Homology
BLAST of mRNA_P-fluviatile_contig7.13486.1 vs. uniprot
Match:
D7FME2_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FME2_ECTSI)
HSP 1 Score: 192 bits (488), Expect = 3.250e-53
Identity = 96/103 (93.20%), Postives = 98/103 (95.15%), Query Frame = 2
Query: 515 ALTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVDELAELETRFRARLERNKEKRTGILGIEARLLG 823
ALTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAV+ELAELE RF+ARLERNKEKRTGILGIE G
Sbjct: 19 ALTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVEELAELEARFQARLERNKEKRTGILGIEHTKTG 121
BLAST of mRNA_P-fluviatile_contig7.13486.1 vs. uniprot
Match:
A0A6H5L1T7_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5L1T7_9PHAE)
HSP 1 Score: 211 bits (538), Expect = 2.620e-51
Identity = 105/111 (94.59%), Postives = 108/111 (97.30%), Query Frame = 2
Query: 515 ALTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVDELAELETRFRARLERNKEKRTGILGIEARLLGNRHPGPDS 847
ALTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAV+ELAELE RF+ARLERNKEKRTGILGIEARLLGNRHP D+
Sbjct: 19 ALTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVEELAELEARFQARLERNKEKRTGILGIEARLLGNRHPSIDA 129
BLAST of mRNA_P-fluviatile_contig7.13486.1 vs. uniprot
Match:
A0A836CQN8_9STRA (Uncharacterized protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CQN8_9STRA)
HSP 1 Score: 129 bits (323), Expect = 5.580e-31
Identity = 61/94 (64.89%), Postives = 77/94 (81.91%), Query Frame = 2
Query: 515 ALTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVDELAELETRFRARLERNKEKRTGI 796
A TARIIHYF+ GVLQLP+GTTLR +LA+KL CDPMRITKKFTG+ CLGKRVYHSCERT AT +++ ++LA LE RF ++LER +++R +
Sbjct: 28 AYTARIIHYFNTGVLQLPEGTTLRVFLAEKLRCDPMRITKKFTGSACLGKRVYHSCERTPATKAEIQESKEDLANLEQRFLSQLERRRDRRASL 121
BLAST of mRNA_P-fluviatile_contig7.13486.1 vs. uniprot
Match:
A0A835Z4F5_9STRA (Uncharacterized protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z4F5_9STRA)
HSP 1 Score: 120 bits (301), Expect = 2.240e-28
Identity = 57/82 (69.51%), Postives = 69/82 (84.15%), Query Frame = 2
Query: 515 ALTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVDELAELETRFRA 760
A T RIIHYF+ GVLQLP+GTTLRAYLA+KL CDPMRITKKFTG++CLGKRVYHSCERT A+ + + ++L++LE RF A
Sbjct: 12 AYTERIIHYFNTGVLQLPEGTTLRAYLAKKLQCDPMRITKKFTGSSCLGKRVYHSCERTPASPDEITASKEDLSQLEARFLA 93
BLAST of mRNA_P-fluviatile_contig7.13486.1 vs. uniprot
Match:
A0A6V1Q146_HETAK (Hypothetical protein (Fragment) n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A6V1Q146_HETAK)
HSP 1 Score: 127 bits (320), Expect = 3.860e-28
Identity = 61/100 (61.00%), Postives = 77/100 (77.00%), Query Frame = 2
Query: 521 TARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVDELAELETRFRARLERNKEKRTGILGIEARLL 820
T++IIHYF+ G+LQLP+GTTLR+YLA+KL+CDPMRITKKFTG+ CLGKRVYH + AT+ QA+DEL+ LE RF+ RLER K+K L E +L
Sbjct: 110 TSKIIHYFNTGILQLPEGTTLRSYLAEKLNCDPMRITKKFTGSQCLGKRVYHQGDVVQATHAQVVQALDELSHLERRFKLRLEREKQKTRSDLDAETTVL 209
BLAST of mRNA_P-fluviatile_contig7.13486.1 vs. uniprot
Match:
A0A7S1UUW2_9STRA (Hypothetical protein (Fragment) n=1 Tax=Grammatophora oceanica TaxID=210454 RepID=A0A7S1UUW2_9STRA)
HSP 1 Score: 114 bits (285), Expect = 2.530e-22
Identity = 55/83 (66.27%), Postives = 66/83 (79.52%), Query Frame = 2
Query: 521 TARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVDELAELETRFRARLE 769
T+RIIH+FS GVL LP+GTTLR+YLA+KL+CDPMRITKKF G +CLGKRVYH C+R+ T + A ELA LE RFR R+E
Sbjct: 212 TSRIIHHFSTGVLTLPEGTTLRSYLAEKLNCDPMRITKKFAGASCLGKRVYHLCDRSPGTAADIEMAKAELARLEQRFRLRVE 294
BLAST of mRNA_P-fluviatile_contig7.13486.1 vs. uniprot
Match:
A0A7S1XJQ1_9STRA (Hypothetical protein (Fragment) n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1XJQ1_9STRA)
HSP 1 Score: 108 bits (269), Expect = 2.820e-21
Identity = 55/117 (47.01%), Postives = 76/117 (64.96%), Query Frame = 2
Query: 515 ALTARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVDELAELETRFRARLERNKEKRT----------GILGIEARLLGNRHP 835
A T R+IH F+ G+LQ+ GTTLR+YL++KL+CDPMRITKK+ G++C+GKR++ CERT E +Q+ ELA+LE FRA+LE ++ R G GI A +G P
Sbjct: 37 AYTERVIHDFNEGLLQVAAGTTLRSYLSEKLNCDPMRITKKYAGSSCIGKRIFAPCERTPENIERGRQSAKELADLEAAFRAKLESSRSSRVPNGVGPRFNPGAKGIAAFAMGASFP 153
BLAST of mRNA_P-fluviatile_contig7.13486.1 vs. uniprot
Match:
A0A7S1BZD1_9STRA (Hypothetical protein n=1 Tax=Corethron hystrix TaxID=216773 RepID=A0A7S1BZD1_9STRA)
HSP 1 Score: 110 bits (274), Expect = 1.740e-20
Identity = 52/86 (60.47%), Postives = 67/86 (77.91%), Query Frame = 2
Query: 521 TARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVDELAELETRFRARLERNK 778
T+RIIHYFS G+L LP+GTTLR+YL++ L CDPMRITKKF G +CLGKRVY C+R+ AT + A ELA LE RFRA++++ +
Sbjct: 228 TSRIIHYFSTGLLTLPEGTTLRSYLSETLSCDPMRITKKFAGASCLGKRVYRLCDRSKATANDNEMAKKELAHLEQRFRAKVQQGQ 313
BLAST of mRNA_P-fluviatile_contig7.13486.1 vs. uniprot
Match:
D7FME3_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FME3_ECTSI)
HSP 1 Score: 106 bits (264), Expect = 2.340e-19
Identity = 60/107 (56.07%), Postives = 64/107 (59.81%), Query Frame = 1
Query: 1495 AGGPGAQRSYLCTPSGRIHNPYWSYYPHHAAMAAA------------------AAAEQPGRDGFIDFGAAAAHGYHHPSARGVAGFPHLGMSDPTQQQWLQHQRYAV 1761
AG AQ SYLCTPSGR HNPYWSY+PH AA PG G++DFGAAAAHGYH A+GVAGFPHLGMS P QQ WL HQ YAV
Sbjct: 84 AGAARAQASYLCTPSGRTHNPYWSYHPHXXXXXXXXXXXXXXXXXXXXXXXXXGAAGAPG--GYMDFGAAAAHGYHPSHAQGVAGFPHLGMSHPMQQLWL-HQHYAV 187
BLAST of mRNA_P-fluviatile_contig7.13486.1 vs. uniprot
Match:
A0A7S1ZRG3_9STRA (Hypothetical protein (Fragment) n=1 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A7S1ZRG3_9STRA)
HSP 1 Score: 104 bits (260), Expect = 2.500e-19
Identity = 51/99 (51.52%), Postives = 67/99 (67.68%), Query Frame = 2
Query: 521 TARIIHYFSLGVLQLPDGTTLRAYLAQKLDCDPMRITKKFTGTNCLGKRVYHSCERTTATYEVAKQAVDELAELETRFRARLERNKEKRTGILGIEARL 817
T++IIHYFS G+L LP+GTTLR++LA KL+CDPMRITKK+ G CLGKR YH CER T ++A EL +LE RF+ R++ G L + +
Sbjct: 378 TSKIIHYFSRGLLTLPEGTTLRSFLADKLNCDPMRITKKYAGAACLGKRAYHLCERPQVTIADIERANAELRQLEHRFQLRVKHGTSSIMGPLTASSHI 476
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig7.13486.1
>prot_P-fluviatile_contig7.13486.1 ID=prot_P-fluviatile_contig7.13486.1|Name=mRNA_P-fluviatile_contig7.13486.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1144bp
MQQHQHPRAAAAAVTAASPYHIPHPAAAPAGGGRAHHHHPHHLTAAALQS
HQLQQAAAYSRSQQQQQQQQAQFPEHSAPSVSNSPSMKTAPAPAASAAPA
AGRPLPAPQSSLTASGGRNRSTSPEMKGAAASATAAAANFSGKPHQQQQQ
QPSPRADQSALGVNIKAPTPPPPPPLPPPGSSSSVKTGVPASATPAPGGA
GGPGAQRSYLCTPSGRIHNPYWSYYPHHAAMAAAAAAEQPGRDGFIDFGA
AAAHGYHHPSARGVAGFPHLGMSDPTQQQWLQHQRYAVNGGGVNGRGDAM
AAMSSASCGLPTWQQLHHHQQQQMHMPMQIAPQSAAGGSGMVMQSGAGSP
MQQLLLLGNVSSGDGGSQAAGFSSPAVSSAYAFPLKASHRHSKQLQSQVQ
QLPRTSSYSSSSPVSSCGGTSAGKTSFSRVVAPPPSSAAQRNVTAAGGGK
NVSPQDADSRAGAGVDSSSQQQRQQQQPSPGATDDAECLTTVVSAGEGAS
SADAAAVGSAERDTVSSTMASPRELQQMYKKASGVHRRGKNGRPSHSNSH
NHPRDGGGGGGQGCNASVTSSLARRSAADTCSTTSSSTMGGSTTADGASS
VASLSGVSVGGSSRGTGSTGTGSGSGSEGQASRSSSRSGSKGAGGDGVGG
VSGGSGSLGSTSGSESGSEEVEKMSSPEPTDDLQTRTSSGPTREDVDGAG
GLLMGFVESLTKQHRLDQEQQQQQACKAPKGTRSRGGAGEGEGDNAGQQA
APSEHQPQQLLISSVQQQVQKPQQKGRIDSLHPRHRHKRAARMETEARLA
GGSGGDDTAAGAPGVGSPVDGEKSSQLRPSSATDSKPDPTGAAGTAAVPL
PVAGKKKCVVGDVTALKWPKKTDSRHRSTSSKVGGGGAGGRIRRGAGDSV
GVGSGGSSSNSSNCGSTMSKGSYRGGGVRDAVAPPPRPPSNGKEQDYLIR
GGGREAGLKRRRDQMTGGGGNGSGGGSSRRRERRGDQMDVEEAREDEQGG
HVSHSSDESEEGGVNFYSEEGGYEEEEYGRGGGWGSSGKDSGGSAGFGSG
SGSTEESNDPSVSDGDYGASDERSSSFEDPFTANTDGYENNPPILQTKSG
VRAPLAASGEQEDVEEGQGPARPTAAAAGIQNPVHAAASRNRD*
back to topmRNA from alignment at P-fluviatile_contig7:625120..632819+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig7.13486.1 ID=mRNA_P-fluviatile_contig7.13486.1|Name=mRNA_P-fluviatile_contig7.13486.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=7700bp|location=Sequence derived from alignment at P-fluviatile_contig7:625120..632819+ (Porterinema fluviatile SAG_2381)
CGAGCGACCGATACAAGGGAGAGCGAGGGACGAACTACGAGCACCATGGG
CACGAATGCCATGACCAGGAAGGGAAAATGGACGGTGCGTGCGGCGGGGG
GTGGCACGGGGCGGGAGAGCGGATGTTGTTGAGTCGAGCTATCACACGCC
CGCATGGCCGGTGACAAAATCCACGTCAACCCACGCAGAGAGTGGCGGGT
AAGGCCGGGGAGGGGAAGGGAGGAAGGTGGAAGAAGGGACATTTGAGGCA
TAATCTCGCCCGTGTTGCTCGATTGCCGGGCTGTCCCTGCTCTGGTCTTG
ATAGGGCGAACTCCTCAAACAAGCACTTTTTCCCCCCCCACAGAAAAGAG
GTGAAGAGGAAAAAGAGGAAAGAGCGGGGTTTTTTGACAGCGCTGGCCCT
TTTTTTTGCGCCCCCTCGACCTCCTCCTGCTGCTGCTTCTGCTGCTGCTT
GTCTTCCTTTCTTTGCGCTACGGCAACTACAACCACAACGACACCCCAAC
AGAGCGAGGAGGAGGCTCTCACGGCAAGAATAATTCACTACTTCAGCCTC
GGAGTGCTGCAGCTACCCGATGGCACAACCCTCCGAGCATATCTGGCGCA
GAAGCTCGATTGCGACCCTATGCGGATCACCAAGAAGTTCACGGGAACCA
ACTGCTTGGGGAAGAGGGTGTACCACTCCTGCGAGAGAACGACGGCCACC
TACGAGGTCGCCAAGCAGGCGGTGGACGAGCTGGCGGAGCTCGAGACGCG
ATTCAGGGCCAGGCTCGAGCGAAACAAGGAGAAGCGGACAGGGATTCTTG
GGATCGAGGTGATTGATGAAAAAACAATCAAAACAAAATATGCACAGCCG
GGAATATTGTGGTACGACCGAGACGTTGAAACGAGAGAAAGAAAGGATGG
TTCAGAGAGCGTACACAAGTCATTCTCGACGTACGCTCTCGCTCCCCTTC
TGTGGAAGGCAGGACCGCCTCTGCCCCGTACCTGCGAGCGAGCATCTGGT
GTGTACACGGGACCCGCTTGTGATTCTTGGGAAACAATGTATCGCGGTTG
AGGAGCGATAGCGACCACGGTCAGGCGGAAAAAATATAACGTCATTTCTC
TCGAACAAAAAAAAACTGACTCTATCTCCGACGCGTACGAACGCGTAAGC
GCGTGCGTACTTGTTTTCCTCGGACCCCTTACCACCGTGGGTTTCGCCGA
GGGACCGAAAACTAGGCCTAAAGTGGTTTCGTTATCGGCTTTCGCAAGAG
AAGGTCTTGGGGTGAAGATGACCAGGTGCTGGTGCCCTAACAGTGAAGAG
CGCGAGGTTCATGATTATTTCCCAGCTTCAGTAGCGGCTCTGATTCGCAC
GCTCAAAAAGCGCGTTCTGTTCCCCCGGCTGTGCAAGGGCCGAGATTCAA
CTCTCAACTTTCATGTGGGGAACAACGAGTGGCCGCCAAGGCCGGAGAGG
CACAGATTAAACCCGCGCCGTGAAGGAAATCGATGCATTGGGGAATGAAA
ACAACGTACAGCATGGTTTCAGTTGGCACAACAGCGACAGCAACAACAGG
ACAGTAGTAGCCGCACGTCATCCGTCGCGCGTGAAAACTGATTGTAACAG
ATACGCATCTCCGATTCCTCGTTTCGTGTGACTTGCTGTTTTTTGTAGGG
TGAGGAGTTGCACACCACACAAAATATGTACTTCGTTCCCTATACACGAC
AGACCGCAAGTATCTGCTTTTTTTATCAAGATGAAGGGGACAATTTGATG
CAGCCCGCGCACGCTGCAGCTGCCAAATCCCCCCACTTTTTTACAGCGAA
GAAGCCCGCACCTCCACAAATTCATTTACTTCGTATTTAAGTTGAAGTCA
TTTTGAAAAAAGGGCAAAGAGCGATCGATGTACACATGAGGCATTGCGTG
AGGAGGGCGAGACGAGGGCTACAGAATGACGTGTCCTGATTTGAGTTGAC
TCCACACCTTGCGGCTAATGGTGCGCGTCTATTTTTAACGTGCACACATT
AGGGGTGGCGCGCGCGTGCGTGCGCATGTACCGGTTCGTTGCCTCTCGAC
ATGACCTCGGATCGGATCATCACCTACGTGCAAAAAAAAGTTGGAATTTT
CCCATGAACGCACCTCCGTCTTCGCAAATTACCGCGCGTCACACCTCCCT
CTACTTCGGACATGGGCTTCATTCGGCATCTCTTTTTGACCCTGTCCCAT
GAACCCGTCTTCGCCTTCACGTCTCCGCGCCCCCCCCCCCTCTCTCTCGG
TCCTGTTCATCGTTGACCTTCAGCAGGCACGGCTTCTTGGCAACCGGCAT
CCCGGGCCAGACTCACGGGGGGCGGCCGCCGCCGCCGCCGCCGCCGCCCC
CTCGGGCGTGAGGAGCGGCTTCGTGCAAGCCTTCGGGCAAGCAGGAATGG
TCGGAGGAGTGGCAGCGGTCAGTCCGGGAGCCTCGCCGCAGCAGCTGCAG
AGTCAGGCGGCCGCGGCCCGCGGCAGCGGCAGCGGCGGCGGCGGCGGCGT
GGAACATCCCGCTCTCGCAGGGCTACCCCGGGCCCCCGTCCATGCAGCAG
CACCAACACCCGCGGGCCGCCGCGGCCGCGGTGACCGCGGCATCACCCTA
CCACATCCCACATCCCGCCGCCGCCCCTGCCGGCGGGGGGAGGGCCCACC
ATCACCACCCGCACCACTTGACCGCGGCGGCGCTGCAGTCGCACCAGCTC
CAGCAGGCGGCCGCGTACTCGAGGTCTCAGCAGCAGCAGCAGCAGCAGCA
GGCTCAATTCCCCGAGCACTCGGCGCCATCCGTCAGCAATAGCCCGAGTA
TGAAAACGGCTCCCGCACCCGCAGCGTCGGCAGCCCCGGCCGCGGGGAGA
CCGCTGCCGGCCCCGCAGTCTTCGTTGACGGCCAGCGGGGGCAGAAACAG
ATCCACATCTCCGGAGATGAAGGGTGCGGCTGCCTCGGCGACGGCTGCGG
CGGCAAACTTCAGTGGGAAACCGCACCAGCAGCAGCAGCAGCAGCCGTCA
CCTCGCGCCGATCAATCTGCCTTGGGTGTCAACATCAAGGCTCCCACGCC
GCCGCCGCCGCCGCCGCTTCCTCCGCCGGGCTCCTCGAGCAGCGTGAAAA
CGGGAGTCCCCGCCTCGGCGACGCCGGCGCCGGGCGGTGCCGGCGGTCCC
GGCGCGCAGAGGTCCTACCTCTGCACTCCGTCGGGGCGAATCCACAACCC
TTACTGGTCGTACTACCCCCATCACGCGGCGATGGCAGCTGCAGCGGCGG
CGGAACAGCCGGGGCGGGACGGGTTCATTGACTTTGGTGCAGCCGCGGCC
CACGGGTACCACCACCCTTCAGCGCGAGGAGTGGCGGGGTTTCCCCACCT
TGGGATGTCGGACCCCACACAGCAGCAGTGGCTGCAGCACCAGCGGTACG
CGGTGAACGGCGGCGGGGTCAACGGCAGAGGGGATGCGATGGCGGCTATG
TCGTCCGCGAGTTGCGGGTTGCCGACGTGGCAGCAGCTTCACCACCACCA
GCAGCAGCAAATGCACATGCCAATGCAGATTGCGCCGCAGTCGGCCGCCG
GGGGGTCCGGCATGGTGATGCAGTCGGGTGCCGGGTCGCCGATGCAGCAG
CTGCTATTGCTCGGGAACGTCAGCAGCGGTGACGGTGGTAGCCAGGCTGC
CGGCTTCTCCTCCCCGGCGGTCTCGTCCGCCTACGCGTTTCCTCTCAAGG
CTTCGCACCGGCACAGCAAGCAGCTGCAGTCCCAGGTCCAGCAGTTGCCG
CGAACGTCGTCATACTCCTCCTCCTCGCCGGTCTCGTCCTGCGGCGGCAC
CAGCGCCGGCAAGACGAGCTTTTCCCGCGTAGTAGCGCCGCCACCCTCCT
CGGCTGCACAGCGGAACGTCACCGCCGCCGGCGGAGGCAAAAACGTGAGC
CCTCAAGACGCCGATTCGAGGGCCGGCGCTGGCGTCGACTCCTCCTCGCA
GCAGCAGCGGCAGCAACAGCAGCCGTCGCCGGGGGCAACTGACGACGCCG
AGTGCTTAACAACCGTCGTGAGCGCCGGCGAGGGTGCCTCTTCGGCAGAC
GCCGCCGCCGTCGGGAGCGCCGAAAGGGACACGGTGTCCTCCACCATGGC
CTCTCCGCGGGAGCTTCAGCAGATGTACAAGAAGGCCTCCGGGGTGCATC
GCCGCGGGAAGAACGGCCGGCCCAGCCACAGCAACAGCCACAACCATCCC
CGCGACGGCGGCGGCGGCGGCGGTCAGGGCTGCAACGCCAGCGTGACGTC
GTCGCTCGCTCGGAGGAGCGCTGCCGATACGTGCAGCACCACCAGCAGCA
GCACCATGGGCGGCAGCACGACCGCCGACGGGGCGTCTTCCGTGGCCTCT
CTCTCCGGGGTGAGCGTCGGCGGCTCCTCGAGGGGGACCGGCTCCACTGG
CACCGGCTCCGGGTCCGGCTCGGAAGGACAAGCAAGTCGCAGCAGCAGCC
GGAGCGGCAGCAAAGGCGCCGGCGGTGACGGCGTGGGCGGCGTGAGCGGC
GGGTCGGGGTCTCTGGGCTCCACCTCCGGGAGCGAGAGCGGCAGCGAGGT
AAGGGAAACCGACGAGATCTTCATCATCACTCGCGCGAGAACACAGATGG
TCGTGTGTTTTTGCAGCCGAAGTTGAACGCGCGTTACTTGATCGTTTGGT
TGACGCTTTGCTTCGCCACTCTCCCATCGGCGAAGTCGGTGTAGATGGCT
GTGTGTCACAACATGACACTCGTACGAATTTAGCGTGCTGATGCACTGTT
CCGAAGGTGTTGTTGAGTTATCCTCACTTGCCTGCAACGCTTGCGTTTGA
CGCACACCCCGCACCCACCGCTCAGCGGCAGTCTCTTGTTGTTAATGTTT
TATGCTTTTGGTTGATTCTTGCAGGAGGTCGAGAAAATGAGCTCGCCGGA
ACCCACGGACGACTTGCAAACCAGAACGTCCTCGGGACCGACCAGGGAGG
ACGTGGACGGAGCCGGGGGCTTGCTGATGGGCTTCGTCGAGAGCCTCACA
AAACAGCACCGACTGGACCAAGAACAGCAACAGCAGCAGGCTTGCAAGGC
GCCAAAGGGCACACGGTCGCGGGGAGGAGCGGGTGAAGGGGAAGGCGATA
ACGCCGGCCAGCAGGCCGCACCATCAGAGCACCAGCCGCAGCAGCTCCTG
ATCTCGTCGGTGCAGCAGCAGGTGCAGAAGCCGCAGCAGAAGGGAAGAAT
CGACAGCTTGCACCCCCGCCACCGGCACAAACGCGCGGCGCGGATGGAAA
CCGAGGCGCGCCTTGCCGGCGGCAGCGGCGGCGATGATACCGCCGCTGGG
GCGCCAGGTGTCGGCTCGCCAGTCGACGGTGAGAAGAGCTCGCAACTGCG
TCCCTCTTCCGCCACCGACTCCAAACCCGACCCCACTGGCGCCGCCGGCA
CAGCAGCCGTACCGCTGCCCGTGGCCGGGAAGAAGAAATGCGTCGTGGGC
GACGTGACGGCGTTGAAGTGGCCGAAAAAGACCGACAGTCGACACCGTTC
GACATCCTCCAAAGTCGGCGGCGGCGGCGCCGGCGGCCGGATAAGGAGAG
GTGCAGGCGACAGCGTTGGTGTCGGCAGCGGCGGCAGCAGTAGCAATAGC
AGCAACTGCGGCAGTACCATGAGCAAGGGCAGCTACCGCGGCGGCGGGGT
GCGCGACGCAGTCGCGCCGCCTCCTCGCCCGCCGTCCAACGGCAAAGAAC
AGGACTACCTCATCCGAGGAGGAGGAAGAGAGGCTGGCCTCAAGAGGCGG
AGAGACCAGATGACCGGCGGCGGCGGTAACGGCAGCGGCGGGGGGTCTTC
TCGCCGGCGAGAACGGCGGGGAGACCAGATGGACGTCGAGGAAGCGAGGG
AGGACGAGCAGGGGGGACACGTGAGCCACAGCAGCGATGAATCCGAGGAG
GGGGGCGTAAACTTCTACTCCGAGGAGGGAGGCTACGAGGAGGAGGAATA
CGGCCGTGGAGGCGGGTGGGGCAGCTCCGGGAAGGACTCGGGGGGCTCCG
CGGGGTTCGGGTCCGGGTCCGGGTCCACCGAGGAGAGCAACGACCCATCT
GTCTCGGACGGTGACTACGGCGCAAGCGACGAGCGATCGAGTTCGTTCGA
GGACCCCTTCACAGCCAACACCGACGGCTACGAGAACAACCCCCCCATCT
TGCAGACAAAGTCCGGCGTCAGGGCGCCGCTTGCCGCCTCGGGCGAGCAG
GAGGATGTGGAGGAGGGGCAGGGACCGGCGAGGCCGACGGCGGCGGCTGC
CGGAATCCAGAATCCGGTGCACGCGGCGGCATCGCGAAACCGAGATTAGT
ATTTGAATTTTTTTGAATTTCTGGAACCCTGACCTCCACACGTGCGAGGG
CGAATGAACTGCTGTTTTGTTGTTTCCGTCCCCCTGGACCGCCCGCCGTG
AATTTTTTGCTCGCGGGGGTTCCGTATGGTTGTTCAGGGTAGTGGAGGTG
AGCACACAAACGGTTTCACGTTGAAGTTTTACAAACTGCTGGGCGGGCAG
CGGGGTGGGGGATTGGGCTTGCCCTTGGTTCGTGTTTTTTTGGATGACGT
TGAGGGGCACGGGCCATGGATGATTGCGAGCGCGAGTCGCGTTATTCCCG
GTTTGCTCCACGATTCAGGGCGCGAGGGTACAACGAAATATTTCAGTTTT
CCAGCGACACGCATACTAATTCGTGATATGGTGGTACTTGCTGAGCGCGC
GTTTTTGGTTGTTGCGTTTCCGGCATTTCATTCATCGGTTTGCCGTCGCA
ACGCGACGGGGGGCTTGCCAAACGCTCTGGTGCTCGCGGAATTCCTCTCT
TTTCTAACGCTTTGTGTGCCAAAACGTTCGGGTGTACGTGCCGCCCCTGT
GAATATAATCTGGTTCGTGTGGATGCATCTAGTCATGGCGTCGACGAAAG
CAAGAAAACTGGATGTTGTTTTCGGAAACCCGAGCTGGAGATGTACCTTA
TTTCCATGGCCTCGGGCGCATTCTGTTGACCCGCGCGCCACACATGAGCG
GGTCTTTTGAGGCCTGCTCCTTCCTGTGGCTGGCCTGGCATGTCGTGGTC
TGCCTATTGCTGTCTTCATCAGTTTTCTTTTTGAAATTGATGCAAAAAAT
GGACGACAACGAGAAGAGTAGCCTGCCCGTTGTGTTTCCTTTTGTGCATA
GTTTTTTCCGACTATATATATCCTTTCTACTATTGATGGCGGGATGGATG
GGCTATCAATTGTCGCTGGAGCGGGGGAGGAGAGCACAACATGTATTCAT
GTGTGGTGCATGCCTCTCAGTCCACGCCTCTTTCTTCCTCTCGAGGAGGT
TCGAGGCAATGCTTGCTGGTGTTTCCCTTAGGGAGGTGGGTGGCGTTTTC
TTTGCTGTTTACAACACAAGTCAGCGAAAGTTCTAGTGTGTTAGTGTCTT
GATGCGTGATCGTACCATGTTTGTTTTCGTGCACACATCGTGGTGAACGG
TGCTAGAGTTCGTATCTTCTTTAACATAGAGGGGGGGTCGCGAGCAGGAC
CCACGAAGGGTCGAAGCGGAGGGCTCAGGTCGCCGATACTCACCTACCTG
CTAAAAAGGCCTCCTCGGTTGTCCGTTTCTAGATCCGAGGGGACACGTCA
GGGTTTTTCAATGACTTGTTTCGAACACGTCTGATTCTTGAAAAATGGTG
CCCTTACCTTACGTACGTGTTTGTGTTACGGGGGGAGGGGGAGCGAAGGG
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig7:625120..632819+
>mRNA_P-fluviatile_contig7.13486.1 ID=mRNA_P-fluviatile_contig7.13486.1|Name=mRNA_P-fluviatile_contig7.13486.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=6864bp|location=Sequence derived from alignment at P-fluviatile_contig7:625120..632819+ (Porterinema fluviatile SAG_2381)
ATGCAGCAGCACCAACACCCGCGGGCCGCCGCGGCCGCGGTGACCGCGGC
ATCACCCTACCACATCCCACATCCCGCCGCCGCCCCTGCCGGCGGGGGGA
GGGCCCACCATCACCACCCGCACCACTTGACCGCGGCGGCGCTGCAGTCG
CACCAGCTCCAGCAGGCGGCCGCGTACTCGAGGTCTCAGCAGCAGCAGCA
GCAGCAGCAGGCTCAATTCCCCGAGCACTCGGCGCCATCCGTCAGCAATA
GCCCGAGTATGAAAACGGCTCCCGCACCCGCAGCGTCGGCAGCCCCGGCC
GCGGGGAGACCGCTGCCGGCCCCGCAGTCTTCGTTGACGGCCAGCGGGGG
CAGAAACAGATCCACATCTCCGGAGATGAAGGGTGCGGCTGCCTCGGCGA
CGGCTGCGGCGGCAAACTTCAGTGGGAAACCGCACCAGCAGCAGCAGCAG
CAGCCGTCACCTCGCGCCGATCAATCTGCCTTGGGTGTCAACATCAAGGC
TCCCACGCCGCCGCCGCCGCCGCCGCTTCCTCCGCCGGGCTCCTCGAGCA
GCGTGAAAACGGGAGTCCCCGCCTCGGCGACGCCGGCGCCGGGCGGTGCC
GGCGGTCCCGGCGCGCAGAGGTCCTACCTCTGCACTCCGTCGGGGCGAAT
CCACAACCCTTACTGGTCGTACTACCCCCATCACGCGGCGATGGCAGCTG
CAGCGGCGGCGGAACAGCCGGGGCGGGACGGGTTCATTGACTTTGGTGCA
GCCGCGGCCCACGGGTACCACCACCCTTCAGCGCGAGGAGTGGCGGGGTT
TCCCCACCTTGGGATGTCGGACCCCACACAGCAGCAGTGGCTGCAGCACC
AGCGGTACGCGGTGAACGGCGGCGGGGTCAACGGCAGAGGGGATGCGATG
GCGGCTATGTCGTCCGCGAGTTGCGGGTTGCCGACGTGGCAGCAGCTTCA
CCACCACCAGCAGCAGCAAATGCACATGCCAATGCAGATTGCGCCGCAGT
CGGCCGCCGGGGGGTCCGGCATGGTGATGCAGTCGGGTGCCGGGTCGCCG
ATGCAGCAGCTGCTATTGCTCGGGAACGTCAGCAGCGGTGACGGTGGTAG
CCAGGCTGCCGGCTTCTCCTCCCCGGCGGTCTCGTCCGCCTACGCGTTTC
CTCTCAAGGCTTCGCACCGGCACAGCAAGCAGCTGCAGTCCCAGGTCCAG
CAGTTGCCGCGAACGTCGTCATACTCCTCCTCCTCGCCGGTCTCGTCCTG
CGGCGGCACCAGCGCCGGCAAGACGAGCTTTTCCCGCGTAGTAGCGCCGC
CACCCTCCTCGGCTGCACAGCGGAACGTCACCGCCGCCGGCGGAGGCAAA
AACGTGAGCCCTCAAGACGCCGATTCGAGGGCCGGCGCTGGCGTCGACTC
CTCCTCGCAGCAGCAGCGGCAGCAACAGCAGCCGTCGCCGGGGGCAACTG
ACGACGCCGAGTGCTTAACAACCGTCGTGAGCGCCGGCGAGGGTGCCTCT
TCGGCAGACGCCGCCGCCGTCGGGAGCGCCGAAAGGGACACGGTGTCCTC
CACCATGGCCTCTCCGCGGGAGCTTCAGCAGATGTACAAGAAGGCCTCCG
GGGTGCATCGCCGCGGGAAGAACGGCCGGCCCAGCCACAGCAACAGCCAC
AACCATCCCCGCGACGGCGGCGGCGGCGGCGGTCAGGGCTGCAACGCCAG
CGTGACGTCGTCGCTCGCTCGGAGGAGCGCTGCCGATACGTGCAGCACCA
CCAGCAGCAGCACCATGGGCGGCAGCACGACCGCCGACGGGGCGTCTTCC
GTGGCCTCTCTCTCCGGGGTGAGCGTCGGCGGCTCCTCGAGGGGGACCGG
CTCCACTGGCACCGGCTCCGGGTCCGGCTCGGAAGGACAAGCAAGTCGCA
GCAGCAGCCGGAGCGGCAGCAAAGGCGCCGGCGGTGACGGCGTGGGCGGC
GTGAGCGGCGGGTCGGGGTCTCTGGGCTCCACCTCCGGGAGCGAGAGCGG
CAGCGAGATGCAGCAGCACCAACACCCGCGGGCCGCCGCGGCCGCGGTGA
CCGCGGCATCACCCTACCACATCCCACATCCCGCCGCCGCCCCTGCCGGC
GGGGGGAGGGCCCACCATCACCACCCGCACCACTTGACCGCGGCGGCGCT
GCAGTCGCACCAGCTCCAGCAGGCGGCCGCGTACTCGAGGTCTCAGCAGC
AGCAGCAGCAGCAGCAGGCTCAATTCCCCGAGCACTCGGCGCCATCCGTC
AGCAATAGCCCGAGTATGAAAACGGCTCCCGCACCCGCAGCGTCGGCAGC
CCCGGCCGCGGGGAGACCGCTGCCGGCCCCGCAGTCTTCGTTGACGGCCA
GCGGGGGCAGAAACAGATCCACATCTCCGGAGATGAAGGGTGCGGCTGCC
TCGGCGACGGCTGCGGCGGCAAACTTCAGTGGGAAACCGCACCAGCAGCA
GCAGCAGCAGCCGTCACCTCGCGCCGATCAATCTGCCTTGGGTGTCAACA
TCAAGGCTCCCACGCCGCCGCCGCCGCCGCCGCTTCCTCCGCCGGGCTCC
TCGAGCAGCGTGAAAACGGGAGTCCCCGCCTCGGCGACGCCGGCGCCGGG
CGGTGCCGGCGGTCCCGGCGCGCAGAGGTCCTACCTCTGCACTCCGTCGG
GGCGAATCCACAACCCTTACTGGTCGTACTACCCCCATCACGCGGCGATG
GCAGCTGCAGCGGCGGCGGAACAGCCGGGGCGGGACGGGTTCATTGACTT
TGGTGCAGCCGCGGCCCACGGGTACCACCACCCTTCAGCGCGAGGAGTGG
CGGGGTTTCCCCACCTTGGGATGTCGGACCCCACACAGCAGCAGTGGCTG
CAGCACCAGCGGTACGCGGTGAACGGCGGCGGGGTCAACGGCAGAGGGGA
TGCGATGGCGGCTATGTCGTCCGCGAGTTGCGGGTTGCCGACGTGGCAGC
AGCTTCACCACCACCAGCAGCAGCAAATGCACATGCCAATGCAGATTGCG
CCGCAGTCGGCCGCCGGGGGGTCCGGCATGGTGATGCAGTCGGGTGCCGG
GTCGCCGATGCAGCAGCTGCTATTGCTCGGGAACGTCAGCAGCGGTGACG
GTGGTAGCCAGGCTGCCGGCTTCTCCTCCCCGGCGGTCTCGTCCGCCTAC
GCGTTTCCTCTCAAGGCTTCGCACCGGCACAGCAAGCAGCTGCAGTCCCA
GGTCCAGCAGTTGCCGCGAACGTCGTCATACTCCTCCTCCTCGCCGGTCT
CGTCCTGCGGCGGCACCAGCGCCGGCAAGACGAGCTTTTCCCGCGTAGTA
GCGCCGCCACCCTCCTCGGCTGCACAGCGGAACGTCACCGCCGCCGGCGG
AGGCAAAAACGTGAGCCCTCAAGACGCCGATTCGAGGGCCGGCGCTGGCG
TCGACTCCTCCTCGCAGCAGCAGCGGCAGCAACAGCAGCCGTCGCCGGGG
GCAACTGACGACGCCGAGTGCTTAACAACCGTCGTGAGCGCCGGCGAGGG
TGCCTCTTCGGCAGACGCCGCCGCCGTCGGGAGCGCCGAAAGGGACACGG
TGTCCTCCACCATGGCCTCTCCGCGGGAGCTTCAGCAGATGTACAAGAAG
GCCTCCGGGGTGCATCGCCGCGGGAAGAACGGCCGGCCCAGCCACAGCAA
CAGCCACAACCATCCCCGCGACGGCGGCGGCGGCGGCGGTCAGGGCTGCA
ACGCCAGCGTGACGTCGTCGCTCGCTCGGAGGAGCGCTGCCGATACGTGC
AGCACCACCAGCAGCAGCACCATGGGCGGCAGCACGACCGCCGACGGGGC
GTCTTCCGTGGCCTCTCTCTCCGGGGTGAGCGTCGGCGGCTCCTCGAGGG
GGACCGGCTCCACTGGCACCGGCTCCGGGTCCGGCTCGGAAGGACAAGCA
AGTCGCAGCAGCAGCCGGAGCGGCAGCAAAGGCGCCGGCGGTGACGGCGT
GGGCGGCGTGAGCGGCGGGTCGGGGTCTCTGGGCTCCACCTCCGGGAGCG
AGAGCGGCAGCGAGGAGGTCGAGAAAATGAGCTCGCCGGAACCCACGGAC
GACTTGCAAACCAGAACGTCCTCGGGACCGACCAGGGAGGACGTGGACGG
AGCCGGGGGCTTGCTGATGGGCTTCGTCGAGAGCCTCACAAAACAGCACC
GACTGGACCAAGAACAGCAACAGCAGCAGGCTTGCAAGGCGCCAAAGGGC
ACACGGTCGCGGGGAGGAGCGGGTGAAGGGGAAGGCGATAACGCCGGCCA
GCAGGCCGCACCATCAGAGCACCAGCCGCAGCAGCTCCTGATCTCGTCGG
TGCAGCAGCAGGTGCAGAAGCCGCAGCAGAAGGGAAGAATCGACAGCTTG
CACCCCCGCCACCGGCACAAACGCGCGGCGCGGATGGAAACCGAGGCGCG
CCTTGCCGGCGGCAGCGGCGGCGATGATACCGCCGCTGGGGCGCCAGGTG
TCGGCTCGCCAGTCGACGGTGAGAAGAGCTCGCAACTGCGTCCCTCTTCC
GCCACCGACTCCAAACCCGACCCCACTGGCGCCGCCGGCACAGCAGCCGT
ACCGCTGCCCGTGGCCGGGAAGAAGAAATGCGTCGTGGGCGACGTGACGG
CGTTGAAGTGGCCGAAAAAGACCGACAGTCGACACCGTTCGACATCCTCC
AAAGTCGGCGGCGGCGGCGCCGGCGGCCGGATAAGGAGAGGTGCAGGCGA
CAGCGTTGGTGTCGGCAGCGGCGGCAGCAGTAGCAATAGCAGCAACTGCG
GCAGTACCATGAGCAAGGGCAGCTACCGCGGCGGCGGGGTGCGCGACGCA
GTCGCGCCGCCTCCTCGCCCGCCGTCCAACGGCAAAGAACAGGACTACCT
CATCCGAGGAGGAGGAAGAGAGGCTGGCCTCAAGAGGCGGAGAGACCAGA
TGACCGGCGGCGGCGGTAACGGCAGCGGCGGGGGGTCTTCTCGCCGGCGA
GAACGGCGGGGAGACCAGATGGACGTCGAGGAAGCGAGGGAGGACGAGCA
GGGGGGACACGTGAGCCACAGCAGCGATGAATCCGAGGAGGGGGGCGTAA
ACTTCTACTCCGAGGAGGGAGGCTACGAGGAGGAGGAATACGGCCGTGGA
GGCGGGTGGGGCAGCTCCGGGAAGGACTCGGGGGGCTCCGCGGGGTTCGG
GTCCGGGTCCGGGTCCACCGAGGAGAGCAACGACCCATCTGTCTCGGACG
GTGACTACGGCGCAAGCGACGAGCGATCGAGTTCGTTCGAGGACCCCTTC
ACAGCCAACACCGACGGCTACGAGAACAACCCCCCCATCTTGCAGACAAA
GTCCGGCGTCAGGGCGCCGCTTGCCGCCTCGGGCGAGCAGGAGGATGTGG
AGGAGGGGCAGGGACCGGCGAGGCCGACGGCGGCGGCTGCCGGAATCCAG
AATCCGGTGCACGCGGCGGCATCGCGAAACCGAGATTAGGAGGTCGAGAA
AATGAGCTCGCCGGAACCCACGGACGACTTGCAAACCAGAACGTCCTCGG
GACCGACCAGGGAGGACGTGGACGGAGCCGGGGGCTTGCTGATGGGCTTC
GTCGAGAGCCTCACAAAACAGCACCGACTGGACCAAGAACAGCAACAGCA
GCAGGCTTGCAAGGCGCCAAAGGGCACACGGTCGCGGGGAGGAGCGGGTG
AAGGGGAAGGCGATAACGCCGGCCAGCAGGCCGCACCATCAGAGCACCAG
CCGCAGCAGCTCCTGATCTCGTCGGTGCAGCAGCAGGTGCAGAAGCCGCA
GCAGAAGGGAAGAATCGACAGCTTGCACCCCCGCCACCGGCACAAACGCG
CGGCGCGGATGGAAACCGAGGCGCGCCTTGCCGGCGGCAGCGGCGGCGAT
GATACCGCCGCTGGGGCGCCAGGTGTCGGCTCGCCAGTCGACGGTGAGAA
GAGCTCGCAACTGCGTCCCTCTTCCGCCACCGACTCCAAACCCGACCCCA
CTGGCGCCGCCGGCACAGCAGCCGTACCGCTGCCCGTGGCCGGGAAGAAG
AAATGCGTCGTGGGCGACGTGACGGCGTTGAAGTGGCCGAAAAAGACCGA
CAGTCGACACCGTTCGACATCCTCCAAAGTCGGCGGCGGCGGCGCCGGCG
GCCGGATAAGGAGAGGTGCAGGCGACAGCGTTGGTGTCGGCAGCGGCGGC
AGCAGTAGCAATAGCAGCAACTGCGGCAGTACCATGAGCAAGGGCAGCTA
CCGCGGCGGCGGGGTGCGCGACGCAGTCGCGCCGCCTCCTCGCCCGCCGT
CCAACGGCAAAGAACAGGACTACCTCATCCGAGGAGGAGGAAGAGAGGCT
GGCCTCAAGAGGCGGAGAGACCAGATGACCGGCGGCGGCGGTAACGGCAG
CGGCGGGGGGTCTTCTCGCCGGCGAGAACGGCGGGGAGACCAGATGGACG
TCGAGGAAGCGAGGGAGGACGAGCAGGGGGGACACGTGAGCCACAGCAGC
GATGAATCCGAGGAGGGGGGCGTAAACTTCTACTCCGAGGAGGGAGGCTA
CGAGGAGGAGGAATACGGCCGTGGAGGCGGGTGGGGCAGCTCCGGGAAGG
ACTCGGGGGGCTCCGCGGGGTTCGGGTCCGGGTCCGGGTCCACCGAGGAG
AGCAACGACCCATCTGTCTCGGACGGTGACTACGGCGCAAGCGACGAGCG
ATCGAGTTCGTTCGAGGACCCCTTCACAGCCAACACCGACGGCTACGAGA
ACAACCCCCCCATCTTGCAGACAAAGTCCGGCGTCAGGGCGCCGCTTGCC
GCCTCGGGCGAGCAGGAGGATGTGGAGGAGGGGCAGGGACCGGCGAGGCC
GACGGCGGCGGCTGCCGGAATCCAGAATCCGGTGCACGCGGCGGCATCGC
GAAACCGAGATTAG
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