Homology
BLAST of mRNA_P-fluviatile_contig7.13531.1 vs. uniprot
Match:
A0A6H5K330_9PHAE (CCT domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K330_9PHAE)
HSP 1 Score: 189 bits (481), Expect = 2.140e-48
Identity = 227/496 (45.77%), Postives = 257/496 (51.81%), Query Frame = 2
Query: 299 MVEIMESREGVVEWSPDMELEGCDAERAAALLLAVAPRHRSFDATQQYQEASGGDAIGNGCSPSNNTNTNANLPFHDKPLGNSGSGDVXXXXXXXSIGSNSWEAGSRTAPFNGGVSGNGVDVGLDGXXXXXXXXXXQVRSPVGSNIKREFGGIMNGAAFSASSPHESPYAAGHGGSTRDSA---SSSP----LSSSTRPRSSSNGGGVAGIRL--LADLATQELQTMCDDDGRTAANLN----HGNHRRSYSSSSIHALGSPSSPPSSRDASTFASGGLDRAGFSSNRHTSPHRSGGGSRGGGIG----------VSRLSXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXEMR---------ASRAS--RSRRNRPRSVSMPEGMELQASRAWSSSSSSGRRNNGGRIDSIKEELEGHDG-VHGTRSRTWRADRRGLGGXXXXXXXXXRCSTGER---GGSVEDVEVVIGLARQRVGWGVEAEEGYG 1672
MVEIM+ R VEWSPDMELEG DAE+AAALLLAVAPR+RSFDATQ+ P P G +G XXXXXXX G V G XXXXXX S +KREFGG +NGA +AS +S AA GG R++A +SSP LS+S RPRS+S+GG VA +RL LADLATQELQTM D D ++ H H+RS S+ + + S +PP AGFS RH SP SGGG VS LS XXXXX XXXXX X A+RA R R+RPRSVSMPEGMELQA RAWS SSGRR +G RIDSIKEELEGH+G HGTRSRTWRA G G XXXXX + GG+VED E +IGLARQRVGWGVEAEEG G
Sbjct: 1 MVEIMD-RGREVEWSPDMELEGDDAEKAAALLLAVAPRNRSFDATQK--------------------------PEGPGPAGTTGXXXXXXXXXXXXX---------XXXXXGGAVPPEGAXXXXXXXXXXXXSGE--------SALKREFGGTVNGALPNASY-RDSAAAALPGGDPREAAVSIASSPSSFSLSTSPRPRSASSGG-VASMRLQSLADLATQELQTMGDVDETDTPGIHGHRRHQQHQRSLSNGNSQSS-SARTPPLP-------------AGFSPKRHLSPRLSGGGGXXXXXXXXXXXXXXXXVSALSSAAXXXXXCSAPLPPARAAPXXXXXLRERGVPRSRHERXXXXXXXXXXXHAAARAEGGRGMRHRPRSVSMPEGMELQA-RAWSGGYSSGRRKSG-RIDSIKEELEGHEGSTHGTRSRTWRAGSGGSSGFDGEXXXXXXXXXXXKSGWGGTVEDAETLIGLARQRVGWGVEAEEGSG 434
BLAST of mRNA_P-fluviatile_contig7.13531.1 vs. uniprot
Match:
D8LD77_ECTSI (CCT domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LD77_ECTSI)
HSP 1 Score: 106 bits (265), Expect = 8.730e-21
Identity = 181/425 (42.59%), Postives = 203/425 (47.76%), Query Frame = 2
Query: 299 MVEIMESREGVVEWSPDMELEGCDAERAAALLLAVAPRHRSFDATQQYQEASGGDAIGNGCSPSNNTNTNANLPFHDKPLGNSGSGDVXXXXXXXSIGSNSWEAGSRTAPFNGGVSGNGVDVGLDGXXXXXXXXXXQVRSPVGSNIKREFGGIMNGAAFSASSPHESPYAAGHGGSTRDSASSSPLSSSTRPRSSSNG----------GGVAGIRL--LADLATQELQTMCDDDGRTAANLNHGNHRRSYSSSSIHALGSPS----SPPSSRDASTFASGGLDRAGFSSNRHTSPHRSGGGSRGGGIGVSRLSXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXEMRASRAS------------------RSRRNRPRSVSMPEGMELQASRAWSSSSSSGRRNNGGRIDSIKEELE 1471
MVEIM+SR V EWSPDMELEG DAE+AAALLLAVAPR+RSFDATQ + G P+ T XXXXX +G+ E G+ + G G S +KREFGG++NGA + +S +S AA GG R + S+ S S GG A +RL LADLATQELQTMCD D A HG +PP+ AGFS RH SP SGG XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX R RA R RR+RPRSVSMPEGMELQA RAWS SSGRR +G RIDSIKEELE
Sbjct: 1 MVEIMDSRREV-EWSPDMELEGDDAEKAAALLLAVAPRNRSFDATQNPE----------GPGPAGTTGXXXXXXXXXXXXXXXXXXXXXXXXXVAHVGT---EGGTVPSEGAGXXXXXXXXXXXSGE----------------SALKREFGGMLNGALPN-TSYRDSAAAALSGGDPRAATVSTASSPSXXXXXXXXXXXXXXXXXXIGGGASMRLQSLADLATQELQTMCDVDETDTAGA-HGXXXXXXXXXXXXXXXXXXXXXRTPPAP-------------AGFSPKRHLSPRLSGG----------XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXLRERGVPRSRHERAEXXXXXXXXXXXXXXXXXXRGRRHRPRSVSMPEGMELQA-RAWSGGYSSGRRKSG-RIDSIKEELE 368
BLAST of mRNA_P-fluviatile_contig7.13531.1 vs. uniprot
Match:
A0A835ZBX8_9STRA (CCT domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835ZBX8_9STRA)
HSP 1 Score: 68.9 bits (167), Expect = 1.570e-8
Identity = 30/42 (71.43%), Postives = 36/42 (85.71%), Query Frame = 1
Query: 1711 GDSAICVSLPHMLPKYADMYNKNGRIGIYTRQEREAIISRFK 1836
G +A V+LPH+L KY D+YN+NGRIGIYT QEREAII+RFK
Sbjct: 276 GSAATAVTLPHLLSKYTDVYNRNGRIGIYTAQEREAIIARFK 317
BLAST of mRNA_P-fluviatile_contig7.13531.1 vs. uniprot
Match:
K8YW04_NANGC (CCT domain-containing protein (Fragment) n=2 Tax=Nannochloropsis gaditana TaxID=72520 RepID=K8YW04_NANGC)
HSP 1 Score: 61.6 bits (148), Expect = 2.820e-6
Identity = 26/34 (76.47%), Postives = 32/34 (94.12%), Query Frame = 1
Query: 1735 LPHMLPKYADMYNKNGRIGIYTRQEREAIISRFK 1836
LPHML KY+D+YNK+GRIGIYTR ER+AII+RF+
Sbjct: 441 LPHMLAKYSDVYNKHGRIGIYTRDERDAIIARFR 474
BLAST of mRNA_P-fluviatile_contig7.13531.1 vs. uniprot
Match:
A0A4D9CLM4_9STRA (Uncharacterized protein n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9CLM4_9STRA)
HSP 1 Score: 61.6 bits (148), Expect = 3.860e-6
Identity = 26/34 (76.47%), Postives = 32/34 (94.12%), Query Frame = 1
Query: 1735 LPHMLPKYADMYNKNGRIGIYTRQEREAIISRFK 1836
LPHML KY+D+YNK+GRIGIYTR ER+AII+RF+
Sbjct: 799 LPHMLAKYSDVYNKHGRIGIYTRDERDAIIARFR 832
BLAST of mRNA_P-fluviatile_contig7.13531.1 vs. uniprot
Match:
A0A835Z588_9STRA (CCT domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z588_9STRA)
HSP 1 Score: 60.5 bits (145), Expect = 5.600e-6
Identity = 25/36 (69.44%), Postives = 34/36 (94.44%), Query Frame = 1
Query: 1729 VSLPHMLPKYADMYNKNGRIGIYTRQEREAIISRFK 1836
++LPH+L KYAD+YN++GRIGIYT QEREAII+R++
Sbjct: 272 LTLPHLLHKYADVYNRSGRIGIYTLQEREAIIARYR 307
BLAST of mRNA_P-fluviatile_contig7.13531.1 vs. uniprot
Match:
A0A7S2YJJ2_9STRA (Hypothetical protein n=1 Tax=Amphiprora paludosa TaxID=265537 RepID=A0A7S2YJJ2_9STRA)
HSP 1 Score: 55.1 bits (131), Expect = 3.570e-5
Identity = 25/41 (60.98%), Postives = 32/41 (78.05%), Query Frame = 1
Query: 1711 GDSAICVSLPHMLPKYADMYNKNGRIGIYTRQEREAIISRF 1833
GD + ++LPH L KY ++YN+NGRIGIYT ER AII+RF
Sbjct: 32 GDKGV-LTLPHSLGKYKEVYNRNGRIGIYTPSERAAIIARF 71
BLAST of mRNA_P-fluviatile_contig7.13531.1 vs. uniprot
Match:
A0A7S1VKC2_9STRA (Hypothetical protein n=1 Tax=Grammatophora oceanica TaxID=210454 RepID=A0A7S1VKC2_9STRA)
HSP 1 Score: 56.6 bits (135), Expect = 6.660e-5
Identity = 30/52 (57.69%), Postives = 35/52 (67.31%), Query Frame = 1
Query: 1681 LCWGGAVGEGGDSAICVSLPHMLPKYADMYNKNGRIGIYTRQEREAIISRFK 1836
L G GE G ++LPH L KY ++YNKNGRIGIYT ER AIISRF+
Sbjct: 225 LSEGSLQGEKGS----LTLPHCLSKYKNVYNKNGRIGIYTPAERAAIISRFQ 272
BLAST of mRNA_P-fluviatile_contig7.13531.1 vs. uniprot
Match:
A0A7S1Z2T2_TRICV (Hypothetical protein (Fragment) n=1 Tax=Trieres chinensis TaxID=1514140 RepID=A0A7S1Z2T2_TRICV)
HSP 1 Score: 56.2 bits (134), Expect = 6.700e-5
Identity = 28/47 (59.57%), Postives = 34/47 (72.34%), Query Frame = 1
Query: 1693 GAVGEGGDSAICVSLPHMLPKYADMYNKNGRIGIYTRQEREAIISRF 1833
GA+GE G + LPH L KY ++YNKNGRIGIYT ER AII++F
Sbjct: 205 GAMGEKG----VLPLPHSLSKYKEVYNKNGRIGIYTPAERAAIIAKF 247
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig7.13531.1
>prot_P-fluviatile_contig7.13531.1 ID=prot_P-fluviatile_contig7.13531.1|Name=mRNA_P-fluviatile_contig7.13531.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=513bp
MVEIMESREGVVEWSPDMELEGCDAERAAALLLAVAPRHRSFDATQQYQE
ASGGDAIGNGCSPSNNTNTNANLPFHDKPLGNSGSGDVGGGDISGSIGSN
SWEAGSRTAPFNGGVSGNGVDVGLDGGGMGAGAGGGQVRSPVGSNIKREF
GGIMNGAAFSASSPHESPYAAGHGGSTRDSASSSPLSSSTRPRSSSNGGG
VAGIRLLADLATQELQTMCDDDGRTAANLNHGNHRRSYSSSSIHALGSPS
SPPSSRDASTFASGGLDRAGFSSNRHTSPHRSGGGSRGGGIGVSRLSSAA
AAATVAPSRTPPNHHHHLRERGPPRTRFDDDEEEDEEMRASRASRSRRNR
PRSVSMPEGMELQASRAWSSSSSSGRRNNGGRIDSIKEELEGHDGVHGTR
SRTWRADRRGLGGGGGGGGGGGRCSTGERGGSVEDVEVVIGLARQRVGWG
VEAEEGYGGAACVGEVRWAKGATARFASRCRICFPNTPTCTTRTDALVFT
RGRSARLSSRASS
back to topmRNA from alignment at P-fluviatile_contig7:1261804..1269861+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig7.13531.1 ID=mRNA_P-fluviatile_contig7.13531.1|Name=mRNA_P-fluviatile_contig7.13531.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=8058bp|location=Sequence derived from alignment at P-fluviatile_contig7:1261804..1269861+ (Porterinema fluviatile SAG_2381)
CTCCGTTACATACAGTCCAGACCCACTGCTGCTTCTGCTGCTGTTACGTC
CGCCCGTCGCCGCAGTCGGGCGGGTACAGAGAGGTGAGTACGCATCACAT
TGAGCGCGTCGTACGTTCGCGTATTCTCCAACGCACGAAGTCTCGTTGGG
GGAGAGCGGATTTTTCTTATTTTATTTTGGTCAGCCCCAAAACTGGTTTG
CAGCAGAATTGAGCGGGGACGACGGAGCCTTTCTCTCTTGCACGGTGGGA
AGGGAAAGAGTGCTTAGGAGAGAGGCCGGGTGAGCAAAGGAAGAAAAACG
AGCAACAACACGCATGCTTTTCCGAAATCCGAACACGCTCACAAGAGAAA
GGAGCGAAAGGAGATTGGCAGGCAAATTCGCTGGTATTTGTTGCAGGACA
AGTACAACACGGGGCGGACACTTCGACTGCATGCGAGAAGTAAAGCAGCA
GAGTAAGCGCGTTCGACCGCGCGAAGCCCTCAATACGCACACAAAGGCCA
GTCTCCTCGTAGATATGAGAGAGTAGCTCTATCCCGCTCGGCCAACGAAC
AACGGTACCGCCTGAGGGAGAGCACGTGCAACTCACGTATGTGTGCGGAC
TGAAAAGTTCGGCTCCTCAAGGTTCTCTCTCCCTCAGCACCTCGCCCTCT
CTGTCCCTCTCCCTCTCTGTCTCTCTCCCTCTCCGTCTCCCTCTTTGCTG
GTATACAGTATCCCTGTCTCTACCTCTCCATCTCTTCCTTTTCATGTTGC
CCCATGCCCTCCCTATCTCTCTCTCAAGGTGAAACCTGTTGAAAGACATC
CTAGCATCCACACAGACTAGCTGCCTGTTCTCGCCCGTGCCGTTTTTTGT
CACGGAAGCACACACCCATTTGTCGTCAACTTCGCGGAGGAGCTCGGCGT
GTGTATGTGTGTGCTGTAGATTGGGGGGGGGCGCTCTCCGTGGTATCACA
ACGCATTGCACGCAGCAGTGTTGGCGCTGTCGCCCTATTGCATGTACACC
CTGCTTCACCCCGTTGGATATACACGGTGGTGTGATTTGATTCCTTCAAT
CGGAAAAAATAGCGGCTCGCGCGCGCGCGCGCCCTGGCATGTCCCGAACG
CGCACCAGGACCGCTCCCCCCTCTTCTGTCTCTCTTCGACTCGTGTATAT
CAGACGGCGCGCGCGTTGGGTCCTCCAACAACTTCGCTGCTGCGGCTCTT
TGCGGGCTCTGATCGACTGCGCGTAGCTTGTTTTTCTCGTGGTAGCGCAC
ATACCGGAGCTGGTTGGTGAAACTCGTTTCCATTTGGCTGAACCAAAAGG
TCGTGGGGCCCGGGTCGCCGTCGCGCTCTCCTCCCGGTTTTCGCGTTTCG
GTTTTGGAGCGCTGCTGATGCGATCTCCTGCTGCGTCCCAAGCACGCCAC
GGCCGTGTTTCATTCGAAGAAGAGTCTTCTTGCGGCGAAAGGTGTTGGTG
GACTTTACAGTTGGTATTTGCTCATTGCTTGTTCTCCCTAGTTGCTTGAC
AAGGATCGGGTTGTGTATCAAGACACAACACGGAGGGGGGAGAAAAAATA
CATAAATGTACAAGTTAAAAAAAATACTCCGAAGAGTGTAGCATTTCCAC
GCGCATGCCTGGGCGAGTGTTTTGTGTGCTTCCCTCGCCGTATGTCGTAT
CGATAATCTGCCGACTCTCCTCTCTCCTTGTGCTGCATTACGAACCTGAT
GCGCGGAGTTCGACCCCGACTACCCCTCGGGCGCGTGTGCTGTCTGCACT
CAGACACCCTTGCGCATACACTCGGCGATTCACTGATTCAACAACCGGAC
CAGCCATGGAAGCGCCATATCGACTTCACCGCAGCTATGCGCACAGGTCG
AAATTGTCGAAGACTTTGCAGCCAATTCGTGTCGCGCCCCCCGCCCGCCC
GCCTCGTACTATCGCTTGCTCGTTTGTTTTTGCCGCTCTGGCATACGTTG
TTTGACTGCTATCAACACCGAGAACTGATAAAGCGCTTTAAAGTACGTGG
TCCCTTGTCCTGCCCCCGCTCCCCCTCCCGCCCCCGCCCCATACGTCCGC
GGAGCAGGTTCTCCCCCTCACCGCTGAATTACAGCACACGCTGCTCTCAA
GCTGCTGCAAACACCAGCACGGGCGCCGCGGAACTAAAAAGGCAACGGTC
ACACCCCATTCCCACCCCCCTCGGCGGATCCCCTTTGATACGGCGTTGGG
GGACTACTTGTCGTGAGGGAAGAGGCGGATTAACTCGCTCTTATTCTGCC
ACGGTGCGTGTGACACGCAAGGATGGTCGAGATCATGGAGAGCAGGGAGG
GCGTAGTTGAGTGGAGCCCGGACATGGAGCTTGAGGGGTGAGTCTCGCGA
GGGGACGAGGTTGGAGTTTCTTCAGAGGGGGGTCGGGGAGGGGTGCGCGT
CAAGGAGCAGAGCATTTCCTGCTTGGACGGTGGAAGAAGGGGGGCGCAGG
GCTAGCACGAGGCTGGTCTGAGCGATTTTCCTCGCCGTGTGTGTGTTATC
TTCACGTGAAACCCCCCTCTCCGCTCACTCCTGGTACCTCCAAGTGTCCA
AACATCCTGTCGGGAAACGATACCGTGTACGGAGTACCAGTGTTTGTCAT
GGACACGATGCGAGCGAGAAGCAAGAGCTAGAGGAGGGCGAAGAGGGTCT
GCAAGCATGCATGCACACGAGGCGCACATCCCTATTATTCCTCTTCCTCG
TCCTCTCGCGCTCTGTCTCGCTGTCGCTCATCTCCCTGTCCTCATCTGTC
CTTTGTTTCTCTCTCTGTCCCTCTGAACCCGGGCAGCACAACTCAGATCG
GCGTTGTGAATGCTCAACCAACCCATCGCACAAGCACATCTGGGACCGAT
CGTCGTAGCTGTGGGTTCCACCTCTTTCTGTCCTGGTAAAGCTTACCGAA
CTCATTTTAACGGTAGTACGTCATCATCGTCACGGCCTCTTGTTTATTTG
TTTTTTCGAATTTGTTTTTGGTGCAGGTGCGACGCGGAGAGGGCCGCGGC
TCTCCTGCTCGCCGTAGCGCCTCGCCACCGCTCGTTTGATGCCACACAGC
AATACCAGGAGGTGCGTGCTCCGCCACGTCCAAGTCCCCCCCAGACTTCA
CAGGCCCATCGGGTTCCGGCGACCTGCTGCACTCGACTTCGGCGGTGGCC
TGGCTTCGTTCCCACCGTGCCTTACCATTGTCTGTTGCCTGGAAGTTTGC
GCGTCCGGAGATGCTAATGCAAGCCAGGCCCTCGTTGCTGACGTTCCTTG
TTATTCTCGGCCTCCAGAGTCGTCGCTCCCCCCCAACCATCAAGTGTTGG
GGGAGACCGGGGTTCCGTCTGTCGATTGAATCGTCCACGCCCGCCCCTCG
CCATCCCTTGACCCCGTGTCCCAGAAGGCGGCCGCCCGGATGGCCCACTA
TGCTCTCTGCAAAGCTCTGGAGAAACGAAATTTTGAGTTCCAGTATCGTA
AAATGCAACCGCATGCTTTCCATCATTTGGCCTTGCAGCGAACGAAACCG
CGATATCCCCCGGCTTTCAAAATGTGCTCGTTGTGGAGAAGGCATTTGTA
GGGGTCTCGGGTTGGTCAATGCAGCGCGCGTACATACCTCTACGAACTCT
CCGCCCCACCCCCCACACACATCCTCCACCCAAACGGCCAAAATGTGCAA
CAGGCGTCCGGGGGGGACGCCATCGGCAACGGATGTTCTCCCTCGAACAA
CACGAACACGAACGCGAACTTACCCTTTCATGACAAGCCACTTGGCAACT
CCGGTAGCGGCGACGTCGGCGGTGGTGACATCAGCGGCAGCATCGGCTCT
AACTCGTGGGAGGCGGGTAGCCGCACCGCTCCCTTCAACGGCGGCGTCAG
CGGCAACGGGGTAGACGTCGGCCTCGACGGCGGCGGGATGGGAGCGGGGG
CAGGAGGCGGACAAGTGAGAAGCCCCGTCGGATCGAACATTAAGCGCGAG
GTATGTGGCTTCACTCCACCCCCCGTGCGGCTGCGCGTCATCTTTGGGGG
CATATTTTCTTGGGAAGAGGGACGTCCCACGCGGTGGAGTATGGTAGCCT
CATGTGTGCTGTCGTTGTGCTCAAGGGCTGATGACCCGGTTGAAGAGGAA
AAGGGTGTTAAGAGATGAGATGAAACACCGGCGCGCACGGAGCTCCGTTG
ATGTCCCCTTCGCAAACGTGTGCCGGCATGGATAATGTCGTGTCGATGGG
CGCAGTGGGCCGGGGACGAGGGGCTGGCGTGGTTACGTGGTATGGTGGCT
CCTGATGGAGCTATCGTGGTTGGCTTGCTTCTGCCGCTCTAATGCCGCAT
GCTTGGTTTCCGTTTCCGTGCGATTGTCTGCCGCAGCACGCAGTCCGTGC
TCCGTTTTGCTTGCCCTTCACGAAGTTAAAGTTTTCTGGTAACACGTGTC
TCGAGAGGTTGCACTCGCAACCCCCCTCCCTCCCCCCCCTCGGCCCCCAG
GCCTCCATGCCCCTCACTTTCGGCCTTGGTCTCTTCGACTTTGTAGCACT
CTAACCAGCCTGGGCACGAAGTGCCGCCCGTGTCGTAAATTTCGAGCAGT
GCGGCAGACCGGAAAAATCACAACACCACGTGTAAATGCAAGGTGAAATC
GATTCCTTTCTGTGTTTTTCCTCGTTTGTTTTGCTCTTCGATCTTGCGTC
TTTTCATTCGCCTTTTACCCACGTGCTGTTGTGCTGTCCCTGCGTACTCC
CCCCCTCCTCCCCAAGTTCGGCGGCATTATGAACGGGGCGGCATTCTCGG
CTTCGTCGCCCCACGAATCCCCGTACGCTGCCGGACACGGTGGCAGCACG
AGGGATTCCGCCTCGTCGTCTCCGTTGTCCTCGTCTACGAGGCCCCGTAG
CTCGTCGAACGGAGGGGGGGTTGCGGGTATTCGGCTGCTCGCGGACCTCG
CGACCCAGGTACAGTCGTCAGTCACCGTACGCAAAAAGGCCTCTTTTTCA
TCATATCTCCAAAGTTTTTTAGCTGCAGGACTGCGCGCCGTATGAACTTC
GTTTCAAACTTCAACAGCTAAAATTTGAGAAACAATATTTGAGCTGCTGC
ATTTTCGTCCTTCCATTTAAAATAAAATCTATCACGCGACTTTGAGGCGA
TGGCCGTCATGTAGCCCAACCGGTCACGGCGTGCATCCGCACAGGTTGGC
AGCAGCGCATGGCCGCGGTCTGCGCCGTCCACACGCTTCCCACGATCGAC
GTTAAACATTTTTTTGGTCTGATCAGTTTGTTCTTTGCTGTTCTCTCTCA
CATCTTGGCTGCGGGGGGGTGGGTGTGTGTGTACTCAGGATGTCTACCTT
GCTCGTTTCTGTTGCTGCGGGTGCCGGTGCCGTCAAGAAAGGGAAATCTG
GCCAGAAGACGACGGGGTTTTGTCGCACAAGCGCCTGGGGGAATGCTGAC
ACAAAGTTGGCAGCGGGCTGTCAAGTCAGTTACGCACCATCGATCCCGCG
CGTGATTCTCAGTATACCTGTGGAAAGCCTTTGTGACAGCTCGTCTTCTG
CTTCAGCTCCGCCGCTCTTCGTGACCTACGTCTGCGTGCTGCGTGATGTG
CTTGCCTACTTGTACATTCGGCCTTCGTCATCTTTTTTTCTGGAAGTCGC
GGTTGCTCACCTTTCATCCTTCCCGCTTGCGCCACCCCTCCTCTTCCTCC
ATATTTGCCTCGACTTTTGTTTTTTTTGTGGACCAGGAGCTCCAAACGAT
GTGTGATGACGACGGCAGAACCGCTGCGAACCTCAATCACGGCAACCACC
GCCGCAGCTACAGCAGCAGCAGCATCCACGCTCTTGGCTCGCCGTCATCG
CCGCCATCCTCTCGCGATGCGTCCACCTTCGCCAGCGGCGGTCTAGATAG
AGCGGGGTTTTCTTCGAATCGTCACACGTCTCCCCACCGATCCGGCGGCG
GCAGTCGCGGCGGCGGCATCGGCGTTTCTCGATTGTCGTCGGCAGCGGCA
GCGGCGACGGTAGCCCCCTCCCGAACCCCTCCGAACCACCATCACCACCT
CCGAGAGAGAGGGCCGCCGCGGACCCGGTTCGACGACGACGAAGAGGAGG
ACGAGGAGATGCGAGCGTCGAGGGCCAGCAGGAGCAGGAGGAACCGGCCC
CGATCGGTGTCCATGCCCGAGGGGATGGAGCTCCAGGCCAGCCGGGTGAG
CGCCCACAAACGAGCAGGCACGGAACTCGTGCTCCTGATCCCGTGCCAGT
GCCCCGTCCCGTGTATTCGCTCAAAGTTGGCGTCTGTTCGTGAGTGCGTG
TGTGCATATGCGTGTGCCCATACGTTGTGTGTGTTCCATCGCATTTATTG
TGGGCATCTTTCGTCGCTCTCCGGAAGTGCGTGGGCAAATCAGCCATCCG
GGTGACACAGGCGTGATTTGTTTCCCCGACGCGCGCTAGCTTGGGCTTTG
CAGAATTGAAGTTTGAAGAACAACCTACCCCCCACCCCGTGCTTTTTGTG
TCCGTCACGTTAATAATCTACGCATGAACTGATCCTGCCTACCTCTTTCC
CGCTCACCCGTCGTCGGCGCTGCCGGGTATGACGTGATGTAATGTGGCGT
GGTGTAATGTGTTGTGGCGTGAGCAGGCGTGGTCATCGTCGTCGTCATCG
GGGAGGAGGAACAACGGGGGGCGGATCGACTCGATCAAAGAAGAGCTTGA
GGTGAAGGAAGGAAGGGAGTCTCGGGTTTGGTCGGTACTCTCCCGAGGTT
TTGTCACTGTTTGTTGCCGTTGTTGATGCCCGATTTACTGCCACTGGCTT
GTCCTGTTCGGTACATTCGCTTGGGCTGATCGCGGTGCTGTGCTGTACGT
TTGCGTGTGTATGAACAGGTGTTTAGTGCGTCGCTCGCGTTTGTTGTAAC
GGTTGTGCTTTGCTAGTGTTTCTTCTTTTGCTGCTAGGTGTCCTTAGTCG
ACAGAGGATAACATGACACAAGATAAATAACGTGCGGTAACTCGTCGATG
GATATGAAAAAATGGATAAGCCAGGCACCAACCGCAGCTTGACTGTGAGA
CGATGACGATGTCTTGACCAACATTCCAATGCTTGGCGGGGCGTAGATCC
ACTTCTGTGGTTCCCGCACGGATCGGTGCCAACCCATGCAAAAACACGCA
CACGGCCTCGACGTGTGGCTGCCGGTTTGCATCAACGCGGGGTCCTTCTA
GACCACCCTTGCCTCTCCCCCCGCCTGTTTGTGTGGCAAGTGTGGTCCTC
CCCTTCTGTCTGTGTGGCAATCGCGACAATCTCATCACCACCAACTGGCG
GCCGGCGGCTTGGTGTATATCTCTCTTAATTTTTTTTTCAAGGGACACGA
CGGTGTCCATGGAACGCGTTCCCGCACCTGGAGGGCCGACCGGCGCGGCC
TCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCCGATGTTCCACGGGA
GAGCGGGGAGGGAGCGTCGAGGACGTCGAAGTGGTCATCGGTCTCGCCAG
GCAGAGAGTAGGGTGGGGCGTGGAGGCTGAGGAGGGGTACGGCGGGGCAG
CCTGTGTTGGGGAGGTGCGGTGGGCGAAGGGGGCGACAGCGCGATTTGCG
TCTCGCTGCCGCATATGCTTCCCAAGTGAGAAAGACCTGTCGGTGTTTTT
TTATTGTTGTTCTCGTGTTGTTGCTTTCGCTGGCTCTGTCTTTGTTGTTG
GCGCTGTCTGCGCCGTTGGCGCTATGTTGTTGGTCCCCTGTGGAGTTTTG
TTTTCCACGTGGAACTGAACCATGCCAGATTACACGACGAATGTGAAGAC
ATGCATGTCTCCTCTTTCATTTGGATGAGGTTTCTCCTTTGCGATCGGTT
TTTGCTTCTTTGTTGTACGTTCTTGTGGTGCCATCCTCTAGTCTTACACC
CTTCCACGCTTCAGACGTGAACACGTAGAAGCGTATAACGCATGCCATGC
AGCACACGCACAGGCATAATGTCGCTCCTTTGTCGTTTCTGTGATTTTTG
TTTGGCTTCCGATTTTTTGTCACAGATACGCCGACATGTACAACAAGAAC
GGACGCATTGGTATTTACACGCGGCAGGAGCGCGAGGCTATCATCTCGCG
CTTCAAGC
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig7:1261804..1269861+
>mRNA_P-fluviatile_contig7.13531.1 ID=mRNA_P-fluviatile_contig7.13531.1|Name=mRNA_P-fluviatile_contig7.13531.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3078bp|location=Sequence derived from alignment at P-fluviatile_contig7:1261804..1269861+ (Porterinema fluviatile SAG_2381)
ATGGTCGAGATCATGGAGAGCAGGGAGGGCGTAGTTGAGTGGAGCCCGGA
CATGGAGCTTGAGGGATGGTCGAGATCATGGAGAGCAGGGAGGGCGTAGT
TGAGTGGAGCCCGGACATGGAGCTTGAGGGGTGCGACGCGGAGAGGGCCG
CGGCTCTCCTGCTCGCCGTAGCGCCTCGCCACCGCTCGTTTGATGCCACA
CAGCAATACCAGGAGGTGCGACGCGGAGAGGGCCGCGGCTCTCCTGCTCG
CCGTAGCGCCTCGCCACCGCTCGTTTGATGCCACACAGCAATACCAGGAG
GCGTCCGGGGGGGACGCCATCGGCAACGGATGTTCTCCCTCGAACAACAC
GAACACGAACGCGAACTTACCCTTTCATGACAAGCCACTTGGCAACTCCG
GTAGCGGCGACGTCGGCGGTGGTGACATCAGCGGCAGCATCGGCTCTAAC
TCGTGGGAGGCGGGTAGCCGCACCGCTCCCTTCAACGGCGGCGTCAGCGG
CAACGGGGTAGACGTCGGCCTCGACGGCGGCGGGATGGGAGCGGGGGCAG
GAGGCGGACAAGTGAGAAGCCCCGTCGGATCGAACATTAAGCGCGAGGCG
TCCGGGGGGGACGCCATCGGCAACGGATGTTCTCCCTCGAACAACACGAA
CACGAACGCGAACTTACCCTTTCATGACAAGCCACTTGGCAACTCCGGTA
GCGGCGACGTCGGCGGTGGTGACATCAGCGGCAGCATCGGCTCTAACTCG
TGGGAGGCGGGTAGCCGCACCGCTCCCTTCAACGGCGGCGTCAGCGGCAA
CGGGGTAGACGTCGGCCTCGACGGCGGCGGGATGGGAGCGGGGGCAGGAG
GCGGACAAGTGAGAAGCCCCGTCGGATCGAACATTAAGCGCGAGTTCGGC
GGCATTATGAACGGGGCGGCATTCTCGGCTTCGTCGCCCCACGAATCCCC
GTACGCTGCCGGACACGGTGGCAGCACGAGGGATTCCGCCTCGTCGTCTC
CGTTGTCCTCGTCTACGAGGCCCCGTAGCTCGTCGAACGGAGGGGGGGTT
GCGGGTATTCGGCTGCTCGCGGACCTCGCGACCCAGTTCGGCGGCATTAT
GAACGGGGCGGCATTCTCGGCTTCGTCGCCCCACGAATCCCCGTACGCTG
CCGGACACGGTGGCAGCACGAGGGATTCCGCCTCGTCGTCTCCGTTGTCC
TCGTCTACGAGGCCCCGTAGCTCGTCGAACGGAGGGGGGGTTGCGGGTAT
TCGGCTGCTCGCGGACCTCGCGACCCAGGAGCTCCAAACGATGTGTGATG
ACGACGGCAGAACCGCTGCGAACCTCAATCACGGCAACCACCGCCGCAGC
TACAGCAGCAGCAGCATCCACGCTCTTGGCTCGCCGTCATCGCCGCCATC
CTCTCGCGATGCGTCCACCTTCGCCAGCGGCGGTCTAGATAGAGCGGGGT
TTTCTTCGAATCGTCACACGTCTCCCCACCGATCCGGCGGCGGCAGTCGC
GGCGGCGGCATCGGCGTTTCTCGATTGTCGTCGGCAGCGGCAGCGGCGAC
GGTAGCCCCCTCCCGAACCCCTCCGAACCACCATCACCACCTCCGAGAGA
GAGGGCCGCCGCGGACCCGGTTCGACGACGACGAAGAGGAGGACGAGGAG
ATGCGAGCGTCGAGGGCCAGCAGGAGCAGGAGGAACCGGCCCCGATCGGT
GTCCATGCCCGAGGGGATGGAGCTCCAGGCCAGCCGGGAGCTCCAAACGA
TGTGTGATGACGACGGCAGAACCGCTGCGAACCTCAATCACGGCAACCAC
CGCCGCAGCTACAGCAGCAGCAGCATCCACGCTCTTGGCTCGCCGTCATC
GCCGCCATCCTCTCGCGATGCGTCCACCTTCGCCAGCGGCGGTCTAGATA
GAGCGGGGTTTTCTTCGAATCGTCACACGTCTCCCCACCGATCCGGCGGC
GGCAGTCGCGGCGGCGGCATCGGCGTTTCTCGATTGTCGTCGGCAGCGGC
AGCGGCGACGGTAGCCCCCTCCCGAACCCCTCCGAACCACCATCACCACC
TCCGAGAGAGAGGGCCGCCGCGGACCCGGTTCGACGACGACGAAGAGGAG
GACGAGGAGATGCGAGCGTCGAGGGCCAGCAGGAGCAGGAGGAACCGGCC
CCGATCGGTGTCCATGCCCGAGGGGATGGAGCTCCAGGCCAGCCGGGCGT
GGTCATCGTCGTCGTCATCGGGGAGGAGGAACAACGGGGGGCGGATCGAC
TCGATCAAAGAAGAGCTTGAGGCGTGGTCATCGTCGTCGTCATCGGGGAG
GAGGAACAACGGGGGGCGGATCGACTCGATCAAAGAAGAGCTTGAGGGAC
ACGACGGTGTCCATGGAACGCGTTCCCGCACCTGGAGGGCCGACCGGCGC
GGCCTCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCGGCCGATGTTCCAC
GGGAGAGCGGGGAGGGAGCGTCGAGGACGTCGAAGTGGTCATCGGTCTCG
CCAGGCAGAGAGTAGGGTGGGGCGTGGAGGCTGAGGAGGGGTACGGCGGG
GCAGCCTGTGTTGGGGAGGTGCGGTGGGCGAAGGGGGCGACAGCGCGATT
TGCGTCTCGCTGCCGCATATGCTTCCCAAGGACACGACGGTGTCCATGGA
ACGCGTTCCCGCACCTGGAGGGCCGACCGGCGCGGCCTCGGCGGCGGCGG
CGGCGGCGGCGGCGGCGGCGGCCGATGTTCCACGGGAGAGCGGGGAGGGA
GCGTCGAGGACGTCGAAGTGGTCATCGGTCTCGCCAGGCAGAGAGTAGGG
TGGGGCGTGGAGGCTGAGGAGGGGTACGGCGGGGCAGCCTGTGTTGGGGA
GGTGCGGTGGGCGAAGGGGGCGACAGCGCGATTTGCGTCTCGCTGCCGCA
TATGCTTCCCAAATACGCCGACATGTACAACAAGAACGGACGCATTGGTA
TTTACACGCGGCAGGAGCGCGAGGCTATCATCTCGCGCTTCAAGCATACG
CCGACATGTACAACAAGAACGGACGCATTGGTATTTACACGCGGCAGGAG
CGCGAGGCTATCATCTCGCGCTTCAAGC
back to top