Homology
BLAST of mRNA_P-littoralis_Contig135.112.1 vs. uniprot
Match:
A0A6H5KW23_9PHAE (Uncharacterized protein (Fragment) n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KW23_9PHAE)
HSP 1 Score: 182 bits (462), Expect = 2.090e-46
Identity = 319/441 (72.34%), Postives = 340/441 (77.10%), Query Frame = 3
Query: 63 MLAPSPRVPVQWPSQKSIGDGSSNSCCSSIDGDVTAAVDADAGARSVSVPTISVYAAAEQGNMTLMTAYLSGGGNTNMRSKEGYSILHLAAMRNQGAMVELLLGNGADPNVHDNGEGLTPLMWAAQLGHVGVVTRLLREGADVEQEDREXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVLVELLRARAPGRXXXXXXXXXXXXXXXXXXXXXDGEHASSVMESAW----------GDGXXXXXXXXXXXXXXNTSSGFATSSSGLLPACEVVDIRNHFQATPLHRAAAKGHAEVVAMLVQNGADIXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXPSTKAQGGVTPLIAARKPE 1355
MLAPSPR+PV+WPSQ S+ SS+ D A S SVYAAAEQG++ M +L+GGGN N RSKEGYSILHLAAMR+Q AMVELLL GADP+VHDNGEGLTPLMWAAQLGH V L+ GAD+EQE XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX ELLR R+ XXXXXXXXXXXXXXX +G A + G+ XXXXXXXXXXX G + S + LP+ EVVDIRNHF ATPLHRAAAKGHAEVV MLVQNGA +XXXXXXXXXXXXXXXXXXXXXXXXXXXXXX P+ KAQ GVTPLIAARKPE
Sbjct: 1 MLAPSPRIPVRWPSQLSLCSNSSSR---------------DGLAASSPAAVSSVYAAAEQGDLARMKGFLAGGGNVNKRSKEGYSILHLAAMRDQQAMVELLLKEGADPDVHDNGEGLTPLMWAAQLGHAEVANSLIEGGADMEQEXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXELLRQRSGRARARGXXXXXXXXXXXXXXXFWEGGLARAXXXXXXXXXXXXXXNVGERRGTXXXXXXXXXXXXXXXGGSRSVAAPLPS-EVVDIRNHFHATPLHRAAAKGHAEVVTMLVQNGASVXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXADPAIKAQQGVTPLIAARKPE 425
BLAST of mRNA_P-littoralis_Contig135.112.1 vs. uniprot
Match:
D8LSH4_ECTSI (Ankyrin repeat protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LSH4_ECTSI)
HSP 1 Score: 180 bits (457), Expect = 1.100e-43
Identity = 312/463 (67.39%), Postives = 331/463 (71.49%), Query Frame = 3
Query: 63 MLAPSPRVPVQWPSQKSIGDGSSNSCCSSIDGDVTAAVDADAGARSVSVPTISVYAAAEQGNMTLMTAYLSGGGNTNMRSK------EGYSILHLAAMRNQGAMVELLLGNGADPNVHDNGEGLTPLMWAAQLGHVGVVTRLLREGADVEQEDREXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXVLVELLRARAPGRXXXXXXXXXXXXXXXXXXXXXDGEHASSVMESAWGDGXXXXXXXXXXXXXXN--------------------------TSSGFATSSSGLLPACEVVDIRNHFQATPLHRAAAKGHAEVVAMLVQNGADIXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXPSTKAQGGVTPLIAARKPE 1355
MLAPSPR+PV+WPSQ S+ SS+ D A S SVYAAAEQG++ M +L GGGN N RSK EGYSILHLAAMR+Q MVELLL GADP+VHDNGEGLTPLMWAAQLGH V L+ GAD+EQEDR XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX ELLR R+ GR XXXXXXXX G+ S + AWG GXXXXX G + S + LP+ EVVDIRNHF ATPLHRAAAKGHAEVV MLVQNGA +XXXXXXXXXXXXXXXXXXXXXXXXXXXXXX P+ KAQ GVTPLIAARKPE
Sbjct: 1 MLAPSPRIPVRWPSQLSLCSNSSSR---------------DGLAASSPAAVFSVYAAAEQGDLARMKGFLVGGGNVNKRSKDQSSYKEGYSILHLAAMRDQQGMVELLLKEGADPDVHDNGEGLTPLMWAAQLGHTEVANSLIEGGADMEQEDRXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXELLRQRS-GRARARGXXXXXXXXDDGSG----GDFWESGLARAWGGGXXXXXGSGNVGERGGXXXXXXXXXXXXXXXXXFKXXXXXXXVGRGASRSVAAPLPS-EVVDIRNHFHATPLHRAAAKGHAEVVTMLVQNGASVXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXADPAIKAQQGVTPLIAARKPE 442
BLAST of mRNA_P-littoralis_Contig135.112.1 vs. uniprot
Match:
A0A851TVC2_9PASS (ANKE1 protein (Fragment) n=1 Tax=Elachura formosa TaxID=1463973 RepID=A0A851TVC2_9PASS)
HSP 1 Score: 65.5 bits (158), Expect = 3.210e-7
Identity = 34/69 (49.28%), Postives = 44/69 (63.77%), Query Frame = 3
Query: 303 KEGYSILHLAAMRNQGAMVELLLGNGADPNVHDNGEGLTPLMWAAQLGHVGVVTRLLREGADVEQEDRE 509
KEGYS++HLA+M+N M LL +GA PNVHD G TP M AA+LGH ++ L + AD+ D E
Sbjct: 46 KEGYSVIHLASMKNDIEMCRFLLEHGAHPNVHDK-MGCTPAMKAAELGHEVILELLAKANADMTAVDNE 113
BLAST of mRNA_P-littoralis_Contig135.112.1 vs. uniprot
Match:
A0A836FNZ4_9TRYP (Uncharacterized protein n=3 Tax=Mundinia TaxID=2249475 RepID=A0A836FNZ4_9TRYP)
HSP 1 Score: 61.2 bits (147), Expect = 3.900e-7
Identity = 38/97 (39.18%), Postives = 50/97 (51.55%), Query Frame = 3
Query: 210 PTISVYAAAEQGNMTLMTAYLSGGGNTNMRSKEGYSILHLAAMRNQGAMVELLLGNGADPNVH---DNGEGLTPLMWAAQLGHVGVVTRLLREGADV 491
P S+Y A +GN+ Y+ GG N + ++LH AA A V+ +L NV +GEG TPL +AA GH VVT LL EGA+V
Sbjct: 17 PAESIYDACRRGNVERFIGYVEKGGCLNECDDQKLTLLHHAAFSGNNAFVKAILARSGIQNVAIDAADGEGWTPLHYAADRGHADVVTALLDEGANV 113
BLAST of mRNA_P-littoralis_Contig135.112.1 vs. uniprot
Match:
A0A2P8ZN57_BLAGE (Uncharacterized protein n=1 Tax=Blattella germanica TaxID=6973 RepID=A0A2P8ZN57_BLAGE)
HSP 1 Score: 64.7 bits (156), Expect = 4.660e-7
Identity = 33/91 (36.26%), Postives = 50/91 (54.95%), Query Frame = 3
Query: 219 SVYAAAEQGNMTLMTAYLSGGGNTNMRSKEGYSILHLAAMRNQGAMVELLLGNGADPNVHDNGEGLTPLMWAAQLGHVGVVTRLLREGADV 491
S++AA N++ + + G + N G+S LH A + N+ ++E+L+GNGADPNV G TP+ WA LG + V L GA +
Sbjct: 14 SIHAAVRLKNLSELYKLIEGRVDLNAYDDHGFSSLHYAVIENRPEIIEILIGNGADPNVRQLGTNDTPVYWAVALGRLDCVRTLALSGASL 104
BLAST of mRNA_P-littoralis_Contig135.112.1 vs. uniprot
Match:
UPI000A2A94F0 (ankyrin repeat domain-containing protein 39 n=1 Tax=Exaiptasia diaphana TaxID=2652724 RepID=UPI000A2A94F0)
HSP 1 Score: 60.8 bits (146), Expect = 5.730e-7
Identity = 32/89 (35.96%), Postives = 51/89 (57.30%), Query Frame = 3
Query: 222 VYAAAEQGNMTLMTAYLSGGGNTNMRSKEGYSILHLAAMRNQGAMVELLLGNGADPNVHDNGEGLTPLMWAAQLGHVGVVTRLLREGAD 488
++ +A G++ + +YL GG+ N GY+ LH A+ + + ++LL GA PNV +TPL AA GH+G+VT LL+ A+
Sbjct: 28 IWTSAMNGDLGRIESYLEKGGDPNATDTSGYTALHYASRNGKFKVCQVLLSQGACPNVQTRSGXVTPLHRAAYSGHLGIVTLLLQYQAN 116
BLAST of mRNA_P-littoralis_Contig135.112.1 vs. uniprot
Match:
A0A2S4PVM5_9PEZI (Uncharacterized protein n=1 Tax=Erysiphe pulchra TaxID=225359 RepID=A0A2S4PVM5_9PEZI)
HSP 1 Score: 62.0 bits (149), Expect = 3.440e-6
Identity = 34/74 (45.95%), Postives = 41/74 (55.41%), Query Frame = 3
Query: 267 YLSGGGNTNMRSKEGYSILHLAAMRNQGAMVELLLGNGADPNVHDNGEGLTPLMWAAQLGHVGVVTRLLREGAD 488
Y +G N++ KEG + LH AA+ NQ AM E L+G G D N TP MWAAQ H +V LL GAD
Sbjct: 70 YSNGSFNSSYCDKEGITPLHWAAINNQYAMCEFLIGEGVDVNKKGGESVATPAMWAAQRCHYYIVNLLLENGAD 143
BLAST of mRNA_P-littoralis_Contig135.112.1 vs. uniprot
Match:
A0A0B1PB22_UNCNE (Palmitoyltransferase n=1 Tax=Uncinula necator TaxID=52586 RepID=A0A0B1PB22_UNCNE)
HSP 1 Score: 60.5 bits (145), Expect = 1.170e-5
Identity = 34/74 (45.95%), Postives = 40/74 (54.05%), Query Frame = 3
Query: 267 YLSGGGNTNMRSKEGYSILHLAAMRNQGAMVELLLGNGADPNVHDNGEGLTPLMWAAQLGHVGVVTRLLREGAD 488
YL G + + +EG + LH AA+ NQ AM E LLG G D N TP MWAAQ H +V LL GAD
Sbjct: 70 YLRGSFDPSFCDEEGITPLHWAAINNQYAMCEFLLGEGVDVNKKGGESVATPAMWAAQRCHYYIVNLLLENGAD 143
BLAST of mRNA_P-littoralis_Contig135.112.1 vs. uniprot
Match:
A0A7W7WTR7_9PSEU (Ketosteroid isomerase-like protein n=2 Tax=Saccharothrix violaceirubra TaxID=413306 RepID=A0A7W7WTR7_9PSEU)
HSP 1 Score: 58.9 bits (141), Expect = 1.210e-5
Identity = 39/89 (43.82%), Postives = 44/89 (49.44%), Query Frame = 3
Query: 240 QGNMTLMTAYLSGGGNTNMRSKEGYSILHLAAMRNQGAMVELLLGNGADPNVHDNGEGLTPLMWAAQLGHVGVVTRLLREGADVEQEDR 506
QG +T Y N + + L+ AA R GA V LL G DPN HD G GLTPLM A LG VV LL GADV +R
Sbjct: 113 QGKITHWKVYFDPNTEVNAFNADREQRLYAAAARGDGAEVRDLLRFGGDPNRHDVGSGLTPLMAAVALGADTVVRTLLTGGADVLVTER 201
BLAST of mRNA_P-littoralis_Contig135.112.1 vs. uniprot
Match:
UPI0019AA2955 (Ankyrin repeat domain-containing protein n=1 Tax=Bryobacteraceae bacterium TaxID=2212468 RepID=UPI0019AA2955)
HSP 1 Score: 53.9 bits (128), Expect = 3.530e-5
Identity = 34/90 (37.78%), Postives = 51/90 (56.67%), Query Frame = 3
Query: 222 VYAAAEQGNMTLMTAYLSGGGNTNMRSKEGYSILHLAAMRNQGAMVELLLGNGADPNVHDNGEGLTPLMWAAQLGHVGVVTRLLREGADV 491
++ AA + ++ YL G+ N R +G+ +L LA+ V+LLL GA+P+V D G G TPLM A+ G++ + RLL GA V
Sbjct: 24 LFEAARNNDTGVLKKYLEAKGDPNRRDPKGHPLLTLASYNGSLEAVDLLLKQGAEPDVQD-GMG-TPLMAASFRGYLAIAKRLLAAGAQV 111
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-littoralis_Contig135.112.1
>prot_P-littoralis_Contig135.112.1 ID=prot_P-littoralis_Contig135.112.1|Name=mRNA_P-littoralis_Contig135.112.1|organism=Pylaiella littoralis U1_48|type=polypeptide|length=794bp
MLHRRQMRERGRQFVMLAPSPRVPVQWPSQKSIGDGSSNSCCSSIDGDVT
AAVDADAGARSVSVPTISVYAAAEQGNMTLMTAYLSGGGNTNMRSKEGYS
ILHLAAMRNQGAMVELLLGNGADPNVHDNGEGLTPLMWAAQLGHVGVVTR
LLREGADVEQEDREDLTALHWAARLGQEKVVLVLLGHSADVEAIDYDGNT
PLMWAVRGGHRTCVGHLLDHGAATTTADENGNTALHFSCQTGNAGITSDL
LDWGALATAQDYWQFTPFHRACSQGHGNVLVELLRARAPGRGGGGGERTG
GDGEGEGEGEGEDGEHASSVMESAWGDGGGGGDGGGGGGSSRNTSSGFAT
SSSGLLPACEVVDIRNHFQATPLHRAAAKGHAEVVAMLVQNGADIDARDG
FFYTPLHLACVNGAVASVDVLLRAGADPSTKAQGGVTPLIAARKPEATAV
SGAAAAAAASTARGRSISRLPREKEAKMKKKKKASPRPRRISTGSVLEKI
FNSSSSPYQPLKEEEEEEKEVAVVTAVAADADANVDMDAIAAPLFAVDLM
GTVPDGTGDSDGLTLASVAGGSDGAPSALGAAAAETEVRMTPVEIIPEIP
LHMATRFTQQSPRRLSATTSTSTATMVEPGNTPETLAVELPQFMEGRGAM
KTAQDDPFSTPAAISKAEAAAVGPGGGGGGGGGRDGSDAAAVATTRRATT
ITPAVTTVTRVGGGGGRAEETAAVPTRTPGRAKKRRAKSLPPSSRKDRRV
RLPRRCLEGPAAIIRTLTLNDDGGDGEARALSRWLQGATASEAA
back to topmRNA from alignment at P-littoralis_Contig135:441279..454170+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-littoralis_Contig135.112.1 ID=mRNA_P-littoralis_Contig135.112.1|Name=mRNA_P-littoralis_Contig135.112.1|organism=Pylaiella littoralis U1_48|type=mRNA|length=12892bp|location=Sequence derived from alignment at P-littoralis_Contig135:441279..454170+ (Pylaiella littoralis U1_48)
CGGAGACCCGCCACTGCATGCTGCACAGGAGACAAATGAGGGAGAGAGGT
CGACAGTTCGTGATGCTTGCCCCTTCCCCCAGGGTGCCAGTACAATGGCC
GTCGCAGAAATCTATTGGCGACGGTAGTAGTAATAGCTGCTGTAGCTCGA
TAGACGGGGATGTTACTGCTGCCGTGGATGCTGATGCTGGTGCTCGTTCT
GTTTCCGTTCCAACAATCAGCGTGTATGCTGCGGCGGAACAAGGCAATAT
GACTCTGATGACGGCGTACTTGTCTGGAGGAGGCAACACAAACATGAGGA
GCAAGGTGCGTTTGTGCGTGCGTGTGTACGTGTGTGTGTACGTGCGTGTA
CCACTGCTGTATTCTGTGCTTTTTGTTTCAATCGGGACGGATGATAGGCC
TCTTCCCCTTCAACTCTGTCACACTTCAATCGGAGCCTGCATGTTTGTAT
TTGTTTGTTGGTTTTGTTCACAAGTCAAATCACCACCATGCACCAGTTCA
CTTGCGGATTGCTCGCAATCGCAATTCCGCGTCCGCTCACAGCAGACTCC
GTTGATATCCGCGTACAGCGGCAGTGCATTTCAATCCTCTAAGATGATGC
TGCTACTACTCCTCTTTTGTTCCTGATACTTCTTGCGTCCTCTATATTTT
TTCAGCCTTATGCAACTACCTGTATACCTGGTACATCTGTACTCGTATGC
AAACCCGGTATAAGATACAATCAACTGCAGGTACGTACAGGTATAAAAAA
TAAAAAATATTTTGTTATGAGTTTCCTTTTCTTTCCGTTTTCATATTCCG
AGGTTATATATATTGTTGTTTTTTTTCGGTCTGATATAACGGCACGGTTC
GGTGCAATGTCGGATGAGTCATAACATAGACACAGAGACAAGGAACTACT
ATTTGTTGTACTGACTGCTGTATAATACTTCGAAGTACTCCGGAGTACTC
GAAGTACGAGAGATCGAAGTTCGTTTCTATACGTACCCTTCTGTAATCTT
CTCCAGGATGAAGAAGAGAGGCGAATACGTCATGTACTCATCGTCTGTTT
GGCCAAAGGAAATAAACAAACAGGAGACATCAATCAATTATCTGATTTGA
CTGTGGGTGATCATAGTCCATATATTTTATTTTTTATTTTTTCCTCCTAG
CACGATATGTGCCTGGTTTGTGACCACGGGCTAGACTGCGGCGGTAGTGA
GCTAATGTGAGAATCAACAACAATGTGCTCGTTCGGATCGCAAGTATGTA
GATTAGCAACGAACCAACGAAGAGTGATGGATCCACAACACTTGTCGGGT
GAAGTACCGTTCGTTGCAGCTCGTCTCCTCGGCACGTGTTATTTTTTTGC
GGGACAGATATCATTTTGGATAGGATACCACGATCCACGATCTACTAATC
AGAGGCCTCTATCTACCACGAGCCACGATCTATCGATTAGTCAATATTAA
TATTCCACAATTCACGAGCCACCGCACGAGCCACGAAATTGCGCCGCACC
TACCGCACACACATCGTATATCTTTGTACAGCAGTACTGATGTACATGCA
TGAAAGCACGCTACAGAGTGCAGTATGCCATTCAGAAGAATAGTCAGTGG
TTCAGGCCGCCCTGCAAGGGCTGCAAGGGGTGAAGACAGTAGTCAAATTA
ATCCCGGTATCTGGCGCCCACAAGACTTGGGTCTTGCCCTCGGATGGTCG
GTACGGAGTATAAATACCCCGTGGGAGACTTTAGCAGAAGCGGCGTCGGC
AGCAGGTGAAAAATAATGATACTGTAGGAGCATGTCATACAATAGCAGCC
GCGTACATGGCGAGGGCACCAACAACAGCATTTTCATCTTTTGTGCTGCT
AATGCTTTACGCTAGCTGCGTGGTTCGCGCTGTGCTCACAATGGGCCTTT
TTTCTTTTCTTTTTTCCTGACAGAAGGGCTTTATGCTGTTAGACTTAATC
CAGATCATTTCCCTGGATAAAGCCTGCACAAGGGTTCGCGGAGGACACTG
ACGCACGGATGGCGTTTTTTGTCAGTTCACCCTGTCTGACTATGATATTT
ACTTTTGCCTAAACGTATCGTACCGTCTGGTTTCTGGTGAAAGAAAGAGG
GGTGAACGGTGATGCGTGCTTGTTCCCTGCACCCCGAATACAAACAATGA
AGAGAGAACACAAACAGCGGCAGTACTTCGTGTGATACGCCCACCATTGC
TGCTGCTACTTGCTGCTTCTGCTTCTGCTTCTGCTGCTGCTGCTTCTGCT
GCTACTGCTCCCGCTGCTACTGCTCCCGCTGCTGCTGCTTGCTTTTCGAA
ATAAAAAATACAACAGTCATAAAAAAATCATATTTCTACGGTATCTACGA
GTATATTCTGTTGTTTTCTCACTACTGCTGTAGATATCATATTCATCAAC
GATTCATCAACGATGATTCATTGCGCGGTAGGTGCTGTTATTACTGTACA
CCGCAGCAATGACTTCACGAGGAATCCGACGCGAAAAGCCTCACTAGGAA
CAGACACAAACTCGCGGAGGTAATAGGAGCCAAACTTTTAATAACTGATG
CTGCTGGTCACAGGCAGCCCGTCGGTTTTCTCATTCTTTTTTGTGGGCCT
AGCCCGCATTCACCCGAATGATCTTCACAGCTGTCCACGGACCTTGAAAA
ATAAAACAATGCCGTTGCAGCTCCTCCTGAGGGTCATAAGGCACTTTTTA
CTACTACGCACTATAGTTTCTTCCACCCACAATAAAACGAACGCGAAGCG
GGAGAGAACAGAGAGAGAGAGAGGATATCCTCCGCTGTACGGCGGTATTT
CTGTGTCAAGAAGGGATTATTTGTCATTGAAGCCGTCTCCAATTGGAAAC
GAATCTACTTTTCTATAGTATGCATACGTCATAAAAGGCGCCTTCGAAGG
AAACCCACCGCGGCAGCAGGCAGCACTGCCGGCACTGCTGCTCTGACTTG
ACTGCAACTGCTGCAGAGCACCAAAACGGCGGTTTCGCATACTGAAATGT
ACGTACGTGCCTGGTTTCGAACAGCACTACAGTCTGGACGCCAGTCTACA
ATCCTCGGCATGACGCGATGATTTTGGGCGCACTAGCCAGGGTTAACTCA
CAGGAGGAGGAAGATCGTTGCGCAGGAAAAAAAAGAGGGTCAACTCGCGG
GAGGAGGAAGATCGTTGTGCAGAAAAAAAAAAAGACGTGCTGCAGGCAGA
GGCACGTGTTGTGTGTGTATCGCATGACCGAATGTATGTGGTCTTCGAAA
ATTAGAAAGTTTTCGCACACACCGGACGGATCTATGATCTAGATCACTCA
GATGATTCAGATCACTATGCATGTGTGTTGTGTTGTCGTCTTCACATGAG
AAAGTGTTAAGAAAGCACGATGACCACTGATATGTGAGTCAGCCATCGTG
CTTTCTCAACAAAAGCAAAATCCGGATTTCGAATCTCACCGTGGCGACGG
ACTCCGGCTTTAGCTTTTGTCAAGAAAGTGCGATGACCACTGAACTATCA
GTCAGGAGTTCCGATCTCTACTCAGTACTTTCTGATGTTGGATGTCCGTA
AAGACACATCTGATTCATCCGATAGGAGATGCTTTCTGTGGTCACAGGCT
ACCTGCTACCCAAAACAATAGGGTCAATGACGGTGTGTGCGTTTTCATCC
CATTTATTCTAGGCACAAGTCTACACCTTTCGGTATGAAAAGGGTGCACT
AGCCGGGGTCACACAGGAGGAAGGTCACACAGGATATATAAACGAAGTAT
ATACCTTTTTCCTCCGCCCGCCCTCTGCGGTGCTTGTTTTTTTTTCCTTT
CAGCTTTTAATTGCGAGAAGGGTTCAACCGCTCCTTACCCTCGTCGACTT
CAGTCGAATGCGTTTGTATACCCGCGACACAGTCGTTTTTCAGTCCCAAA
AACTTTTGTGAGAAAGCTAGCTACCCATAGGGACGGAAAATCCGACAACA
TGAAACGGATTCCGAAGGATCACACAACGATTCAAGCTCAAAACAAGAGA
AGTAAAAAGCAGTAGTAGAGTAGTCAACCTAAAATGAAATAAAGCAAATG
AGTTAGTTGCCAATCGCCGAGCTCAGGCATCGAAAGGATGCAACTCCAAC
CGACTAAGCGAAAAAAGATCAAAATATACTTCGAAGTACCAATTTACTCA
TGTACGAAGATGAAAGCAAAACAGGAAGGACAAGAGCAAAATATTACTTC
GAAGTGTGGTCATGCTTCGGAATCGGAATCGGAATCGGAATCGGAATCGA
GATCGCAATCGAAATCGTAATGCGCGACACGCATCACTCAGGAGGCGGTA
GCAGGGAGGGGGTAGTCGCAATGAGACGGGGGGGGGTGATCATCAGCAAA
AGACTGCGTGCGATCACACCAGTCAGCCAATCTGGTGCATGCCGTGTTAC
GCAGCCGTTCCATCTTTTCCCCCTTGCTCTCCTCTACCGCCGTGTTGTCA
AGCCGTTCTAGATATTTCGACGCTTGCTCCCCCGAGACTCCCCCTCCTCT
CGCTTCTTCTCCTCCTGGGTGTTCTTTGTCGGTTAAACTGGATTGTGTCC
TGGTCTCATTTTCCGGCTCGTTTCTTGCTTTCCTCCTCCTCATCCTCGTG
CCAGGCGGTCGTGAACCTCACAGCCCGTTCGCCAACCCCCGCGCATACCA
ACCGCACTCCATTGCTTCTCGTTTTCGGCGTCTGTCCACCCACGGGGCTG
TGTCAATACTGTACCAAACCGTGTACATTGTTAGTAGCTTGAAGAATGTC
ACAGATCATCTGATCACTCAGACCACTTCGCCGGAAAACTGTACCACTGT
AGTTGGAAAATGTCACAGACCGTCAGATCATTCAGAAAACCAGGTCGAGA
ATGCCATGGATCCTCAGATCATTCATATCACCGGTTGGAAAATTGTCACA
GGCCGTCCGATAAGTCAGATCACCGGTTGGAAATCATGTGACGGATCCAA
TGTTGCAGATCCTCCAGATCACGCGGATCACAGCAGCACAGATAACGATC
TATCTGTGCCGCAGATCAATGCACAGATCAACCAACCAGGAAGAAAATGA
GAGTACCTTGTGCTTATCGGTGTGTTGTCGGTACGCCCGCGTTTTAATTT
CATCGTGTGCAGGTTAACAAAACTCGTATTCCACGTCATGATATGCACAG
CCCCCCCCCTCACTAACATCTACAGAGGGAAGTATGATAGCCTGGCCGCA
ACTTGGGATTTCGCAAAACAATCTGTCATAACATCCAAGTCATCATCCAA
TTCATCATCCAGTTCATCCAGTATGCGAACAGGCAGGTCGAGCGTAGGTT
CACATTTTGAGCCGACGTCAATGTAAAGTGGTATGTTGGATGGAATTGAC
AAGAGCGCTGCTGAGAAGCGCCCGCAGGATCGAAGGCGATAATCTCCATC
TTGTTTTGGTACACTTCGAGATTAGGGTACCCTCCTGTGGGGGGAGACTT
GTGTGACAACAACCAGTACAGCCGTAGCTTTCGCAGTCCTAATTACAGCA
CAGTCGCACCTTGTGTGTTCTGTTTTGCAGGAACCAACGTGCGGAACTCC
CTCCCCCTTTTTTTGGTCGTATTTCCCGTGTACTGCTGTAGTGCGTGTCT
TCCATCATGTAGTCGACTTTGGTAAGCCTACAACAAACAGCATCGCTCTT
TGTGACATTTGACACATGTCTTTCTCCTTTACCCCTCACTCTTTACCGTT
TACCGTTTACCGTTTCCCGCACCCTCGCTTATTGCAGGAGGGGTACAGCA
TCCTGCACCTGGCAGCCATGAGGAATCAAGGGGCAATGGGTGAGTGAGCG
AGACCAATCAATCGGCACACACATATCATACAATGAGGGAAAACGCTGTA
CCTCCCAAGGGGGGGCGGGGGGGAAGGCACACACACGGAGAGACGCGCCG
TATCAAAAGGGGTTTGCGCCTCCCCTCCCCTTCCCTTTCCCCCTGGGGCC
CCGGGGCCGAGCTCGACACGATACCCCAGCTGTGCGCTTTTACCTCCACA
GCAATAAACTTCTTTTTTTTTTTCAGTGGGGAGAAAAAAAGGGTGAATAT
GTGCTCCGAACTATCAGGTGCCCAATATGCGAGCGTGGGAAAAAAGGAGA
AAAAAAGGAGAAAAAACAAAATGGCATTTTTACTAGTATGATATATCGTC
TATCTGGTCTCAACAGAGAGGGCTTGCCAACAGCCGAAAACGACCATGAT
ATCATACTTGGGACGTATTGTGATGCTCGTTGGCGGTTGGCGGCGGCACC
CCTCTTTCGTTTGATTCCATGCGGACACCCGGTGCTCTTTGTGGTAATAC
TACACGTTTTTTTTTTTTAACCTGGGTCCAGCGGAGATTCCCCCGCCCCG
TGTTGGTTCGTTTTATCGATCGTAGAACACTTACGGTGCACGGTATGCTC
ACACAACAGTGGGACCAAAGGGATAACGGCAGCAATAACAACAACATCAT
CGACAACAAGAGGAAAAACAACAACAGGATGAGGAGGAGGAGGAGGCGGT
GGATTTTGTGCACGAGAGAGACAGAGAGAGAGAGAGAGCAGGGGGGGAGA
GGGAGGGCTGCAGAAGCGTCCATGTGCCCATACTGCTGTCCGGATTACCC
CCGTGTGTGTGCCTTTTTTATTCTGGAGTATCTAGTTTCCCCACCTACCA
GGGGGTCGTACCATGTATGTCGTGACACGAAGGTCTAGGTGCCTAGCTCT
ACTCCCCTGTAACACACTATCGCTATATTTGCGAGGCTACACACACGCAC
ACACGTGTTTTGAATAGCAACGCGAAGGCCATCGACAGAGTGAATGAATG
AAGAACGGGTCATTACTTTTCTTTTTTTTTTCGCCTTTCCTGCGCTGCTG
CTGCTGCTGCTGCTGTTGTGCTGTTTTTCGCTTCGTCGAGCGCGCGTTCC
GACACGAAAGGTTTTGCACTAACGAAAATGAGGCTTGCTTTTTCTGTGAT
TCTGACGTCGATGTCTTTTGCTGTATCATATTGTATCACATTTGCTTCTC
GTGACAGTGGAGCTGCTGCTCGGGAACGGCGCGGACCCAAACGTTCACGA
CAATGGCGAAGGGCTCACTCCACTCATGTGGGCCGCGCAGCTTGGGTGAG
GACGAGGACGTATATCATGCGTTTCATAGCTCCGCAGAAAAGTACGTACA
GAGTTTGCAGTGTCTACACTTGACGCGTTCCACACGTTCACCGTGATTGT
TGGACATCGCACATCATAACACAGTTACTTGCTTGAGAAGTGGTGTATGA
TGGACACCGCACATCATGACAGAGTTACTTGCTGGAGAGAAGCAGCAGAA
GTGGTAGAATTAGTAGTAGTGGTAAAAGTAGTAGTAGTGGTAGAAGTAGT
AGTGGTGGTAAAAGTAGTAGTGGTGGTAAAAGAAGTAGTCGTGGTAAAAG
TAGTAGTGGTGGTAAAAGTAGTAGTGGTGGTAAAAGAAGTAGTGGTGGTA
AAAGTAGTAGTGGTGGTAAAAGTAGTAGTAGTGGTAAAAGAAGTAGTAGT
GGTAAAAGAAGTAGTAGTGGTAAAAGTAGTAGTGGTGGTAAAAGAAGTAG
TATTGGTAAAAGTAGTAGTGGTGGTAAAAGTAGTAGTAGTGGTAAAAGAA
GTAGTAGTGGTAAAAGTAGTAGTAGTGGTAAAAGTAGTAGTGGTGGTAAA
AGAAGTAGTAGTGGTAAAAGTAGTAGTGGTGGTAAAAGAAGTAGTGGTGG
TAAAAGTAGTAGTAGTGGTAAAAGTAGTAGTGGTGGTAAAAGAAGTAGTG
GTGGTAAAAGTAGTAGTAGTGGTAAAAGTAGTAGTGGTGGTAAAAGTAGT
AGTAGTGGTAAAAGAAGTAGTGGTGGTAAAAGTAGTAGTAGTGGTAAAAG
TAGTAGTGGTGGTAAAAGTAGTAGTAGTGGTAAAAAGTAGTAGTGTAAAA
GTGGTAAAAGTAGTAGTAGTGGTAAAAGTAGTAGTGGTGGTAAAAGTAGT
AGTAGTGGTAAAAGTAGTAGTAAAAGTAGTAGTTGTGGTAAAAGTAGTAG
TAGTGGTAAAAGTAGTAGTGGTGGTAAAAGTAGTAGTAGTGGTAAAAGAA
GTAGTGGTGGTAAAAGTAGTAGTGGTGGTAAAAGTAGTAGTAGTGGTAAA
AGTAGTAGTAGTGGTAAAAGTAGTAGTGGTAAAAGTAGTAGTGGTGGTAA
AAGTAGTAGTAGTGGTAAAAGAAGTAGTGGTGGTAAAAGTAGTAGTGGTG
GTAAAAGAAGTAGTAGTGGTAAAAGTAGTAGTAGTGGTAAAAGTAGTAGT
AGTGGTAAAAGTAGTAGTGGTGGTAAAAGTAGTAGTAGTGGTAAAAGTAG
TAGTGGTAAAAGTAGTAGTGGTGGTAAAAGTAGTAGTAGTGGTAAAAGAA
GTAGTGGTGGTAAAAGTAGTAGTGGTGGTAAAAGTAGTAGTAGTGGTAAA
AGTAGTAGCAGTGGTAAAAGAAGTAGTGGTGGTAAAAGTAGTAGGTAGAA
GCAGGAGAACGTCAGCTTGTAAAAACTGATCGAAACATGCAACTACTTGT
ACGCACCACATGGTGGCCGTTATCTTTCCACCAGGCACGTAGGGGTTGTG
ACCCGTCTCCTTCGGGAGGGTGCCGACGTGGAGCAGGAAGACAGAGAAGA
CTTGACGGCGCTCCACTGGGCCGCCAGGCTCGGCCAGGAGAAGGTCGTGC
TTGTGCTCCTGGGCCACTCGGCAGACGTGGAGGTAAGGACTTGAGGTATT
GCTTCTGATCGTGTTGTTGTTGTTGTTGTTGTTGTTGTTGATGTTGGTGG
TGGTGCTCCTGTTGCTGCTGCTGTAGCTGAGTTGCGTGCTACGCTTTTTA
TTTATTTAACAGGCGATAGACTACGACGGCAACACCCCTCTCATGTGGGC
CGTCCGCGGGGGGCACCGCACGTGCGTCGGACACCTCCTCGACCACGGAG
CGGCCACCACCACGGCCGACGAGAACGGCAACACAGCGCTCCACTTCTCG
TGTCAGGTGCGGTTTAAGATTGTGTATTTTTGTTTCTTCTTCTTTCGACA
GCTGTGGTGGGAGTTTGTTGATGTGCTGCTCTTGTGCAGTTCGTGCACGG
GAGCCGGGTTGTGATGTACGGGTGTGGTGTGGTGCATGCGGCGGCGGCGG
CGTAGTCCGGTGCTTCTCGTGGTGTCAAGACGTATCATCATCCGACGTAC
TGCCGTCCTGTAAAATGTGGTGCGATCATCCCTGTACAAAGGGGTTGGTA
GGCGGTATGAAACCAAGGGTGTGTACTCTTGATTGATTGTCGAGTTACAG
CACACTGTGTACGCGTGCAGTAAGGGGCATAGGATACTCGGTCTACAGCA
GTTCAGCTCAAACAAGACACCTCCCATCCTTTTTTCTTTGACTAAGAAGA
AAGAAAGGGAAAGTTATATTTGATTTGCAGTAATTATTTCAAAATGAAAT
TATAAGGAAAAGAAAACGCAATTTTATTAACAAAAAACTTACTTAAAGAT
TTAACCCCCCCCCCCCGTCGTTCTCTTCCTACTCCTCCCCCCTCCCTCCT
TTGCTCTCTTGCTGCAGACGGGCAACGCCGGGATAACTTCCGACCTTCTG
GATTGGGGGGCGCTGGCCACCGCGCAAGATTACTGGCAGGTGGGTCACGC
AGCGGCCGTCACAGTCAGAAGTAGAAGCAGGAGCAGGAGCAGGAGCAGAA
GCAGAAGCAGAAGCAGAAGCGACAGCCGAAAGACCGGCTGTTTGGAAAAA
ATCGCAACCTTCATTACGGATTTACACACGCCGACCTTTCGCGCACCCTT
CGCAGCTGACCCCCGCTCGTACGCGCGCTCTCTCTTTGTTCTGCCACATC
GTGGGCTTTGTGATTTTCGTGGGAACTTGGAATCGTTCGCTTTGATTTTT
TGGTGGGAACTTTGAACTGCCGGGTCATCATCCAGTTCACTCCTTTCCAT
CGGGCATGCTCCCAAGGACACGGCAACGTTCTCGTCGAGCTTCTCAGGGC
TAGAGCGCCGGGCAGGGGCGGAGGCGGAGGCGAACGCACCGGTGGTGATG
GTGAGGGCGAGGGCGAGGGCGAGGGCGAAGACGGGGAGCACGCCAGCAGT
GTCATGGAAAGTGCGTGGGGTGATGGTGGTGGTGGTGGTGATGGTGGTGG
TGGTGGTGGCAGCAGCAGGAACACAAGCAGCGGCTTCGCCACATCCTCGT
CTGGGCTGCTGCCTGCATGCGAGGTCGTGGACATCCGCAATCACTTTCAG
GCGACGCCGCTGCATCGAGCGGCCGCCAAGGGACACGCAGAGGTATGTAT
GGTAAGGGTGGCTGGCTTGCTCGGTGGTGTGTACTCGTATTGGGATGATG
GCTCTGTCGACTTCTACCATACCTTGACTTTTTTTTTTTTTTGCAATGGA
CAGACGGCCAATCGTCTCCTGTGTATCTTATCAGACCAACCTCCTTCACC
CGGCATTATGGGAGGTGCAGTCCTCCAAGGAGATATGATGGTGGTAGGAT
GGTGATGGTGCTGTTGCTGTGTCGCGCCGTTTTGTGCCCCGTGCGTGTTT
TACGGCCGCGCGTTTTCGTTGGCAAAAAAATTGTGCGGTCGCACGCGGGG
GATGTGTGTGTGTGTCTGTGTCTAAAGTTTTGTGGTGATTTTGTGGTGCA
CGGTATGTGTGTATCGATTTGTGGTGCACGGAGTGAGGCTTGGCGTGCAG
GTATGTTTTAACCACATCTGTATCCTAGCCTGGTTTACGCGAGCTTGTGT
CGAAAGCCCAAAACGGCCGAGGGTGGAGAGGGGGATTCGTGTGTGAATCC
GCGGATTCGAAGCGTTTTTTTATTTTGCCAGAAATGAACATTTACGTATC
GTTTCTGATGCTTCATGAAAACTAGTCCAAAATATATATCGGGCTCCAAT
TCAACCCGCGTTTTCAGCGCTCCTTTTCATATGTATACTTGTAACAAAAA
CACACGTGCTTTTTTTGTTTGTCGTTTCACGTTGCAAATCATGCGAAGCA
CACGTCATACGAGTACCACCAACCCTACACGTACCCCAAATGCTTACCGC
TCCTTTTTTTCACACGACAGAGGACAAAGCTCGCCCCGACACTCGTGTGT
TCATTTGTGCTTCGAAGTGTTCCGTGTCGGGCCGTTTTTTTCTTGTCAAC
ACCACCGCTGCCGTCACAATTTCCCCTTCACACCGCACCGCACCACCAGG
TAGTCGCCATGCTGGTGCAGAACGGGGCCGACATCGACGCGAGGGACGGG
TTCTTCTACACTCCTCTTCACCTCGCCTGCGTCAACGGGGCGGTCGCGAG
CGTGGACGTCCTGCTCCGAGCGGGAGCGGACCCCAGCACCAAGGCGCAGG
GAGGCGTGACGCCGCTGATCGCCGCCAGGAAACCCGAAGTACGAAAGCTC
CTCAAGGAAGCCCTGTCCGCGCGAGGGGGGACCCCCCATGCCCCTTCCTC
CCTTTCCTCCTTCTCCTCCTCCTGCTTCTCCTGCTTGCCGGAAGAAATGG
ACATCTCTGGAGGTGGCGGTGGCGGGGGCGGTGGCGACGGCCGTGGCAGC
GGCAGCGGCACTGCTGGCGATGGGGGTGGCTGGGGGGCTGCCGCTGCCGC
TGCTGCTGCTGCTGCTGCTGCCACTGATGCGGAAACGGATGCGGGTGTGA
ACTGGGGGAGGGAGAGCCCGAGGACGGCGACGACGGCGAAAAGCCTGGCA
GCCGCCTTGGCTGCGATCCTAGTGTCTTCCAACGCCTCCGCCGCTGAAGG
AGAAGGAGAGAGGAATAGGGATGGAGATGGCGACGCGGAGATGCCCCACG
TCACCTCCGGTCGTGGTGCCGGCGAGGCCACCGCTGTTTCTGGTGCGGCG
GCGGCGGCGGCGGCATCTACCGCGAGGGGCAGGTCGATCAGCCGGCTCCC
CAGAGAGAAGGAGGCGAAGATGAAGAAGAAGAAAAAGGCGAGCCCTCGGC
CCCGTCGCATCAGCACCGGCAGCGTGCTGGAAAAGATTTTCAACAGCAGT
AGCAGCCCGTACCAGCCCCTTAAGGAGGAGGAGGAGGAGGAGAAGGAGGT
TGCTGTCGTGACTGCGGTTGCTGCCGATGCGGATGCGAACGTGGATATGG
ATGCCATCGCCGCTCCGCTGTTCGCCGTAGACCTCATGGGCACGGTACCC
GATGGTACCGGTGACTCTGACGGCTTGACGCTGGCATCCGTCGCGGGTGG
CAGTGACGGGGCTCCCAGTGCTCTCGGCGCAGCTGCTGCCGAAACAGAGG
TGAGGATGACCCCCGTTGAGATTATCCCGGAGATACCGCTTCACATGGCG
ACGCGATTCACACAGCAGTCGCCGCGAAGATTGTCCGCAACCACCTCCAC
CTCAACCGCTACCATGGTGGAGCCGGGGAACACGCCGGAAACCTTAGCCG
TGGAGTTGCCACAGTTTATGGGTTCAGCACCCCTGATGGCTGCTGCGCTG
GACCTCGACCAAGGCTCACCGCGTTTCGTGCCCTCTGTGGAAGAAGGAAG
AGGCGCGATGAAAACAGCGCAGGATGATCCCTTTTCAACACCGGCGGCAA
TATCAAAAGCAGAAGCGGCAGCAGTAGGACCTGGCGGCGGCGGCGGCGGC
GGCGGCGGCAGAGACGGTAGTGATGCCGCCGCGGTGGCCACTACCCGCCG
GGCAACCACAATAACACCGGCCGTCACGACCGTTACGAGGGTGGGAGGAG
GAGGAGGCAGAGCGGAAGAGACAGCGGCGGTGCCGACGCGAACGCCGGGG
CGGGCCAAGAAGCGACGGGCCAAGTCCCTCCCGCCCTCGAGCCGTAAAGA
TCGCAGGGTGCGCCTACCACGTCGCTGTTTGGAAGGTCCCGCCGCGATCA
TCCGAACCCTCACGCTGAACGACGACGGGGGTGACGGCGAGGCACGGGCC
TTGAGCCGATGGCTGCAAGGGGCAACGGCCAGTGAAGCGGCG
back to topCoding sequence (CDS) from alignment at P-littoralis_Contig135:441279..454170+
>mRNA_P-littoralis_Contig135.112.1 ID=mRNA_P-littoralis_Contig135.112.1|Name=mRNA_P-littoralis_Contig135.112.1|organism=Pylaiella littoralis U1_48|type=CDS|length=2382bp|location=Sequence derived from alignment at P-littoralis_Contig135:441279..454170+ (Pylaiella littoralis U1_48)
ATGCTGCACAGGAGACAAATGAGGGAGAGAGGTCGACAGTTCGTGATGCT
TGCCCCTTCCCCCAGGGTGCCAGTACAATGGCCGTCGCAGAAATCTATTG
GCGACGGTAGTAGTAATAGCTGCTGTAGCTCGATAGACGGGGATGTTACT
GCTGCCGTGGATGCTGATGCTGGTGCTCGTTCTGTTTCCGTTCCAACAAT
CAGCGTGTATGCTGCGGCGGAACAAGGCAATATGACTCTGATGACGGCGT
ACTTGTCTGGAGGAGGCAACACAAACATGAGGAGCAAGGAGGGGTACAGC
ATCCTGCACCTGGCAGCCATGAGGAATCAAGGGGCAATGGTGGAGCTGCT
GCTCGGGAACGGCGCGGACCCAAACGTTCACGACAATGGCGAAGGGCTCA
CTCCACTCATGTGGGCCGCGCAGCTTGGGCACGTAGGGGTTGTGACCCGT
CTCCTTCGGGAGGGTGCCGACGTGGAGCAGGAAGACAGAGAAGACTTGAC
GGCGCTCCACTGGGCCGCCAGGCTCGGCCAGGAGAAGGTCGTGCTTGTGC
TCCTGGGCCACTCGGCAGACGTGGAGGCGATAGACTACGACGGCAACACC
CCTCTCATGTGGGCCGTCCGCGGGGGGCACCGCACGTGCGTCGGACACCT
CCTCGACCACGGAGCGGCCACCACCACGGCCGACGAGAACGGCAACACAG
CGCTCCACTTCTCGTGTCAGACGGGCAACGCCGGGATAACTTCCGACCTT
CTGGATTGGGGGGCGCTGGCCACCGCGCAAGATTACTGGCAGTTCACTCC
TTTCCATCGGGCATGCTCCCAAGGACACGGCAACGTTCTCGTCGAGCTTC
TCAGGGCTAGAGCGCCGGGCAGGGGCGGAGGCGGAGGCGAACGCACCGGT
GGTGATGGTGAGGGCGAGGGCGAGGGCGAGGGCGAAGACGGGGAGCACGC
CAGCAGTGTCATGGAAAGTGCGTGGGGTGATGGTGGTGGTGGTGGTGATG
GTGGTGGTGGTGGTGGCAGCAGCAGGAACACAAGCAGCGGCTTCGCCACA
TCCTCGTCTGGGCTGCTGCCTGCATGCGAGGTCGTGGACATCCGCAATCA
CTTTCAGGCGACGCCGCTGCATCGAGCGGCCGCCAAGGGACACGCAGAGG
TAGTCGCCATGCTGGTGCAGAACGGGGCCGACATCGACGCGAGGGACGGG
TTCTTCTACACTCCTCTTCACCTCGCCTGCGTCAACGGGGCGGTCGCGAG
CGTGGACGTCCTGCTCCGAGCGGGAGCGGACCCCAGCACCAAGGCGCAGG
GAGGCGTGACGCCGCTGATCGCCGCCAGGAAACCCGAAGCCACCGCTGTT
TCTGGTGCGGCGGCGGCGGCGGCGGCATCTACCGCGAGGGGCAGGTCGAT
CAGCCGGCTCCCCAGAGAGAAGGAGGCGAAGATGAAGAAGAAGAAAAAGG
CGAGCCCTCGGCCCCGTCGCATCAGCACCGGCAGCGTGCTGGAAAAGATT
TTCAACAGCAGTAGCAGCCCGTACCAGCCCCTTAAGGAGGAGGAGGAGGA
GGAGAAGGAGGTTGCTGTCGTGACTGCGGTTGCTGCCGATGCGGATGCGA
ACGTGGATATGGATGCCATCGCCGCTCCGCTGTTCGCCGTAGACCTCATG
GGCACGGTACCCGATGGTACCGGTGACTCTGACGGCTTGACGCTGGCATC
CGTCGCGGGTGGCAGTGACGGGGCTCCCAGTGCTCTCGGCGCAGCTGCTG
CCGAAACAGAGGTGAGGATGACCCCCGTTGAGATTATCCCGGAGATACCG
CTTCACATGGCGACGCGATTCACACAGCAGTCGCCGCGAAGATTGTCCGC
AACCACCTCCACCTCAACCGCTACCATGGTGGAGCCGGGGAACACGCCGG
AAACCTTAGCCGTGGAGTTGCCACAGTTTATGGAAGGAAGAGGCGCGATG
AAAACAGCGCAGGATGATCCCTTTTCAACACCGGCGGCAATATCAAAAGC
AGAAGCGGCAGCAGTAGGACCTGGCGGCGGCGGCGGCGGCGGCGGCGGCA
GAGACGGTAGTGATGCCGCCGCGGTGGCCACTACCCGCCGGGCAACCACA
ATAACACCGGCCGTCACGACCGTTACGAGGGTGGGAGGAGGAGGAGGCAG
AGCGGAAGAGACAGCGGCGGTGCCGACGCGAACGCCGGGGCGGGCCAAGA
AGCGACGGGCCAAGTCCCTCCCGCCCTCGAGCCGTAAAGATCGCAGGGTG
CGCCTACCACGTCGCTGTTTGGAAGGTCCCGCCGCGATCATCCGAACCCT
CACGCTGAACGACGACGGGGGTGACGGCGAGGCACGGGCCTTGAGCCGAT
GGCTGCAAGGGGCAACGGCCAGTGAAGCGGCG
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