Homology
BLAST of mRNA_P-fluviatile_contig13.1847.1 vs. uniprot
Match:
A0A6H5KVF7_9PHAE (Zn(2)-C6 fungal-type domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KVF7_9PHAE)
HSP 1 Score: 366 bits (940), Expect = 1.230e-109
Identity = 246/480 (51.25%), Postives = 298/480 (62.08%), Query Frame = 1
Query: 52 TKQACSSCSRKKKQCSGDRPACQRCTRDGGQCTYPAKSQPAEAQGCEPPPQPDVIDEKETEPAEKPQQVAATAESSP-ALLDADLKPRAVAAATAAPL-MNKVSPGTGLQGLQESKFLSVFLEHCAPMYPVADDASIRDGLMHAFVGLADGGRGSRKQQPPLSEADAMKGQALSSSLFSCIAIGGLMSGCPREAVAPHLASARESLGAFCGLSDLCAVRAHVLHAIASEYASSGRSDGGGSNRRSVRGSGEENLTGMEAARKIFAALPVKE--PVLSAVLSHFMVLEGLPLLQHVETGEPPT---------------AAGPASATAXXXXXXNRGXXXXXXXXXXXXXTAARGRKLGHSYVKCTTPAKEAIFHKALALRMDVRLVPAPQPPPVYVVMDAVLLTIRFSKDRGDGVTRLWHLHGFATSELRRFRQERRGAVAILAILGILMWVTIRLCRVEGMLPAAELALSLLQTCPGLVR 1434
T+QAC SC++KK+QC+G P CQRC R G +C Y K+ + ++ E ++V++ S+P A A+ATA P +VS GTGL GL ES++LS+FL C PMYP ADDASIRDGLMH FVGLA+ R Q L A+AM+GQALS SLFSC+A+GGL+SGCP AVAPH+ +AR + F GLSD AV A +L+A+ASEY GG +G G E GMEAAR IF LP K+ PVLSAVL+HFMVLEGLPLL+ VET P T P + G XXXXXXXX R R G SYV C T +EA F +ALA+R DV +V + PPPVYVV DA LLTIRFS+DRGD TRLWHLH FATSELRRFRQE +GAVA+LA++G LM V IRL R++G+L AELA SL++ CPGLVR
Sbjct: 16 TRQACDSCAKKKRQCTGGTP-CQRCKRTGIECIYSVKA---------------ISRKRPGHGGEGGKKVSSRTNSAPPASPSPAXXXXXFASATALPAPATQVSCGTGLGGLDESRYLSIFLVECCPMYPCADDASIRDGLMHEFVGLAN-----RDSQEALQGAEAMRGQALSCSLFSCVALGGLISGCPPAAVAPHMTTARACVAKFGGLSDRYAVSALILYAMASEYV-------GG------QGPGTEYAKGMEAARAIFEGLPAKDKDPVLSAVLAHFMVLEGLPLLRLVETNAPTTNPANRCNSGGGVGGMGGAPVGWSTGGSNRAPSGSGGVHXXXXXXXXXVGRERNSGTSYVCCNTAHEEATFQRALAIRADVSMVSSQNPPPVYVVADAQLLTIRFSRDRGDVATRLWHLHDFATSELRRFRQEGKGAVALLALIGPLMGVQIRLGRLDGILATAELASSLIRKCPGLVR 461
BLAST of mRNA_P-fluviatile_contig13.1847.1 vs. uniprot
Match:
D8LS50_ECTSI (Pc21g14270 (Partial) (Fragment) n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LS50_ECTSI)
HSP 1 Score: 233 bits (595), Expect = 8.520e-65
Identity = 152/304 (50.00%), Postives = 192/304 (63.16%), Query Frame = 1
Query: 52 TKQACSSCSRKKKQCSGDRPACQRCTRDGGQCTYPAKSQPAEAQGCEPPPQPDVIDEKETEPAEKPQQVAATAESSPALLDADLKPRAV-AAATAAP-LMNKVSPGTGLQGLQESKFLSVFLEHCAPMYPVADDASIRDGLMHAFVGLADGGRGSRKQQPPLSEADAMKGQALSSSLFSCIAIGGLMSGCPREAVAPHLASARESLGAFCGLSDLCAVRAHVLHAIASEYASSGRSDGGGSNRRSVRGSGEENLTGMEAARKIFAALPVKE--PVLSAVLSHFMVLEGLPLLQHVETGEPPTAA 951
T+QAC SC++KK+QC+GD P CQRC R G +C Y K+ ++ ++ + E ++V++ +S+P + A+ATA P +VS GTGL GL ES++LS+FL C PMYP ADDASIRDGLMH FVGLA+ R Q L A+AM+GQALS SLFSC+A+GGL+SGCP AVAPH+ +AR + F GLSD AV A +L+A+ASEY GG +G G E GMEAAR IF LP K+ PVLSAVL+HFMVLEGLPLL+ VET P T A
Sbjct: 16 TRQACDSCAKKKRQCTGDTP-CQRCKRTGVECVYSVKA---------------IVRKRSRDGGEGGKKVSSRTKSAPPASPSPASSTTTFASATALPGPATQVSCGTGLGGLDESRYLSIFLVECCPMYPCADDASIRDGLMHEFVGLAN-----RDSQEALQGAEAMRGQALSCSLFSCVALGGLISGCPPAAVAPHMTTARACVAKFGGLSDRYAVSALILYAMASEYV-------GG------QGPGTEYAKGMEAARAIFEGLPAKDKDPVLSAVLAHFMVLEGLPLLRLVETNAPTTNA 285
BLAST of mRNA_P-fluviatile_contig13.1847.1 vs. uniprot
Match:
A0A6H5KXY9_9PHAE (Zn(2)-C6 fungal-type domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KXY9_9PHAE)
HSP 1 Score: 224 bits (571), Expect = 9.550e-56
Identity = 205/590 (34.75%), Postives = 273/590 (46.27%), Query Frame = 1
Query: 61 ACSSCSRKKKQCSGDRPACQRCTRDGGQCTYPAKSQPAEAQGCEPPPQPDVIDEKETEPAEKPQQVAATAESSPALLDADLKPRAVAAATAAPLMNKVSPGTGLQGLQESKFLSVFLEHCAPMYPVADDASIRDGLMHAFVGLADGGRGSRKQQPPLSEADAMKGQALSSSLFSCIAIGGLMSGCPREAVAPHLASARESLGAFCGLSDLCAVRAHVLHAIASEYASSGRSDGGGSNRRSVRGSGEENLTGMEAARKIFAALPVKEPVLSAVLSHFMVLEGLPLLQHV----------------------------------ETGEPPTA------AGPASATAXXXXXXNRGXXXXXXXXXXXXXTAARGRKLGHSYVKCTTPAKEAIFHKALALRMDVRLVPAPQPP--PVYVVMDAVLLTIRFSKDRGDG-VTRLWHLHGFATSELRRFRQERRGAVAILAILGILMWVTIRLCRVEGMLPAAELALSLLQTCPGLVRIYHCHIAHLSMGVFWLHGRRAAYDALRELLIKTIEQEPPTFDDMAPSTGLCGLPVCAQHLEKLLKMGVPEQGSGSIAAGASGGTSGSSG 1701
+C +C +KK +CSG+ P CQRC R GG C Y K + +G A K + A + A D A AA +P TGL GL ES+FLS F EH PM+PVAD+ SIRDGLMH+F G+ GG P L +A +G+ L + S +AIGGL+SG P EA+A H+ SA+ S GLSD A A VL + + RS G RR + + A IF ALP +EP+++A+L+ +E L L+ + E P A AG A A+ G XXXXXXXXX G + T +I +R D + P P P +VV DA+LLT+RF + G G V++L H+H F SEL R R GA+ ++++ G L+ + RL +GMLP AEL ++L CPG R Y H AHLS+ VF LHG R +YD L +L+ KT + P F+D C L C E L + +P G + G GGT SSG
Sbjct: 30 SCDACWKKKCKCSGELP-CQRCERTGGNCQYSTKRRLGRPRGA----------------AAKLEGGGAGKRKATASFDGGNDSALAKAPFAA------APVTGLGGLPESRFLSAFFEHFIPMFPVADEVSIRDGLMHSFAGMWHGGA------PTLHGQEASRGRTLECAFLSSVAIGGLLSGQPPEAMASHVESAQASAANCRGLSDKHASSALVLSGMMNLLLPGERSSAAG--RRCL-----------DEAEAIFEALPEREPLVAAILTFRRQVESLALIDAATLCPXXXXXXXXXXXXXXXXXXXXXXXXXXXXXRQVVESPRASSSFPEAGDAGASGGDVSSHGGGKGLAXXXXXXXXXXXXXG--------EAHTDEGRSILAGVDVVRRDSKCSPLTSQPAHPSFVVADALLLTVRFMRGGGTGGVSQLRHVHDFVASELNRLVPARAGALVLISLAGTLLAIKTRLQLTDGMLPMAELTTAMLTKCPGWGRSYGRHAAHLSLAVFRLHGHRHSYDNLSDLVRKTSDDPIPPFEDSGGGGQACRLGACRVLSESLSALPLPGTGDDTARGGTGGGTVSSSG 569
BLAST of mRNA_P-fluviatile_contig13.1847.1 vs. uniprot
Match:
D8LS52_ECTSI (Zn(2)-C6 fungal-type domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LS52_ECTSI)
HSP 1 Score: 164 bits (415), Expect = 2.420e-37
Identity = 135/421 (32.07%), Postives = 200/421 (47.51%), Query Frame = 1
Query: 355 SPGTGLQGLQESKFLSVFLEHCAPMYPVADDASIRDGLMHAFVGLADGGRGSRKQQPPLSEADAMKGQALSSSLFSCIAIGGLMSGCPREAVAPHLASARESLGAF-CGLSDLCAVRAHVLHAIASEYASSGRSDGGGSNRRSVRGSGEENLTGMEAARKIFAALPVKEPVLSAVLSHFMVLEGLPLLQ--HVETGEPPTAAG-------PASATAXXXXXXNRGXXXXXXXXXXXXXTAARGRKLGHSYVKCTTPAKEAIFHKALALRMDVRLVPAPQPPPVYVVMDAVLLTIRFSKDRGDGVTRLWHLHGFATSELRRFRQERRGAVAILAILGILMWVTIRLCRVEGMLPAAELALSLLQTCPGLVRIYHCHIAHLSMGVFWLHGRRAAYDALRELLIKTIEQEPPTFDDMAPSTGLC 1587
S TGL GLQES FL FL+HC+PM VAD+ S+R GL+HAFV S + P+ + + M+G A+ +LFS +AIGGLM GCP VA HLA+AR+ LG F GL + AV A +L+ +A+ DG +R R S M+ A+++F +L ++P ++A +++ + L + + P +G PA A+ G TA G K G ++ ++ AK A H P YVV D++ L +RF GD T ++H +SEL R +E+ GA+ + + G L+ R+ EGMLP AE+ L++ CPGL+R ++DALR L++ EQ TFD+ +C
Sbjct: 154 SSATGLGGLQESSFLECFLKHCSPMCAVADERSVRQGLVHAFVSRWTT-TASASEASPIDKLEVMRGSAVECTLFSAMAIGGLMLGCPTVTVARHLAAARQCLGRFRSGLCEQSAVAALILYGLANALLPPCDGDG----QREYRSS-------MDDAQEMFGSLEPQDPFVNAFMTYRGTCDNLVAFMPDSLYSVNPVNISGRRGGVTAPAHASTSGGADGGEGGGDQVWKTPGGAMTA--GAKQGADAMRVSS-AKPA--H------------------PAYVVADSMTLVLRFVCMEGDVRTGWANVHDLISSELNRLFKEQAGALVLTTLAGNLIAAKSRIGTSEGMLPVAEIVLAMFCKCPGLLR--------------------KSFDALRALVVAATEQAMVTFDEFGVGVAIC 519
BLAST of mRNA_P-fluviatile_contig13.1847.1 vs. uniprot
Match:
A0A6H5KL78_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KL78_9PHAE)
HSP 1 Score: 160 bits (406), Expect = 4.510e-36
Identity = 141/416 (33.89%), Postives = 207/416 (49.76%), Query Frame = 1
Query: 427 MYPVADDASIRDGLMHAFVGLADGGRGSRKQQPPLSEADAMKGQALSSSLFSCIAIGGLMSGCPREAVAPHLASARESLGAFCGLSDLC---AVRAHVLHAIASEYASSGRSDGGGSNRRSVRGSGEENLTGMEAARKIFAALPVKEPVLSAVLSHFMVLEGL-----PLLQHVE----TGEPPTAAGPASATAXXXXXXNRGXXXXXXXXXXXXXTAARGRKLGHSYVKCTTPAKEAIFHKALALRMDVRLVPAPQPPPVYVVMDAVLLTIRFSKDRGDGVTRLWHLHGFATSELRRFRQERRGAVAILAILGILMWVTIRLCRVEGMLPAAELALSLLQTCPGLVRIYHCHIAHLSMGVFWLHGRRAAYDALRELLIKTIEQEPPTFDDMAPSTGLCGLPVCAQHLEKLLKMGV 1638
M VAD+ S+R GL+HAFV S + P++E + M+G A+ +LFS +AIGGLM GCP V+ HLA+AR+ LG F S LC AV A +L+ +A+ DG +R R S M+ A +IF +L +++P ++A + + + L L V +G PA A+ XXXXXX XXX TA G K G ++ ++ AK A H P YVV D++ L +RF GD T ++H ++EL R +E+ GA+ + + G L+ R+ EGMLP AE+ L++ CPGL+R Y H AHL++ F L+ RR ++DALR L++ EQ TFD+ +C VC + + G+
Sbjct: 2 MCAVADERSVRQGLVHAFVSRWTT-TASASEASPINELEVMRGSAIECTLFSAMAIGGLMLGCPTVTVSRHLAAARQCLGRF--RSRLCEQSAVAALILYGLANALLPPCDGDG----QREYRSS-------MDHAEEIFGSLELQDPFVNAFMMYRGTCDNLVAFMPDTLYSVNPVNISGRRGGVTAPAQASXXXXXXXXXXXXXQAWKTPGGATTA--GAKQGADAIRVSS-AKPA--H------------------PAYVVADSMTLVLRFVCMEGDVRTGWANVHDLISTELSRLFKEQAGALVLTTLAGNLIAAKSRIGTSEGMLPVAEMVLAMFCKCPGLLRHYSLHNAHLALTAFRLYNRRKSFDALRALVVAATEQAMATFDEFGVGVAICSTDVCWMCSDTIFTTGI 380
BLAST of mRNA_P-fluviatile_contig13.1847.1 vs. uniprot
Match:
D8LS51_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LS51_ECTSI)
HSP 1 Score: 82.8 bits (203), Expect = 1.410e-12
Identity = 41/66 (62.12%), Postives = 48/66 (72.73%), Query Frame = 1
Query: 1465 MGVFWLHGRRAAYDALRELLIKTIEQEPPTFDDMAPSTG-LCGLPVCAQHLEKLLKMGVPEQGSGS 1659
M VF L+GRR AYDALR+LL KTI+Q+ P F+DM+PST C LP+CA HL KLLKM P GS
Sbjct: 1 MAVFRLYGRRDAYDALRDLLAKTIQQDTPAFEDMSPSTSRFCDLPMCASHLRKLLKMRAPRSADGS 66
BLAST of mRNA_P-fluviatile_contig13.1847.1 vs. uniprot
Match:
A0A6H5KGK8_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KGK8_9PHAE)
HSP 1 Score: 79.7 bits (195), Expect = 1.370e-11
Identity = 38/60 (63.33%), Postives = 46/60 (76.67%), Query Frame = 1
Query: 1465 MGVFWLHGRRAAYDALRELLIKTIEQEPPTFDDMAPSTG-LCGLPVCAQHLEKLLKMGVP 1641
M VF L+GRR AYDALR+LL KTI+Q+ P F+D++PST C LP+CA HL KLLKM P
Sbjct: 1 MAVFRLYGRRDAYDALRDLLAKTIQQDTPAFEDISPSTSRFCNLPMCASHLRKLLKMRAP 60
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig13.1847.1
>prot_P-fluviatile_contig13.1847.1 ID=prot_P-fluviatile_contig13.1847.1|Name=mRNA_P-fluviatile_contig13.1847.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=862bp
MDHLLPSHKTSMWRAPTKQACSSCSRKKKQCSGDRPACQRCTRDGGQCTY
PAKSQPAEAQGCEPPPQPDVIDEKETEPAEKPQQVAATAESSPALLDADL
KPRAVAAATAAPLMNKVSPGTGLQGLQESKFLSVFLEHCAPMYPVADDAS
IRDGLMHAFVGLADGGRGSRKQQPPLSEADAMKGQALSSSLFSCIAIGGL
MSGCPREAVAPHLASARESLGAFCGLSDLCAVRAHVLHAIASEYASSGRS
DGGGSNRRSVRGSGEENLTGMEAARKIFAALPVKEPVLSAVLSHFMVLEG
LPLLQHVETGEPPTAAGPASATAGGGGGCNRGGRSAASAAAATAATAARG
RKLGHSYVKCTTPAKEAIFHKALALRMDVRLVPAPQPPPVYVVMDAVLLT
IRFSKDRGDGVTRLWHLHGFATSELRRFRQERRGAVAILAILGILMWVTI
RLCRVEGMLPAAELALSLLQTCPGLVRIYHCHIAHLSMGVFWLHGRRAAY
DALRELLIKTIEQEPPTFDDMAPSTGLCGLPVCAQHLEKLLKMGVPEQGS
GSIAAGASGGTSGSSGDGRARSLANDAAGATQEDAAPTPRPRQQAQRPKK
ARRSVLPPAPPSSTVSSPSREEPPPSGDPHPGYAAGARASSFQSDSPSSC
SYSIQQDPRSQRRAWNFIDARGPLIPPWRTQGRTQFDGIGQLPPLQPLLM
PPPPAPPLPALSSASQGATRGAATFVSGPSSDSPATSVAVTREEEQAAPR
GSRGTVPGGGGFADLRRDLSSQASARGSFQDATAGNHEGGGDDVEGGARG
VGDLTLPMSGTGQHGGERGGGTDASAHRGGDSGTATATDTHFRRGSHSGS
VFGGDGITSSP*
back to topmRNA from alignment at P-fluviatile_contig13:2158236..2168664+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig13.1847.1 ID=mRNA_P-fluviatile_contig13.1847.1|Name=mRNA_P-fluviatile_contig13.1847.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=10429bp|location=Sequence derived from alignment at P-fluviatile_contig13:2158236..2168664+ (Porterinema fluviatile SAG_2381)
CGGATGGATCACTTGCTGCCTTCCCACAAAACAAGCATGTGGAGAGCCCC
GACGAAGCAGGCATGCAGCTCGTGCTCTCGAAAAAAGAAGCAATGCTCTG
GTGGGTGAAAGATAGACTGAGAGAAAGGGTGCGCGTGATGCAGCCGTAGG
CTTTCATGGGAGTTGTTTTTCTTCATGCAATCTTTGATTAATTAATCATC
AAGTTCTCGCCGTGGTGCATGCTATGTGAGAAACCAACGCTGCAGAAATG
TTGAAAATGCCAAGTCTCAAGGATGTACGGGTGTTTGGATCCTGTGAGTG
TTTCGTGTGCTATGACCATGAACCACTGTTGATCTTGTTCTTGATTCACG
GCCGACACCATGTGTCTCGCCCCTCTTACCCCGGTCCATTCTTCCTCTCC
TTTGTGCAGGCCCGCACTACATGCTTAACCCCGGTGGCTCCCTCCTCTGT
CGCTCTCCGTCTCTGTCTCTATTTTGGGCGGATAACAGGTGACCGCCCTG
CATGCCAGCGTTGCACTCGTGATGGAGGGCAATGCACGTACCCGGCTAAA
TCGCAACCGGCGGAAGCACAAGGGTGCGAACCTCCGCCACAGCCAGATGT
GATCGACGAGAAGGAGACGGAACCAGCCGAAAAACCACAACAAGTTGCTG
CCACCGCTGAATCGTCGCCGGCTCTGCTCGATGCTGACTTAAAGCCTCGG
GCTGTTGCAGCAGCAACAGCAGCGCCGCTGATGAACAAGGTCTCGCCCGG
GACGGGGCTTCAGGGGCTGCAGGAGTCTAAGTTTCTCTCCGTGTTCCTAG
AGCACTGTGCTCCGATGTAAGTGCAATGGTTGCATTGGGCAGGCAGCTCG
TAGGTGTTTAAAAACAGCAACAGTCACCAAGCAGCAGATGCTCGTTCGCC
TTAACCCACTGTGCTGCTTCGTCCCTACGACACTCCGACACCCTCTTCCC
GATCAGCACTCGTTGTGCCCAAGCGGCCCCAGCCTCGGCACACGGCAAGC
CATCATGTAGACAGATGATTCCCGAAATCTGGAGAGTGTGCGTGCAACAC
ACCCGTTCGGGGGGAAATCACGAAGTGTATTTCCTGGCTGTGCGTTGTGA
GTTGAAGAATGAACACTGCCGACGTAGACTCTGGGAGAAGGGCGCCTGAG
ACCGATCCGCTCGATGCTGAGGTGCGATGTTTTGGCGCTTTGGTGGATAT
CGTGTCGTTGTGTGGCATTCTCGAGAGCCGCCGCCCTCCTGTTGTTCCTC
GAAGCACCCCCTCGAGGAAGGACCCCGCACGCGCCCCGGCTCGTTCGTGT
GGACTCTTGAGTTTGCGGCCGATTCGTCGTTGCCGTTTTGACATTCGTTA
AAAGTTTTGATAATTTGTCAAGAGCTCGCTCTCTCTCCCTCTCTTTGAAT
CAGTCTCCGCCCTCCTCCCCCCATCTATTTCTCTCCCTCTTTTGTCGCAC
ACGCTCGGCTTGATTTTGTGATAATGGATTAATGTTTGAGTCTTCCCCAC
ACTTACCTCTGTTAGGAGCAATAACCACTGAGCTATAAGTCAGCGCTGAC
TGATAGCTCAGTGGTTATTGTGCTTCTAACAAAAGCTGTTGTCCGTGTCC
GTCTTGGCTGTAAGGCCACGAACCCGGTACAAGTCACCCCAGGGTTGCAA
TCCCTGTGATCAGCGCTGTGCTTGCCACATAGGTACAAGCAGGTTATCGG
CTTCTTTGCGTAGCCGAGGAAACCTCACTCAAGATATTTCTTCCCATAGA
TCGGGCGCAAAATTTGCTTCATAAGACTCACCGGGTGAGAATCGAACCCC
GGACAATAACTTTTGTAAGGAAGCACGATAACCACTGGACTACCAGTCAG
CGCTGACTGATATCTCAGTGGTTATTGTGCTTCTAAAAAAAGCTATCAGG
GCTCCGACCGAGAGGATGTTCTCTCCTAGGTTGTCTACCAGTAGTACTTG
TAGCTCCACCGGGACGAGTTGGTTCCGGTCGTTGGAGATGCCGAAACGCA
GGATACCTTTCTGAGTCGCGCTCGACATCCCACACGAACCTTTGATCCTC
ACATTGCAGTCCGACTTCTCGGTCACGTGGCGAAATGCGCAGGAATCCGC
GCTAACCATGTGGCTAGACGCTGCTGTATCTACGAACATAAATGGTGCTC
CCGGCGGACTCGTCCTTAACCTGGTACACACTACTGGTGTAGGCAAATAT
ATCTGTCGCATCAGCAGGCGGATTCTCCACCCGAACGTCACTAGCAGCAT
CAGCAGCGCGCTCTTCGGGCAGCACCACAGCAGATGTATCCAGCACTTGC
TCATGTCGGCAGCGCGCTCCTCTGGCAGCGCCGGGGCAGGCACCTCCTGC
ACCCGCGAATCATCTGCGGCGCGCTCCTCTGGCAGCCCTGCAGCAGGCGC
ATCCAGCACCTGCGCATCATCCGCGGCGCGCTCCTCTGGCAGCACCGCAG
CAGGCGCATCCAGCACCTGCGCATCATCCGCGGCGCGCTCCCGTGGCAGC
GCCGCAGCAGGCCCCTCCGGCACCTGCTCGTCATCAGCGGCGCGCTCCTC
TGGCAGCGCCCCAGCAGGCGCCTCCGGCACCTGTTCCTCAGCAGCAGCGC
GCTCCTCCGGCAGCGCCGCGGCAGGCACCTCCCGTGCCCGCGGTTCTCCG
AACGAGATGGAAAAGTCCTTCAGCTCAACGCTGGATTCCTCGACACGGGT
GAACCATGCCTGCGTGGACGGTTCCGGCGCGGCGGCATTCGCCTGTTGGG
CGTTGTCCTTTCGCACGCTCTCCAGGCGAAgGGGGCAACCGTCCCATCCG
TGCTCTGTGAAGTTGTGGCAGTACTTGCAGCGTCCCTGACGGTCTCGGCC
CTTTTGCTGACCTTTGTTTCCGCCTTTACTGGAGTTGTTGCTGCGGCCTC
GCCCGCGCACATCTTGCGCGCCTCCAGGGCTATCGCCTCTGGAATTTCCG
GCGGAGGAGCCGCTGCTGCCGTTGTCTCCGGTCGGTTGGCTGCCATTGCC
TTGGCGGTTGCGTCCGCCTTGCTTGCGGAAACTACGTGCATCCCCGTGCA
CGACCGTGTTGTGGGCACGGCCTTGGGCAGAAACCTTCCCCCTGATCTCC
CGCGCACATCTTGCGCGCCTCCAGGGCAATCGCCTCTGGAATTTCCGGCG
GAGGAGCCGCTGCTGCCGTTGTCTCCGGTCGGTTGGCTGCCATTGCCTTG
GCGGTTGCGTCCGCCGCGTCCGCCACGTCCGCCTTGCTTGCGGAAACTAC
GTGCACCCCCGTGCACGACCGTGTTGTGGGCACGGCCGTGGGCAGAAACC
TTCCCCCTGATCTGCAGTGTATGGAACGCAGTGGCTCGGTGCCCGACATT
TTCGAAGTCAAGATCCAACTCCGAGCCATCGGCCTGTCCGCACACCAGCG
CGGCCTTAAGTTGGGCGTAGTGCTGGGTCAGGAAGCGCGTTCAACAAGAT
ATGCGTCTGGCGGGCTGGTACGACCTTGTCCCCAAGTGACTCGAGTTCGG
AACTGATGCGACGCTCTTGAATTGCACGCGCAGGGTCGTAATCGTCCTCG
GCAGTGACCGCAAATGATCCTGACTCTCGCTGCAGTTCATGCATCCGAAA
GGTGCCCTTCTGGCGGTACTTCGCTTCTAGGGCAACGTATGCCGCACGCC
CGTCCCCGTGCTCACCAACGCGAGCGGGGCCGAAGGCTCGAACGACTTGG
GAAGCAGTGCTCGAGAATCCATCGGCGCAGTCGGACGTGGCAAAGTTTAA
CCGAGTGTACAGTTTCCCGTTCTTACGTTTGAATTCCAGCGTCGTCATGT
CGAACGCAGCACGATCCAAATCCGTGCTACTGGCCGCCGATGCCGGGGCG
GTCTCCGTCCCAGCCATtaTATCGCCTAATCCTTGCTCATCCATGATGGA
GTAGAACAGGCCACTCCAGCCGTGGAAATCTTCCGGCTTCCCGCTAAACG
GGACGTATCCTTGTTTCAGATAATTTGTGGTGGACGCCATGCTGCTGCTG
GGGTGACTCGATGCGAGGTACCTACCAAACCAGAGGCTATAATCTGCCGC
CCCCCCGCGCGCGCACACGACCCGAACCAGCATGTGTGGTGCGGGTGTTG
TGTTGTATCCCCGGTCGGGTTCAGACCCGTCTTTTGAGACTCATCAGGTC
GTGAAGGGCGTCGTTCCTGCTTATCCTCTCGCCAGCTGTCCAAGTATTAG
CGTATGAGGGAGAGTGTGGGCGCAACAGCTGTCCGCTTTGTCACCTTGAC
TATCTCTCTTGATTGAAACTCCCAATCCTCAAATCCTCTACCGCCGACAA
AACGTCTCCCTGCACACAAACCAGGTACCCCGTCGCGGACGACGCGTCCA
TCCGGGACGGCCTCATGCACGCTTTCGTGGGGCTTGCCGACGGCGGGAGG
GGCTCGCGGAAGCAGCAGCCGCCGCTGAGCGAGGCGGACGCGATGAAAGG
GCAGGCGCTGTCAAGCTCCCTCTTCTCCTGCATCGCCATCGGCGGCTTGA
TGTCCGGCTGTCCCCGAGAGGCTGTCGCGCCCCACCTGGCCAGCGCGCGG
GAGAGCCTCGGCGCCTTCTGCGGACTCTCGGACCTGTGCGCGGTCCGGGC
CCACGTCCTGCACGCTATTGCCAGCGAGTACGCAAGCAGCGGCCGGAGTG
ATGGAGGGGGCAGCAACCGCCGGTCGGTGAGGGGTTCCGGGGAAGAAAAC
CTCACTGGGATGGAGGCGGCGAGGAAGATCTTCGCGGCGCTACCGGTGAA
GGAGCCCGTGCTCTCCGCCGTGCTGTCGCACTTCATGGTCCTGGAGGGAC
TACCCCTCTTGCAGCACGTGGAGACAGGTGAGCCCCCGACTGCCGCCGGC
CCGGCATCCGCCACCGCCGGTGGTGGCGGCGGCTGCAATCGCGGCGGCAG
AAGTGCCGCTTCTGCTGCGGCCGCTACCGCTGCTACTGCTGCCCGCGGGC
GGAAGCTGGGGCACTCCTATGTGAAGTGCACGACTCCGGCGAAGGAAGCG
ATATTTCACAAGGCCTTGGCGTTGAGGATGGACGTCAGACTCGTTCCGGC
CCCGCAGCCTCCCCCGGTGTACGTGGTGATGGACGGTGAGAGAGAGAGAG
AGAATGTTGAGAGTGCACCAAACGTCGATTCTCCCTTACTTATTATAGAA
GCAGTAGATCCCAGGTGTCCTCTGCTCACCAGCTCTATTTTCGAGATTCA
CACTTGAGGGTTTTTTTCCATGGGTCTTCAGCGCGTTGTTCGTGTTGAGC
GATTCCACTCGCTCGTTGGTCGCCTATCGCCTTTTTCCACCCTCCCTCTT
ACCGCTATCGATGCCGTCTCGGATAGGCATGACCAAACTATCTCCGCTCC
TTTGAATCGGTCACATACCGCCCGATTTATCCCGCCTCCCCCTAGCAGAG
GTGCCATCCATGTGCAAGATCGGCAAGCCTTTGGCCTAACACTCGTAGTA
GGATACTGCTCACGCTCCATAGGACTCGCCGAATGCACCACGGCGCTTCT
CGCTTTGCTAATGCAAGAGCCTGAGCCGGTAAAAACCCGTTCAGTCGTTC
CGTCCCGGCTTCGGAGGAATACGATTTCTATGGCCTAACGGCTACAGCAT
GCGTGACTTGAGTACTAACCCCCCCCCGCCGCCCTTCAGCAATATCCCTC
TTCGCGCGCTTCATACACAGGACCAAATCGTGCGCCTTTGGCCGACCCAT
ACTCCTCACCCGAGTAGCCAAAGTGTATTATGGTGTTCCTGTGATGATTT
GATGTACTTCGTCGGGGTCTTTTCAAGACGCATATCATTCAAGAACTCAA
AGGACCATTTTGAAGCGGCCTCGCGCGCGCCCGGCTCCGCCCCTCTCCGC
CCCGCTCCGCCCCGCCCCTGCCATTGCTGTCACCGCTACGAAAAACAACA
CAAAAAATGAGAAGCGGTCCTCCTCACCATCCGCTTCTCGAAAGACCGCG
GCGACGGTGTTACCCGGCTGTGGCACCTCCACGGCTTCGCCACCAGCGAG
CTGCGGAGGTTCAGGCAGGAGAGGAGGGGGGCCGTGGCGATCCTGGCGAT
CCTGGGGATCCTCATGTGGGTGACGATAAGGCTCTGCCGGGTAGAGGGCA
TGCTGCCCGCGGCGGAGCTGGCGTTGTCCCTGCTGCAGACGTGCCCAGGA
TTGGTGAGGTGAGGGAGATGGTTGGTGTAGGGAAAGGGACGGACGCGTTC
AAACAGGCAGGTGTCTTGTTTCGTGGCGCGGTTATGACAATTCGTCCCTC
CACACACATAGCCCGCGAGGGAGGGACATATTTTCTATCCACACCTTACC
ACCCAAGTTGTGTCATTTCTCGGCATTTTTCGGCGCACGTCTCTCCCTCA
TGCTCGTTTTTCCTCTTGCAATTTGATGCGCTCCATCGCGGATATTGAGC
TTGCAATATAGTTTGCCATGCAAGTGCTCTGTTTGGGAAGGCAAAGGACT
GAGAAATTTGTTGATTGTCGACCCGATGTACGGGATTCTTCACTGTTTTG
GCATGCTGCGCATGTCGCATCGTACTCGACTAATGTACAAGCCAGAACTT
CTGAAGCAACGGGTGGGTATGCATGTTCTGCAGAGTGCGGCATACATTTT
CACGTGATTGGGCAAAGGTGGAAAGCAACCGCGGTAGGTAGGCATCGTGA
ATGTCTGTGGGTGTCGCGTACCGGTGTGGTTTCTCGATCGTTTCGTCGTT
CCCGCCCCCAAATTGAGGGAACGCATCCTGGACGCAACTATTTCTCGCCA
CGCCCGTCGTGCGCGCGAAGTTTTGTCGTTACTGGGCACGTGAAAGAGCC
GTATTGGTTGTCCGAATCCACGTGCCCCGCTGCGTGCAGTAGCACAAACA
TGAACAAGTAGGTTTTCAGGTTTTCCCTCTGAAGCGCAACTTGTTCAACA
CCACTTTCCTGTGGCAATTTTCGGCCAACTCAGCGTCCAACCACAGCCAA
AAAAGATGCCCCCCATCTCCCCTCCCTCGTCGCTTACTTTCTCTCTGCTG
CCGCTTGTAATTAGGATATACCACTGCCACATTGCGCACCTTTCCATGGG
AGTTTTTTGGCTACACGGGCGTAGAGCGGCGTACGACGCCCTCAGGGAGC
TGCTGATCAAGACGATCGAGCAGGAGCCTCCGACGTTCGACGACATGGCG
CCGAGCACGGGGTTGTGCGGCCTCCCCGTCTGCGCGCAGCACCTCGAGAA
GCTCCTCAAGATGGGAGTGCCGGAACAGGGTAGTGGCAGCATTGCCGCCG
GCGCCAGCGGCGGAACTAGCGGTAGCAGCGGCGACGGTAGGGCTCGCAGC
CTCGCCAACGACGCCGCCGGGGCGACTCAGGAGGATGCAGCTCCAACACC
GAGACCTCGACAGCAGGCTCAACGGCCGAAGAAGGCAAGACGTTCGGTCC
TTCCACCCGCTCCTCCTTCTTCCACTGTGTCATCTCCTTCCCGAGAAGAG
CCGCCGCCGTCGGGGGACCCGCACCCGGGATATGCCGCCGGCGCCAGAGC
CAGCTCTTTCCAATCCGACTCCCCATCCTCCTGTTCCTACAGCATCCAAC
AGGACCCACGATCACAAAGGAGAGCTTGGAACTTCATCGACGCGCGCGGT
CCCCTGATACCTCCATGGCGAACTCAAGGGCGGACCCAGTTCGATGGAAT
TGGGCAGCTGCCACCGCTGCAGCCGCTGCTGATGCCGCCACCGCCGGCGC
CACCGCTGCCGGCGCTATCCAGTGCCTCCCAAGGGGCGACGCGTGGGGCG
GCGACATTTGTCTCGGGGCCTTCTTCAGATAGTCCGGCGACCTCTGTAGC
GGTGACGAGAGAGGAGGAGCAGGCAGCGCCGAGGGGTTCTCGAGGCACCG
TGCCCGGCGGCGGTGGCTTTGCGGATTTGAGAAGGGATCTCTCATCACAG
GCGTCGGCCCGTGGGAGTTTTCAGGACGCCACGGCGGGGAACCATGAAGG
CGGCGGTGACGATGTGGAAGGCGGGGCTCGGGGGGTCGGAGACTTGACCC
TGCCGATGTCGGGGACGGGACAGCATGGCGGTGAGCGCGGCGGCGGCACC
GATGCCTCGGCGCACCGCGGCGGAGATTCGGGCACCGCCACCGCCACCGA
CACTCATTTCCGACGCGGCAGCCACAGCGGGAGCGTTTTCGGCGGGGACG
GCATTACCAGCTCCCCGTAAGCCGTCACCATCCGGTCCATCTTAGCCTCA
TCTCGATGAAAACGGTGACGTTTCCCGTCGTTTCTGAAGGGTTCTACGGG
ATAAGCTGGAAGGCGGGAACGCCCTTGCCTGTACCAAGCGACGTATCCGC
GTAAAATTATTTGGACAAGCGACGGGGCTCCAAAGGTGGAAACAGCATTT
CATGCCTGAAGGGGGGTGGGGGGCCGCGAGGGCTGGTGTGATGTTGGCGG
GTTTGCAAGTGCTCCATAATTAGCCGCACTACATCTTGTGAAGTTCTACA
ATGACTCGCCCGCTGGGGTAGGAGTGATGCTCTTTTTTCATTCAATTGTC
CCTTCTTTTCGCCTCTTTTCAGATATTTCGCGGCGTTGGCTTTGAGTACA
AATCATGACCTTCTCAATTGTACCGATGTTTTTTCATAACATCGTGTGGC
AGGGATCATTGAAGCCAAGGTAAAATAATGCGGAAGATTTGGAAGATGGA
GGCGTCTAATTGCAATATCGCGATTCCCCCCCCCTAGTGTGTTCGTGATG
TGATATTTTTGTCCTTAGCCGTTGAAGGTTTGTGAGAGCTTTCAACGCCG
ATTCCATGGTTATCACGTGTTGTAGCACTTGCAGACATTGTTTTTTCGGC
ACTACCGCCCTGCGCACGTGGAATTACCATCCTGTTCTGTTGCGCCTCGT
TGGAGCATAATATTTCTGCGTGTGCGTTGTTCGTTTGGTCCAATGTTAAT
GTTTCGGTAAGCTCTGTTTGCGACTTGTTTCCCTTGTCCGTCGGTTAATT
TTTGGAGCCTTCCATAATAAGTACATGTGTGTTTCCTCTGTCTTACCCCG
CGTTCAATTAATTTGTGTGGGAGCGTCCCACGAGTACATTATTAATGTAT
GTTCTCTTCGACAATCACAGCACCACATTGCCTTGCAACTGTCTGCGTGG
GTGTGATGCTAATACCCTCATCTACTTCTCGGGGTGTAAGGAGAGTAACG
GATTTAGTACATGATTTTTTTTTGTTTTTTGTCCCGTGTGTGCTCGACGG
TTATCTATCCTGGAAGACCAGATAGTGTGTATGGTATGCGTGGCCTTGCT
CAATGTGCGCACCCACTTTTTCGAGCACAATCGATCGTTTGTTTGCCTCT
TTGGAAGAATCGACGTACAACAACAACAGCTGCTCGCCGTTGTCGTTTTT
CGGTCTCGTGTTATTCTGAAGAGAGAGGGGGCTGCGTTGTGTGGGTAGGG
GCGGTGGGTAAAGGCACCGAGAGGAGAACATATGATCAACGCCGCGACCT
GCCTAGTTCTCACAAAAGGCATGCGTTTGCCTGTAGATATGCCGGAAGAC
GCGATAAACGTAGCGGCGAATGAGTGTGATAAAAAGTGGGAGGCTCGGAA
GAGATTTTTGTCCCGCAGGCGAATTTTCCTCTAGTTTGCCACGTAATTCA
AGCAAGGAGCAGGGCGTGAGGAACTCGAGGCGGAGCGGCATTGGGCATCT
CGGTCAAACCGGTAGTACCCTGCGTATGGCGACTCTTAATGAGGGAAGGG
GTTGGTTTGATTTCGGTTCTGGAAAGATAAGATTAAGTGCCTTCGCACTA
TACATGCTTCGTGTTTTTTTCGCGCTACTATGATGATGCGGCTTTTTGCA
TTTTTTTCTGCTGTCAGTCCCGGGTGGGTCCCCCGTTTATATTGTGTGCA
AAATTTATCAAAACATTTATATTTCCCCAGATTTTTCGAGAGGAACGGGA
TGAACAACGTTGGTTTTATCTCAGGTCGGTCCTTCGTGGTGAAAACGGTC
CACATCTTCGAATTTTGACCACAGTAGACTCATTTATTTTGGGGTCAAAA
TCGTGCGATTGGTTGCCGTTTTCAATCATTGGTTTCCGGTCCCCCCGCAT
GTTTTCTTGCATCGTCGGGCGTTGCGAGCTCGGAAGGAAGATGTCTCATT
TGATTTTTCTCCGTACTTCGTAGGATGCTGCTACGGCATCGACTGACTGA
AGCCCAGGATGGGAGAGGGTGCGTGAGGTATTGTGGCAAGCTGGTGTCGG
GAGCGCCTTGAAATGTATGTGATGATCCCTGCGTGAATGGGTGCCCGGTC
CTCCGATGATGAAGAAACATCATCTTGAGCACCTTCTGAAAGAGGCGCCG
CGCGGACGAGTCGCTCATTATATGATGAAAATTAGATTTTCAGTGCTTTC
CGCATCTATCTATCTGCATGGCGACCCTACATATATATGCGGCCGCATCT
GTCTCTGGAGTTATTCATCAGATTGGACA
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig13:2158236..2168664+
>mRNA_P-fluviatile_contig13.1847.1 ID=mRNA_P-fluviatile_contig13.1847.1|Name=mRNA_P-fluviatile_contig13.1847.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=5172bp|location=Sequence derived from alignment at P-fluviatile_contig13:2158236..2168664+ (Porterinema fluviatile SAG_2381)
ATGGATCACTTGCTGCCTTCCCACAAAACAAGCATGTGGAGAGCCCCGAC
GAAGCAGGCATGCAGCTCGTGCTCTCGAAAAAAGAAGCAATGCTCTGATG
GATCACTTGCTGCCTTCCCACAAAACAAGCATGTGGAGAGCCCCGACGAA
GCAGGCATGCAGCTCGTGCTCTCGAAAAAAGAAGCAATGCTCTGGTGACC
GCCCTGCATGCCAGCGTTGCACTCGTGATGGAGGGCAATGCACGTACCCG
GCTAAATCGCAACCGGCGGAAGCACAAGGGTGCGAACCTCCGCCACAGCC
AGATGTGATCGACGAGAAGGAGACGGAACCAGCCGAAAAACCACAACAAG
TTGCTGCCACCGCTGAATCGTCGCCGGCTCTGCTCGATGCTGACTTAAAG
CCTCGGGCTGTTGCAGCAGCAACAGCAGCGCCGCTGATGAACAAGGTCTC
GCCCGGGACGGGGCTTCAGGGGCTGCAGGAGTCTAAGTTTCTCTCCGTGT
TCCTAGAGCACTGTGCTCCGATGTGACCGCCCTGCATGCCAGCGTTGCAC
TCGTGATGGAGGGCAATGCACGTACCCGGCTAAATCGCAACCGGCGGAAG
CACAAGGGTGCGAACCTCCGCCACAGCCAGATGTGATCGACGAGAAGGAG
ACGGAACCAGCCGAAAAACCACAACAAGTTGCTGCCACCGCTGAATCGTC
GCCGGCTCTGCTCGATGCTGACTTAAAGCCTCGGGCTGTTGCAGCAGCAA
CAGCAGCGCCGCTGATGAACAAGGTCTCGCCCGGGACGGGGCTTCAGGGG
CTGCAGGAGTCTAAGTTTCTCTCCGTGTTCCTAGAGCACTGTGCTCCGAT
GTACCCCGTCGCGGACGACGCGTCCATCCGGGACGGCCTCATGCACGCTT
TCGTGGGGCTTGCCGACGGCGGGAGGGGCTCGCGGAAGCAGCAGCCGCCG
CTGAGCGAGGCGGACGCGATGAAAGGGCAGGCGCTGTCAAGCTCCCTCTT
CTCCTGCATCGCCATCGGCGGCTTGATGTCCGGCTGTCCCCGAGAGGCTG
TCGCGCCCCACCTGGCCAGCGCGCGGGAGAGCCTCGGCGCCTTCTGCGGA
CTCTCGGACCTGTGCGCGGTCCGGGCCCACGTCCTGCACGCTATTGCCAG
CGAGTACGCAAGCAGCGGCCGGAGTGATGGAGGGGGCAGCAACCGCCGGT
CGGTGAGGGGTTCCGGGGAAGAAAACCTCACTGGGATGGAGGCGGCGAGG
AAGATCTTCGCGGCGCTACCGGTGAAGGAGCCCGTGCTCTCCGCCGTGCT
GTCGCACTTCATGGTCCTGGAGGGACTACCCCTCTTGCAGCACGTGGAGA
CAGGTGAGCCCCCGACTGCCGCCGGCCCGGCATCCGCCACCGCCGGTGGT
GGCGGCGGCTGCAATCGCGGCGGCAGAAGTGCCGCTTCTGCTGCGGCCGC
TACCGCTGCTACTGCTGCCCGCGGGCGGAAGCTGGGGCACTCCTATGTGA
AGTGCACGACTCCGGCGAAGGAAGCGATATTTCACAAGGCCTTGGCGTTG
AGGATGGACGTCAGACTCGTTCCGGCCCCGCAGCCTCCCCCGGTGTACGT
GGTGATGGACGGTACCCCGTCGCGGACGACGCGTCCATCCGGGACGGCCT
CATGCACGCTTTCGTGGGGCTTGCCGACGGCGGGAGGGGCTCGCGGAAGC
AGCAGCCGCCGCTGAGCGAGGCGGACGCGATGAAAGGGCAGGCGCTGTCA
AGCTCCCTCTTCTCCTGCATCGCCATCGGCGGCTTGATGTCCGGCTGTCC
CCGAGAGGCTGTCGCGCCCCACCTGGCCAGCGCGCGGGAGAGCCTCGGCG
CCTTCTGCGGACTCTCGGACCTGTGCGCGGTCCGGGCCCACGTCCTGCAC
GCTATTGCCAGCGAGTACGCAAGCAGCGGCCGGAGTGATGGAGGGGGCAG
CAACCGCCGGTCGGTGAGGGGTTCCGGGGAAGAAAACCTCACTGGGATGG
AGGCGGCGAGGAAGATCTTCGCGGCGCTACCGGTGAAGGAGCCCGTGCTC
TCCGCCGTGCTGTCGCACTTCATGGTCCTGGAGGGACTACCCCTCTTGCA
GCACGTGGAGACAGGTGAGCCCCCGACTGCCGCCGGCCCGGCATCCGCCA
CCGCCGGTGGTGGCGGCGGCTGCAATCGCGGCGGCAGAAGTGCCGCTTCT
GCTGCGGCCGCTACCGCTGCTACTGCTGCCCGCGGGCGGAAGCTGGGGCA
CTCCTATGTGAAGTGCACGACTCCGGCGAAGGAAGCGATATTTCACAAGG
CCTTGGCGTTGAGGATGGACGTCAGACTCGTTCCGGCCCCGCAGCCTCCC
CCGGTGTACGTGGTGATGGACGCGGTCCTCCTCACCATCCGCTTCTCGAA
AGACCGCGGCGACGGTGTTACCCGGCTGTGGCACCTCCACGGCTTCGCCA
CCAGCGAGCTGCGGAGGTTCAGGCAGGAGAGGAGGGGGGCCGTGGCGATC
CTGGCGATCCTGGGGATCCTCATGTGGGTGACGATAAGGCTCTGCCGGGT
AGAGGGCATGCTGCCCGCGGCGGAGCTGGCGTTGTCCCTGCTGCAGACGT
GCCCAGGATTGGTGAGCGGTCCTCCTCACCATCCGCTTCTCGAAAGACCG
CGGCGACGGTGTTACCCGGCTGTGGCACCTCCACGGCTTCGCCACCAGCG
AGCTGCGGAGGTTCAGGCAGGAGAGGAGGGGGGCCGTGGCGATCCTGGCG
ATCCTGGGGATCCTCATGTGGGTGACGATAAGGCTCTGCCGGGTAGAGGG
CATGCTGCCCGCGGCGGAGCTGGCGTTGTCCCTGCTGCAGACGTGCCCAG
GATTGGTGAGGATATACCACTGCCACATTGCGCACCTTTCCATGGGAGTT
TTTTGGCTACACGGGCGTAGAGCGGCGTACGACGCCCTCAGGGAGCTGCT
GATCAAGACGATCGAGCAGGAGCCTCCGACGTTCGACGACATGGCGCCGA
GCACGGGGTTGTGCGGCCTCCCCGTCTGCGCGCAGCACCTCGAGAAGCTC
CTCAAGATGGGAGTGCCGGAACAGGGTAGTGGCAGCATTGCCGCCGGCGC
CAGCGGCGGAACTAGCGGTAGCAGCGGCGACGGTAGGGCTCGCAGCCTCG
CCAACGACGCCGCCGGGGCGACTCAGGAGGATGCAGCTCCAACACCGAGA
CCTCGACAGCAGGCTCAACGGCCGAAGAAGGCAAGACGTTCGGTCCTTCC
ACCCGCTCCTCCTTCTTCCACTGTGTCATCTCCTTCCCGAGAAGAGCCGC
CGCCGTCGGGGGACCCGCACCCGGGATATGCCGCCGGCGCCAGAGCCAGC
TCTTTCCAATCCGACTCCCCATCCTCCTGTTCCTACAGCATCCAACAGGA
CCCACGATCACAAAGGAGAGCTTGGAACTTCATCGACGCGCGCGGTCCCC
TGATACCTCCATGGCGAACTCAAGGGCGGACCCAGTTCGATGGAATTGGG
CAGCTGCCACCGCTGCAGCCGCTGCTGATGCCGCCACCGCCGGCGCCACC
GCTGCCGGCGCTATCCAGTGCCTCCCAAGGGGCGACGCGTGGGGCGGCGA
CATTTGTCTCGGGGCCTTCTTCAGATAGTCCGGCGACCTCTGTAGCGGTG
ACGAGAGAGGAGGAGCAGGCAGCGCCGAGGGGTTCTCGAGGCACCGTGCC
CGGCGGCGGTGGCTTTGCGGATTTGAGAAGGGATCTCTCATCACAGGCGT
CGGCCCGTGGGAGTTTTCAGGACGCCACGGCGGGGAACCATGAAGGCGGC
GGTGACGATGTGGAAGGCGGGGCTCGGGGGGTCGGAGACTTGACCCTGCC
GATGTCGGGGACGGGACAGCATGGCGGTGAGCGCGGCGGCGGCACCGATG
CCTCGGCGCACCGCGGCGGAGATTCGGGCACCGCCACCGCCACCGACACT
CATTTCCGACGCGGCAGCCACAGCGGGAGCGTTTTCGGCGGGGACGGCAT
TACCAGCTCCCCGTAAGATATACCACTGCCACATTGCGCACCTTTCCATG
GGAGTTTTTTGGCTACACGGGCGTAGAGCGGCGTACGACGCCCTCAGGGA
GCTGCTGATCAAGACGATCGAGCAGGAGCCTCCGACGTTCGACGACATGG
CGCCGAGCACGGGGTTGTGCGGCCTCCCCGTCTGCGCGCAGCACCTCGAG
AAGCTCCTCAAGATGGGAGTGCCGGAACAGGGTAGTGGCAGCATTGCCGC
CGGCGCCAGCGGCGGAACTAGCGGTAGCAGCGGCGACGGTAGGGCTCGCA
GCCTCGCCAACGACGCCGCCGGGGCGACTCAGGAGGATGCAGCTCCAACA
CCGAGACCTCGACAGCAGGCTCAACGGCCGAAGAAGGCAAGACGTTCGGT
CCTTCCACCCGCTCCTCCTTCTTCCACTGTGTCATCTCCTTCCCGAGAAG
AGCCGCCGCCGTCGGGGGACCCGCACCCGGGATATGCCGCCGGCGCCAGA
GCCAGCTCTTTCCAATCCGACTCCCCATCCTCCTGTTCCTACAGCATCCA
ACAGGACCCACGATCACAAAGGAGAGCTTGGAACTTCATCGACGCGCGCG
GTCCCCTGATACCTCCATGGCGAACTCAAGGGCGGACCCAGTTCGATGGA
ATTGGGCAGCTGCCACCGCTGCAGCCGCTGCTGATGCCGCCACCGCCGGC
GCCACCGCTGCCGGCGCTATCCAGTGCCTCCCAAGGGGCGACGCGTGGGG
CGGCGACATTTGTCTCGGGGCCTTCTTCAGATAGTCCGGCGACCTCTGTA
GCGGTGACGAGAGAGGAGGAGCAGGCAGCGCCGAGGGGTTCTCGAGGCAC
CGTGCCCGGCGGCGGTGGCTTTGCGGATTTGAGAAGGGATCTCTCATCAC
AGGCGTCGGCCCGTGGGAGTTTTCAGGACGCCACGGCGGGGAACCATGAA
GGCGGCGGTGACGATGTGGAAGGCGGGGCTCGGGGGGTCGGAGACTTGAC
CCTGCCGATGTCGGGGACGGGACAGCATGGCGGTGAGCGCGGCGGCGGCA
CCGATGCCTCGGCGCACCGCGGCGGAGATTCGGGCACCGCCACCGCCACC
GACACTCATTTCCGACGCGGCAGCCACAGCGGGAGCGTTTTCGGCGGGGA
CGGCATTACCAGCTCCCCGTAA
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