Homology
BLAST of mRNA_P-fluviatile_contig1.299.1 vs. uniprot
Match:
A0A6H5LL89_9PHAE (Peptidase_M23 domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5LL89_9PHAE)
HSP 1 Score: 320 bits (820), Expect = 8.560e-94
Identity = 185/352 (52.56%), Postives = 216/352 (61.36%), Query Frame = 2
Query: 77 INGQGRCIQGNNTDDTHHGDLAYAFDFKLRPGTKVLAARHGVVAAFCDHFGEGGMKSSLRPRANFVALRHDDGTYTRYVHLMRNGVRVKLEQVVTAGQVIALSGNTGFTSGPHLHFDAVNVLPQETSEVWIVHPMVMPLPSVAAIFSGPLNHDMEDFATAPLIYLSPEALQFFSSHLNGSSRGTSDGRKSDATASLLPLLQGHPEVVVLVDRGGAGGKQTFVEAAATAADAVASVPLSAHQGFPSGEATENRDGGGRRHCRCVGIIVANNQPGHEVFQMAAPTSTNDGEGVRAPFPVVQVSQESGQLLKSTLALSFSSPSTHAPTGARAAPQSGSGFGAQAGRSQGQRSWGE 1132
++GQGRCIQGN+TDDTH GDL YAFDFKLRPGTKVLA+R GVVAA+CDHFGEGG++ LRPRAN+VALRH DGTYTRYVHLMR GV V++ Q V AG+VIALSGNTG++ PHLHFDAV VLPQETSE+WIVHP V+PLPSVAAIFSGPLN ++EDF TAP+ TFVEAAATA G +CRCVG++VAN++PGHEVF MA+ S EG+RAPFPVV VS+ESG+LLK+ L S + P A A P GFG Q G G+ WG+
Sbjct: 1 MHGQGRCIQGNHTDDTHRGDLEYAFDFKLRPGTKVLASRAGVVAAYCDHFGEGGLRQGLRPRANYVALRHRDGTYTRYVHLMRGGVLVQVGQEVAAGEVIALSGNTGYSPTPHLHFDAVKVLPQETSELWIVHPSVLPLPSVAAIFSGPLNREVEDFTTAPM---------------------------------------------------------TFVEAAATAXXXXXXXXXXXXXXXXXXXXXXXXXG----YCRCVGVVVANDRPGHEVFPMAS--SACGEEGMRAPFPVVMVSRESGELLKTALQPSSPPSVMNTPAMAPAGP----GFG-QVGGVPGEIGWGQ 284
BLAST of mRNA_P-fluviatile_contig1.299.1 vs. uniprot
Match:
A0A7S2C303_9STRA (Hypothetical protein n=1 Tax=Florenciella parvula TaxID=236787 RepID=A0A7S2C303_9STRA)
HSP 1 Score: 183 bits (464), Expect = 8.840e-47
Identity = 128/331 (38.67%), Postives = 165/331 (49.85%), Query Frame = 2
Query: 38 LPFETPKSWRDRWINGQGRCIQGNNTDDTHHGDLAYAFDFKLRPGTKVLAARHGVVAAFCDHFGEGGMKSSLRPRANFVALRHDDGTYTRYVHLMRNGVRVKLEQVVTAGQVIALSGNTGFTSGPHLHFDAVNVLPQETSEVWIVHPM-----VMPLPSVAAIFSGPLNHDMEDFATAPLIYLSPEALQFFSSHLNGSSRGTSDGRKSDATASLLPL--LQGHPEVVVLVDRGGAGGKQTFVEAAATAADAVASVPLSAHQGFPSGEATENRDGGGRRHCRCVGIIVANNQPGHEVFQMAAPTSTNDGEGVRAPF--PVVQVSQESGQLLK 1003
+PF S DR I G G CIQGN+ TH G LAYAFDF+L GT ++AAR GVVAA HF EGG++ LRPRANFVA++H DGTY RY HL R GV V+ V AGQ + LSGNTGF+S PHLHFD V++LP++T + +V P ++ LP+V A FS AT P + E +DA+A L + ++G+ VVL++RGG +F A A +A A +IV NN G E+F M G P P V V+ E+G LL+
Sbjct: 33 IPF-AEASPTDRRIRGTGLCIQGNHGSSTHKGTLAYAFDFRLPTGTPLVAARPGVVAATAGHFNEGGLEGKLRPRANFVAVQHSDGTYARYFHLRRQGVTVEAGDTVKAGQQVGLSGNTGFSSTPHLHFDVVDMLPEDTCVLKVVDPENVDTPILTLPAVIAAFSALFPRHA---ATVPAKLVRAEP--------------------ADASADLTNIDKVRGN---VVLIERGGC----SFTTKARRAEEAGA-----------------------------ASMIVVNNNKGPELFSMG---------GTEKPISIPAVLVASEAGDLLR 294
BLAST of mRNA_P-fluviatile_contig1.299.1 vs. uniprot
Match:
A0A7S3K4G7_9STRA (Hypothetical protein n=1 Tax=Aureoumbra lagunensis TaxID=44058 RepID=A0A7S3K4G7_9STRA)
HSP 1 Score: 182 bits (462), Expect = 7.100e-46
Identity = 89/146 (60.96%), Postives = 107/146 (73.29%), Query Frame = 2
Query: 20 EMISCALPFETPKSWRDRWINGQGRCIQGNNTDDTHHGDLAYAFDFKLRPGTKVLAARHGVVAAFCDHFGEGGMKSSLRPRANFVALRHDDGTYTRYVHLMRNGVRVKLEQVVTAGQVIALSGNTGFTSGPHLHFDAVNVLPQETS 457
EM+ ALP+ KS R +G GRCIQG N TH G LAY+FDFKLR GT VLAAR GVVAA HF GG ++ L PRAN++A+RHDDG+Y RY HL ++G ++K+ V GQVIALSGNTG+T GPHLHFD VNVLP+ET+
Sbjct: 18 EMLEFALPYPA-KSRIYRLASGHGRCIQGVNGISTHRGTLAYSFDFKLRVGTPVLAARGGVVAAVVTHFSGGGARAHLAPRANYIAIRHDDGSYGRYYHLRKDGSKLKVGDRVKRGQVIALSGNTGYTGGPHLHFDVVNVLPEETA 162
BLAST of mRNA_P-fluviatile_contig1.299.1 vs. uniprot
Match:
A0A8J2WE38_9STRA (Hypothetical protein n=2 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A8J2WE38_9STRA)
HSP 1 Score: 171 bits (432), Expect = 5.310e-42
Identity = 92/169 (54.44%), Postives = 109/169 (64.50%), Query Frame = 2
Query: 20 EMISCALPFETP-KSWRDRWINGQGRCIQGNNTDDTHHGDLAYAFDFKLRPGTKVLAARHGVVAAFCDHFGEGGMKSSLRPRANFVALRHDDGTYTRYVHLMRNGVRVKLEQVVTAGQVIALSGNTGFTSGPHLHFDAVNVLPQETSEVWIVHPMVMP--LPSVAAIFS 517
++ ALP+ +W R + G G+CIQG N TH G L Y+FDFKL GT VLAAR G +AA DHF GG K+ L PRANFVA+RH DG+Y RY HL G K+ + V GQ IA SGNTG+T GPHLHFD VN+LP+ETS + IV P L SVAA FS
Sbjct: 36 KLKRLALPYPGYLAAW--RLVKGHGKCIQGVNGRSTHRGTLCYSFDFKLAVGTPVLAARGGTIAAVVDHFRGGGAKAHLAPRANFVAVRHSDGSYARYYHLKEKGSLYKVGERVGRGQQIAWSGNTGYTGGPHLHFDLVNLLPEETSTLRIVSPKHCRKRLQSVAAAFS 202
BLAST of mRNA_P-fluviatile_contig1.299.1 vs. uniprot
Match:
F0Y178_AURAN (Uncharacterized protein n=1 Tax=Aureococcus anophagefferens TaxID=44056 RepID=F0Y178_AURAN)
HSP 1 Score: 162 bits (411), Expect = 5.570e-39
Identity = 91/188 (48.40%), Postives = 110/188 (58.51%), Query Frame = 2
Query: 23 MISCALPFETP-KSWRDRWINGQGRCIQGNNTDD--------------------THHGDLAYAFDFKLRPGTKVLAARHGVVAAFCDHFGEGGMKSSLRPRANFVALRHDDGTYTRYVHLMRNGVRVKLEQVVTAGQVIALSGNTGFTSGPHLHFDAVNVLPQETSEVWIVHPMVMP--LPSVAAIFS 517
+ + LP+ +W R ++G GRCIQG N TH G L Y+FDFKL GT V A R GVVAA HF GG K+ L PRANFVA+RHDDG+Y RY HL +G K+ V AGQ IA SGNTG+T GPHLH D VN+LP+ETS + +V P + +PSVAA FS
Sbjct: 20 LCNLTLPYPGRLAAW--RLMSGHGRCIQGVNGASPGARARGAAARERAIRSGASTHRGTLCYSFDFKLAVGTPVHAVRGGVVAAVVQHFSGGGAKAHLAPRANFVAVRHDDGSYARYYHLRTDGSLFKVGDSVEAGQHIAFSGNTGYTGGPHLHLDVVNLLPEETSRLRVVEPKSLARLVPSVAAAFS 205
BLAST of mRNA_P-fluviatile_contig1.299.1 vs. uniprot
Match:
A0A0M0JMK9_9EUKA (M23 family n=1 Tax=Chrysochromulina tobinii TaxID=1460289 RepID=A0A0M0JMK9_9EUKA)
HSP 1 Score: 142 bits (358), Expect = 1.250e-33
Identity = 83/174 (47.70%), Postives = 103/174 (59.20%), Query Frame = 2
Query: 17 REMISCALPFETPKSWRDRWINGQGRCIQGNNTDDTHHGDLAYAFDFKLRPGTKVLAARHGVVAAF--CDHFGEGGMKSSLRPRANFVALRHDDGTYTRYVHLMRNGVRVKLEQVVTAGQVIALSGNTGFTSGPHLHFDAVNVLPQETSEVW--IVHPMVMPLPSVAAIFSGPL 526
R+ C++ P+SW +N G C+QGN+ DTH +L YAFDF L GT +LAA G+V A C G+ G K +R +AN+VALRHD G YTRY HL GV V + + V G I LSGNTGF+ GPHLHFDAV+VL ET+ + I PL AA FS L
Sbjct: 37 RKAKCCSI---WPRSW---MLNFDGTCVQGNDGGDTHIDELRYAFDFSLPVGTPILAAADGIVVATVDCHRAGDRGTKE-MRIKANYVALRHDCGMYTRYYHLCHKGVCVNVGERVHRGMQIGLSGNTGFSGGPHLHFDAVDVLATETATLALEIEGAPARPLECAAASFSAAL 203
BLAST of mRNA_P-fluviatile_contig1.299.1 vs. uniprot
Match:
A0A7S4BTM6_CHRCT (Hypothetical protein n=1 Tax=Chrysotila carterae TaxID=13221 RepID=A0A7S4BTM6_CHRCT)
HSP 1 Score: 137 bits (345), Expect = 2.560e-30
Identity = 69/120 (57.50%), Postives = 82/120 (68.33%), Query Frame = 2
Query: 95 CIQGNNTDDTHHGDLAYAFDFKLRPGTKVLAARHGVVAAFCDHFGEGGMKSSLRPRANFVALRHDDGTYTRYVHLMRNGVRVKLEQVVTAGQVIALSGNTGFTSGPHLHFDAVNVLPQET 454
C+Q N TH G LAYA+DF++ GT V+AAR G VAA CD F EGG++ L+ RAN V +RH DG Y+RY HL + V Q VTAGQ IA SGNTGF+SGPHLHFD V+V ET
Sbjct: 45 CVQAEN-GPTHTGLLAYAYDFEVEEGTPVVAAREGEVAAVCDCFTEGGLRKELKARANHVVIRHADGLYSRYYHLQPSSALVCKGQRVTAGQRIAASGNTGFSSGPHLHFDVVDVFNLET 163
BLAST of mRNA_P-fluviatile_contig1.299.1 vs. uniprot
Match:
A0A7S3BY81_9EUKA (Hypothetical protein (Fragment) n=1 Tax=Haptolina ericina TaxID=156174 RepID=A0A7S3BY81_9EUKA)
HSP 1 Score: 132 bits (331), Expect = 6.910e-30
Identity = 64/139 (46.04%), Postives = 88/139 (63.31%), Query Frame = 2
Query: 89 GRCIQGNNTDDTHHGDLAYAFDFKLRPGTKVLAARHGVVAAFCDHFGEGGMKSSLRPRANFVALRHDDGTYTRYVHLMRNGVRVKLEQVVTAGQVIALSGNTGFTSGPHLHFDAVNVLPQETSEVWIVHPMVMPLPSVA 505
G C+QGN +H +L+YA+D+ L GTKVLA R GVVAA D+F GG + + +AN+VA+RH DG Y+RY HL + V Q+V GQ IA SGNTG+++ PHLHFD V+ L E + +++ P P+ A
Sbjct: 2 GMCVQGNFGAFSHTDELSYAYDWSLPTGTKVLATRDGVVAAAVDNFTGGGHRLENKAKANYVAIRHVDGLYSRYYHLQHRSLMVSEGQIVVTGQPIARSGNTGYSAAPHLHFDVVDRLSTEFASLFLTSPTPEPMSGAA 140
BLAST of mRNA_P-fluviatile_contig1.299.1 vs. uniprot
Match:
R1ECT1_EMIHU (Peptidase_M23 domain-containing protein n=1 Tax=Emiliania huxleyi TaxID=2903 RepID=R1ECT1_EMIHU)
HSP 1 Score: 131 bits (330), Expect = 1.670e-29
Identity = 64/124 (51.61%), Postives = 78/124 (62.90%), Query Frame = 2
Query: 86 QGRCIQGNNTDDTHHGDLAYAFDFKLRPGTKVLAARHGVVAAFCDHFGEGGMKSSLRPRANFVALRHDDGTYTRYVHLMRNGVRVKLEQVVTAGQVIALSGNTGFTSGPHLHFDAVNVLPQETS 457
+G +QG + TH +L+YA+D+ L GT VLAAR GVV CD F G K RP AN V LRH DG Y+RY HL + +R + V+ GQ IA SGNTGF+SGPHLHFD + P ETS
Sbjct: 49 EGMLVQGVDGASTHRDELSYAYDWALAVGTPVLAARAGVVVEACDVFRAGAPKPEYRPLANHVVLRHADGLYSRYFHLKQGSLRTSVGAAVSVGQPIAASGNTGFSSGPHLHFDVTDSTPTETS 172
BLAST of mRNA_P-fluviatile_contig1.299.1 vs. uniprot
Match:
A0A7S2HAX5_9STRA (Hypothetical protein (Fragment) n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2HAX5_9STRA)
HSP 1 Score: 121 bits (303), Expect = 1.990e-28
Identity = 55/90 (61.11%), Postives = 68/90 (75.56%), Query Frame = 2
Query: 185 AARHGVVAAFCDHFGEGGMKSSLRPRANFVALRHDDGTYTRYVHLMRNGVRVKLEQVVTAGQVIALSGNTGFTSGPHLHFDAVNVLPQET 454
AAR GVVAA HF +GG+K+ RPRANF+A++H DGTY RY HL +NG K+ V AGQ +ALSGNTGF+S PHLHFD N+LP++T
Sbjct: 1 AARTGVVAAAVAHFDKGGLKNDFRPRANFIAIQHADGTYARYFHLQKNGCSAKVGDQVIAGQQVALSGNTGFSSCPHLHFDVTNMLPEDT 90
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig1.299.1
>prot_P-fluviatile_contig1.299.1 ID=prot_P-fluviatile_contig1.299.1|Name=mRNA_P-fluviatile_contig1.299.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=538bp
MISCALPFETPKSWRDRWINGQGRCIQGNNTDDTHHGDLAYAFDFKLRPG
TKVLAARHGVVAAFCDHFGEGGMKSSLRPRANFVALRHDDGTYTRYVHLM
RNGVRVKLEQVVTAGQVIALSGNTGFTSGPHLHFDAVNVLPQETSEVWIV
HPMVMPLPSVAAIFSGPLNHDMEDFATAPLIYLSPEALQFFSSHLNGSSR
GTSDGRKSDATASLLPLLQGHPEVVVLVDRGGAGGKQTFVEAAATAADAV
ASVPLSAHQGFPSGEATENRDGGGRRHCRCVGIIVANNQPGHEVFQMAAP
TSTNDGEGVRAPFPVVQVSQESGQLLKSTLALSFSSPSTHAPTGARAAPQ
SGSGFGAQAGRSQGQRSWGEGVSSQSSIQLDGDEIRWGGKDNGGVVVSLG
AAEHCPTHSTPAAATGTFLCESNASPAVTCSSSAISVEEDDGDCKGPHSP
IAVPAGYGYSWVGSEVGCNGFYSRCYPSNMQPTAGAALKKPRPGNVEAER
LEAPWRRAVDENIGEWRDEKSLFRTKTLPVSFERSIW*
back to topmRNA from alignment at P-fluviatile_contig1:3673103..3684380+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig1.299.1 ID=mRNA_P-fluviatile_contig1.299.1|Name=mRNA_P-fluviatile_contig1.299.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=11278bp|location=Sequence derived from alignment at P-fluviatile_contig1:3673103..3684380+ (Porterinema fluviatile SAG_2381)
GAAAAGGTAGAAGAGGAGAGAGATGATTTCATGCGCGCTTCCGTTCGAGA
CTCCCAAGGTGAGAGAGTTGCTTCTCATGCCACTCGCCAGCTGCTGTGAG
TGTGCGCTTGTGTGTGATTGTGCCTTCGCCATCCGCAGACCGAATGCATC
CAAATCTTCCGGAACAAATTGCATCCATTTTGCGCGCGCGCACTCGTGGG
CAGCGAGCGAACTCGTGGACCGGGGAGCGAGACAGATGTGCACACTCCTA
GAAATGCTGCGCCACTCCTGGTGTGAAATGTGAAGATTTCAAAATATCTC
GCAGTCCATCTGCTTTTTCAACAAACAACCAAGGACGGACGGGCGGACGA
AAGCTGCCTACGCGCAGATGGAAGATTGCCGTTCGACTCTGGCCCCTGGT
GAAAGCAAAGGCCACTCAAAGCACTTGAGCACAGCTGCACTCCGCAAACC
CACCCTGGCACATCTTACCGTGGCTCTAGCATTGTACGAAGAACTAAGGC
CGCGTGTTCGATGTTTCATTCTTCATTTCTTCGCCGTTTGACACACCGCC
GCACCCATGCGCGTCACCGGCTCTCTCGTGCGCGGATGCCTCGCCGACTC
TCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTC
TCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCCCCTTCCTCTACGTTAAG
AGCTGGCGTGATAGGTGGATCAATGGACAGGGACGCTGCATTCAGGGGAA
CAACACCGATGACACACACCACGGCGACCTCGCTTACGCCTTCGACTTCA
AGTTGCGTCCCGGCACGAAGGTGTGTGACGATGCTTTCCCTCTGCCCCCC
TGTCCTCTGCTGGCATGCTTCGCAGCTTTTTTTTTTTTTTTTTTTTTTTG
CGAACGTGCTCATGAAGAAATCCCGCCGTATAGGAGCAATGTTCAGTGCT
TTGCACGTAGATTTTTTCTCCTGATCGTACGGCGCTTAGGAGATATGcCC
CCCCGTCTTGCCTGTGTGAACGTGTGCGCAGCGTGAAAATTTCGTGTGTG
AGCCGACCTATCGCGGAAGTTTCCCCCAAATTTTACCGCCAAGCTGTGTC
TTTGGGGTCACACACAAGCCGCCGTTCACACCATCTCTCCGTGCTTCGTG
CTGGGAAAAAATGCGTGATGGCGGGTCAATGCTGTCGGTACGTGCGGGGG
TATGGAGGGTGTCTATTCATTCATTTTGCGGGTTGTATCGGCTGTCGGGA
CCTAATTGTGTAAACAACATTGGGAGAGAACGCACGCGGGATCGGTAAAG
ATCCAGCAGAGCCAGCTGGAAAATCGAACAATGTCCACGTGGCATTTTCG
CTCGCCCGACGACCAGTACCACACCCTGAACCCGGAACTAAATTAGAATG
GGTTACGCAAGCTTCTGTGCAGAATCGACTTTCGACACACTTGGGCCCCA
AAATCGAAGGCAGGGTCCACCAGGGGGGGGGGGGGCGTACTCATGTTTTG
CATGCCTTCGTTGTTAGACCATTGACCACGCGTCCTCGAGAGGACGGAGC
GTTGTTCCCGCAGGATCGATCACCGATGGCCAATCGTTCCTTCCTACGTT
GCCAGAGGTGGCTCAAAAGTGTTTTCCCTAACTTGTCTACTTTATACCTG
TCCTTCCTGGGCCACATCTTACACCCGAGAACCGCTACCGTCTTCTCTTT
GTTCCATGCCTCAAACTTCTCTCTATACCGACTGTCACTTTTTCCAGCTC
AACCATGTACCCTTCTCTCTCCTGATCGTATAACGGGCATTCCGCAACTA
CATGTACCCGGTCTTCGCATTCGGCACCGCAGTCACATTTGAACTTGTCT
TCGTCGTCGTCTACCTTCCTAAACCTCCTTCTACGTTCCCGTAGGTCAAT
GTCGCCCGTTCTAAATTTGACCTTCATCTTTGTCCCTTCATCCAATGGTC
CGTTCAGGTACTCCTTGAACCCTATTCCTTCGTTCAGCCTTCCGTACACT
TCTAGAACCTCCTTTTCCTTGGTCTCTTTCCGCAATCTCTGGTCTTCTCT
ATTTTCAAAGGCTTCTGAGATACTCTTCTTGTACCCTTCTAATCTTTCCG
CTCCCGTCGTCTCCCGTTCGTCAATATCTTACCCACTCCACACTCCCTGT
ACAACCTTAGCCCACTCAATGGGTTGTCCACCCTTGGCCTTGTTTACCCA
TCTCGCCTCCCAAGCTATTCTCGGTAACCTCTCCTTTCCCATGTTTTCCA
TACATTATTGCCATGTCAACTTCCCTCTGTCTCTTCCCGTTCTTAAGGAG
TTAATCCCCAACTCTGCTCTTACTGCTGCGTTACTTGTGCGCTGGGAGCA
TCCTTGAATGATCTTCGCTGCTTTCATCTGCGCTGCTTCCAACTCTGCTA
CTATTTTCTTGTTCCCTTACCAAACTTCTCCCGCGTACTCTAGTGGCGGG
ATAACACTTTTCAAAATGGTCATTTTGACGCGTGTATCAAGGTGCCGGTC
TGCTAGGATTGGGTGCACCTTCCGTGCCCTTGCTTTGCCCTTGTCCGCTA
TTTTGTGCATGTGTGCATCCCATTTACAGTCTTTTGCTATCTCTACTCCT
AGGTTTGTGTATTTTTCCACTCTTGGCAGCTCCTTGTCCCCCCATGTCCA
CTTGGTACCTACTTCCTCGTCACCATCTTCGTTGCATACCATTACGGCAC
ACTTTGGGACGTTGGCCGAGAATCTCCACTTATCAGCATAGGCCTTCGCT
GCGTTAATCTGTAGTTGGAGCCCCTCAGGCGTGTCCGACATCCCAACAAA
GTCGTCAGCAAATACCAGTCCCGATACCGAGGTTTCCCCTACTTCTACTC
CCTTCCCTAGCGCCTCTACCTCTTTCAGTAAGTCGTTGATGAATACCTGG
AACAACGTTGGTGACATAGTGCACCCCTGTGGGACCCCCTGCTCAATGTC
GAAGAACCTCGAGAGTTCTCCATCTAACATCACGGCGCTTTTCGTGCTCT
CTGTCATTTTCTTAATCATTCTGCACATATTCCCGTTTATCCCATACTTC
GCCAACATTTTCCAGAGCCCATTTCTCCATACTGTATCATACGCTTTCTG
AACGTCTAGGAAAAAGCAGTATGTCGGCTTTCCCACGCTCTTCCGACCTT
TTATGATCCTCTCTACGGTGTATAGGTGATCTCCATACCCCCTAGCCTCC
CTGAAACCTGCTTGGCCCTCACTAATTCTCTTTTCCATCTCCAGTACTCG
TACTATTCTGTTGTTGAGGATCTTGAAGAACACTTTCCCTACTGTGCTCA
ACAGGGTCACTCCCCTATAGTTTCCTTGGTCAGTCTTATCTCCTTTCTTA
AATAGGTTCACCACCACCCCTTCCCTCCACCTACTCGGTGCGTATTCGTT
TTCCCATACCCAGTTGAACAACAGCACCATCTGAATCATCCCCTCCCCCC
CGAACTTCATGATTTCGTTCACTATCCCGTCTAGCCCTGCGGCCTTGTGG
CACTGCAGTTTTTTCACACAACTCTCAACCTGTTCCTCGGTGAACTTCTT
TTGGAGCTCTGCATTCCCAAATTCCTCCATCGAAGCTCTCTCTTCTGCTT
GGGCCCACGCGTCTACCTCTTCCTTGAATACTTGGTCGAAGTCTGCCTTT
TCCGACGACACCCCGAGTCTCCTATAGTGTCCTGCTAGTATCTGCCTCTT
ACCCTTTCCACTGCTGACTAGTTTACCGTCTACGCCTCGCAATGTTGCTA
CTCCTGTTCCCCCCCCATGTTCATTCTTTTTTACCAATCCATTATTTCCC
TGCCACATCTGTTTTACGCTACTCTCCAACCCCCCGCTCGCTTCCTGCAC
CACTTCGTCCCAGATGCCTTTCTTCTTTTTCACAACTCCATTCACATGTT
TCCTCTTGGCTCTGTAGGTTTCCCAACTCTCCTCTGTCTTCTCATCCATG
TGCCGCTTAAACAGTTCTCTTCGTTCCCCTATTTCTTCCCTCAACTCCTC
GTCCCACCATTTAACCGCCTGACCACACCGGACCATCTTTTTCCCTATCA
CTTCCTCTGCGGTTGTGTTCACTATGTTTTCCCATTCTGCGATTACTCTG
TCCCCTGCTACTTGAACGTCCTCTTCCTCTCCCGCTTTCCCCATCAGTTC
CCAGGGGGGGGCGGGGGGTGCACTCATAGTCGTGCATGCCGTAGTCGTTA
GACTATTGACCTCGCATCCCTACAAAGCCGGGAAGGAGCACGCCGGGTTC
TCACCGGACCAGGCTCTCACACCACCTAGCGCGAAGCGCCGTGAGGTATT
CGGCGAGTCGCATGAAGGGTGCGCTGCATCCTGCTAAGGGTGTTCGGCAT
CTATCTTGTGCTTACTTCCTTGCATATGGATGACAGCTGCGTATGGCTTA
ATTAATTTTCTGGTGCTTTCACTTCCAGAGACAGTTGCAAGCACTGTGTA
ACTGCCTCGAGGGTGCTTGACCATTTTAACACAACGTGGTGCGATCATCC
CCTTGCGCGGAGTGAGGGTTCTCCACTCCGCACAACATGATCTTCTCGAC
CACCATTATGCTTACCGCCAAAGAAAACCAGAGGAAAAAAAAATGACGGT
AACCTGGTTGCCGAGTTCACGAAGTGAAATGGCTTGTTTTACAACGTCGT
TGCCAAGCGACGAAAACCCAATCCCTATGGCAAACACCGAGGTGAGAGCC
AACGGGAGGGGGGGGGGGGGGGTATCTGGAATTTTGATCCGCACAGACCC
CTGGGTCATTCTCAGAAATATGGTGCCTAAGACCCACGCTGGACCCCTTT
CTTGGCACGAGAGGTGTTCGAGCGAGCACACTCCATGCCACCCACTCGGC
GTAACAGCAAGGATCATAGTGTGCGACAGTACTGTTTCCGCGCAGCAGTG
GTGTGTGTGCAACATGTTCTCTCTGGGCAATGGACAGCTGTTTATCGTCC
ACGTGCCTCGCCTGACCTTTTGTCGGACGTTCGGTCTGTACATCTGGATA
TCGAGCCGATGAGGTGGCTGGTTTGAATCTTTGCATTCCTGCCACACGCA
ACTTTGGTCACTACTCTAGCAGTAGGGAGTACTTGCTGGCGCGTGTGTGA
TAGTAGGGGAGCGGAGCTTCCATTGACGATGGCGTTCGGCCATTGATCGA
TCCCCGTTCCACTACGGAACTGAAGACCGTTCCCAAGCCGAGCAACCTCT
CTCGCCGAACTTTGGCACGCGTGCGTGGAACCGGCGAATTAAAGGGCAGA
ATGTAGTTTGAAAATCATTTTCTTGCCTCTGGCTCGTGCGCCTGGTCGCA
CAAGGGGACGGGCTGCGTACTCTTCATGCTATACGTTTGAGACAGATAAC
CGCAAGTTTAGTTTCAGTCTTGAGTTTTGGTGGAATCTATCGCGTTCGAA
GCCAAGTTTCTGCCACCGCCGTGAACCTCACTACTGTATCTGAAACCCCA
TGGGTGCCGCGTACAAGGTACACCACGTCGCAAGCTTTCAACAGGCATCA
CTTAGGCCCTTGAATACCCCATGATCGCAAAACATTTTCATTCCAACTCG
TCACCGATTTGCAATTGCTCAAGTTTCGATTAATGAATCAGAATTTTGGT
ATAGAAAGCATACCCTTCCCCTCCAGCCCAACACGACTCGGCGCGAACAC
GGCCTCATGAGAAAGCGTCCGCACCGGCCACAAGCCTAGGTCCTGCCAGC
AGTAGTTCGGGATGACAAGGTGATTGCTGAGAGGGTTTCGGATACTTCCA
GATCTGAGGCGGAAACGCTTAAGAAGTTTTCCGCCGTAGCCTCTGACGGA
TGTAAGGGTTGGAAGGTCGGAATTGTCGGGCGGGGAAGTCCCGATTTTTG
TATCCTTTCACATGTTACATGCTTTGCGCATCCCCCCCCTTGCCCCCGCA
TTTATCCTGTCGGGCCTCCATTGCTGAATCACGGCAGGTGTTGGCCGCTC
GTCACGGAGTGGTGGCGGCATTCTGCGACCATTTCGGCGAGGGCGGGATG
AAGAGCAGCCTGCGGCCGCGAGCAAACTTCGTTGCGCTCCGGCACGACGA
CGGCACCTACACCCGCTACGTCCATCTCATGCGCAACGGTGTTCGGGTGA
AGCTCGAACAGGTGAGACTTCTTTCACTCCAGTCAGCCGGCTCCATTCCA
AAACGTTTAAATCCTTTCTGACAGAAACATGCAAAGGGCTTTTTTTATCG
ACGTGTCCGATGGGGTTTTGGTCAAGTCTCTCGGCGCGTGCAAGAGGCGG
ACCGAATCTTCTCTTGCCTCTCTCTCTCTCTCTCTCTCTCTCTCTCGTTC
TCTCCCTGCCTGCCCATGGGAGAGATATCCGATGCATCCGTTGCCAAACG
GGGTGTTTGAAGTCGATCACCTGTGTGCCTCGAACCGTTTGTCCGTTCGC
TGCGTAGAACCACCGAATGTTCATCAGTGTGCGGCTGGTCGTTGTTGTCT
TGGCGCGGTGAAACCGCAATCCAGGTGGTTACGGCGGGCCAGGTCATCGC
CCTGAGCGGCAATACAGGTTTCACATCCGGCCCTCATCTCCACTTCGACG
CTGTCAACGTCCTCCCGCAAGAGAGTGAGTCGGTTCACCAATATATTTGG
TTATTGGAGCCCACGCAGGGCAAGACTTACGGCTTTGTCAGATACCCACG
GCTCCTGAGGGTTAGAACGTTCATGTCGCATATGTGCGTGCGGAGCGAAG
GGCTTCGACGAGGCTGCGCACAGTCAAGGGTGCTACTTTCCGAGAACTTG
TTGCAAACGAGTGAGTGAATTGCACGATAGTCAAGGGCGCCCTGCGATGA
TCGTTGTTTCGAACAATTTCTGCTTCTCACGGGTGCACGTCCAACAGTGC
GATGCTATGTACTTTCTTGTTTCTTGAATCTGGTCCATGTCAACTCTTCC
TTTCTTTGTCACCGCACCGCTGCTTTCTGCCTCCTGGTTCAAGCGTCTGA
AGTCTGGATCGTCCATCCGATGGTCATGCCGCTGCCGTCGGTTGCAGCAA
TTTTCAGCGGCCCCCTGAACCACGATATGGAGGACTTCGCCACGGCACCC
CTGGTGAGCCGGCGCCTGCCAGTGGTGGCTGCGACTTTATCACTTGCCTG
TTTCTTTTTCTTGCGTGAGGGGTTGATTGTGTCTCGTAGTTTTGTCTCGT
TTGCCTGGTGGCCAAAAAATGCGCTTGTTTCTAGTTGGCCATTTTGCGGG
GAACGGAGCTGAATCCCCGTTCAAGAGGTAGGCGCGACTTACTGCTATGA
GCACAAAGGGGTTGCGAGCAGATATTTTCCGATTCCACACCCCGATCGTC
TGCTCGATTCGTTTTGGTTTTTTGTAGCAGCTTTTGGACATACACCAGAT
GCGTAGGTGGTTCAGTGCGCAATCAATGCATGCGTAAGGATCCCCGGCAC
CGTCGCACATGTACAGACAGTACGTCTAGTCCAGCCCTCAAAGCGGTGTA
GCGTCCTGGTGGATCAAGGTGGTTATTCTGGTTGGCCAATGAGCAGCGAT
TACCGCAATCGGAATGCAAAGCGAGGGCACTTCCCCAGTTTGTGCGCCCC
GCAAGTGGCCGCCCAATGGTGCACCACGACTTGGGGGGAAATGACGCGTA
AGGAGATATAACCAACGAATCCCTCTCCCTCGCCGCGTTTCCGGCTTTCC
CCCTCAGATATACCTCTCTCCGGAAGCTCTCCAGTTTTTCTCCTCCCACC
TGAACGGCAGCAGCCGCGGCACCAGTGACGGCCGTAAATCAGACGCCACC
GCTTCCCTGCTTCCGCTGCTGCAAGGCCACCCTGAGGTGGTAGTGCTGGT
CGACAGGGGCGGGGCAGGAGGGAAACAGACTTTCGTGGAGGCGGCAGCGA
CGGCCGCCGACGCGGTCGCCTCCGTGCCGCTCTCGGCCCATCAAGGCTTC
CCAAGCGGTGAGGCTACCGAAAACAGGGACGGCGGGGGACGGCGTCACTG
CCGTTGCGTCGGGATCATCGTTGCCAACAACCAGCCCGGTCACGAGGTGT
TCCAGATGGCGGCCCCGACGTCAACCAATGACGGGGAGGGGGTGCGAGCT
CCGTTTCCTGTTGTTCAGGTGACCTTGCAGGCATGCCTTGTCAGGAGGAA
TAGGGAGATGTGGCACGGACCGATCGCTGCTAGGATTGTACCTGCTGGGT
GCTCGACTTCGTACATACTAAAAAGCCTTTGCCTTTTCCATCTCTTGTGC
CACGAAGGTGTCCCAAGAATCTGGTCAGCTGCTGAAGAGTACCCTGGCGC
TTTCTTTCTCGTCACCATCGACACACGCCCCGACGGGAGCTCGGGCAGCG
CCGCAATCTGGATCAGGGTTTGGCGCGCAAGCTGGGCGGAGTCAGGGCCA
ACGGTCTTGGGGCGAGGGCGTTTCAAGCCAGTCATCGATCCAACTCGACG
GCGATGAAATCAGATGGGGCGGCAAAGACAACGGCGGGGTGGTCGTCAGC
CTCGGAGCTGCCGAGCATTGCCCAACGCACTCGACTCCGGCCGCGGCAAC
GGGTACATTTCTCTGCGAAAGCAACGCGTCTCCCGCTGTGACTTGCTCGT
CTAGCGCGATTTCCGTAGAGGAAGACGACGGAGATTGCAAGGGGCCACAT
TCCCCAATAGCGGTGCCAGCGGGGTACGGTTATAGTTGGGTTGGCTCCGA
GGTCGGCTGCAACGGGTTCTACTCTCGTTGCTACCCAAGCAATATGCAGC
CGACAGCAGGAGCGGCGCTAAAGAAGCCACGCCCCGGTAATGTGGAAGCG
GAAAGGTTGGAGGCGCCTTGGCGTCGGGCGGTGGATGAGAACATCGGCGA
GTGGAGAGATGAAAAGTCGCTCTTTCGTACCAAGACGCTGCCGGTGAGCT
TCGAGAGGTCGATTTGGTGATATGATGGATGGTGGCGGCGGCGGCTCCGG
CGGAGGGACTGCTGGTGGGTTTGCCCGTGGCCCCCCCGGCTCATGACGCA
TCCCTTTGGGTGATTTTGTGTCGACACGTGAATTTTTCGTTTCGAGAGGC
GTGTAACCTTGTTTTTTTCTTCTGTGGGACGTTCTTGTTTGTAAATTGGT
GCATAGACGTGTTCCACCATCTTTCGATTGTGTTGGTACTTTACTTTGAT
GATCGTTCGCCTGTTCTAGGGGGCAGCTCGTCGCTTGTTGGAGTTAGGAG
ATTGGCGTCCATTTCAATGTAACTGTAGGTATTATCAAAATCGCCCGATA
AAAGTCTCCTGCAGCACAATTATCGTATGAATGTCGTGAGCGGTCGTGTT
TGAAGCAGGGTGTAGCATCAGCTTCAAAGCTCGAACAGGGCTAATAGCAC
AGAAATTCGACTCGCGCGAAAGAGAAAAAAGCTTGTTCAGGCCGAGACTG
CATCTTGGTATTGACCGCGAAAGCCGTTCGATATTGGCTGCTTTTCTGTT
GTTTTGACTGTTTTTTCGGTGCTTCCCGCCAGCTCCATGGACAGCATGTG
CACGTGCGCTTGCCTAAAGCTTAATTCACTTAAGGGTGCATGAGAAGGTT
GTCGTACGCGTCGGCGCCATTTTGTTTCTTTGGTTAATGGATAGTGTTGA
GGTTGTTGTTTGGCGACTGTTCGGCTCTCACCCGCCATCGACCGCTGCTT
TTTCTCTGCTTTGTCGTTCGTTCCAACTATTTGATTTTTTGGCGATCGAA
TGTTTTTGGGCATCGCGATTGTACTTGTTTTGGAAACGTTGTGAAAAGTG
AAATTCAAGTGCACGCACTTTATGATTCCAATATCAGCAGCGGCGTGGCC
GAGAGGATTCGTCGTGCGCCCTCATCTACCACGTTCCGAGCATCGCGGGT
TGAGTCTGCAGCCACGACTTCGCTCTTGAGTCCATTTCACTTTATCATTT
TCTAGAAACAGGTGTTGTCCCATTGTCCCATTATTAGAATCAGCTTAAGT
GGTTGCCAACACCACACGATTTTTGTTTTTTGCTCGATGGTTTCATCTGC
ACATTCCACACAAGTGTTTGGTCGTCGCAGCGTTGTTCGCACGCACGTAG
CTGCTGTGTTCTGCGAAGAGGGTGTCGAGGGTGCGGGTTCATAGCTGCCT
TGATGCGGTTGGTGTGCTGGTGCGCTTCCCGGTGCTGGTTGGTGATGCGT
TGGAGTTTGTCATCAAAACCGCGAGCTTCGAGTTAGCATATAGCGCAATC
GATACATGAGACGGATTATTTCCAGGGAGGCTTCATTTTCGACAATGTGG
TCGAGGGTAGATGGAAGGGGGCTGTAACTACCTTGGGAGTGTACGCGTTG
ACTTGATTGCGAATTGCGTCGGTGCCTAAGGAGAACAAATTTACTTTGCT
CATCGCTGTTGTTTCAGACCCCTTCCCCCGAGCGGCGAACGATGATCATC
TCGTTCCACCAGAGGTTGCCAAAAAAAAGTTGCGCAATTACAGGTGATAG
AGAGTGTAAGGTCTGTGGCGCGAGTTATGTGTGCAGTCTTTGTTGGCGTG
TCAAGTATTGAACTGTAATGGGTTTCGATTTGAAGCGCAGCGGCAACGTC
GGGATCTGTTTCCGAAACGATCCTTTTTGGTGTGGGGACCTTCATGTCCT
GCCGATAGCAAAATATTCGTTCTGAACGTGTCGGTCTGCAGAGTTTTCTC
TGTATCATTCGAATGAGAAAGGCGACGAGTGGAGGAGTGACCCGAGATCA
GGATGAAGAACTTAATGGCACTTTGGCTATTGCGTCGGGTGCGAACCGCG
AGGCATCAAAGTTTGCGACAAGAGCTTGACTTTTTCAAGCCCTCCAGGCG
GTTCTAGACAACGCTTGCATGTACTCGGACCCTGGTTGGCTGCGCTTCAC
TGTTTGACTGGTGGGCAAGTAGGTCATTAGGGGAAGCCATACGATCGCTT
TCGCAGCACTTGCAGCAGCACGGGAGGCCTGGGGGGGTAAGTAGAGTATT
CGGCGATCGAAGTTCGTAAAAGGAATCGCTGGAGAGCCTCATTCAGTCGG
AAATATCGAAAGTAAATCGCACAGCAGTGATTTTGGCAAAATCGACTCTT
TTCGACGTCGTCCCGCGTAAATGCAGCACCACCGTGACGGGATCCAAGAT
ACATCGCTGCAGGGGGAGTTCCGCTGTGAACGCAGTGAGAAATACAGAAA
AGGCCCAGTTGCCGCCGGGTGAGCTTCGCTTCTGGATTGGCGCAGCGTGT
CAGTCGTTTGGTGTGGAGTCGACCTTAGCTTTCTTCCTGTATTTTTTCGC
GCTATTAACTTCACTGAGCCCATTTCATGGCCTCATGCATGGGTCCCAGC
GACGAAATGATTTTTTTCAGTTGATCAG
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig1:3673103..3684380+
>mRNA_P-fluviatile_contig1.299.1 ID=mRNA_P-fluviatile_contig1.299.1|Name=mRNA_P-fluviatile_contig1.299.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=3228bp|location=Sequence derived from alignment at P-fluviatile_contig1:3673103..3684380+ (Porterinema fluviatile SAG_2381)
ATGATTTCATGCGCGCTTCCGTTCGAGACTCCCAAGATGATTTCATGCGC
GCTTCCGTTCGAGACTCCCAAGAGCTGGCGTGATAGGTGGATCAATGGAC
AGGGACGCTGCATTCAGGGGAACAACACCGATGACACACACCACGGCGAC
CTCGCTTACGCCTTCGACTTCAAGTTGCGTCCCGGCACGAAGAGCTGGCG
TGATAGGTGGATCAATGGACAGGGACGCTGCATTCAGGGGAACAACACCG
ATGACACACACCACGGCGACCTCGCTTACGCCTTCGACTTCAAGTTGCGT
CCCGGCACGAAGGTGTTGGCCGCTCGTCACGGAGTGGTGGCGGCATTCTG
CGACCATTTCGGCGAGGGCGGGATGAAGAGCAGCCTGCGGCCGCGAGCAA
ACTTCGTTGCGCTCCGGCACGACGACGGCACCTACACCCGCTACGTCCAT
CTCATGCGCAACGGTGTTCGGGTGAAGCTCGAACAGGTGTTGGCCGCTCG
TCACGGAGTGGTGGCGGCATTCTGCGACCATTTCGGCGAGGGCGGGATGA
AGAGCAGCCTGCGGCCGCGAGCAAACTTCGTTGCGCTCCGGCACGACGAC
GGCACCTACACCCGCTACGTCCATCTCATGCGCAACGGTGTTCGGGTGAA
GCTCGAACAGGTGGTTACGGCGGGCCAGGTCATCGCCCTGAGCGGCAATA
CAGGTTTCACATCCGGCCCTCATCTCCACTTCGACGCTGTCAACGTCCTC
CCGCAAGAGAGTGGTTACGGCGGGCCAGGTCATCGCCCTGAGCGGCAATA
CAGGTTTCACATCCGGCCCTCATCTCCACTTCGACGCTGTCAACGTCCTC
CCGCAAGAGACGTCTGAAGTCTGGATCGTCCATCCGATGGTCATGCCGCT
GCCGTCGGTTGCAGCAATTTTCAGCGGCCCCCTGAACCACGATATGGAGG
ACTTCGCCACGGCACCCCTGCGTCTGAAGTCTGGATCGTCCATCCGATGG
TCATGCCGCTGCCGTCGGTTGCAGCAATTTTCAGCGGCCCCCTGAACCAC
GATATGGAGGACTTCGCCACGGCACCCCTGATATACCTCTCTCCGGAAGC
TCTCCAGTTTTTCTCCTCCCACCTGAACGGCAGCAGCCGCGGCACCAGTG
ACGGCCGTAAATCAGACGCCACCGCTTCCCTGCTTCCGCTGCTGCAAGGC
CACCCTGAGGTGGTAGTGCTGGTCGACAGGGGCGGGGCAGGAGGGAAACA
GACTTTCGTGGAGGCGGCAGCGACGGCCGCCGACGCGGTCGCCTCCGTGC
CGCTCTCGGCCCATCAAGGCTTCCCAAGCGGTGAGGCTACCGAAAACAGG
GACGGCGGGGGACGGCGTCACTGCCGTTGCGTCGGGATCATCGTTGCCAA
CAACCAGCCCGGTCACGAGGTGTTCCAGATGGCGGCCCCGACGTCAACCA
ATGACGGGGAGGGGGTGCGAGCTCCGTTTCCTGTTGTTCAGATATACCTC
TCTCCGGAAGCTCTCCAGTTTTTCTCCTCCCACCTGAACGGCAGCAGCCG
CGGCACCAGTGACGGCCGTAAATCAGACGCCACCGCTTCCCTGCTTCCGC
TGCTGCAAGGCCACCCTGAGGTGGTAGTGCTGGTCGACAGGGGCGGGGCA
GGAGGGAAACAGACTTTCGTGGAGGCGGCAGCGACGGCCGCCGACGCGGT
CGCCTCCGTGCCGCTCTCGGCCCATCAAGGCTTCCCAAGCGGTGAGGCTA
CCGAAAACAGGGACGGCGGGGGACGGCGTCACTGCCGTTGCGTCGGGATC
ATCGTTGCCAACAACCAGCCCGGTCACGAGGTGTTCCAGATGGCGGCCCC
GACGTCAACCAATGACGGGGAGGGGGTGCGAGCTCCGTTTCCTGTTGTTC
AGGTGTCCCAAGAATCTGGTCAGCTGCTGAAGAGTACCCTGGCGCTTTCT
TTCTCGTCACCATCGACACACGCCCCGACGGGAGCTCGGGCAGCGCCGCA
ATCTGGATCAGGGTTTGGCGCGCAAGCTGGGCGGAGTCAGGGCCAACGGT
CTTGGGGCGAGGGCGTTTCAAGCCAGTCATCGATCCAACTCGACGGCGAT
GAAATCAGATGGGGCGGCAAAGACAACGGCGGGGTGGTCGTCAGCCTCGG
AGCTGCCGAGCATTGCCCAACGCACTCGACTCCGGCCGCGGCAACGGGTA
CATTTCTCTGCGAAAGCAACGCGTCTCCCGCTGTGACTTGCTCGTCTAGC
GCGATTTCCGTAGAGGAAGACGACGGAGATTGCAAGGGGCCACATTCCCC
AATAGCGGTGCCAGCGGGGTACGGTTATAGTTGGGTTGGCTCCGAGGTCG
GCTGCAACGGGTTCTACTCTCGTTGCTACCCAAGCAATATGCAGCCGACA
GCAGGAGCGGCGCTAAAGAAGCCACGCCCCGGTAATGTGGAAGCGGAAAG
GTTGGAGGCGCCTTGGCGTCGGGCGGTGGATGAGAACATCGGCGAGTGGA
GAGATGAAAAGTCGCTCTTTCGTACCAAGACGCTGCCGGTGAGCTTCGAG
AGGTCGATTTGGTGAGTGTCCCAAGAATCTGGTCAGCTGCTGAAGAGTAC
CCTGGCGCTTTCTTTCTCGTCACCATCGACACACGCCCCGACGGGAGCTC
GGGCAGCGCCGCAATCTGGATCAGGGTTTGGCGCGCAAGCTGGGCGGAGT
CAGGGCCAACGGTCTTGGGGCGAGGGCGTTTCAAGCCAGTCATCGATCCA
ACTCGACGGCGATGAAATCAGATGGGGCGGCAAAGACAACGGCGGGGTGG
TCGTCAGCCTCGGAGCTGCCGAGCATTGCCCAACGCACTCGACTCCGGCC
GCGGCAACGGGTACATTTCTCTGCGAAAGCAACGCGTCTCCCGCTGTGAC
TTGCTCGTCTAGCGCGATTTCCGTAGAGGAAGACGACGGAGATTGCAAGG
GGCCACATTCCCCAATAGCGGTGCCAGCGGGGTACGGTTATAGTTGGGTT
GGCTCCGAGGTCGGCTGCAACGGGTTCTACTCTCGTTGCTACCCAAGCAA
TATGCAGCCGACAGCAGGAGCGGCGCTAAAGAAGCCACGCCCCGGTAATG
TGGAAGCGGAAAGGTTGGAGGCGCCTTGGCGTCGGGCGGTGGATGAGAAC
ATCGGCGAGTGGAGAGATGAAAAGTCGCTCTTTCGTACCAAGACGCTGCC
GGTGAGCTTCGAGAGGTCGATTTGGTGA
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