Homology
BLAST of mRNA_P-fluviatile_contig1.539.1 vs. uniprot
Match:
D7FGR5_ECTSI (Transcription factor prr1 (Pombe response regulator 1) n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FGR5_ECTSI)
HSP 1 Score: 355 bits (912), Expect = 1.880e-112
Identity = 239/435 (54.94%), Postives = 271/435 (62.30%), Query Frame = 3
Query: 276 YFRHNKFSSFRRQLNMYGYRKVIKGPDAGAYMHPFFQRDRPDLLVEVKKGKVPHYDMHGVNEIHGQHFRHHPPGPKNAENAEGRGDAQAQLTPAQ---NPQSAPVTPEIHGGEGLGAPRG--GSAGG----VQEPAQ---NMTPGTQTMAALSHMSLSSVPQPSNNAWAAPXXXXXXQSGQSMGVLTLTPAWGGAAAHGGVXXXXXXXXXXXXXEGWRGEPASGRLEGGGGNFH-----SAGEAGEGALARTSSPSGRVRMAYWEQERRRR--STPLVFSGVAPENTEDIHQPDPSLCDVMDVICQCMEVRSSLESQQSQLSALSGCSFNDMGATRRSSISDLLNCMSWESLIRGAGNHPRGPLAGIMDG---DEEDDAAG--GGDVSDGPPTPRLAFAQQASFDPAREPAESSSEVIDGL--PTVIAPSPVTSA 1502
YFRHNKFSSFRRQLN+YGYRKVIKGPDAGAYMHP FQR RPDLL EVKKGKVPHYDMHGVNEIHGQHFRHHPPG KN ENAE +A++ PA NP S+PVTPE+HGG G P G G G PA +MTPGTQ A+S+MSLS +P SN AW+ Q GQ + LTLTPA+ G G G+L GG S+G GE RT +RMAYWE+ R+RR S LVF P NTE I QPDPSLCDVMDVICQCMEV+SS ESQ LSALSGCSF + RRSSISDLLNCMSWES +RG+G RG LAG +D +E+ D A GG V PPT F QQ SFDP R+P+ S ++ G+ P VIA SP++SA
Sbjct: 19 YFRHNKFSSFRRQLNLYGYRKVIKGPDAGAYMHPSFQRGRPDLLGEVKKGKVPHYDMHGVNEIHGQHFRHHPPGVKNKENAE-----RAKMVPAHMTANPHSSPVTPELHGGVGYPTPHGVPGMMGNPALAASAPAAGGGHMTPGTQAATAMSNMSLSPMPHASN-AWSP------QQPGQGIDALTLTPAFAGPGVGDGGDAVSGPGGGGPAESLNEKHQGMGKLGSGGXXXXXXXXPSSGGGGE----RTG-----MRMAYWEKNRKRRTLSAQLVFPVQPPNNTETIDQPDPSLCDVMDVICQCMEVQSSSESQ---LSALSGCSFK-RESMRRSSISDLLNCMSWESALRGSGIF-RGSLAGTLDAMYMEEQGDTADSRGGGV---PPTSAPTFGQQPSFDPTRDPSGEGSGLMGGMMHPAVIASSPLSSA 424
BLAST of mRNA_P-fluviatile_contig1.539.1 vs. uniprot
Match:
A0A6H5JIP5_9PHAE (HSF_DOMAIN domain-containing protein (Fragment) n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JIP5_9PHAE)
HSP 1 Score: 322 bits (825), Expect = 3.650e-102
Identity = 181/285 (63.51%), Postives = 202/285 (70.88%), Query Frame = 3
Query: 39 LQVPSRFHFTTPSFFRRDKEKSSM-----------QQQRQAPRATAGRGFAAKFYDILAQESSEIISWTESGQAFQVLDYNRFSEEILLKYFRHNKFSSFRRQLNMYGYRKVIKGPDAGAYMHPFFQRDRPDLLVEVKKGKVPHYDMHGVNEIHGQHFRHHPPGPKNAENAEGRGDAQAQLTPAQ---NPQSAPVTPEIHGGEGLGAPRGGSAGGVQEPAQ----------NMTPGTQTMAALSHMSLSSVPQPSNNAWAAPXXXXXXQSGQSMGVLTLTPAWGG 821
LQVP RFHF+TPSFFRR S QR PR TAGRGFA KFYDIL+QESS+II+WT+SGQAFQV+DY RFSEEILLKYFRHNKFSSFRRQLN+YGYRKVIKGPDAGAYMHPFFQR RP+LL EVKKGKVPHY+MHGVNEIHGQHFRHHPPG K ENAE QA++ PA NP S+PVTPE+ GG G +P GG G + PA +MTPGTQ A+S+MSLS P SN AW+ Q GQ + LTLTPA+ G
Sbjct: 4 LQVPPRFHFSTPSFFRRRSSGESSAGASSVGHLPRSMQRPGPRTTAGRGFAVKFYDILSQESSDIITWTKSGQAFQVVDYTRFSEEILLKYFRHNKFSSFRRQLNLYGYRKVIKGPDAGAYMHPFFQRGRPELLGEVKKGKVPHYEMHGVNEIHGQHFRHHPPGVKTKENAE-----QAKVVPAHMTSNPCSSPVTPELQGGAGYPSPHGGP-GMMGNPALTACAPATGGGHMTPGTQAATAMSNMSLSPTPHASN-AWSP-------QPGQGVDALTLTPAFAG 274
BLAST of mRNA_P-fluviatile_contig1.539.1 vs. uniprot
Match:
A0A6H5L4Y2_9PHAE (HSF_DOMAIN domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5L4Y2_9PHAE)
HSP 1 Score: 127 bits (318), Expect = 2.920e-28
Identity = 54/98 (55.10%), Postives = 75/98 (76.53%), Query Frame = 3
Query: 141 AGRGFAAKFYDILAQESSEIISWTESGQAFQVLDYNRFSEEILLKYFRHNKFSSFRRQLNMYGYRKVIKGPDAGAYMHPFFQRDRPDLLVEVKKGKVP 434
+G GF +D+L E+S I++WT +G AF +LD F +++L YF+HNKFSSF+RQLN+YG+RK++KG ++G YMHP F RDRPDLL EV++G VP
Sbjct: 3 SGNGFPYILHDLLKNEASAIVTWTSTGTAFGILDNAAFGQDVLSSYFKHNKFSSFQRQLNLYGFRKIVKGRESGCYMHPMFLRDRPDLLSEVRRGIVP 100
BLAST of mRNA_P-fluviatile_contig1.539.1 vs. uniprot
Match:
A0A6H5KMN3_9PHAE (HSF_DOMAIN domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KMN3_9PHAE)
HSP 1 Score: 123 bits (308), Expect = 1.030e-25
Identity = 62/126 (49.21%), Postives = 79/126 (62.70%), Query Frame = 3
Query: 60 HFTTPSFFRRDKEKSSMQQQRQAPRATAGR-----GFAAKFYDILAQESSEIISWTESGQAFQVLDYNRFSEEILLKYFRHNKFSSFRRQLNMYGYRKVIKGPDAGAYMHPFFQRDRPDLLVEVKK 422
H TP+ S+ Q R G+ FA K +ILA ES+ ISW +G AFQV D RFSE+IL KY+RH+KFSSF+RQLN+Y +RK++KG DAG Y HP F+RDRPD L V++
Sbjct: 7 HLATPAEMATSSSPSATAGDGQRERGRIGKRGAPQAFARKLAEILATESTATISWNANGSAFQVHDVERFSEDILTKYYRHSKFSSFQRQLNLYSFRKIVKGADAGGYAHPMFRRDRPDDLYHVRR 132
BLAST of mRNA_P-fluviatile_contig1.539.1 vs. uniprot
Match:
A0A835Z0U6_9STRA (HSF-type DNA-binding-domain-containing protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z0U6_9STRA)
HSP 1 Score: 111 bits (278), Expect = 1.310e-25
Identity = 45/95 (47.37%), Postives = 74/95 (77.89%), Query Frame = 3
Query: 150 GFAAKFYDILAQESSEIISWTESGQAFQVLDYNRFSEEILLKYFRHNKFSSFRRQLNMYGYRKVIKGPDAGAYMHPFFQRDRPDLLVEVKKGKVP 434
GF IL ES++II W++SG++F + + N F ++IL +YF+H+KFSSF+RQLN+YG+RK++KG ++G Y+H +F+R P+LL +V++G++P
Sbjct: 3 GFPHILASILENESADIIGWSQSGRSFGIREMNAFKDQILPQYFKHDKFSSFQRQLNLYGFRKIVKGNESGCYIHTYFRRGHPELLKQVRRGQMP 97
BLAST of mRNA_P-fluviatile_contig1.539.1 vs. uniprot
Match:
A0A835Z533_9STRA (HSF-type DNA-binding-domain-containing protein (Fragment) n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835Z533_9STRA)
HSP 1 Score: 111 bits (277), Expect = 1.790e-25
Identity = 48/95 (50.53%), Postives = 70/95 (73.68%), Query Frame = 3
Query: 150 GFAAKFYDILAQESSEIISWTESGQAFQVLDYNRFSEEILLKYFRHNKFSSFRRQLNMYGYRKVIKGPDAGAYMHPFFQRDRPDLLVEVKKGKVP 434
GF Y+IL E+ E+I+WT +G+AF + D RF ++L +F+H+KFSSF+RQLN+YG+RK+++G +AG YMH FQR R DLL V++G +P
Sbjct: 1 GFPHVLYNILEVEAPEVITWTSTGRAFGIQDMPRFRTQVLPTHFKHDKFSSFQRQLNLYGFRKIVRGKEAGGYMHKDFQRGRADLLPHVRRGHMP 95
BLAST of mRNA_P-fluviatile_contig1.539.1 vs. uniprot
Match:
A0A6H5KNL3_9PHAE (HSF_DOMAIN domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5KNL3_9PHAE)
HSP 1 Score: 121 bits (304), Expect = 4.430e-25
Identity = 54/99 (54.55%), Postives = 72/99 (72.73%), Query Frame = 3
Query: 138 TAGRGFAAKFYDILAQESSEIISWTESGQAFQVLDYNRFSEEILLKYFRHNKFSSFRRQLNMYGYRKVIKGPDAGAYMHPFFQRDRPDLLVEVKKGKVP 434
+AG GF YD+L +ES I+ WT +G AF + D F +++L YF+HNKFSSF+RQLN+YG+RKV+KG ++G YMHP F RD P+ L EVK+G VP
Sbjct: 2 SAGTGFPYILYDLLNKESPSIVMWTSTGTAFGIRDMASFRQDVLTCYFKHNKFSSFQRQLNLYGFRKVVKGRESGCYMHPSFLRDSPEKLTEVKRGVVP 100
BLAST of mRNA_P-fluviatile_contig1.539.1 vs. uniprot
Match:
D8LDA5_ECTSI (Putative Heat Shock transcription factor n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LDA5_ECTSI)
HSP 1 Score: 120 bits (300), Expect = 9.760e-25
Identity = 54/90 (60.00%), Postives = 68/90 (75.56%), Query Frame = 3
Query: 153 FAAKFYDILAQESSEIISWTESGQAFQVLDYNRFSEEILLKYFRHNKFSSFRRQLNMYGYRKVIKGPDAGAYMHPFFQRDRPDLLVEVKK 422
FA K +IL ES+ ISW +G AFQV D RFSE+IL KY+RH+KFSSF+RQLN+Y +RK++KG DAG Y HP F+RDRPD L V++
Sbjct: 14 FARKLAEILTTESTATISWNANGSAFQVHDVERFSEDILTKYYRHSKFSSFQRQLNLYSFRKIVKGADAGGYAHPMFRRDRPDDLYHVRR 103
BLAST of mRNA_P-fluviatile_contig1.539.1 vs. uniprot
Match:
D7FI12_ECTSI (Heat Shock transcription factor n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FI12_ECTSI)
HSP 1 Score: 115 bits (289), Expect = 1.010e-24
Identity = 48/83 (57.83%), Postives = 67/83 (80.72%), Query Frame = 3
Query: 186 ESSEIISWTESGQAFQVLDYNRFSEEILLKYFRHNKFSSFRRQLNMYGYRKVIKGPDAGAYMHPFFQRDRPDLLVEVKKGKVP 434
E+S I++WT +G AF +LD F +++L YF+HNKFSSF+RQLN+YG+RK++KG ++G YMHP F RDRP+LL EV++G VP
Sbjct: 37 EASAIVTWTSTGTAFGILDNAAFGQDVLSSYFKHNKFSSFQRQLNLYGFRKIVKGRESGCYMHPMFLRDRPELLSEVRRGVVP 119
BLAST of mRNA_P-fluviatile_contig1.539.1 vs. uniprot
Match:
A0A6V1QFS1_HETAK (Hypothetical protein n=1 Tax=Heterosigma akashiwo TaxID=2829 RepID=A0A6V1QFS1_HETAK)
HSP 1 Score: 117 bits (293), Expect = 1.120e-24
Identity = 54/104 (51.92%), Postives = 78/104 (75.00%), Query Frame = 3
Query: 117 QRQAPRATAGRGFAAKFYDILAQESSEIISWTESGQAFQVLDYNRFSEEILLKYFRHNKFSSFRRQLNMYGYRKVIKGPDAGAYMHPFFQRDRPDLLVEVKKGK 428
QR AP+A FA K Y+IL E +++SW +G AF V D +RFS+EIL+KYFRH+KF+SF+RQLN+YG+RK+ +G DAG+Y H +F++ +PDLL V++ +
Sbjct: 8 QRGAPQA-----FARKLYEILEVEPGDLLSWNAAGNAFFVRDIDRFSKEILMKYFRHSKFASFQRQLNLYGFRKITRGSDAGSYAHQYFRKGKPDLLSLVRRSQ 106
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig1.539.1
>prot_P-fluviatile_contig1.539.1 ID=prot_P-fluviatile_contig1.539.1|Name=mRNA_P-fluviatile_contig1.539.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=613bp
MRLQVPSRFHFTTPSFFRRDKEKSSMQQQRQAPRATAGRGFAAKFYDILA
QESSEIISWTESGQAFQVLDYNRFSEEILLKYFRHNKFSSFRRQLNMYGY
RKVIKGPDAGAYMHPFFQRDRPDLLVEVKKGKVPHYDMHGVNEIHGQHFR
HHPPGPKNAENAEGRGDAQAQLTPAQNPQSAPVTPEIHGGEGLGAPRGGS
AGGVQEPAQNMTPGTQTMAALSHMSLSSVPQPSNNAWAAPPPPPPSQSGQ
SMGVLTLTPAWGGAAAHGGVGGGGEGANGGGGGEGWRGEPASGRLEGGGG
NFHSAGEAGEGALARTSSPSGRVRMAYWEQERRRRSTPLVFSGVAPENTE
DIHQPDPSLCDVMDVICQCMEVRSSLESQQSQLSALSGCSFNDMGATRRS
SISDLLNCMSWESLIRGAGNHPRGPLAGIMDGDEEDDAAGGGDVSDGPPT
PRLAFAQQASFDPAREPAESSSEVIDGLPTVIAPSPVTSATGDGGGGRWR
DNSELLLQQHQPHQHHQPQQSRNRPSFDPLASTSSGIDCSGGGQELRMNK
GGKRRLTEGRGGEEEGEVRTDTAVSVDEIRGEAIVGGSAPSATPSFCGPD
GSCRCGVGVGGGP
back to topmRNA from alignment at P-fluviatile_contig1:5819831..5831617-
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.539.1 ID=mRNA_P-fluviatile_contig1.539.1|Name=mRNA_P-fluviatile_contig1.539.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=11787bp|location=Sequence derived from alignment at P-fluviatile_contig1:5819831..5831617- (Porterinema fluviatile SAG_2381)
TGCTCTCACTCTCTCTGCCTTTCCTGGCGTGGATGAGATTGCAAGTTCCA
TCGCGGTTTCACTTCACGACTCCTTCTTTTTTTCGACGAGATAAGGAGAA
ATCTTCGATGCAGCAGCAGCGGCAAGGTGAAAATGAACGAGATGTTCGAG
AGTGGAAGCGGCCATTGATTGGCAGCAGTTGACCATGAAAACGCCTTGAC
ACACACACGTTTTGGTGGGCCATATGGTGTGGGCATCGCCAACACGTGGT
GCGGGTTTGAAGACGGGCGGAGAATACCTAGAAGAGATGCCACTCAATAG
GGAGAGAGAGAGCAGGCCCCTCTCATCCCTGCCCGTCCACGTGTGCAGCA
AAGCATTTGTGTTTTTTTCGCTCTCCGCTGAAAATATGTCGAACTCGCCC
TCTCCACACACACGCCCTTATGCCATTATTTGTTTCGCCGATCTTTATCC
TCCTCTCTGTGTGTGCCCTCCAGCACCGCGTGCGACTGCGGGTCGGGGAT
TCGCGGCCAAATTCTACGACATCCTTGCCCAGGAATCGAGCGAAATCATC
TCGTGGACGGAGTCTGGCCAGGCGTTCCAGGTGCTGGACTACAACCGCTT
CTCCGAGGAGATTCTGCTCAAGGTGTGTTCGCTTTCGTTCTCGGCCCTGT
GCGCCGGCCTGAACCCCTGGCGCCAACTTCCGGGGGCATGTGACCAGAGC
GCCTCTGCCTCTCGCCGCCATATGTGGAGCATGGGGACTAACTCGTGGGG
AGGGGACGCGATGCCGCGGATTGTCCACAATCCTGGCGGCAAGGAACCTG
TGTGTCAGAAGCAAGTTTCGTCGCCGCTTTCCTTCTCAACACACACGCCC
GCGGCGTCGTTGCATACAGGGTAGGTTGAAGATGCGCGCCAATGACTTAC
GAAGAGATCGAGTGCATACTCGCTGTATTTTACAGCGAACATATGCGGCG
TTTTCGATGCTTGAGCGGGCGGGCCGACAGGCTTTTCCACGCTTCAATCT
ACTTTCAGGGGCGACCTTCTCTCCACACTGTAGCCCCGACCCAGCCTCCG
CAGTCTGGACGCTCGCACTCTCGCTCTTGAAAGTTGTGTTTGCCAGAGCC
AGCAAGTAGCTGCTCTTGTCGCCTCGAGTGGTTACCGTTGCCCATGGCCG
CTCTGTGGTGTTGCAGCCTCCGCGGCTGGTCTCTCAGGAATACGGTCTCG
CCGACTTAAAACGTAGCCCGCGTGCCCCACACGTCTGCTTTGGCAGAGGC
ACTCGCCCACAACATTCAAACGCTCGTCTTTGCGTATTCCACACGTGCGG
AGCCGCCCCTCTCGCCATCTGCTTGTTTGCGCGTGCTGATGTGAAGTTCT
CTTGTCGGGGAATCGCACCACCAGTGTATATCTGTAGCAGGTAGGTGTCG
TGCATGCAGCAGCTCCAGCTGCCACAAGACTTGCAGGGGCGACCTTCTTC
TTGCACTGCACGTCTCTGTGTGTAGCATACTGCAGCACGACAGCGGGGGT
GGCGTATCATGGAAAATGGCCAAGAAGGTGGAGGCTTATGATCGTCGTCT
GGCCGCCACCTTGCAGTCTCGTCACCATAAGGGCCTGCCATGGATCATTT
CCCGAGTTGCAGGGGCCTTTTTTTCGCCGTAGAAGTTTCAAAAGGTATTT
CGATGTGCGCCCATTTCAAGGGGGCGGCCGTGGGTCAGGATGTAAACCAC
TGCCCGACCCCAGGTTCCCCGGCTCGAAAGATGAGCCGGGGAGTCAGCCA
CAAAACAAAACGGCGTGCCCAACAGGTTTGAGTTAGCCAAGGTCAACTTC
CACCATCGGCGGGCGTTGCTCTGTTTTCGACCCCACGTGAGTTTCCTCTT
ACATCAGCGTTTTTGGTTCCCTCCTCATATTAGTCTATTCCTCTACACGC
CCAAACTGTGGTGTATGGTGCTAATCCCGTTCCTAGTGTCGCGCTATTCC
TGTTTCCCCCCCTTGCGTATCCCCACAACCATGGGACGTGCGATGAAATT
CATCGAAACGCCACACATCTCTCCTCAATCCTCCCTCTCTCCCTCTGTCT
CTCTCTGTCTCTTTCCGGGGTTGAAAAAACAAAATGGAAAAACAAAATCT
CCAGTACTTCCGCCACAACAAGTTTAGCTCTTTCCGGCGGCAGCTCAACA
TGTACGGCTACCGAAAGGTCATCAAGGGTCCGGATGCGGGGGCGTACATG
CACCCATTTTTTCAGAGAGATCGCCCGGATCTGCTGGTAGAGGTGAAGAA
GGGCAAGGTGAGCAGCGCACAGCAAGAGCGAAGCGGAGCGCATGAAAGTG
GTGGGAGGAGCAGACCAGTGGGCCAGAAAGGGACAAGAAGTTGAGCCCGA
ACAAGTGACGACAGGCCACAGAGTGGTAACCGAGGGAATATGATGGTCAT
GTCGTGCGATAATTCAGACTTGGTGCGAGTACTCGTGCGATGATTCAGGC
TTGGTGCGAGTTTCCCCCCGCCTGTTTCGGACTTAAAAGCCTTGGGATGC
GTCGCTGCGGCAAGGTGTACGGCGTGGGCGACACAAGGGACGGTGTATGG
TTTCTTGAACAGTGCCTCGACTTCGTTCACAGGGACGTGGCGAAGAAGGG
CCCCCGCGCAGAAGTATTGTGCTTTCAGTTTTATTCTCTTGCCGTAGCTT
CCGCATCCCTCGGTGACGACACTACTTTGAACCCTCTAGCTTTGAGACAA
CGTCTAATTTTTCAACTGCAGTATCGTATCCGCCTTGTTCTGTTTTTCTT
TGCATCGTCGAGACCGACAAGCGGCGTCTGTCGCGGTTGCCGCCGCGGAT
TATGACAGCTGAAAACACGGCTGAGACTGGCACGGCCGGTTCCTACGCGC
ACGACGGATCTTGTTCTCGTGAAAAAAGCCCGCGGACACCGACACGAGAG
CGATTTTTTTTTAGCGCGGACACGAAGATCAGCACGCTTTACGGCTCGCG
TAATATATCCTTCCGTCGATGCGGGAGTAATGGTATGTCCGTATGTCGTG
TTCGTGGTTTCGCTTCGATTTATTGGGCAGGTTCCCCACTACGACATGCA
CGGCGTGAATGAGATTCACGGGCAGCACTTTCGCCACCACCCCCCCGGCC
CCAAGAACGCGGAGAACGCGGAAGGCAGGGGGGACGCGCAGGTGAGATGG
ACGCTCGCCCTCCCTCGAGTTTTTCGCCTCGCTGTCGTCGTTGTCGTCAC
GAGTGACGTGTCGCTGTTCGAGTTGCTGTTCTAGTTACTGCTGTTGCCGT
TGTCGTCATTCCTTCTGCTGTTGTTGAGTCTGGTTGGTGGAGAATGCTGC
TTTTGTTGCCGTCGGAATTGGTGTTCGCTCGCCGCAACTCATCGCGCACT
CTTGTTTCTCGAACCGAGATGTGGCGTAGGCGTTTCTTCCCTCACCGGCC
ACAAGGTTCCACCCGTGGGAGAGGAGCTTTCTTGGCTGTAGGTGGCGTCA
GGCAGGTGCTTTCTCGTCATCTTCTTCCTCACCCCCTCTCTTTTTTAACT
CGTCTTTGTTTTCGTCGTTTTTCACGGCCTCCTCGTCCTCCTCTTTTTCT
TCCTGGCCTACCCATGACCGTCATCGCTTGCACGCTTCTTTCAACAGCAA
GTCGAAGAGGGTACGAAGCTCTTGAAATTGTCAGCCGTCCCTTCCGGTTT
TTGTCGGCGGCCCGGTTCTCAACTTCTCGCGATAACCCACGACCGTCCTT
CTTTGTCGGCACCGTACGCAGCAGGCCCAGCTAACGCCGGCGCAAAACCC
TCAATCCGCTCCGGTCACTCCCGAGATCCACGGAGGCGAGGGGCTCGGGG
CCCCGCGCGGGGGGTCGGCGGGAGGGGTGCAGGAGCCTGCCCAGAACATG
ACGCCCGGCACGCAAACTATGGCGGCGCTGTCCCACATGTCGCTCAGCTC
GGTGCCGCAGCCCAGCAATAATGCTTGGGCAGCGCCGCCTCCGCCGCCAC
CGTCGCAGGTGTGCATGTTTGTGAAGTGGGATGGTGGGTGCGTTGCTCGC
TTTTTTGGCCATGATTACTGCGTTCCAAGCTTGCTTGCCAGCAAGGAAAC
GATCTTTTAAGGCAACAGTCTGGGCAAAACCCTTTCCTTTTTTGTGTGTG
CGCGTAGTCTAGGCGTGTACGCGGTAGGCGATTGGCTGATTTTTGGAGAG
GGGAGGGGTGTTCTTTTTACCAAATCTAATACGGAATCAGAGTGCAACAA
CTGGGAAAAAATCACTTACCGATTACAAGCCTACGAAGTCCAGACTGCAG
AAATACGGTGCTGCTGCCGTCGCTTGTCTTGCGCATCTCTCGCGACGGAT
TCGGTAGGTCCTCTCTGCCCTGCTTCTTTGTCCCTCCTCACGAGACCTAC
CGGATATGAAAATACCGGTACAGGAGACGAAAGTCGTTCCCGGATTTCCG
CGAGCGGATTGGCTTACCCTTAATTGCTTTGCGCATGCCCTCCCCCCTTT
TTCCTTGGGGCCGGTTTGTTTGTCTCATCAAACCCTTCGTCCAGTCCGGC
CAGAGCATGGGCGTCTTGACGCTCACACCAGCATGGGGAGGTGCGGCCGC
ACACGGTGGGGTAGGCGGAGGTGGAGAAGGGGCAAACGGCGGGGGGGGCG
GCGAGGGTTGGAGGGGGGAGCCCGCCTCGGGGAGGCTTGAGGGCGGCGGA
GGGAACTTCCACTCTGCAGGGGAGGCTGGCGAAGGGGCGTTGGCGAGGAC
CTCGTCGCCGTCAGGGAGGGTGCGGATGGCTTACTGGGAGCAGGAGCGAA
GACGTAGGTCAACGCCGCTAGTGTTCTCGGGCGTAGCTCCGGAGAACACG
GAGGACATACATCAGCCGGACCCCAGCCTTTGCGGTGAGTTTGTCGCTCG
CCCTGCCTTTCCGTTTTTGTATCTCCCCTTCGGTGATATTCGGGGCCGTG
ATGAGTACTCTGGGGGCAAACTGAATCGCAAGCGGTGCTATTTTGTGTTG
GTCGGCAGTTTTGGTCGCCTCCGGAGGCAGTGCTGGTGAAACACGCAAAC
AAGGAATCACCAGCAACACAGAAAGCACCGAGAGCTCTCGTCCCACGAGC
AGTAGTTTGGGTGCCAGTGTATCTGTTCTTTGCCATGCTGGACACCGACT
CTCGAATCGATTGCCTCACGGCGCCGTTCCCTCACGTGCTTGGGGCATAA
TTACCAAAGTCTCCGAGGGAAACCTGACACTTTGCCCCCTGAGCCATTTT
GCGGGTCTCGGTTGCTTGATGGTGGCACTTACTCAGCGCTAAGGTACTAG
TTTTGACACTCTCTCGAGCTATGTCGGGACACTGGGTGCGATGACATAGC
GGTAGTCTGAATGGTCTACTACTGATTGAACGGCATGAAATCGTGCGTCA
CTGCTGCGTATCGGCTATCCATAACTATGCTCAGGTTGAGTTCCATTGCG
GACCTACACGTTTCTTCTTTACCCTGAATGCCGCCATGCGGGGTCCTAGC
TGAAAATCGCCAGAATCCCGGCGCAACCCGTTCGGTGAGGCTTTGTCGAG
ATGCACAAGCGGGCACATCTTTGGGGTGCTCCACAACTTCAGCCGTACCA
CACTCACTCATGAAAATATTCCTCTCTCTCCGCTATACGCACACGCACTA
CACTGATTTTTCTTTCTCATTCTACATAGCGGCTCCTGCTTTTTTGTATT
CATTTTGTTGATAATCATTGCTGTGTGTGTTTGCCATTACTGTGTGTTTC
ATTGTTTGTGCAGACGTTATGGACGTGATCTGCCAGTGCATGGAGGTTCG
CTCTTCGTTGGAGTCGCAGCAGTCCCAGCTGTCGGCGCTAAGCGGGTGTT
CCTTCAACGACATGGGGGCAACAAGGCGCTCGAGCATCTCGGATGTGAGT
AACATGGGGCACTAATTTGCTCGCCAGGCGCGTGTGCCGCGGGGGCTACC
CCCCCCCTGAGCAAGAGCGCCCTCCGCGCCACAAAGTTGATTGGTACCTC
CCGCGCTTGGACCGGGGGTAGACAAGGAGTTCACAGGGGGTTCCGCGGAC
AAGGGTACGGGCTATCTACTGCTGTTGACGATTGTTTGATGATAAAACGT
GTTTTAATTTCATCCGGATTCGGAGTCGAGCTTGAATCTTTGACATTTCA
TTAATGAGTGAGGTTCACGGTGGAGGTTCTGATCTGCGGAGCCCCTGGAC
GGGGCGACGTAGATGCTTTGCCAATATTTTATTTTTCAACAATTGTCAGG
GAAGAATGACTATAAATCTACATTCCGACCAATTTATTCCCTCATGAAAT
TATCCACAACACGACGCCACGCTCTAGTTCTGCAGAACACGTAACTTCGA
ATATTCCATTTCACGGAAATTACCTACGCTTGAGAGCGAGGGTATCTTCG
TTTGCTCTGTGGGGAGTTCTTGCGTGGGTCCGCGCGCAAGACAGAGAAGT
CCGGCACGCCGCAGGAACTCGACAGAGAAGTCCGGCACTTGTGCAAGCGC
ATTCCCGGAGGAAGCCTCTCGACCGCGGTGTCGCCACGCTTGAGGAAGTA
GCCGCCCTTGCCCAGGGGCCAGTGGTCTGCCCAAACGAGGACTTCCTCGC
CGAGCTCGGCCGCGATTTTTGCGTGCGGCCGGATGCGTGGATTTTAATCA
TGACGTGTGGCTTGTACCAGTACATGATGTAGGGGTGGCCAAGCATCTCT
GTCGCGGGCCCAGGCGCCGAGTACCCACCGGAGAGCGTCCTAGAGCTCCT
CCAGCACAGCCGCTCCTTGCAGAGTCACTACCCTCAGAGTCTCGGCTAGA
CGAATGAACTTTGTCTTTCAATCCACCCCAGATTCCCGAACACCATTTCC
AAAAGTGAGACCAGATGATGTCCGACGACTCCGTGCGAGAGACGTTGTAC
CAAACCAAACCAAGCAAGGCAACTAGATGCTGCTGCTGCCACTCTTGCCA
CGATCCCTTGCCTAGAGGTGCCATGATGTATTGGCTTTCCACTCTCGCGT
CCACCACGAGGTGAAGCACGTGAAGGAGGCACCCGAGTCAATTTGCAAAA
GTCGGGCGCGCTTTCGGGCGAAACACTACTGCCCAGCCGGCGGGGGTGCG
CCGATTCCGTGTTGTTGACCATGATCGCGCATCCACTGGCGGTCGGCTGC
CGGGATGGTCCGGCGAATTGTGTTTGGACTGGTTTTCGTGCTATCCAGCA
CCTCAAAGAGATTTTGGGGCGGGGCGCTCTCCGCGCTGCCCTCTCGCTCT
CTCCTTGTCGCCGCGTCATTTTTTTGGCGTTCTGTTCGGTTCTGCTTGCG
TATGTGTATCTCAGATTTTGGATTCTAATTGGCTCATTTGTTATTCGAAG
GAAGTTCCTCCGCTTTCTCTACCGGCATTTTTTCATCCCTTTTGGGGGGG
TAACCCATACCTCTAACGGTGGCTGTGCACAAATTTAAAGGTTCATGACG
AAGTTGCGGTGCACAAGAAACTCTTCTACGCGCAGCGGGTTGTTGAAAGT
ACGTGCATCAGCTCAAACTTACAGAAGGGAACAAGACATGCAAAACACAC
CGAAAATGGAATGAGACGTAATTTTCATACTCCCAAAAGGCGCACAACAT
CTTCTTCACGGGCAGCCAACGACGACAGCAAAATATCTGATTTTCCACCT
GGCTTTCTCTCAGCCAAGTGCGATTCTTCGCATGAGTTACACTGAGGCAC
CTGAAACTTCAATTTCCGCAACAAAAGCACACTCCAAACATCGGGTCAAA
ACCAAAGAAAAATTCAACAAGTGTAGCAAACAAATGTGCCTGGGTCACGT
GTATAAACTCCAGCTGATGGCGTCCGCATTCCATTTTTTCATCCTCCCCA
CGAGCACGAGGCCCGTCGCCCTCCATGCCCCAAAAGCCGCCAGAATCATC
CGCGATCAAAAGCGACGGTCTTACCACGAGCGGCCCTCCTGCCCCTCGTG
TTCCGCGGGCACCGCTTGCCGCGGTCACGGGCCGCAGCAGCGGTCCAACG
GCGGTATCGCACGTTTGGTCGTCGCTGTCGCTATTGCTGTTGTCTTCGCC
CTCGAGCCGGCCGCTGTTGTCTTCGCCGTCGCACGACTCCAGCTGAAGGA
CACCGCCGGGATCGAAGCGGTATGTAGATGCCCCCGTTTGGCCACAGTTG
CTGTCGAGCCAGCTCTCGCCGGCTTTGACCTGCAAGCTGACGCCCGCGAA
CGTGTCGATCCCCTCCACTTCAGTTGCCACCTCACTCGTCTATGGCGAAG
CAAAAGCACCGGCCTTAACTCCCGCCGTCGCAGCGGGAGAGACGCGTTCT
GCGATACAGCCGGAACTCGCAGTCACCACAGGCGCCGAGACCTCACGTGC
TGCCACAGACAGCGCGACAGCCCTTCCCTCAACAGGGGGAACCGTATCGC
CGAACTCCGATGTCGATGCATCTTTCGGCTCGCGTTTGCCTTGCACCCAC
TTTATGTCAAAGCGAGGAAACCAAGGCACCAGACCGTTTCGAAAAGGTAG
GGCAGGCGCGCGTTGTGTAGTACATGGCGGGATGTTTCTGCAAGTGTAAG
CCGCGATAAAGAGAGGGCCATTTTTTGTCTCTCTTATCCTCTTCAGCCTC
TACTCGGCAGTCCTCTCCTACCCCACGTTCATCACCCGGTCCACACTTCG
CCAGGCTGACGCCTGCGCTGCTGATGAGAAGGGGCTCGATCGGTCACATG
AGATGAGATACCTCACTTTGCCAACGCCTGATGTAGTCCGTCGATCTCGT
CCGGCGAAACCTCCACATCTTGTCCCTTGCCGCGTCTTGCTGTCTTCGCA
TCTGCCTTCCTCGGCTCTCTTAACACCCTCTCTGCCACGCGAGCATGATT
TTCCATCCGGATACAAAACGCGAACATGTCTGTTCTCTCGCTCTCTACCA
CCCGCTGCTGCAGAGTATTACTTTTCGCTTCCAGCTCCGCTATCCGGGCT
CGGAGACTCTCTACCTCGTCCTTGCCTTATTTTGCTCTAGCGACGAACGA
TCATTCATCTCGATACGCCACGCGGGTATCCACCGCCTCTCCTGAGTTGC
GCAGCATAGAACCGCCCGAACATAGCAAATGCCTGCTTTCTCCTCTCTCT
GATGTGCCGAAGCAGGTTCTTCACTGAAACGAAGTACACAATATCAAATG
GCCGGGTCTCAAGTGCCCGCTAACGCCACGTCCCATAACTTGCCCGCGTT
TCACACACACAACACAACAAGAGGCCTCGTACGGCCAAAGCTTTCCCATC
TGCTGGACTTGGAATAGCTCTGGCTTGATTGTAGATGGCAGAGGTATTTA
TGGTGGTTTCAGAGGCGGACGCTGGAGGTCGACATTCTCAAGTGCGCGCA
CAGAAACCGCTCCTACGCCGCTCTGCGCGATTTCCAGCGGTTTTCCTCGC
AGAATGCCTTCGTAGGTGTGATGTACACCGTGTGCAACGTGCAGGATGTT
GGTTTTCTATTTGTAAAATCAGCAACTCAAATATTGGTTGCGCGCCCACC
ATTCATTCATTCGAGTTCAAGACAGACTCTTGCGAGGGTCCGGCTTTTCG
CAAACGGTTTCGAAACGATGTCGATACTCGTGAAAGCGGGCACTTCGTTT
CACGAGAGCCTGGTCCGTGGAGAAGTCGGGCCGTCAGCACACTATTGGAA
GGTGTACAAAACGTGTAGTCGAGTGTAGCCGGCTTGCAGTTTGACTCGGA
CGGGTTGTCAACGACGTGTTGTCCCACCTGAAGCATGGCTGGAGGGAGGC
TGGCTGGTGCTCTCATGTGTACGATGACGCCGTCGATTCGCCATCCATTC
TCCTTCCCTACACAGTGTCCTGCGTGCTCATCGCTCTGCTTAGTTGTCTT
GCGAGGGCGTCTGCTCTGGTTGATTTCTGAACGTGCCTTGTTTTGGCGCG
GCGTCGTGGAAGGAAATCCGGTGGAATACCCTCGCTGGCGTGACTCTGTC
AACGCCTGGCTGGGTTTTTCTTCTCAACGAGCTACTGTGTCTCCCACGCC
AGACGTTTCTTCAGTTGCCCCGCCATCAGCGTTGATTACTTGCTGTACAC
AAGGCTGTCGAAAACCGTTTCATCGCTTATGGTGAAGTCCTTGGAAGCAA
TCAGGTCGTGTGCTCTCCTCCACCGCTCAGTTCGCGTTTCCCCTAGCGCT
CCATCCGAATGTTGACGAAGTCCTCTCCCACGTATGACTCGCTCGAATCT
GCTTGCCTTCCCGCAGCTGCTTAACTGCATGTCTTGGGAGAGCTTGATCC
GAGGGGCGGGAAATCACCCCCGTGGGCCACTGGCAGGGTGAGCCCGCGTC
GCTTGCTGCAGTGTGATGTGGCTATTGTTCTATCTTTTGTGTCTCCACAC
CCTTCGCCCGCGGCCGCACGTTTTTGTCCAGCTGTTGGAAATTCGAAATA
GTTTGTGCGCGCCCGTCGATTTTTCCTTCCTCGTCACCTTTCGAAGGCGG
TTCTTCGTCTGTTCTTGAATGCGCGGTTTGTGCACCCGGCTCGTCTGCCA
AGAGTTTGGGGTCCCAGATTCCACCGGCCTTCTACGTGTGTCTGTTGCCC
TTGCTGGCGCCCCTCTGTTCGAATTTCCAAGTTGCCGCTCGCCCTTAGAA
ATGAAACACACGCGCATGCACACACATGGCTCACATGACATTCACGTGAC
ATGACTGAGTGTCTAGCCCTTTGCAACGGCTGATGTCTCGTCCCTACCGG
TGTACCTTCCAACCTGCAGTGATATGCGGGAATGTATGTCGTTGGGGGAG
GTGGGTGGGGAGCTCTGCTTATCGTCTTCGGTCCGACTGAGATCGAGCCA
TTTGCGCCGAGTGTTTTTTAACGATATCGTGCTGGCCATCCGTGCGAGAT
CCGGAGCTCGTCACGTGATGTGTGTTGCCTTTTCGAGAGCAGATGTCGGT
CGTCACCGTTGCTTGTTTGGAAAGCCTTGACGCCACGTTTGTTTGCTCGT
CGATATACTCCGGGTCTTGAACATGGTTCGTGTCGCAGGATTATGGATGG
AGACGAGGAGGATGATGCCGCCGGCGGCGGGGACGTCTCCGACGGCCCAC
CCACGCCCCGGCTCGCCTTCGCGCAGCAGGCATCGTTCGACCCGGCCAGA
GAGCCGGCGGAATCGAGTTCGGAGGTGATAGACGGCTTGCCAACTGTGAT
CGCCCCGTCTCCAGTGACCTCGGCGACCGGCGATGGCGGAGGGGGGCGCT
GGAGAGACAACAGCGAGCTGCTGCTGCAACAGCACCAGCCGCACCAGCAC
CACCAGCCGCAGCAATCTCGCAATCGACCCTCGTTCGACCCTCTAGCGTC
GACCAGTTCGGGTATTGACTGCTCCGGGGGCGGGCAGGAGCTGCGTATGA
ACAAAGGGGGTAAAAGGAGATTGACGGAAGGGAGAGGAGGAGAAGAAGAA
GGAGAAGTAAGGACAGATACAGCGGTCTCAGTCGACGAAATCCGGGGTGA
GGCCATAGTTGGCGGCAGCGGCGGCGGCAGCGGCGGCGGCAGCGGCGGCG
GCCGGCTCTCGAGAGAGTCGTCACGAGAGTCCACCGCCGCGAGGATCTTC
AACTCGGCGCCTGCCCCAACTAGCAACGGCGGCGGCGGCGGCGGATATCA
ATGCTGGAACAGTGGCAGCCGCGATAGCATCGGCGACGACGACGGTGCCT
CGGACAGCTCGGCGACGCATTGGGTTTCCTCTAGTCGGGGGCCAATGGCG
GGCTCGTCGACGACAGTGGCATCGGCGACAGTGCCGAGCACGTGGGGGCT
GCCGCGGCAGCAGCACCATCAGCGACCCCTTCCTTCTGCGGGCCCGATGG
ATCATGCCGGTGTGGGGTTGGGGTCGGGGGCGGCCCG
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig1:5819831..5831617-
>mRNA_P-fluviatile_contig1.539.1 ID=mRNA_P-fluviatile_contig1.539.1|Name=mRNA_P-fluviatile_contig1.539.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3678bp|location=Sequence derived from alignment at P-fluviatile_contig1:5819831..5831617- (Porterinema fluviatile SAG_2381)
ATGAGATTGCAAGTTCCATCGCGGTTTCACTTCACGACTCCTTCTTTTTT
TCGACGAGATAAGGAGAAATCTTCGATGCAGCAGCAGCGGCAAGATGAGA
TTGCAAGTTCCATCGCGGTTTCACTTCACGACTCCTTCTTTTTTTCGACG
AGATAAGGAGAAATCTTCGATGCAGCAGCAGCGGCAAGCACCGCGTGCGA
CTGCGGGTCGGGGATTCGCGGCCAAATTCTACGACATCCTTGCCCAGGAA
TCGAGCGAAATCATCTCGTGGACGGAGTCTGGCCAGGCGTTCCAGGTGCT
GGACTACAACCGCTTCTCCGAGGAGATTCTGCTCAAGCACCGCGTGCGAC
TGCGGGTCGGGGATTCGCGGCCAAATTCTACGACATCCTTGCCCAGGAAT
CGAGCGAAATCATCTCGTGGACGGAGTCTGGCCAGGCGTTCCAGGTGCTG
GACTACAACCGCTTCTCCGAGGAGATTCTGCTCAAGTACTTCCGCCACAA
CAAGTTTAGCTCTTTCCGGCGGCAGCTCAACATGTACGGCTACCGAAAGG
TCATCAAGGGTCCGGATGCGGGGGCGTACATGCACCCATTTTTTCAGAGA
GATCGCCCGGATCTGCTGGTAGAGGTGAAGAAGGGCAAGTACTTCCGCCA
CAACAAGTTTAGCTCTTTCCGGCGGCAGCTCAACATGTACGGCTACCGAA
AGGTCATCAAGGGTCCGGATGCGGGGGCGTACATGCACCCATTTTTTCAG
AGAGATCGCCCGGATCTGCTGGTAGAGGTGAAGAAGGGCAAGGTTCCCCA
CTACGACATGCACGGCGTGAATGAGATTCACGGGCAGCACTTTCGCCACC
ACCCCCCCGGCCCCAAGAACGCGGAGAACGCGGAAGGCAGGGGGGACGCG
CAGGTTCCCCACTACGACATGCACGGCGTGAATGAGATTCACGGGCAGCA
CTTTCGCCACCACCCCCCCGGCCCCAAGAACGCGGAGAACGCGGAAGGCA
GGGGGGACGCGCAGGCCCAGCTAACGCCGGCGCAAAACCCTCAATCCGCT
CCGGTCACTCCCGAGATCCACGGAGGCGAGGGGCTCGGGGCCCCGCGCGG
GGGGTCGGCGGGAGGGGTGCAGGAGCCTGCCCAGAACATGACGCCCGGCA
CGCAAACTATGGCGGCGCTGTCCCACATGTCGCTCAGCTCGGTGCCGCAG
CCCAGCAATAATGCTTGGGCAGCGCCGCCTCCGCCGCCACCGTCGCAGGC
CCAGCTAACGCCGGCGCAAAACCCTCAATCCGCTCCGGTCACTCCCGAGA
TCCACGGAGGCGAGGGGCTCGGGGCCCCGCGCGGGGGGTCGGCGGGAGGG
GTGCAGGAGCCTGCCCAGAACATGACGCCCGGCACGCAAACTATGGCGGC
GCTGTCCCACATGTCGCTCAGCTCGGTGCCGCAGCCCAGCAATAATGCTT
GGGCAGCGCCGCCTCCGCCGCCACCGTCGCAGTCCGGCCAGAGCATGGGC
GTCTTGACGCTCACACCAGCATGGGGAGGTGCGGCCGCACACGGTGGGGT
AGGCGGAGGTGGAGAAGGGGCAAACGGCGGGGGGGGCGGCGAGGGTTGGA
GGGGGGAGCCCGCCTCGGGGAGGCTTGAGGGCGGCGGAGGGAACTTCCAC
TCTGCAGGGGAGGCTGGCGAAGGGGCGTTGGCGAGGACCTCGTCGCCGTC
AGGGAGGGTGCGGATGGCTTACTGGGAGCAGGAGCGAAGACGTAGGTCAA
CGCCGCTAGTGTTCTCGGGCGTAGCTCCGGAGAACACGGAGGACATACAT
CAGCCGGACCCCAGCCTTTGCGTCCGGCCAGAGCATGGGCGTCTTGACGC
TCACACCAGCATGGGGAGGTGCGGCCGCACACGGTGGGGTAGGCGGAGGT
GGAGAAGGGGCAAACGGCGGGGGGGGCGGCGAGGGTTGGAGGGGGGAGCC
CGCCTCGGGGAGGCTTGAGGGCGGCGGAGGGAACTTCCACTCTGCAGGGG
AGGCTGGCGAAGGGGCGTTGGCGAGGACCTCGTCGCCGTCAGGGAGGGTG
CGGATGGCTTACTGGGAGCAGGAGCGAAGACGTAGGTCAACGCCGCTAGT
GTTCTCGGGCGTAGCTCCGGAGAACACGGAGGACATACATCAGCCGGACC
CCAGCCTTTGCGACGTTATGGACGTGATCTGCCAGTGCATGGAGGTTCGC
TCTTCGTTGGAGTCGCAGCAGTCCCAGCTGTCGGCGCTAAGCGGGTGTTC
CTTCAACGACATGGGGGCAACAAGGCGCTCGAGCATCTCGGATACGTTAT
GGACGTGATCTGCCAGTGCATGGAGGTTCGCTCTTCGTTGGAGTCGCAGC
AGTCCCAGCTGTCGGCGCTAAGCGGGTGTTCCTTCAACGACATGGGGGCA
ACAAGGCGCTCGAGCATCTCGGATCTGCTTAACTGCATGTCTTGGGAGAG
CTTGATCCGAGGGGCGGGAAATCACCCCCGTGGGCCACTGGCAGGCTGCT
TAACTGCATGTCTTGGGAGAGCTTGATCCGAGGGGCGGGAAATCACCCCC
GTGGGCCACTGGCAGGGATTATGGATGGAGACGAGGAGGATGATGCCGCC
GGCGGCGGGGACGTCTCCGACGGCCCACCCACGCCCCGGCTCGCCTTCGC
GCAGCAGGCATCGTTCGACCCGGCCAGAGAGCCGGCGGAATCGAGTTCGG
AGGTGATAGACGGCTTGCCAACTGTGATCGCCCCGTCTCCAGTGACCTCG
GCGACCGGCGATGGCGGAGGGGGGCGCTGGAGAGACAACAGCGAGCTGCT
GCTGCAACAGCACCAGCCGCACCAGCACCACCAGCCGCAGCAATCTCGCA
ATCGACCCTCGTTCGACCCTCTAGCGTCGACCAGTTCGGGTATTGACTGC
TCCGGGGGCGGGCAGGAGCTGCGTATGAACAAAGGGGGTAAAAGGAGATT
GACGGAAGGGAGAGGAGGAGAAGAAGAAGGAGAAGTAAGGACAGATACAG
CGGTCTCAGTCGACGAAATCCGGGGTGAGGCCATAGTTGGCGGCAGCGGA
TTATGGATGGAGACGAGGAGGATGATGCCGCCGGCGGCGGGGACGTCTCC
GACGGCCCACCCACGCCCCGGCTCGCCTTCGCGCAGCAGGCATCGTTCGA
CCCGGCCAGAGAGCCGGCGGAATCGAGTTCGGAGGTGATAGACGGCTTGC
CAACTGTGATCGCCCCGTCTCCAGTGACCTCGGCGACCGGCGATGGCGGA
GGGGGGCGCTGGAGAGACAACAGCGAGCTGCTGCTGCAACAGCACCAGCC
GCACCAGCACCACCAGCCGCAGCAATCTCGCAATCGACCCTCGTTCGACC
CTCTAGCGTCGACCAGTTCGGGTATTGACTGCTCCGGGGGCGGGCAGGAG
CTGCGTATGAACAAAGGGGGTAAAAGGAGATTGACGGAAGGGAGAGGAGG
AGAAGAAGAAGGAGAAGTAAGGACAGATACAGCGGTCTCAGTCGACGAAA
TCCGGGGTGAGGCCATAGTTGGCGGCAGCGCACCATCAGCGACCCCTTCC
TTCTGCGGGCCCGATGGATCATGCCGGTGTGGGGTTGGGGTCGGGGGCGG
CCCGCACCATCAGCGACCCCTTCCTTCTGCGGGCCCGATGGATCATGCCG
GTGTGGGGTTGGGGTCGGGGGCGGCCCG
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