Homology
BLAST of mRNA_P-fluviatile_contig21.4595.1 vs. uniprot
Match:
A0A6H5KLA4_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KLA4_9PHAE)
HSP 1 Score: 462 bits (1189), Expect = 1.320e-146
Identity = 248/279 (88.89%), Postives = 254/279 (91.04%), Query Frame = 3
Query: 3417 SSDIEAATKNSLLSFGGXXXXXXXXXXXXGTVDFTNKGEGGGADGTRRPVIASGAGRTEAGSESTLETWQLELIDREKVAMDDPSFSCRQRVKFEEICEGAAESMGMAGATPEDVLKVACSKCTLGRTLALGAMRERELSLSQQQTRGVERLNLGSPFKGKTNYATVYVFSDRAAANRMVDMWANVIGVGAQLCGACREKINEHDFGDRRFLRLVISGEGGWQSAARYGKGLINLPTEERAKKPRQNNGRVVNDGPAW*VPAGLVLANGGALKTVTRET 4253
S DIEAATKNSLLS GG XXXXXXXX GTVD TNKGEGGGADGTRRPVIASGAGRT+AGSESTLETWQLELI+R KVAMDDPSFSC QRVKFEEICEGAAE MGMAGATPEDVLKVACSK TLGRTLAL AMRERELSLSQ Q GVERLNLGSPFK KTNYATVYVFSDRAAANRMVDMWANVIG+GAQLCGA R+KINEHDFGDRRFLRL+ISGEGGWQSAA+YG GLIN PTEERAKKPRQ GRV NDGPAW VPAGLVLA GGALKTVT ET
Sbjct: 6 SGDIEAATKNSLLSLGGNXXXXXXXXA--GTVDVTNKGEGGGADGTRRPVIASGAGRTKAGSESTLETWQLELIERVKVAMDDPSFSCSQRVKFEEICEGAAEPMGMAGATPEDVLKVACSKYTLGRTLALDAMRERELSLSQLQKSGVERLNLGSPFKEKTNYATVYVFSDRAAANRMVDMWANVIGIGAQLCGAYRKKINEHDFGDRRFLRLMISGEGGWQSAAKYGTGLINPPTEERAKKPRQKYGRVANDGPAWLVPAGLVLAGGGALKTVTWET 282
BLAST of mRNA_P-fluviatile_contig21.4595.1 vs. uniprot
Match:
A0A6H5K9F7_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K9F7_9PHAE)
HSP 1 Score: 273 bits (697), Expect = 1.040e-76
Identity = 168/375 (44.80%), Postives = 208/375 (55.47%), Query Frame = 3
Query: 3294 GDQGGGDVPTPVRFRGKGKARAGNEQPGKLARTAPPCPGFDSSDIEAATKNSLLSFGGXXXXXXXXXXXXGTVDFTNKGEGGGADGTRRPVIASGAGRTEAGSESTLETWQLELIDREKVAMDDPSFSCRQRVKFEEICEGAAESMGMAG-ATPEDVLKVACSKCTLGRTLALGAMRERELSLSQQQTRGVERLNLGSPFKGKTNYATVYVFSDRAAANRMVDMWANVIGVGAQLCGACREKINEHDFGDRRFLRLVISGEGGWQSAARYGKGLINLPTEERAKKPRQNNGRVVNDGPAW*VPAGLVLANGGALKTVTRETYV*RKGDEHRPSRELHEAILPLGFLGGLAFSQGSISLNQKIGGTFTDDDRERGG 4415
GD+G D TP R R KGKA+ ++P K AR APP PGFD++DIEAAT+NSLLS GG VD TN+ +GGGADG RR A G R + + LE Q EL +R K A+D PSF+ R K +I AA + G+ G A+ +DVL+ AC + L R NY + F + M W + +GVG+ CG+ R K+N H++ D LRL+ISGE SA +Y KGL P RA++P Q NGRV NDGPAW VPAGLVL A+ TV ETYV R GD +R SRELHEAIL L LGGL + S+ LNQK+GGTFTD+ R RGG
Sbjct: 3 GDEGNDDASTPPRSRVKGKAQGRGDKPSKWARAAPPSPGFDTADIEAATRNSLLSLGGKGGGCGGSSRPD-VVDLTNRSQGGGADGARR---AGGRERGGKVAHAPLEPHQAELFERVKAAVDHPSFASN-RAKLADIAREAATAKGIGGEASTDDVLREACREYDLHRV----------------------------------NYVHAHEFHSQETTIGMTRKWESEMGVGSAFCGSVRAKVNRHEW-DNGALRLLISGERLSASALKYTKGLQKPPIAARARRPHQLNGRVANDGPAWNVPAGLVLVGADAIDTVGSETYVWRMGDPYRSSRELHEAILALDVLGGLVWCPESVGLNQKVGGTFTDEQRSRGG 337
BLAST of mRNA_P-fluviatile_contig21.4595.1 vs. uniprot
Match:
A0A6H5KF00_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KF00_9PHAE)
HSP 1 Score: 256 bits (654), Expect = 1.230e-71
Identity = 162/361 (44.88%), Postives = 204/361 (56.51%), Query Frame = 3
Query: 3861 VERLNLGSPFKGKTNYATVYVFSDRAAANRMVDMWANVIGVGAQLCGACREKINEHDFGDRRFLRLVISGEGGWQSAARYGKGLINLPTEERAKKPRQNNGRVVNDGPAW*VPAGLVLANGGALKTVTRETYV*RKGDEHRPSRELHEAILPLGFLGGLAFSQGSISLNQKIGGTFTDDDRERG-------------------GKASYTAEQTGSDKSTTELKSEGGKGWCGIG---------------NRGEPGGKRPKRRCGSKNAQAHPLPTQPP*ARMAFTS----ASRQTALASPKSCGTCLPT-----PNFSEAGVTKSKSKWQLDEHDNLIIPGHNTNKTEGHPTCTIGGCVPV 4814
+ERL++ FKG+ NY VY +SD+AAA RMV W + +GVG QLCGA R KIN HD+ LRLV+SGEG SAA+Y KGL+N PTEERA+ PRQ NGRV NDG AW VPAGLVLA G L+ VT ETY+ R GD H SRELHEAILPLGFL GL FS+GS SLNQK+GGTFTD+ R RG G + T Q + +E S G G G + G+ GG+ + K A L + +++ A+ QTA+ P+ P F E G+TK +S+W+L+E ++I+ HN+N T HP C +GG VPV
Sbjct: 1 MERLDITRRFKGRCNYFNVYRWSDKAAALRMVGAWGSEMGVGVQLCGAVRAKINGHDW-TAGPLRLVMSGEGLLDSAAKYDKGLLNPPTEERARLPRQENGRVANDGRAWLVPAGLVLAGDGTLQIVTWETYIWRTGDPHLSSRELHEAILPLGFLRGLVFSRGSTSLNQKLGGTFTDEQRRRGARTATVDGAKVRIPMAVVEGNEAPTPLQQRTMDQRSEDSSRGDNNSVGAGPNENKATAKRRDIPIDAGDEGGEETGNKPAVKTLTARGL-------CLGYSALGLVANLQTAIDLDTGAIKVNPSLWCEKPKFGERGLTKRESEWKLNESGSMILGEHNSNGTVEHPGCQVGGTVPV 353
BLAST of mRNA_P-fluviatile_contig21.4595.1 vs. uniprot
Match:
D7FV88_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FV88_ECTSI)
HSP 1 Score: 170 bits (431), Expect = 2.770e-42
Identity = 133/378 (35.19%), Postives = 162/378 (42.86%), Query Frame = 3
Query: 3291 AGDQGGGDVPTPVRFRGKGKARAGNEQPGKLARTAPPCPGFDSSDIEAATKNSLLSFGGXXXXXXXXXXXXGTVDFTNKGEGGGADGTRRPVIASGAGRTEAGSESTLETWQLELIDREKVAMDDPSFSCRQRVKFEEICEGAAESMGMA-GATPEDVLKVACSKCTLGRTLALGAMRERELSLSQQQTRGVERLNLGSPFKGKTNYATVYVFSDRAAANRMVDMWANVIGVGAQLCGACREKINEHDFGDRRFLRLVISGEGGWQSAARYGKGLINLPTEERAKKPRQNNGRVVNDGPAW*VPAGLVLANGGALKTVTRETYV*RKGDEHRPSRELHEAILPLGFLGGLAFSQGSISLNQKIGGTFTDDDRERGGKA 4421
AGD+G GDVPTP R RGKGKAR N+QPGK ART PP PGFD + ++ LE Q + +R AMDDP+ + R K EI A++ GM A+ DVL+ AC + L R+LAL +R+R L+ ++ + G+E F K +Y GG Q NGRV NDGPAW +PAGLVLA A+ TVT ETYV R GD HR SRELHEAIL L FLGGL +S+ S LNQK+GGTFTD+ RERGG A
Sbjct: 6 AGDKGDGDVPTPKRSRGKGKARVANDQPGKWARTTPPSPGFDVA------------------------------------------------------------QAPLEPHQTVVFERMTAAMDDPTVAIN-RAKMLEIAREVAKTKGMGEDASICDVLRKACGEYGLRRSLALDQLRKRPLADNEMKEGGIE------VFDQKKDY-------------------------------------------------------GG------------------------QVNGRVANDGPAWNIPAGLVLAGAEAIDTVTSETYVWRTGDPHRSSRELHEAILALVFLGGLVWSKESAGLNQKVGGTFTDEQRERGGAA 237
BLAST of mRNA_P-fluviatile_contig21.4595.1 vs. uniprot
Match:
A0A6H5K367_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K367_9PHAE)
HSP 1 Score: 139 bits (349), Expect = 1.010e-32
Identity = 77/141 (54.61%), Postives = 91/141 (64.54%), Query Frame = 3
Query: 3978 GVGAQLCGACREKINEHDFGDRRFLRLVISGEGGWQSAARYGKGLINLPTEERAKKPRQNNGRVVNDGPAW*VPAGLVLANGGALKTVTRETYV*RKGDEHRPSRELHEAILPLGFLGGL-AFSQGSISLNQ--KIGGTFT 4391
GVG+ LCG+ R K+N HD+G LRL+ISGEG SA +Y +GL PT RA++PRQ NGRV NDGPAW VPAGLVL A+ V ETYV R GD HR SREL +A+L L FLGGL +G Q +GG T
Sbjct: 42 GVGSALCGSVRAKVNRHDWGSGA-LRLLISGEGLSASAHKYARGLQQPPTAVRAREPRQVNGRVANDGPAWNVPAGLVLVGVDAINEVGTETYVWRTGDPHRSSRELQDAVLALVFLGGLWRLGEGRTRREQARSVGGAST 181
BLAST of mRNA_P-fluviatile_contig21.4595.1 vs. uniprot
Match:
A0A6H5JY10_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JY10_9PHAE)
HSP 1 Score: 107 bits (267), Expect = 2.500e-23
Identity = 53/84 (63.10%), Postives = 58/84 (69.05%), Query Frame = 1
Query: 3067 ETSPCPSQTRLGGGCLTLVDICVPGASNHRQVPATGRVDGDRGTAGQRQWNLPPKEGGLKYRLRRRHSIPWTFSG-PAIKGVAM 3315
+ P P GGG LT V+ICVPGASNHRQVPAT RV G+ GTA QWNLPPKE G Y+LRRRHS PW FSG A G +M
Sbjct: 33 QPQPLPLADPFGGGSLTSVNICVPGASNHRQVPATERVVGNPGTAVPCQWNLPPKESGANYQLRRRHSTPWVFSGYVARSGASM 116
BLAST of mRNA_P-fluviatile_contig21.4595.1 vs. uniprot
Match:
A0A6H5L5E5_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5L5E5_9PHAE)
HSP 1 Score: 91.7 bits (226), Expect = 6.130e-15
Identity = 39/49 (79.59%), Postives = 43/49 (87.76%), Query Frame = 3
Query: 4674 PNFSEAGVTKSKSKWQLDEHDNLIIPGHNTNKTEGHPTCTIGGCVPVEQ 4820
PNFSEAGVTK +S WQLDEHD LI+P H+ NKTEGHP CTIGGCVPVE+
Sbjct: 507 PNFSEAGVTKGESTWQLDEHDYLILPVHSGNKTEGHPACTIGGCVPVEK 555
BLAST of mRNA_P-fluviatile_contig21.4595.1 vs. uniprot
Match:
D7FWV7_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FWV7_ECTSI)
HSP 1 Score: 89.0 bits (219), Expect = 3.670e-14
Identity = 37/49 (75.51%), Postives = 43/49 (87.76%), Query Frame = 3
Query: 4674 PNFSEAGVTKSKSKWQLDEHDNLIIPGHNTNKTEGHPTCTIGGCVPVEQ 4820
PNFSEAGVTK KS WQLDEHDNLI+P H++ +TEGHP C +GGCVPVE+
Sbjct: 462 PNFSEAGVTKGKSTWQLDEHDNLILPVHSSIETEGHPRCQLGGCVPVEK 510
BLAST of mRNA_P-fluviatile_contig21.4595.1 vs. uniprot
Match:
A0A6H5JCR4_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JCR4_9PHAE)
HSP 1 Score: 77.0 bits (188), Expect = 3.090e-13
Identity = 39/66 (59.09%), Postives = 43/66 (65.15%), Query Frame = 1
Query: 3031 FGFGVGGSRWSWETSPCPSQTRLGGGCLTLVDICVPGASNHRQVPATGRVDGDRGTAGQRQWNLPP 3228
F + SR + P P GGG LT V+ICVPGASNHRQVPATGRV G+ GTA QWNLPP
Sbjct: 21 FRLSLSQSRLLPQPQPLPLADPFGGGSLTSVNICVPGASNHRQVPATGRVVGNPGTAVPCQWNLPP 86
BLAST of mRNA_P-fluviatile_contig21.4595.1 vs. uniprot
Match:
A0A6H5K9F5_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5K9F5_9PHAE)
HSP 1 Score: 84.0 bits (206), Expect = 7.340e-13
Identity = 55/116 (47.41%), Postives = 62/116 (53.45%), Query Frame = 3
Query: 4074 GGWQSAARYGKGLINLPTEERAKKPRQNNG--RVVNDGPAW*VPAGLVLANGGALKTVTRETYV*RKGDEHRPSRELHEAILPLGFLGGLAFSQGSISLNQKIGGTFTDDDRERGG 4415
GG +AA N ERA + G R D P + LVL A+ V ETY R GD HR SRE HEAIL L FLGGL + SI+LNQK+GGTF DD R RGG
Sbjct: 185 GGQGAAA-----AANSSPRERASSGERPRGERRPCVDRPGGSI---LVLVGADAINEVGTETYAWRTGDPHRSSREPHEAILALVFLGGLVWCPESIALNQKVGGTFNDDQRSRGG 292
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig21.4595.1
>prot_P-fluviatile_contig21.4595.1 ID=prot_P-fluviatile_contig21.4595.1|Name=mRNA_P-fluviatile_contig21.4595.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=306bp
MDILGAGDQGGGDVPTPVRFRGKGKARAGNEQPGKLARTAPPCPGFDSSD
IEAATKNSLLSFGGNGGGGGGGSSSGGTVDFTNKGEGGGADGTRRPVIAS
GAGRTEAGSESTLETWQLELIDREKVAMDDPSFSCRQRVKFEEICEGAAE
SMGMAGATPEDVLKVACSKCTLGRTLALGAMRERELSLSQQQTRGVERLN
LGSPFKGKTNYATVYVFSDRAAANRMVDMWANVIGVGAQLCGACREKINE
HDFGDRRFLRLVISGEGGWQSAARYGKGLINLPTEERAKKPRQNNGRVVN
DGPAW*
back to topmRNA from alignment at P-fluviatile_contig21:1324751..1337390+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig21.4595.1 ID=mRNA_P-fluviatile_contig21.4595.1|Name=mRNA_P-fluviatile_contig21.4595.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=12640bp|location=Sequence derived from alignment at P-fluviatile_contig21:1324751..1337390+ (Porterinema fluviatile SAG_2381)
CTCCTTGTAGCAGTACAGCTTTTGATGTTTTCGTTTTTGGTTTTGTCTTG
GCCTTTGCTTGATTGTGAACCTTTGGTGGAGACAGAGGGGCCGACGTATG
CGTTTATGTGTTTTGATATTTCGATTGTTTCCTCACGTTTTGGATCGGCC
TCGCATATGCCCCAAGGAGCAGGGGGGCCGTTCTACATTTTGGATTTTCC
GTGTTTCTTGTGATTGGTACTCGGTACTTGGTATTGCTAACGTTGCAGGA
TCAAGGATTTGGGAACTGGTTGCTTGCGTGCATATTTCGATCGCTCGATT
GACAGCAGTAGTAGCGTAATGGTGGAAGTCCCTCTGGCATTTTCTTGTGT
TGGATTTTTGGACGTTCCCCTATGTTGCTGCTATGTTTGTTTCTGGATAT
TGTATCGGAGGAAGGATTTGGTATACACCTATTGGTAATGGTTGGGGCCT
TTGTGCTTTCCGAATGCTGATTTGTGTTGACCAAGAAGTTGGAATTTCGG
TTGTGTTTGAGGTTTTTGATTCTGGTTGATTGAGGCGTTTCCGGGTTGTC
CGTCGTTCTGCAAGACGCAATGCTGATGTGACGTTAATTTTGATTGGATA
TTTTTCCGAGGATATTTCTGGTGTTCTGGCGGATTGAGTTTTCTCAAGAG
GATAGATTAGGCTCTTGGCGTATGGATTGGGATGAATATTGTATGTTTCA
AAGGATTCGAGATCATGGGAGTTGAAAGATGATGTCTTGGATTTTGAATT
GTGTGTTATATTGATTGCGGCCGTTTCGGTAACGGCCCATGCATTGTTTG
CTTGGAAAAGTATATTTCACCAAGCAGGGGGGCTGTTTGTGGTACTTGGG
GAAAGATACTGTTCCAGGTATTGGATATGGGGGATACGCAGTTGGTGTAG
TGGTATGATCATCTGTATGTCACGGGGACCCGTCTCTCCCTGGGGCAGAC
TACTTGTTCCTCTGTTACGTAATACAAGAGCACGTTTATACTACTGGGGC
GCCTCCGACAACAGTCCGCAGCGAGATAACTTAGTCCTCGCACCAGCACA
CAAACACAAGGTATGCTGCGGACATCCCGGCGGCCGCGATGGCAGCGTAG
GTCGGGGGTTGGAACAGGCGACCGGGCCCCTGGTTGTAGGGGTGTACGGG
CTCGGTGACATCGGCGGCTGAGTCGGCAGCGGAAGCGGTACCATCACGGT
GGCTACAGGAATGGTCGGGGGTGCCAGCGGCGATTGGCTGCAAGCCGCTA
GAAGGGGTGCCGTCGTCGGATTCGGAGCTTTTGCTCGAGATGGAGCAGGT
GTCGGTCATGGAGGTGTTGATGCTCGCGACGGGGCTGCTGTCATGGCCGT
AGTTAGAATCGTCGTCGATGCCTTCATCATTGGTGTCTCCTACGCTGCTG
CTGCCGCTTCTGAGGATGCCGGTGGGTATGCCATTGATGGTGATGGTGTC
GGTGTTGCTGATGACAGCATCTTCGAAAGTCGCCACGAACGAGTTCCATA
GCTTGTACACCGTCCTGTAGCCAGCACCAGAAGAAACACGATGAGCGCTG
TGCTTTCAACCAGATAAATAAGAAGCGGTCGTCGTGCGGTCGCACCTCTC
GAAGCCCAGGTCTATTGGATTTCACCTCACGAGGCTTCCGTTCTCGGGTT
TATGGTTTCCCTGACCTTTGTCGAAAAAGTGCGGGGGGCCCAAGAAATCA
GAATCAGGAGAAATCCAAACCATGCGTGTTGCATTCTGCGGGAAATCATG
CTCCGATGTGAAGTGCTGTGGATGCTGCAATCCTGTGTCTACCGCAGCCG
AGCTCCTGGTGGCAAGAAAGTGCCCAACAGCCCATACCCCGCGGAAAGGC
AGCAGAAAAGCCGAAGACCCGGGGACTCGGTTGAATGCGCAAGGAAGGGG
TGATTTGCTGCATCTGCACTTTTCCCAGACGCGTCATTCCAACGTTCATT
GTTGCAGCGATGCCTTGAGCTCTAACAAGCTTAGCTCACCTGTAGCCGAC
GTCTAGGATGCCGTCCACGTCGGCGGCGAGCTCGTAGCGCGTAGGTGGAG
TCGGCGGCTAGTGGTCGAGGAAGCCAGTCACAAACGCGGATATGAGTGTT
TGCAGCCAGCAGCGCAAGACGGGCGTGTGGGATTCGGAAACCGCAGCAGC
GCGTCCAGGCGGGACGTTTGACTTCATTTTGCAGCCAACTCGCCCCGCTT
GTACAAACTAACTGCGTCGACTCTGAATTCGGCCTTGTGGCATTGTACAT
TTCAGCTTTTCATGTTTGCTTCACCCCTCGTTTCTTTGGTCCCGTGCTCA
AGTGTAATGGTATCCTCTCCAACACTCAACGTATCCTGGCATGATTCCGT
CTTTGCCGTGGCGAGTTTAGAACCGGTATACGTTTTCGCCTCTGACAGTC
TTCTGATTGTGGTCGTAGGAAGGCTGCCTCGTGGTTACCTCGACGCCCTC
GATGACCCTGGCCATGCCCGGGAAGAGGAAGCACGTCACGCTCGATGGGC
TGGCGGCGTCGGGTGCGATGGCCCAGCTCGTGGAGCCGCAGGAAGCGTAC
AGCCCCCGCACCCGCGGGTCATGAATGAACCCGCACCTGGTGCAGTGAGA
AACGAGCCATGCGAACATTTGCCATGTCAATGTAGTTGCCCCAAAGGGGG
AGAGAAGGCGTAGTGCCAGTGTGAAAAGCACAACGACACCGCCTCGAGGA
CAAGATGCCAAATAAGCATGGCCCGATCGATGATCACGCAAATTCTCGCA
GGAAGGCTGCCTGGTTGTGTAGACGGGCGAAGAAGACGCTGATCTGCATT
TCTCCAACATTGTCGCGAGCACCTGCTTTGTGAGCCACGATGGACACCTG
CCGTATTGCGCAGGAAGTTTTCAAACGAAGTGGCATGCCGCCGACTTTCT
AGCGATAGGCTATGACGTCGATGCTCAGGATGAAGGCACTGGAGAAGGCA
CTCGACCCACCTCCTGCCGGAGGGGCAGCTGCCGGTCGCCACCCAGGCCT
TGGTCAAGTTTTACCGGTGGGTGCGAGTGAAGGCGGCGGTGGCCAAGCCG
GGGGAGTTGATTTTTCAGGTTGTTCCGACAGTGCGGTTTTTGAACCAAGG
CCCAGAGGAGGCGCACGCAAAAGAGAGAGCGGGGTATCCCACGAGGTAAA
CACGTATCAGAGAGGAGGGCAGAGGGTTGGGAAGAATGGGTTTGTGTTGG
CCTATTTTCTCAGAGAGAGAGCAGTCTAGAACAAATGCGGGATTTTGGAT
AACAGGGCGTTGGTGAAACTAAAGTGTTTATCACGACCACTCACGGCCGT
CGAGGACATTCGCGGTGGTCGTGCAAAGGGCCGAGATTCGTTGAGATCGA
ACCTCAACCCTGGCCCTGGCGCGACGCGTGAAATGGAGAAAGATGGAACA
GTGTCGAATTCAGTTTACACCGTAAAGGATATCAGCGCATTCGCACATGA
GCGCTCTCGTGCATGAAGCCAAAGAGAAATTCAACGCCATTTCTTCGACG
CCGTGTCTTCTTTCCGCCTCACTCACCAAGCAGGGGCGATAGCAAAATTC
GTTTTGCGCTGGGGACGCGCCCGGTGTCCTCCCTTGATTGGCCCGTTCGG
TTTTGGCGTGGGAGGGAGCAGGTGGAGCTGGGAAACGAGGTGCGCGGGCA
TACGATTTTGGCAATTCATTTGATTGGAGCCAAACTCACACCATTCATTC
CACATCGTGAATGCGGACAACATTCAACAATACAATATAGTCTCCCCCCC
AAACACACACACATCCACTGACTGCTAGCGTGTACAGCAGTACTCACACG
CGAGAGTAGCATGCAGCAACTTTTGGCCCCTGTCACATCCACACCGAGAC
CAATGTCTACGATGGTAGTAACAACCTCAGAGCACTTTATTGATACTACA
TCCTCGCGTGCACCCAGGCTGCCCCTGCCCCAGACCCGGCTCCTGCCCCA
GCCCCAGCCCCTGCCCCTGCCCCAGCCCCTGCCCCTCACAGACCCGTTTG
GGGGGGGGCTGCCTGACGTTAGTGGACATTTGCGTGCCGGGGGCGAGCAA
TCATCGCCAAGTGCCGGCAACGGGACGGGTGGATGGAGACCGTGGAACGG
CAGGGCAACGTCAGTGGAACCTGCCGCCGAAGGAGGGCGGGTTGAAATAT
CGACTCCGCCGTCGTCACTCTATTCCATGGACATTCTCGGGGTACGTGGC
AAGATCAGGGGCTTCGATGGGGTCGGGCTTGTTCCATTCCTAGTTGGCGT
TGGATGGCGTTAGTTGATTGGCGTCTATTTCGCGCCGGCCGAGTACTTGG
TTAGTGGCCACGCCCTCGCCTACAGCAGACAGCAGCAGATATGCTGCTGT
CAATGTTCACCTACATTCCTTTTTTTCTTCTGTAATTACGACGATACCTG
AAATTCGCGAGGATTTCATATTTTCCCGCCTAAACACCAAACAAGCCTCT
CGTGGGTTTCCCACTTTTGTGTCAACCTGTTTCGCACACCCCCCGCCCCC
AAGCCATCACTCTGCTCACCCTCTCTTCGCCTTCCATTTGGTGCTATCAA
AACGCAAATGGTACGTATTTTAAAGTACTGCTGTAGTACGGTGTTGGCGA
TTATCTTGACCTTATGCAGGCGAGCATGGTCCACAACGAAACACCATCCA
GCCCTATATTCTCATGCTGAACTTGCAGGCCGGCGATCAAGGGGGTGGCG
ATGTGCCGACGCCCGTGAGATTTCGAGGGAAAGGGAAAGCCCGGGCGGGA
AACGAACAACCGGGCAAGTTGGCCCGCACGGCACCCCCCTGTCCAGGCTT
CGATGTAAGAAACCAAGGAGGAAGTAGTTCGTTCCTCTTCCCTTTGACGT
ACTGTGTCGACAGCAGCCAATTATTTCGTAGCACGTTCAACGTTCGTCGT
CTTCGGCGGGATTATCGTGCACGGATCACCTGTTTGGCGCTACTGGTAAA
GAACAGCGACACGATTATTACGTGACAGTTTCCGTTCCCTTGCAGTCTAG
TGACATCGAGGCCGCGACGAAGAACAGCCTCTTGTCGTTCGGTGGCAACG
GAGGAGGCGGCGGCGGCGGCTCGAGCAGCGGAGGCACTGTCGACTTCACG
AACAAAGGCGAGGGCGGCGGTGCCGACGGCACGAGGCGGCCGGTGATCGC
GAGCGGGGCGGGGAGGACAGAGGTTAGTTTAGTACTTCAAGATATTGGAC
GTGAAAGTACCATTTACGATCGATTCTGTGTCGTATGGTTCAGCCAACCT
GCCGGTCAAAAAAAGGGTTCTTTCTTTCGAGTGGTTGGCACTCACTACTA
CCGTAGATTAGACACTGTAACCGCTCGCCTTCACTCAATATCCCACCCCC
CTATGGGCAATCAACCAGTGCTCTCCCTTCCGTTCCGGTGCCCCCTCTCC
TCTTCTTCTTGTGCGAAAGGCGGGTTCCGAATCCACCCTGGAAACATGGC
AGCTTGAGTTAATCGACAGAGAGAAGGTGGCCATGGATGATCCGTCGTTT
TCGTGTAGACAACGCGTTAAATTTGAGGAAATTTGCGAAGGCGCCGCCGA
ATCCATGGGCATGGCCGGGGCAACACCTGAAGATGTTCTTAAGGTTGCCT
GCAGCAAGTGCACCTTAGGGCGAACTCTTGCACTAGGTGCGATGCGCGAG
AGGGAGCTCAGCCTCTCGCAGCAGCAAACACGCGGTGTGGAACGGCTGAA
CCTTGGTAGTCCCTTCAAGGGAAAGACAAACTACGCCACCGTATATGTGT
TTTCGGACCGGGCGGCAGCGAACCGAATGGTGGACATGTGGGCGAACGTC
ATCGGCGTAGGGGCCCAGCTGTGTGGTGCTTGCCGGGAAAAGATCAACGA
ACACGACTTCGGAGATCGTCGTTTCCTCAGGTTGGTGATTTCTGGCGAGG
GTGGGTGGCAATCAGCTGCAAGGTACGGCAAGGGTCTGATCAATCTACCG
ACGGAGGAGAGAGCAAAAAAGCCTCGCCAGAATAACGGAAGAGTCGTAAA
CGACGGACCCGCCTGGTAGGTACCGGCCGGGCTGGTCTTGGCGAATGGTG
GGGCACTGAAGACAGTCACACGGGAAACGTACGTATGACGAAAAGGCGAC
GAGCACAGACCTTCGCGGGAGCTACATGAGGCCATCCTACCGCTCGGGTT
CCTAGGGGGTCTAGCTTTCAGCCAGGGATCCATCAGCCTGAACCAGAAGA
TAGGTGGTACCTTCACCGACGATGACAGGGAGAGGGGAGGTAAGCAGCAT
GACTCGACTAGTAAGTCTGTAGTTGTGTTGTTGTTGTTGTTGTTGTTGTT
GTTGTTGTTGTTGTTGTTGTTGTTGCTGCTGTTGATGTTGCTGTTGTTGT
TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTG
TTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTT
GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT
TGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTTGTTGTTGTTGTTGTTGTT
GTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGTTGT
TGTTGTTGTTGTTGTTGTTGTTTTTGCTCCCCCATTGCCGCATGACGAAA
ACATCAACGTTACAAATGTTCAATTGACTCTCTGAATGAAAAGTTGCTTA
TTGGCCATCTTATTATGTTACCATGGCAACGAATGTTGTCACAGGGCGGG
ATGGCCTGACCGCATGAGAGTGGGCGAACCCCTCCAACCCTATACACGTT
TCGCTTCACCCCTCCACACAGGCAAGGCCAGCTACACGGCGGAGCAGACG
GGCTCGGACAAATCAACGACGGAGCTGAAAAGCGAAGGAGGTAAGGGCTG
GTATACATGAATTGACGAATGCCTTGTTGTTGTTCGTTGTTGCTGTCCTT
GAAGGAAGATCGTTGGCGAGGTTGGACTTGTTGCTATCGAGGCGTGTAGC
TGACCCGTTGAATAAATGCACCTAGTGCGGTTTCATGTGTCAGCTTTTCC
ATTCGCCTCATGTGCACCCGGCCATGAGTGTATCATTGACTTGACCGCCC
GCGGCGTTGGGTGGGTCGTTGTTTTCGCTGTTGTTTTTTGACAGTCGATC
GAACAGATCGCGATGCCTTAAGAGCGAGCAACTGCTGCATGGTTGGATTG
AGCCTATTCCCCCCGCCCGTCGTGTTCGTTGCAGGCGTTTCTGTTTCTGT
TGTTGTATTGAGTGGAAAAATTCTTCCTGAAACTAACCCTCTCCACTCCC
CGTGTACATGGTGCTATTATGCCCCGGCTTTCACTCGTCGTCCCACGGAT
CTCGGGCACTCCAGGGAGGATCGGAGGTAAGACGATATGATAGTTCACCC
GACCAACCACGGCGTTCCAGCTCCCTGCTCCACTGGATGTGGGTTGATAG
CAAGGCGTGCAAGGGACTCTGAGAGTGAAGACCAACACGGAGTGCAACGC
CGCCGAAGCGTGCTATTTGAGTTTTTTGTTTGCTTATGTGACAGTCGATC
GAACAGCACGCGATGCCTTAAGAGCGAGCACCTGGTGCATGGTTGGATTG
AGCCTATTCGTTGCAGGCAAAACTCCGACGAGAAGCAAAGAAAAACCCGG
AAAAATTCCACGAAGACCGCTCGAGCGCAGGTGAGTTTCTATCCGTGCGT
TGTTGTTGTTGCCGCCACAGCGTGCTATTTATTTGACTTTTGGAATGAAA
GTTTGACAGTCGATCGAACAGAACGCAATGCCTTAATAGCGAGCAAACCA
TAGTTGGATTGGGCCTATTCTCCCCGCCCGTCGTGTTCGTTGCAGGCGTT
TCTCTTTGTGTTGTTACTGTTGTTACATCCTCTGGTACAATTCCACTCCG
GACCCCCCCCCCCCGGCAATGAAGTTGTGCCCCGCACCCCGTTTACTCAG
AGCATCCCGCTCTCTTGTGCATTTGATGTGTCGACACCAAGGCGTGCGGT
GTGACCCGTTGGCTGGAATGTCGACTGGCTTTTATGCTTGTGTTGTTCTT
GTTGTTGTTGACTATGAAATATCTCAATCCTCGCTCGCTCCTATTTATTC
GTCCTTTCGTTTTCCCGACATCAACCCATCGTTGTCTCGACTTGGTGATC
GACGCGCCCACTCAGCTGCTACGAAGGAGTGCGTCCAAAAGCTCGTGTGC
GTTTGAAAATTTCACAGAGACATTGTCACGCAAAAGAAACACACCACCTC
CTTTTGCGTTCATTGGGGCAGCACTTCGCGTCCTTGTCGATTGCTCGTGT
TTCTTTGATGTGTAGTCACTTTTCGTGTGCCTACGTTTTGTGTATTTGAT
CCCAGGCTTCGCAATATCATGATCACGTATCCATTCCTCTCGTCGGTTGT
TATCGTCAACGCGTGGCAAACAGGTGCGGCATTGGGAACAGGGGCGAACC
AGGTGGGAAGCGCCCCAAGCGACGCTGCGGCAGCAAAAATGCGCAAGCCC
ATCCCCTGCCAACCCAACCCCCGTGAGCGCGCATGGCTTTTACTTCGGCT
TCGCGGCAGACAGCGTTGGCCTCGCCCAAAAGCTGTGGGACGTGTTTGCC
GGTAACACCGGGTTCGGGGGCGTACTCATGTTTTGCATGCCTTCGTTGTT
AGACCATTGACCACGCGTCCTCGAGAGGACGGAGCATTGTTCCCACAGGA
TCGACCACCGATGGCCAATCGTTCCTTCCTACTTTGCCAAAGGTGGCTCA
AAAATGTTTTCCCTAACCTGTCTACTTTATACCTGTCCTTCCTGGGCCAC
ATCTTACACCCGAGTACCGCTACCGTCTTCTCCTCTTTGTTCCATGCCTC
AAACTTCTCTCTATACCGACTGTCTACTTTTTCCAGCTCAACCATGTACC
CTTCTCTCTCCTGATCGTACAACGGGCATTCCGCAACTACATGTACCCGG
TCTTCGCATTCGGCGCCGCAGTCACATTTGAACTTGTCTTCGTCGTCGTC
TACCTTCCTAAACCTCCTTCTACGTTCCCGTAGGTCAATGTCGCCCGTTC
TAAATTTGACCTTCATCTTTGTCCCTTCATCCAATGGTCCGTTCAGGTAC
TCCTTGAACCCTATTCCTTCGTTCAGCCTTCCGTACACTTCTAGAACCTC
CTTTTCCTTGGTCTCTTTCCGCAAGCTCTGGTCTTCTCTATTTTCAAAGG
CTTCTGAGATGCTCTTCTTGTACCCTTCTAAGCTTTCCGCTCCCGTCGTC
TCCCGTTCGTCAATATCTAACCCACTCCACACTCCCTGTACAACCTTAGC
CCACTCAATGGGTTGTCTACCCTTGGCCTTGTTTCCCCATCTCGCCTCCC
AAGCTATTCTCGGTAACCTCTCCTTTCCCATGTTTTCCAAACGGTCTTGC
CATGTCAACTTCCTCCTGTCTCTTCCCGTTCTTAAGGAGTAGATCCCCAA
CTCTGCTCTTACTGCTGCGTTACTTGTGCGCTGGGAGCATCTTAGAATGA
TCTTCGCTGCTTTCATCTGCGCTGCCTCCAACTCTGCTACTATTTTCTTG
TTcCCTTCCCAAACTTCTCCCGCGTACTCTAGTGGCGGGATGATAACACT
TTTCAGAATGGTCATTTTGACGCGTGTATCAAGGTGCCGGTCTGCTAGGA
TTGGGTGCAACTTGCCTGCCCTTGCTTTGCCCTTGTCCGCTATTTTGTGC
ATGTGTGCATCCCATTTACAGTCCTTTGCTATCTCTACTCCAAGGTTTGT
GTATTTTTCCACTCTTGGCAGCTCCTTGTCCCCCCACGTCCACTTGGTAC
CTACTTCCTCGTCACCAACTTCATTGCATACCATTACGGCACACTTTGGG
ACGTTGGCCGAGAATCTCCACTTATCAGCGTAGGTCTTCGCTGCGTTAAT
CTGTAGTTGGAGCCCCTCAGGCGTGTCCGACATCCCAACAAAGTCGTCAG
CAAATAGCAGTCCCGATACCGAGGTTTTCCCTACTTCTACTCCCTTCCCT
ACCGCCTCTACCTCTTTCAGTAAGTCGTTGATGAATACCTGGAACAACGT
TGGGGACGTTGTGCACCCCTGTGGGACCCCCTGCTCAATGTCGAAGAACC
TCGAGAGTTCTCCATCTAACATCACGGCGCTCTTCGTGCTCTCTGTCATC
TTCTTAATCATTCTCCCTAACACCGGGTTCGGGGACGGGCCAATGACCGA
GGGCGGGTGCCAGACCCCAAACTTCAGCGAGGCGGGTGTGACGAAGAGCA
AATCCAAGTGGCAGCTCGATGAGCACGACAACCTCATAATCCCCGGCCAT
AACACCAACAAGACCGAGGGTCACCCAACGTGTACAATCGGCGGTTGTGT
CCCAGTCGAGCAGGTGAACGGAAAATAAATGGCGACTGTGCCCATGGGGG
CTTCAGTACCTCGCGGCAGGAGGATCGTACCAAAGGTCACGCAGAACTTA
CGACACAATGGCGCTGGCGTAAGGAGCATCGCCAAGAGTAGGGAGAACTG
ATAGGGTTTTCGTTTCCACCATGAAGATAGCGCTCCTCACAGATAGATGA
AGTTAAAAGGGGAGAAATATCGAGAATATCAGTACAGGGTCACGATTGGA
TCGGTGGCAAGCTTACTTAGCACCCACTTACGCCCCGGTCGAATTGCCGA
CACACTTGAATCCGGATATCTACCCTCTATTAATAGTAGAACGGAACGAG
AATTTTCTGGGCTGCGCATGATATGGTATATGCATTCTTCGTGGGATACG
AATATCTATTATCGTGTGCAACGATTCCGCGAGTCTTCTCTCACAACTAC
AGACGGCGCAGCGTAGACCTCCACTGCTGCATTTCAGCACGTGAAATAGA
CACCATTTTTGGCCTGTCATTCGACTGGTACCTATTGGGTTGTGTGGGAA
AAATCCAAGTGTCATCTGGCGAAGGCTTTCATTCAGGCAGTGGCTCCTCC
TATTCATGTAGCCACAATCAATCATCTTCGAGTGACATCTTGATTGCCGA
TACCAATGTATGAAGAAACACTTGGAACGAGAAAGAGAGAGAGAGCGAGG
TGGTGTTCTTTACGTTTCCCGTCATCATTTACTATGAATGTAGAGTAGGT
GGATCCAGTGTTTGTGTCCTCCATGGGGAATGGTTTGAAGCTTGATTTAC
GATCACCACCCGATTGAATGTGATTTATCTTGGATTATTGGTGATTTTAC
GGTTTTGGATTTCGACAATTTCGATTGACACGCGGTCGGTAGCCGTCGAC
CAAATGCTGCTTGGCCTGTGCGACTCGTAGGTTTGTCGTGTATGCGGAGG
GGAACAATCAAACATTAGGGAATCGACATGGGCTTACATTGGATCAATGG
CAATCATGATATCACCCTTCCCTCTCCGTGTAGCAAATTACCTGGTCCGC
ACAACAGCACAACCGTAGAACGGGAGATTGGTGGGCGTGTGAATCCTTTT
TAAATTTTGTCGTTTTTGGAGATTTGCCGATGTTTACGCGTAGTACCTCG
GACGTGGTGTGCGTGGTGTGACGTTGAGCAGGCAAGACGTTGTATAGGTA
TACTCATTGAAACGCTGCGAAAACGCTTCGAGATGGCTGGCGCGAGGGAG
CAATGAGCAGACTCACCTGCACAACCAACTACATTTCTGCTTCGTGTTTA
TGTCATTCCTTTGTTCGAGTGTGTATTCTCGCTAGTGGCTGCTCGCATAA
TAATTTTGTTTGGGCTCCAAACGTGGCAACGCGATCAGAGACAACGCTGT
GACACGATGCGGAGATCCTCACACTCAGAAGCGCAAGGAAGCTTTTTTTC
CGTTGTCAGCATTACAAGCTTGTTGTCAAACCGCCGGCAAGTGGCACGAT
ATCCGGTGATCGCCAAGTGACACACCATCGGGTTGTGGTCCACATATTTT
GAAAACAGCAACAGTAGGCCTCTAACTTTATGCCTGTTTTCGCGCCAAAC
CCGTTTCGCGCGCCAAATTATGGTCACTTTCCTACCTTGAAACTCCATTT
CTCACACGCGCGTTCATTGCGGAGCAAACTTCGTCGTGTCGATTGTCCAA
CGCGTCCCCATTCCCTTCTTGCTGTTCCCTGGCTCACATTTGATCGGAGA
CCAGGGTCCGAAGCTTGAGCTCATTCTACCCGTGGGCGAAGGCGCAGACA
GCTTCGGCGACGATTCGGATGCGTGGAGGAGGGGCAGAGACAGACAGGAA
AGGGTACATTCCAGTTCACACGGGGCAGTGACAGCGACACAGAGCGAGGG
GACATGGTGAAGTTTGATGTTCTTTGGTATTCCACACAATCATTCACCGC
CGAGACGCTTTCGCGCCATCGTGTTGCCGTGCCGCAGAGACGGCGGTTTC
AACGTGGTTGCTATTTAGACCAGTTACGATGGCCGAGAGCCCGCCCCTTA
CAACTGGAGTTACTACGGAGAGATTGTTTTTTGCCGTGGTGTGCGGAGGG
AAGGAGAGGTGTGTGCCAAATCATTTTTTTTCCCTGAGTCTATGCGAGAG
ATAATTGGGACGGGATGGACGGCGAAGCGAGGTTGAACATGATGCCCCAC
ACAAGGACCGCTGCTGTGTAGTCTGCCTTGCATCTGGAGAATAGCACGGC
GTTAAATACTCCTTTCGTGGATGCGGCCTCTGGAAGGGAG
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig21:1324751..1337390+
>mRNA_P-fluviatile_contig21.4595.1 ID=mRNA_P-fluviatile_contig21.4595.1|Name=mRNA_P-fluviatile_contig21.4595.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=1836bp|location=Sequence derived from alignment at P-fluviatile_contig21:1324751..1337390+ (Porterinema fluviatile SAG_2381)
ATGGACATTCTCGGGATGGACATTCTCGGGGCCGGCGATCAAGGGGGTGG
CGATGTGCCGACGCCCGTGAGATTTCGAGGGAAAGGGAAAGCCCGGGCGG
GAAACGAACAACCGGGCAAGTTGGCCCGCACGGCACCCCCCTGTCCAGGC
TTCGATGCCGGCGATCAAGGGGGTGGCGATGTGCCGACGCCCGTGAGATT
TCGAGGGAAAGGGAAAGCCCGGGCGGGAAACGAACAACCGGGCAAGTTGG
CCCGCACGGCACCCCCCTGTCCAGGCTTCGATTCTAGTGACATCGAGGCC
GCGACGAAGAACAGCCTCTTGTCGTTCGGTGGCAACGGAGGAGGCGGCGG
CGGCGGCTCGAGCAGCGGAGGCACTGTCGACTTCACGAACAAAGGCGAGG
GCGGCGGTGCCGACGGCACGAGGCGGCCGGTGATCGCGAGCGGGGCGGGG
AGGACAGAGTCTAGTGACATCGAGGCCGCGACGAAGAACAGCCTCTTGTC
GTTCGGTGGCAACGGAGGAGGCGGCGGCGGCGGCTCGAGCAGCGGAGGCA
CTGTCGACTTCACGAACAAAGGCGAGGGCGGCGGTGCCGACGGCACGAGG
CGGCCGGTGATCGCGAGCGGGGCGGGGAGGACAGAGGCGGGTTCCGAATC
CACCCTGGAAACATGGCAGCTTGAGTTAATCGACAGAGAGAAGGTGGCCA
TGGATGATCCGTCGTTTTCGTGTAGACAACGCGTTAAATTTGAGGAAATT
TGCGAAGGCGCCGCCGAATCCATGGGCATGGCCGGGGCAACACCTGAAGA
TGTTCTTAAGGTTGCCTGCAGCAAGTGCACCTTAGGGCGAACTCTTGCAC
TAGGTGCGATGCGCGAGAGGGAGCTCAGCCTCTCGCAGCAGCAAACACGC
GGTGTGGAACGGCTGAACCTTGGTAGTCCCTTCAAGGGAAAGACAAACTA
CGCCACCGTATATGTGTTTTCGGACCGGGCGGCAGCGAACCGAATGGTGG
ACATGTGGGCGAACGTCATCGGCGTAGGGGCCCAGCTGTGTGGTGCTTGC
CGGGAAAAGATCAACGAACACGACTTCGGAGATCGTCGTTTCCTCAGGTT
GGTGATTTCTGGCGAGGGTGGGTGGCAATCAGCTGCAAGGTACGGCAAGG
GTCTGATCAATCTACCGACGGAGGAGAGAGCAAAAAAGCCTCGCCAGAAT
AACGGAAGAGTCGTAAACGACGGACCCGCCTGGTAGGCGGGTTCCGAATC
CACCCTGGAAACATGGCAGCTTGAGTTAATCGACAGAGAGAAGGTGGCCA
TGGATGATCCGTCGTTTTCGTGTAGACAACGCGTTAAATTTGAGGAAATT
TGCGAAGGCGCCGCCGAATCCATGGGCATGGCCGGGGCAACACCTGAAGA
TGTTCTTAAGGTTGCCTGCAGCAAGTGCACCTTAGGGCGAACTCTTGCAC
TAGGTGCGATGCGCGAGAGGGAGCTCAGCCTCTCGCAGCAGCAAACACGC
GGTGTGGAACGGCTGAACCTTGGTAGTCCCTTCAAGGGAAAGACAAACTA
CGCCACCGTATATGTGTTTTCGGACCGGGCGGCAGCGAACCGAATGGTGG
ACATGTGGGCGAACGTCATCGGCGTAGGGGCCCAGCTGTGTGGTGCTTGC
CGGGAAAAGATCAACGAACACGACTTCGGAGATCGTCGTTTCCTCAGGTT
GGTGATTTCTGGCGAGGGTGGGTGGCAATCAGCTGCAAGGTACGGCAAGG
GTCTGATCAATCTACCGACGGAGGAGAGAGCAAAAAAGCCTCGCCAGAAT
AACGGAAGAGTCGTAAACGACGGACCCGCCTGGTAG
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