAAGAGGGAACACTTTGCCGGTATCCTCGAAGCGTGATGGCGTCTTCTA CGCTGGAGAATCCTGTGTCTGATGTTGAGCTGTTGGAAGATGCGTTCCCC CAAAGGCGGCGGCAGCAGCAGGCCAACGAAGGCGCGGATGCCCTGCGCGA GAGACAGGTTGGAGCGGACGTGCTGGAGCTGTACTGCCGTTTTCGCGCCA AGGATGAGCCGGACATGCCGCAGAAAGCATGGCTGGAGCTCCTAGAGAAG ACAATACCCAAACTGAAGCGCCGCCGGAACCTGCTGGAAATCCACGAGGC GACGCGTCTGGCGTACGTGATGATGCTGGTCGGCAGCGGGCGAGACCCCC CCTTGGCGTCCAGGGCGATCGCCGCGATGCTCGTGGACCACTGGTGCGAC AGGGTCCCGTGCTCCTTCCTCCAGAAGCGCCGCCGGAACCTGCTGGAAAT CCACGAGGCGACGCGTCTGGCGTACGTGATGATGCTGGTCGGCAGCGGGC GAGACCCCCCCTTGGCGTCCAGGGCGATCGCCGCGATGCTCGTGGACCAC TGGTGCGACAGGGTCCCGTGCTCCTTCCTCCAGAAGGACGCCATTCGCTA CGCTGCGGTGGCAAGCGTGGAGCTCTCAGAGGCCTACGACAAAGAAAGCA CCGCGCGAAAGGACGCCATTCGCTACGCTGCGGTGGCAAGCGTGGAGCTC TCAGAGGCCTACGACAAAGAAAGCACCGCGCGAAAGCTCGAGGCAGGGGT CCAAGCCGCCGTTGCCGGGTTGGGTCTGCGGGGCCTGGGGGTCTTTCGGC GAGAGTGGAGCAGGGATCGAGACATACTCTTCAAGGGCGGGGCCGCCTGC ATCGTGAAGGAGATCAACGAGGTGGCACGGGAGTGCCGGCGGGCCCACAG CGATGCCGACGCGGTTCTGGTGCTGCAGGGGTACATAGCCCAGAAGAACT CGAGGCAGGGGTCCAAGCCGCCGTTGCCGGGTTGGGTCTGCGGGGCCTGG GGGTCTTTCGGCGAGAGTGGAGCAGGGATCGAGACATACTCTTCAAGGGC GGGGCCGCCTGCATCGTGAAGGAGATCAACGAGGTGGCACGGGAGTGCCG GCGGGCCCACAGCGATGCCGACGCGGTTCTGGTGCTGCAGGGGTACATAG CCCAGAAGAAAATGGACACGTTCGAGGATGATTTCATGAATTGGGCAAGC GTGCAACTCCAGAAACTTCCGGAGACGCTAGTGGACCAGGCTCTCACGTC ATCCTCGTCGCCTGCAGCACCAGCATCTGCAGCACGTGCGCCATCAGCAC CGGCAGCACCAGCACTATCATTACCAGTATCATCGGCACCATTTGCACGG GCAGGATCAGCACCAGCAACGTCAGCGCAAGCACCATCATTGGCACCGGC AGCACCAGCACCACAAGAATCATCGGCGTCAGCCCCGCCAGCCCAACCAG CAGTCCCTGCGCCCTTACCAGCGCCCACTCCAGCGACGCGAAGCTCTCCA GTGGTAGAGCAGGAGGGAACGGCATTGGTAGCTGCCAGTGGCGGCGCTAG GGGTGGAAGCAGCGGGGGCGGCGGCGGGAGTATTAACAGCGCCCCCACGA GCAGCGGCACCTCAGGCACTACGTCGAAGCCGGCCAACGACGAAACCGGG GACCGCGGTAGCAGGATGGCGATGAAGATCGCAAGCATAAGCGGCAGCAG CCAGAGTGAGAGTAAGAGTGAAAGTGAGAGCAGTGGCAGCAGCGGTAGCC CCGGTCGGCGGAGGCGGAGGCGGCGGCGGCGTGGCCCCGCTATGGGCAAG CACTCCGCATCTATTGCGGTTGCTGCCGCAGCTACGGCCGCCGTGCCGCA GCCTCCGTCGGCCGCTACGGAGGAGGGCGGTGCTGCCGGAATTGAGAGGG AGGGGCGCTCGCGTATATCCGTCCAAGCCGGGTCGAAGAATGAGCCTTTG TTGATCGATGAGGATGACGATGAAGAGGATAGAGCGAGAAGCAATGATTC TATCAACGGCGGTAGCAGCGGCGGCCGCGGCAGCAGCGGCAGCGGTGGAG GTGCGCGGGTCGGGCGAGAGAGGGAAAAAATTGGACAGGAGAATGGACAC GTTCGAGGATGATTTCATGAATTGGGCAAGCGTGCAACTCCAGAAACTTC CGGAGACGCTAGTGGACCAGGCTCTCACGTCATCCTCGTCGCCTGCAGCA CCAGCATCTGCAGCACGTGCGCCATCAGCACCGGCAGCACCAGCACTATC ATTACCAGTATCATCGGCACCATTTGCACGGGCAGGATCAGCACCAGCAA CGTCAGCGCAAGCACCATCATTGGCACCGGCAGCACCAGCACCACAAGAA TCATCGGCGTCAGCCCCGCCAGCCCAACCAGCAGTCCCTGCGCCCTTACC AGCGCCCACTCCAGCGACGCGAAGCTCTCCAGTGGTAGAGCAGGAGGGAA CGGCATTGGTAGCTGCCAGTGGCGGCGCTAGGGGTGGAAGCAGCGGGGGC GGCGGCGGGAGTATTAACAGCGCCCCCACGAGCAGCGGCACCTCAGGCAC TACGTCGAAGCCGGCCAACGACGAAACCGGGGACCGCGGTAGCAGGATGG CGATGAAGATCGCAAGCATAAGCGGCAGCAGCCAGAGTGAGAGTAAGAGT GAAAGTGAGAGCAGTGGCAGCAGCGGTAGCCCCGGTCGGCGGAGGCGGAG GCGGCGGCGGCGTGGCCCCGCTATGGGCAAGCACTCCGCATCTATTGCGG TTGCTGCCGCAGCTACGGCCGCCGTGCCGCAGCCTCCGTCGGCCGCTACG GAGGAGGGCGGTGCTGCCGGAATTGAGAGGGAGGGGCGCTCGCGTATATC CGTCCAAGCCGGGTCGAAGAATGAGCCTTTGTTGATCGATGAGGATGACG ATGAAGAGGATAGAGCGAGAAGCAATGATTCTATCAACGGCGGTAGCAGC GGCGGCCGCGGCAGCAGCGGCAGCGGTGGAGGTGCGCGGGTCGGGCGAGA GAGGGAAAAAATTGGACAGGAG back to top
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