Homology
BLAST of mRNA_A-nodosum_M_contig112.19.1 vs. uniprot
Match:
D7FRY1_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FRY1_ECTSI)
HSP 1 Score: 344 bits (883), Expect = 3.070e-116
Identity = 178/209 (85.17%), Postives = 190/209 (90.91%), Query Frame = 2
Query: 371 VLQHKLALIRRQEGTAKEFRTLFREITFYLGYEATRDLTTRSICVRTDVVEKCPASKIAEKVAVVPILRGGLGMTEALLELLPESPVYHVGMYRNPGSNIPVQYYNRLPKGNPSDVALILDPVIASSRTITAVVSIVKKWGAKKIKVVTLVASRSGLEALCNMHPEVQVYLASIDELAENGLDLIPGIGDAGDRLYLGAHNKDMASSAD 997
VLQHKLALIRRQEGTAK+FRTLFREITFYLGYEAT LTT SICV+TD ++CPA IAE VAVVPILRGGLGMTEALLELLP+SPVYHVGMYRNPGSNIPVQYYNRLPKG+PSDVALILDP+IASSRTI AVVSIVKKWGAK IKVVTLVASRSGLEAL MHPEVQV+LASIDELA NG DLIPGIGDAGDRLYLG ++ + A +D
Sbjct: 16 VLQHKLALIRRQEGTAKDFRTLFREITFYLGYEATATLTTTSICVKTDRTDQCPAKTIAETVAVVPILRGGLGMTEALLELLPDSPVYHVGMYRNPGSNIPVQYYNRLPKGHPSDVALILDPIIASSRTINAVVSIVKKWGAKTIKVVTLVASRSGLEALNKMHPEVQVHLASIDELAPNGQDLIPGIGDAGDRLYLGTNSLETAPPSD 224
BLAST of mRNA_A-nodosum_M_contig112.19.1 vs. uniprot
Match:
A0A835YL27_9STRA (Uracil phosphoribosyltransferase-domain-containing protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YL27_9STRA)
HSP 1 Score: 275 bits (702), Expect = 2.020e-88
Identity = 132/203 (65.02%), Postives = 168/203 (82.76%), Query Frame = 2
Query: 371 VLQHKLALIRRQEGTAKEFRTLFREITFYLGYEATRDLTTRSICVRTDVVEKCPASKIAEKVAVVPILRGGLGMTEALLELLPESPVYHVGMYRNPGSNIPVQYYNRLPKGNPSDVALILDPVIASSRTITAVVSIVKKWGAKKIKVVTLVASRSGLEALCNMHPEVQVYLASIDELAENGLDLIPGIGDAGDRLYLGAHNKD 979
VL HKL+LIRR+ ++EFR+LFREI+FYLGYEAT+DL T+ + T E C KIA+KVAV+PILRGGLGMT+A+LELLP +PVYH+GMYRNPGS++P+QYYNRLPKG DVA++LDP+IAS++TI A VSI+KKWGA ++KVVTL+ SR+GL L +HP+V V+ A++D LA+NG DL+PGIGDAGDRLYLG + D
Sbjct: 32 VLMHKLSLIRRKSTNSREFRSLFREISFYLGYEATQDLHTKVAHIHTHTAEFCEVRKIADKVAVIPILRGGLGMTDAMLELLPNAPVYHIGMYRNPGSSMPIQYYNRLPKGQSCDVAILLDPIIASAKTICATVSIIKKWGAARVKVVTLIVSRTGLAQLLAVHPDVIVHCAAVDTLADNGHDLVPGIGDAGDRLYLGPDHVD 234
BLAST of mRNA_A-nodosum_M_contig112.19.1 vs. uniprot
Match:
A0A8K1CH49_PYTOL (Uncharacterized protein n=1 Tax=Pythium oligandrum TaxID=41045 RepID=A0A8K1CH49_PYTOL)
HSP 1 Score: 200 bits (509), Expect = 1.170e-59
Identity = 110/207 (53.14%), Postives = 145/207 (70.05%), Query Frame = 2
Query: 371 VLQHKLALIRRQEGTAKEFRTLFREITFYLGYEATRDLTTRSICVRTDVVEKCPASKIAEKVAVVPILRGGLGMTEALLELLPESPVYHVGMYRNPGSNIPVQYYNRLPKGNPSDVALILDPVIASSRTITAVVSIVKKWGAKKIKVVTLVASRSGLEALCNMHPEVQVYLASIDE-LAENGLDLIPGIGDAGDRLYLGAHNKDMAS 988
VL HKL +R + + FR L RE+TFYLGYEAT DL T ++T V E A ++ VAVVPILR GLGM E +L+LLP + V+H+GMYRN S +PVQYYN+LPK DVA++L+PVIA++ TI A V+I+K WG KIKV++ VAS+ GL+ L + HPEV+V +A+IDE L E G + PG+GDAGDR + H+ D A+
Sbjct: 27 VLLHKLTKLRDERTDSTVFRHLLREVTFYLGYEATYDLQTTPKAIKTPVGEHSGA-ELTTSVAVVPILRAGLGMVEPMLDLLPNAAVHHIGMYRNKHSLLPVQYYNKLPKQCDLDVAIVLEPVIATAGTIVATVAILKTWGVTKIKVISAVASKPGLQDLLSKHPEVEVIVAAIDEALTEEGY-IFPGLGDAGDRQFQTGHHADGAN 231
BLAST of mRNA_A-nodosum_M_contig112.19.1 vs. uniprot
Match:
A0A3R7K1K3_9STRA (Uracil phosphoribosyltransferase n=3 Tax=Phytophthora kernoviae TaxID=325452 RepID=A0A3R7K1K3_9STRA)
HSP 1 Score: 198 bits (503), Expect = 9.590e-59
Identity = 101/198 (51.01%), Postives = 148/198 (74.75%), Query Frame = 2
Query: 371 VLQHKLALIRRQEGTAKEFRTLFREITFYLGYEATRDLTTRSICVRTDVVEKCPASKIAEKVAVVPILRGGLGMTEALLELLPESPVYHVGMYRNPGSNIPVQYYNRLPKGNPSDVALILDPVIASSRTITAVVSIVKKWGAKKIKVVTLVASRSGLEALCNMHPEVQVYLASID-ELAENGLDLIPGIGDAGDRLYL 961
VL+HKL +R + ++ FR L RE+TFYLGY+AT DL+T ++T V + ++++ VA+VPILR GLGM E +L+LLP++ V+H+GMYRN S +PVQYYN+LPK +VA+IL+PVIA++ TI A ++++K WG +KIK+VT +AS+ GL+ +C HP+V++YLA+ID EL E G ++PG+GDAGDR +
Sbjct: 27 VLRHKLTKLRDERTDSRVFRNLLREVTFYLGYDATDDLSTVPKKIKTPVGDH-QGAELSTSVALVPILRAGLGMVEPMLDLLPKATVHHIGMYRNKQSLLPVQYYNKLPKECNVEVAIILEPVIATAGTILATLAVLKTWGVEKIKIVTAIASKPGLKEVCASHPDVEIYLAAIDDELTEEGY-ILPGLGDAGDREFF 222
BLAST of mRNA_A-nodosum_M_contig112.19.1 vs. uniprot
Match:
A0A5D6XMY6_9STRA (Uracil phosphoribosyltransferase n=1 Tax=Pythium brassicum TaxID=1485010 RepID=A0A5D6XMY6_9STRA)
HSP 1 Score: 197 bits (501), Expect = 1.910e-58
Identity = 106/202 (52.48%), Postives = 142/202 (70.30%), Query Frame = 2
Query: 371 VLQHKLALIRRQEGTAKEFRTLFREITFYLGYEATRDLTTRSICVRTDVVEKCPASKIAEKVAVVPILRGGLGMTEALLELLPESPVYHVGMYRNPGSNIPVQYYNRLPKGNPSDVALILDPVIASSRTITAVVSIVKKWGAKKIKVVTLVASRSGLEALCNMHPEVQVYLASID-ELAENGLDLIPGIGDAGDRLY-LGAH 970
VL HKL +R + + FR + RE+TFYLGYEAT DL T ++T + +++ KVAVVPILR GLGM E +L+LLP + V+H+GMYRN S +PVQYYN+LPK DVA++L+PVIA++ TI A V+I+K WG KIK+V+ +AS+ GL+ LC HP+VQV+L +ID EL E G + PG+GDAGDR + G H
Sbjct: 27 VLHHKLTKLRDERTDSNLFRHVLREVTFYLGYEATYDLETTPKAIKTPISAH-EGAELTTKVAVVPILRAGLGMVEPMLDLLPNATVHHIGMYRNKHSLLPVQYYNKLPKECNVDVAIVLEPVIATAGTIIATVAILKTWGVPKIKIVSTIASKQGLQDLCAKHPDVQVFLGAIDDELTEEGY-IYPGLGDAGDREFQTGTH 226
BLAST of mRNA_A-nodosum_M_contig112.19.1 vs. uniprot
Match:
A0A7S1CEL3_9STRA (Uracil phosphoribosyltransferase n=1 Tax=Bicosoecida sp. CB-2014 TaxID=1486930 RepID=A0A7S1CEL3_9STRA)
HSP 1 Score: 195 bits (495), Expect = 1.280e-56
Identity = 101/203 (49.75%), Postives = 142/203 (69.95%), Query Frame = 2
Query: 371 VLQHKLALIRRQEGTAKEFRTLFREITFYLGYEATRDLTTRSICVRTDVVEKCPASKIAEKVAVVPILRGGLGMTEALLELLPESPVYHVGMYRNPGSNIPVQYYNRLPKGNPSDVALILDPVIASSRTITAVVSIVKKWGAKKIKVVTLVASRSGLEALCNMHPEVQVYLASID-ELAENGLDLIPGIGDAGDRLYLGAHNK 976
VL+HKL L+R ++ A +FR L RE+TFYLGYEATRD+ V T V +AE++A+VP+LR GLGMTEA+ +LLP + +H+G+YR+ S +P+ YYNRLP D A+IL+P+IA++ TI A V I+ WG KKIK+++++A+R GLE L HPEV+V++ +D EL E G +IPG+GD GDRL+ H+K
Sbjct: 70 VLKHKLTLLRAKDTHATQFRQLLREVTFYLGYEATRDVAVEDCDVVTPVATG-KGKTLAERIALVPVLRAGLGMTEAMQDLLPTAHTHHIGIYRDAHSLVPILYYNRLPAEVDCDTAIILEPMIATAGTIHATVRILNDWGCKKIKIISIIAAREGLEKLTAAHPEVEVFVGEVDDELTEEGY-VIPGLGDVGDRLFGTPHDK 270
BLAST of mRNA_A-nodosum_M_contig112.19.1 vs. uniprot
Match:
G4ZCN1_PHYSP (Uracil phosphoribosyltransferase (Fragment) n=12 Tax=Phytophthora TaxID=4783 RepID=G4ZCN1_PHYSP)
HSP 1 Score: 190 bits (483), Expect = 6.240e-56
Identity = 96/197 (48.73%), Postives = 148/197 (75.13%), Query Frame = 2
Query: 371 VLQHKLALIRRQEGTAKEFRTLFREITFYLGYEATRDLTTRSICVRTDVVEKCPASKIAEKVAVVPILRGGLGMTEALLELLPESPVYHVGMYRNPGSNIPVQYYNRLPKGNPSDVALILDPVIASSRTITAVVSIVKKWGAKKIKVVTLVASRSGLEALCNMHPEVQVYLASIDE-LAENGLDLIPGIGDAGDRLY 958
VL+HKL +R + ++ FR L RE+TFYLGY+AT DL T ++T E ++++ VA+VPILR GLGM E +L++LP + V+H+GMYRN S +PVQYYN+LPK +DVA++L+PVIA++ TI A ++++K WG +KIK+V+ +AS+ GL+ +C +P+V+++LA+ID+ L+E+G ++PG+GDAGDR +
Sbjct: 27 VLRHKLTKLRDERTDSRVFRHLLREVTFYLGYDATDDLETVPKKIKTPKGEH-QGAELSTSVALVPILRAGLGMVEPMLDVLPNATVHHIGMYRNKQSLLPVQYYNKLPKECNADVAIVLEPVIATAGTILATLAVLKTWGVEKIKIVSAIASKQGLQEVCAKNPDVEIFLAAIDDDLSEDGY-ILPGLGDAGDREF 221
BLAST of mRNA_A-nodosum_M_contig112.19.1 vs. uniprot
Match:
A0A7R9WS49_9STRA (Hypothetical protein n=1 Tax=Craspedostauros australis TaxID=1486917 RepID=A0A7R9WS49_9STRA)
HSP 1 Score: 192 bits (487), Expect = 8.220e-56
Identity = 97/203 (47.78%), Postives = 143/203 (70.44%), Query Frame = 2
Query: 371 VLQHKLALIRRQEGTAKEFRTLFREITFYLGYEATRDLTTRSICVRTDVVEK-------CPASKIAEKVAVVPILRGGLGMTEALLELLPESPVYHVGMYRNPGSNIPVQYYNRLPKGNPSDVALILDPVIASSRTITAVVSIVKKWGAKKIKVVTLVASRSGLEALCNMHPEVQVYLASIDELAENGLDLIPGIGDAGDRLY 958
VL HK++++R + +FR++ REIT++LGYEAT LTTR I V ++ C K+ E+VAVVPILR GLGM++++LELLP++ VYH+GMYR PGS PVQY+NRLP+ SD A++LDPVIAS++T A ++++KKWG KI +V+++ S GL + HP+VQ+ + ++D + ++PG+GDAGDRL+
Sbjct: 55 VLLHKISILRSANTPSGQFRSVLREITYHLGYEATAGLTTRPIPVSVSAGKESPNDHLDCTGDKLIERVAVVPILRSGLGMSDSMLELLPKASVYHIGMYRIPGS-APVQYFNRLPRKCASDAAIVLDPVIASAQTSLAAIAMLKKWGVPKIHLVSVLGSSEGLATIEEQHPDVQITVGTVDSILTKDGIVLPGLGDAGDRLF 256
BLAST of mRNA_A-nodosum_M_contig112.19.1 vs. uniprot
Match:
A0A0P1A7E9_PLAHL (Uracil phosphoribosyltransferase n=1 Tax=Plasmopara halstedii TaxID=4781 RepID=A0A0P1A7E9_PLAHL)
HSP 1 Score: 190 bits (482), Expect = 1.280e-55
Identity = 98/197 (49.75%), Postives = 145/197 (73.60%), Query Frame = 2
Query: 371 VLQHKLALIRRQEGTAKEFRTLFREITFYLGYEATRDLTTRSICVRTDVVEKCPASKIAEKVAVVPILRGGLGMTEALLELLPESPVYHVGMYRNPGSNIPVQYYNRLPKGNPSDVALILDPVIASSRTITAVVSIVKKWGAKKIKVVTLVASRSGLEALCNMHPEVQVYLASID-ELAENGLDLIPGIGDAGDRLY 958
VL+HKL +R + + FR L RE+TFYLGY+AT DL T ++T + ++++ VA+VPILR GLGM + +L++LP + V+H+GMYRN S +PVQYYN+LPK DVA+IL+PVIA++ TI A ++++K WG KKIKVV+ +AS+ GL+ +C +P V+++LA+ID EL+E+G ++PG+GDAGDR +
Sbjct: 27 VLRHKLTKLRDERTDCRAFRYLLREVTFYLGYDATDDLETIPKQIKTPKGDH-QGAELSTNVALVPILRAGLGMVDPMLDILPNASVHHIGMYRNKQSLLPVQYYNKLPKECDVDVAIILEPVIATAGTIVATLAVLKTWGVKKIKVVSAIASKQGLQEVCAKNPGVEIFLAAIDDELSEDGY-ILPGLGDAGDREF 221
BLAST of mRNA_A-nodosum_M_contig112.19.1 vs. uniprot
Match:
K3WUJ9_GLOUD (Uracil phosphoribosyltransferase n=1 Tax=Globisporangium ultimum (strain ATCC 200006 / CBS 805.95 / DAOM BR144) TaxID=431595 RepID=K3WUJ9_GLOUD)
HSP 1 Score: 189 bits (481), Expect = 1.910e-55
Identity = 100/197 (50.76%), Postives = 142/197 (72.08%), Query Frame = 2
Query: 371 VLQHKLALIRRQEGTAKEFRTLFREITFYLGYEATRDLTTRSICVRTDVVEKCPASKIAEKVAVVPILRGGLGMTEALLELLPESPVYHVGMYRNPGSNIPVQYYNRLPKGNPSDVALILDPVIASSRTITAVVSIVKKWGAKKIKVVTLVASRSGLEALCNMHPEVQVYLASIDE-LAENGLDLIPGIGDAGDRLY 958
VL HKL +R + + FR + RE+TFYLGYEAT DL T + T + E ++++ +VAVVPILR GLGM + +L+LLP + V+H+GMYRN S +PVQYYN+LPK DVA++L+PVIA++ TI A V+I+K WG +KIK+V+ +AS+ GL+ L + HP+V+V+L +ID+ L E G + PG+GDAGDR +
Sbjct: 27 VLHHKLTKLRDERTDSNLFRHVLREVTFYLGYEATYDLGTTPKKITTPIGEH-EGAELSTRVAVVPILRAGLGMVDPMLDLLPNAVVHHIGMYRNKHSLLPVQYYNKLPKECNVDVAIVLEPVIATAGTIIATVAILKTWGVEKIKIVSTIASKQGLQDLFSKHPDVEVFLGAIDDALTEEGY-IFPGLGDAGDREF 221
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_A-nodosum_M_contig112.19.1
>prot_A-nodosum_M_contig112.19.1 ID=prot_A-nodosum_M_contig112.19.1|Name=mRNA_A-nodosum_M_contig112.19.1|organism=Ascophyllum nodosum dioecious|type=polypeptide|length=136bp
MTEALLELLPESPVYHVGMYRNPGSNIPVQYYNRLPKGNPSDVALILDPV
IASSRTITAVVSIVKKWGAKKIKVVTLVASRSGLEALCNMHPEVQVYLAS
IDELAENGLDLIPGIGDAGDRLYLGAHNKDMASSAD
back to topmRNA from alignment at A-nodosum_M_contig112:54666..71625-
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_A-nodosum_M_contig112.19.1 ID=mRNA_A-nodosum_M_contig112.19.1|Name=mRNA_A-nodosum_M_contig112.19.1|organism=Ascophyllum nodosum dioecious|type=mRNA|length=16960bp|location=Sequence derived from alignment at A-nodosum_M_contig112:54666..71625- (Ascophyllum nodosum dioecious)
TATAGCAAAGTATAGATCAACCGGGTAAGGTTGCCAATCCTGCTCGTGGT
CAGCTGAAGAGGGAAAATAAATATTTCCCTGGTTGTCCCCGTTCGCGCCT
GAGAAATTGGTCTTGCGAGACGGGTTCGGCCGTCCCGTCCCGCGCCAGCC
TGCTCGTTCTCCACACTCAGGCTGAATCTGGTTCTTACTCACAAGATTCC
TCCTGATTTCCGCGGCGGTGTCCATTTATTGCCTTATTTATAACACAGAC
AGTAGCTCCAATGATGACACCAGCAGATGCAGCAGATGCAACAGCCAGTT
TCGAACTCGTATGGTAAAATACTTGGTCTATTATCAATACTGTATTAATA
CTGTTGTACTGTACTTGTAGGTGCTGCAACATAAACTTGCCCTTATCCGG
CGGCAAGAGGGAACAGCTAAGGAGTTCAGGACTCTGTTCCGCGAAATCAC
CTTCTATCTGGGGTGAGCGAGCATCCGGCATCCGCAATGCAACGCCTGGG
AACGCATGTCTGCAGAAACTTCGAAATATAGTGTACCTGAGAGGCCCAGC
TCTTAGATTAGGCGTAAAGGTGGTGCAACGATTCAACTACATAAACAGGA
TACATACGTACACGTGCCGACGGCATTCGGGCTGGTGCGGGCAATTCTGG
CCTACCTATAGCCCGTAACAGACCGGCGCAACAAACGCGACATCTTGATG
CATTATCACATTTTTTCCCCCTGACTGAGGGTTGCTCAGAAGGTCTAGGT
GCGTTCTGATTTTTCTTTAATCACGAGCGCTGGTCCATTGTTTGGGCATA
TACTTTAGAAAGTACTTGGTGTTAATAATATACAAAATAGGTACTGCTGT
TTGTACGATTTTTTATTTTGTTTCATACCCTCCTTGTTTTTCTAACCTCA
TGGTGTTGACAGGTATGAGGCAACCCGGGACCTGACCACAAGATCTATAT
GCGTCAGAACGGATGTGGTCGAGAAATGCCCGGCCAGCAAGATTGCTGAG
AAGGTTGCCGTCGTGCCCATCCTCAGGCAAGCATAGCACCAATTGGGCGC
TTGGCGACAGAGTTAACGAACATCGTTCGAACGACGGCCTCAACGATCGG
CCGATGTAGGCTCTGAAGCACGTTTCAAAACCAAGGCGGAAGAAATGCAT
TCGAAACCCTCACGAAACGATGGCGAGGCGTTATGCTATTAATATAATAG
CGTCTCTCACCGTAACTCAATCATATTTCGGGTGTAGAGTACGATACTCA
GATTCAGCCTGAGTATGGGGATGAGCAGGCTGACGCGGGACGGGACTGCC
GAACCCGTCTCCCGAAACCAAATTCTCAGGCGCGAACGGGGACAGGGAAA
ACATCATTTTCCCTGTTCAGCTGACCACGAGCAGGATTGGCAACCTTACC
CGGTTCATCCATACTCTGCTACATGTGATGATCATACATACATACATACA
TACTGTCAAAAGACGCCCTTGAAGTCGTTTTCCCCGTTTTTGTGATTGAC
GCGGTGGACTTTCAAGTTCCGATGTCTTGAGCGGCTGTACATGGAAACGC
GCGGTTGTCCTAGCAGGTAGCAACTTGTACCTGTACCCTACTCCCTCAGA
ACAACATTTTCTCAATCGCCTTCCTCAATCGCCATCCTACTCATAGCTGA
CCGTCCGACCACTTTAGGCAATTTTCAAAGGGCAATGGCCAAAAACGGCA
GCACCCCGTGCCTTTCCGGCCATATCTGATAGCATATCTGATAGCATATC
TGATAAGCCAGCACCCATTTTCTCCCGGTTCTGGCCAAAAACGACCGGGT
CAACCCGACCTTGTCTTCATTGGTCAGCTTCCACCCGGTTTTAGCCATAT
TATGTTTTCCTCCGGTGGCCTACTCGAACAGACCATTCATAGCCCGGACC
GCAAGAACAAGTGAAACACTCCGCCCATGAGACGATGAGTATTGACAAAC
AACTCAGCTACTCCCAGCCCCGCCTCGAATCCAGCTAAGCTATCCGCAAC
CTACGATCACATGTCTAGAGGTAGATAGTAGTCAGTAGCAGCGATTACGC
GACCAAACGATAACAAGACATGGCGTGGTGACCAAACGAAGGACTCTTGA
TAAAGGGGACAGAGAAATATCGAAAATAATTTTCCCTGTTCAGCTGACCA
CAAGCAGGATTAGCAACCATACCCGGTTGATCTTTACTCTGTTCTAAGTG
GTGACCATACATACTCTGGTACTCTGGTACTCTGGTACTCTGGTACCCTG
GTACTCTGGTACTCTTGTGCTCTCGTGTTGTGTTGTGTTGTGATGACGGC
AGCGTAGGCGGAAGGCGTGGCGTGACATTGATGCCGACCCGAGGCTTCTG
ATTTTATACTTTAATGAATATGTACTTTAAATTGATACTTTAGTAGAAGA
TGAAGTAGTGTGCCGAAAACAATAACGCTACTATTAGTACAGCAGCAGCA
GCAGTATGAATAGCACGAGTGCAGCATAACAGATACTGTAATATTGTAGT
ATTTGATATTTGATATTAGATACCTGGTAGTAGATAGTAGATAGTAGTAG
ATAGGCAGCAAGAAGTATTATAGCAGCAGTTGTGTCGCCTTTATAGAGTC
TGTGTATTAATATGTATATGTGTGAGGTGGGTGCTACTGGGAGAGGTTGC
TCAGGCAGTATAGGTTCCGACGACACTCGAGGCTACGGAGCTGGGTCGGG
GGATGTAGGCAAGGAGCTGCCTCGGGGGATGATCCCGTGAATGTGTGTCC
TTAGGGGCGGACCTGCCGTATAGCATTCCTAGAAACTGGTTCATAGGATG
CTGATCTTCGGAGATACCTTCGGGTCTACCATGGTTGTACGTGGTGCCCT
CCACAGCACTCCCCCCTTTTTGCGTCTCGAGCGTGTGATACGGTCGGGAC
GGGGTTGATTTACAGTAGTGAGAGGTACACGGAGTACAACCCGTGTTACA
TGTGACCTCTTTTCGGTGGTTGACCAAGAGGGAAAGAATCAGATGACACA
AGACACAGTGAAGTGTCAGGATAGTCGGTTATACACCGGCATCACCACGT
GTTACATGTGATCTCTCCTTGGATTACCGAGAGAAAAGGGTCAGATGACA
CAGGACACGGGTGAGTGTCCTTATCGTCGATTATACATCGACATATCAGC
ATGGATTGCTGATGCGAAGATTTTGTCCGTATTTGAGCGGACGGGTCATC
ATGGTCAGTGCGAGGGGCATAAGGGTTCTCTTTTGATCCCTTTGGCGACA
TCTGTCGTCACAGCAGCCAGTATGCTCCTCGAATGCGCAATTAACTCCCA
TGATGAATGTTGGCAATGTTTGCATTTAACCAACATCTTACTCCTTGGGT
GAGAGGAGGTGAGATCTCAAGATATACACTCTGATGGAGAGTGGGGCCCT
GGTACATATTAATAACATGTTACCATTGACAGTGAACACCAAGGTACGGG
TTCCTGTCTGGCTCATCACGCGAATAGCGTGTAGCTCTTCGATACCACGC
GGAGATAGCGCGAGGTCGGATCGGTAGGTTCACGCAGACCTAACCGAGTG
GACAGCTGCGCGGAGACGCAGCGTGATATTAGGTGGGAAATATATCACAA
CATAATCGATATTGTACACGGATAGTGTCTACGAGTGCTCCTTACCCCAG
CATGTGTCCACTCATGCTGTATTTATTTATTTATCGATTGCCTAGGTGGA
ATGGCCCTATTCGTTTCCGATAGAACGTGTGATATTTCCGCGGTTTTGAC
GTTCGGATTACGTCAATGCAGCGTGTAAACGGCGGATCGCATCGTTTACG
TGTGAATGGCGGCTAGCATCATTCACGTGTGAATGGTAAATAGCATCATT
CACTTTCTCCTCTTTGGATTATTTTTCTCTTTATTCGAGCCAGATCTGGG
TTTGCGCTTGCGAGTAAGGGTTCGCGTTCGAGCGGACTACCGTCTTTCTG
TGCGCTATCGCTTCCGAGGATTACCGTCTTTCGAAGCACGATGCTTCTGC
TTATGGCAAGGGCGCTTGCGACTAGCGGGTTCGCTTTCGAGGGGACTACC
GTCTTCCGGTGGGGTGTCGCTACCGAGGGATTGCCGTTTTTCGAAGTACG
ATGCTTCCGCTTATTGCAAGGACGTTTGCGAATAGCGGGTTCGTTTTCGA
GGGGACTACCGTTTTCGGTGCGGTATCACTACCGGGGGAATTGCCGTCTT
TCGAAGCTGGATGCTTCCGCTTATTGCAAGGAGGAGGCGTGATTGTCTCA
AGTTGATGTTGAGCGCGGTATGCTGCAATAAGTTCCTGACATTGTGGGAC
CTGGTGAGCTCGGTATTCGAGGTCAGCTTCTGGGCCAAAGCCTTTGAGCC
GTAGACGATAGATATAATTATGAGGGCTATGCCTCCTTGTCCACGCCGGT
GTCCAACAACATCAGCAACTTGATAGATGCCTATATGTGGCGGGACCGTT
TCTGATTCTTCCAAAGCAGGCGTCGGCAACGTCTTTCCTAGGAATAATCC
TTCTAGTTTGTGAAAGTCTGGTGCCGGAGCCGACTGGCGGGGTCTGTAAG
ATTTTATGTGGGCCAAATGTACAGACACTTGTTTCGTGTCATCTGGGTGT
CGAATCCGATACACCACTGGTGACAATTTGGAACATATTATGTACGGCCC
TCGCCATGGCTGGATAAGCTTCGGGTTCGGTCCATCGGTGCTGTGGTGAG
GTTTGTATATCAGCACCTTTTGTCCGGGGTGAATTCCGGGATCGGAGGTA
ACTTGGAATTATCAGCCTTTTGTTTTTCAATTCGTTCGGATAGGTTCCTA
CGTGCTAACTCAAACGCGATTTGCAGGTTCTCTCTTGTGGCATGGGCAAA
TTCCTCCGTGGTGGCCGATTTGCCAACGTGGGGAATACCAAAGATTATAT
CAATAGGTAATCTTGCTTATCGCCCAAACATTAAGAAGAACGGCGTTTCA
TGCATCGTCGAGCTAAAAGACGTGTTGTGAGCTAGCTGTATGAACGGTAG
GACCTCAGCCCAATTGTTCTGTGCAATATTGCTGTACATCGAAAGCATGG
CATGTAGGGTCGAATGCATACGCTCCGACACCGAATTTCCTTGCGGACGA
TAGGGTGTCGTTTTGGTTTTCTTGTAACCAAAGACATCCTGCAGCTGCTT
CACAACTTTATTTTCGAACTCCGGACCTTGATCGGAATGGAGTGTCTCGG
GCGGTCCAAAGATACCAAATACCCGTTCGACAAGAGCTTTCGCAATGGTC
TGCTCTTTCTTGTCTGGAAGCGCGACCAGCACGGAAAAGCGAGTGAGATG
ATCTATTATAGTTAGCGCGTATGAGCACTTCAGTCCTGTTGGGGATACTG
ATTCCGTTTTGTATTCGACAAGATCTATTGAAACACGTTGAAATGGGCGA
TCGACAGGTAGATGACCTGTAGGTAACTTGGGCCCGCGGTGCGGTGTCTT
CCTACGTTGACAGGCCTGGCAATCCTGGCACCAAGTTTTGACGTCGCGAT
GTAACGTCGGCCACCAAAATCTATCGCGGACTTTGTCAAACGTATGTTTG
TAAGCGAGGTGTCCACCAGACATGGCGTGATCATGGCATGCGTGCAGCAC
CATTGGTATACAGGCGCTGGGAATCACAAGTTGGTCGCGGAACGTGCTTC
TTTTACGAAGATGACCGGGGAGATAAGACCTATATAAAGGCCCCCGTTTT
CACTATAATACGACATAGACGTTCTTGACTCGTTTGATGGCGGTCGTTTC
TTCGGGTCACCTAGATATTCAAAGTATGGCCCAAATGCGGCCTGTTGGGC
CTGTCTGAGCTTCTCTGGATCTATTGACATGATGACGTCTGTTGCACTAG
TGAAAAGTTCGCGGTCGCTCTCAACGGGTTGGATTTCGTCGAGATTATGT
GAATTCACTTGATACGGCCGTAATCTGTGCGGTCCATGTAAGGCAGGGTT
GTCGGGTACATTTCGACAGATGGGCGCTAAGTGTGGCGCAACCCTCATCT
CGCTATGTTCAAAGCTGAATAACCGCGATAGAGTGTCGGGAATGATATTC
AATTTCCCTGGTTTGTGCTCCACCGTAAAATCATACGATTGGAGCGCGAT
AGCCCACCGTGTAAGCATATTAGATGTATCTTGCATGGAATACAAATAAC
GGAGAGCGCTATGATCCGTAACACAAACAAAATGGCGCCCCCATATATAG
GGTCTCCAATGAGTTACCGCTAGTACTACTGCAAGGCATTCTTTTTGAGT
TGCCGAGTAGTGCTGTTGACTTGAGGTGAAACGCTTGCTGAAGTACGCGA
TTATAGCGAGTTCTCCATTATCGTCTTTTTGAGCAAGGAAAGCGCCTACC
CCACAGTCACTTGCGTCTACATGGATTATAAACGGCTTGTGGAATCGGGG
AAAATGGAGGACAGGGGCAGAGGTTAATAACTCTTTTACTTTGATAAAAG
CAGCGTCCTGTTCCGGTCCCCAAATATTTCGCAAAGTCTTTAGATTTGCA
ACGGACTTGCGAGTAAGTGCAACCAACGGTTCTACTATTGTTGCCAGATT
TGGGATGAATTTTCGCACGAAATTAACTGTACCGAGGACAGAGCGTAGTT
CTTTGATAGTGGTCGGTGTTTTTAGATCAACAATGGCTTTAATTCGGTCT
TCGCCCATGCGAATACCGTCAGCAGATAAGACATGCCCGAGGTACTGAAC
TTCCTTTGGTCCAAAGTGAATTTTGGCTGGCTTCAATGTCAGGCCGGCTG
TTTGCAGTGCGCGGAACATATCCTCTAATAATTTGAGGTGGGCTTCCCAC
GTCGCCGAACATGCTATGAGATCGTCCATATATACCAACAAGCCACTCGG
CTGACCAAAATTGGCGAACGCGAGGGACATGACCCGTTGGAATATCCACG
GTGCGTTCGCTATGCCAAAGGGGAGAACTTTGAAAACGTATTTGCCTTTT
GATGTTACAAATGCCGTTTTATGGCGGTCCTTTGGAGCTATTGGGATTTG
CCAATAAGCACTCTGTACGTCGCAAACGGTGATGAAATTTGCACCACCTA
CTGTGTCGATATGAGACTCAATGTCTGGCATTGGCCACGTCTCACGAACA
AGGAACCTATTAATAGTAGCTCTGTAGTCGACACAAAAGCGGGGTGAACC
GTCGGCTTTTGCAACAATGCATACTGGCGACCCCCATTCACTCGGTCTCT
TCTCTATTATGTCTATCTCTTCCATATCATCGACACACTTATCAATCACT
TCTTGTGCTCGTGGATTGGTTCTATAGGGATGCCGGTCGACAGGTTTCGT
GTCTTTTTGTAACGGAAACTCGGCTTCAGCGATTGTACATTTTCCGAGCT
CTTTTTGGTTTAGTGAAAATACTGATCGATACTCAGTACACAGGTTGATA
ATCTGTGCTCGCTGCTGATCGTCAAAAGTCGTATTTTTGAACGATTCATC
AAGGGCTGCTGTCAAATCTATCCGAGCTTGTGAGCTTTCCGAACAGTTCT
GCGTGACAGCACTCGCTGTTCGTGGTGAAATTGCTGTAACGGGCGTAATG
GTTCCCACGATAGTGTTCGGCTTTAATATAATATTCCGATCAGATGGGTT
ACCAACTTGAAGTAGAGCCGAGTTAGTTACCTTACTCCATTGTGTCACCG
TTCGTGCAATAATCACTGACTGCCATATGTCGTCTTGGGGCATGTCATCG
AGCGTATGAATCGATGCAATTCTTGGCTCGATTAGCGCTAACGTATCTTT
TTCAGGTCGTGCCGTACTAAACACGCGTATAAGTGCCTCATGTGCAGCTG
GTATGACGACTTTTCTAGAAACCAATACTGGCGTCGGTAGGGTGTCTACT
GTTTGCGTTATAATAGAACAGTATTTGGACTGAACAGGACTTTTTACATG
CCGTGCTGGGATCGTTTCTAAACTGTCTTGAAATGAAAGGCATTCCGTCA
ACCAGTCTAGCTTAGCTCCAAATGACTTCATAATACTGTTATCAAGGAGC
ATTATATCCGGTCCTAGATGAGGCAAGACCAACGCTTCCACCGGTAACGA
TTTATTACCTAATTTCAGTGTAAAACGAATGTATCCCAGAATTTGGAGAG
GCGAGCCATCCGCACTACGGAGTGATATAGCGCCGGGTGGGATGGGAAAA
ATGCATTTTTGTCTTAACTTTTCATGTTTGTCAATGAACGTTTTTGATAT
GCACGGTATATCCGTTGCAGAATCGATTGTGAGCTGGTGCTCAATATTGT
TCTCTTCAAGAACACCGGGGATCCGAACTCTTGTGGATGGGAAACGTGTC
GAGTAAGAGGAAACATCAAGTACAGCTGGTTGAGAATGCCTCAGGGGACT
TGAAAAAAATTCATTATATTTCGTCTCGTCCAAGTCTTCTTGCTGTCGCT
GGTGCTTGCTACCTCTAACTCTAGTTCCCGCTAGGCGCTCCGGTATTAAT
ACAGCCGAGGGCGTCCTCCTACCATCTGCTCTAGCGCTCGCTGCTACCGT
ATTCGTACCCTCGGTACCTACTGGTGTCACAACGGGACATGTAGGATGCC
TCGTGGCTACCGGCGCAGTCTTGCTTACAGTGGCTAAAGACCCAAAACGA
GCGGGGGATAATCGATCTGGGCCCCGTCAAGGGTCGCTACCGATTTTTCT
GCCAATTTCTTGAACAGGCAGTCCTCCGTCCGGTGGGTGGTCGGTCGCAT
GCAGTGTTATAATGTACATGTTAATGGTCGCGTCGTACGGGATGCCTTCT
TCCCGTTACTTTTTGCTCTCGACGTACTATTTTCCCTTCGACCCTGGGTA
ACCGGACGTTCCAATTTTGAACGGCCACGGTGCTGCTTCCGAGGTGGGGT
TGGTGCATCAATGATTGAGGCTATCGTAGCTTGCACGTCGTCGAGGCGCG
TCTCCAACTGAGTTTTCAGAGCAGGAGACGTACGCGCGACCGAGGACAAA
TTCGAAACATTGACCCCATGTAAGTTATTTGATGCGTGTTTTCGGGCGCG
ATCTCTCGCTGCGGCAAACGAGTGAGCAGGGTCTTCTCGTATCTGTTCAA
GCCTTATCGCTGGGAGTAATCCATTTTCGAATACAGCTATTTTTAGTCTC
TCCCATGCAAAGGTAGGCGACGATTTTTCGATGGGTCGAGTACGTTCTGC
TTCAGTTAAGAGTCTGGTAAACAGACTACTTATACGGAGAGCGTATTGAT
CAACGTTCTCTCCCGGGTGTTTTTCATCGCGTTGCCTCAGGGTAGCGATG
TCTCGGCACAAATTTGCCAAGAGGTTTGGGGGCGCAAACATCGCTGTCAA
CGCTTCTACCCAATCGCTCCATGAACGCGGCGCCACGGGGGTGACATCCA
TCCGATGTAATCTTAGATTGGACAATGTGTTTTCCGATCTCCATTCCAGT
GTGCCCAGGGTCAACTGGGTGTAAGTTTCTAAAGCAACACTTTTTAATAG
TAGCGGCAAGAAGCGTACAGCTCGACTGTCGATTTCTGATGGAGGGACGT
GGAGGTCACCTTTCAACTCTACACGTTTCCGGAATTGAGCTAACATGGCT
GGGACATCTTCTTCCGATGTCCCATATAGAACGAGTTGTTCAGGTACATC
GTTTGCAGACATTCTAAAAGAATTCGCATGATGACCCATATAGGTCGGAT
CTGGGACATGTGCCATGGGGTTGACATTCACTGTGGAGTTGGAGTGACTG
TCTGGGGTGATCGCTTGGTACAACGGGTTTTTGGTCACTTCTGCACATGC
GGTAGTGTTAATAGTGCTACTGCTATCCTGTGCAGGCAAGGTCGCGTTCG
TTTGTACATCAGGCATCTGGCTTACCATTGACACCTTATCGGAGAGGGCT
GCCGGATCGGATGGCCCTTTACCCAAAGCAATCAGGTCCAGTGCCGCCTG
GATGATCGTTTCCTGAGGCTCCGTCCCATCCGCAATGCACTTCTGCAGCT
GCGAGGCTCGGATCCGAGCCAGTGGAGCCATGGCGGCTGGGAGTTGATTC
CCCATCCGCTTCTCCTGAAGTGCGTCTAACAACGCCCTGGCGACGCTGTC
TGGGATGTCCGCGACGCCGGATCCCACCTCTCCTTCTTCTACTTCTAAGT
TCGAGGAATCGGGTGGTTGAGTCAAGGTGACTGAGGAATGTTCTGTGGAG
CTATCTTCTACAGTCACTTGTGTCTCCGGGGAATTTCCAGAGGATGTATT
GCCCTCGCCTAGCACAGCGAAGGGATTCGTCGCTGACGCTGGGGCCGCAG
GCTTCGCCGAGGTGGACGATGGCGCGTTACCACGACTCGGCTCGGCTGAG
GGAGTCGGCTTGGTGAATTTGACTTTCTTTTTCTTCGTGTGTGACGAAGG
GGTTACCCACTCGCGTCCGGCCGGCATGGTGATAGATGCGGGCGCTCGAG
ATGTCGAAGTCAAACGTCGACGCCAATGTGAGGTGGGTGCTACTGAGAGA
GGTTGCTCAGGCAGTATAGGTTCCGACGACACTCGAGGCTACGGAGCTGG
GTCGGGGGATGTAGGCAAGGAGCTGCCTCGGGGGATGATCCCGTGAATGT
GTGTCCTTAGGGGCGGACCTGCCCGTATAGCATTCCTAGAAACTGGTTCA
TAGGATGCTGATCTTCGGAGATACCTTCGGGTCTACCATGGTTGTACGTG
GTGCCCTCCACATATGTGTATATTGAAAAGGATTGCAACGGTTTCCCGGT
ACACACGCACGTGGTTGTATCGCATTGCAGTAGGTGCAGTAGGTTCAATT
TATTTCTCATGTAGGTCTATACAAGTAGTACAAAACAAATACTGTAGTAG
GCAAAACATTTCTACCATCGGGGAACCCTTTTAAATGCCATGAAGAGGTT
TTGTCTTTGCAGACTGTGACCCCACCTAAACGTTTTGACATTTTCCCCCT
GACTGGGGTATGCTCAGGAGGTCTACATGCGTTCAGTTTTTTTTTAAACG
CAACAATTTGAAATACGTAGTGGGAAATACAAAAATGTATTGCTCTTCAC
CAATACAATATTGTAACGTTCCTTGTCTTCTAGACTATAAGCCCTCACTG
TTGTAAGGTTCGATGGCACACTTATTATCCTATATTATTATTAACCTATT
TAACTACGTACTACCTGGCACAATGTTTTTGTCTTTGTTTTGTCTGGTGT
CCCTGCATGGCGATTATTATAACGGTGGGTTTCTCCCCGATATTATACTG
TTGACCCAATGTTACTACCATCGGGGAACCCGTTTAAATGCCATGAAGAG
GTTTTGTCTTTGCAGCCTATAATCCCACCTAAACGCTTTGACATTTTTTC
CCCTTGACTGAGGGATGCTCAGAAGGTCTGGATGCGTTCAGAATTTTCTT
TAAACAACAGTTCATACTTGTTTGAGGAAGAAATATAGCTCTCATGTGTG
AAATAACTGTAAAAGTATATACTTCGTATTACGGTTACCACTATGTTCCC
TTCCCTTTTCGTTGTAGACTGCTGTAGTACTACAGTTTTAAATACAGAAG
TATGGTATTATAGCAGCTGCGAATAGGTATGTGTGTGTGTGTTTTCTTCC
CATTCATTCTGGACATCAAGTTCGTTGGACGTACCAGCCAGGGTCACACA
GGAGGAAGGTCACACGGGATTTCTCATCCACCTTCTTTCTGCGGTGCGTG
CCTTAATTTTTCTCGCGAGAAGGATTCAGCCATTCCTTTCCCTCGTCGAC
CGTGAAGTCGAATTTTGTGTACTAACGATTTAATCGTTCTCCACCCGTCG
GGCATTTTTATTTTTGTTTTTTTAGTTTTTTAGTGAGAAAAATCCCGTTT
GCCGGGATCGAACTCACGTCCCAACGTGTCAGAGGGTTACGAGGTACCTC
TGAGCTACCGGGGCGACCGGCATTGTAAATGCAGTATAGCACACACTTAT
ACTACTGCTGCTGTACGCCAAGATCAGGACAGCCGAGAGAAGAGGAGAAA
TATGGGAGATATGGGAGATTATCTTGCGTGTTAGCGATGCTCCACAAATA
CTCCGCACGAAGTCTACGTCCATATTAGCCATACTTCTTGGCCCTACTGT
ACTTGTATTTGAGGGCCTTTTTGTGTGGTTCCGAACTCCAAAACAGAACG
CAACTAAATCTCCTGAGCAATCAAAAGGTTTAGGTGGGAACATTGGCTGT
AAGGACAAGAACTGTCCATGGTATTAAAAGGGTTCCCCGATGTCATCACG
TAGAATCAACAATATAATTTCGGGGAGAAACCCACCGTAATACTGTACAC
TGACTTGTGAGTTTAAGAAAAATCTGAACGCATCTAAACCTTCTGAGCAT
CCACCCCAAGTGGAAGAGTGTCTAAAGGTTTAGGTGGGAACATTGGCTGT
AGAGACAAAACCTCTTCATGGAATCCAAAGGGTTCCCTAATGTAACTTCA
TCGGGTCGACAGTATAATACCGGGGAGAAGCCCTCCGTTATACTGTACAC
TTACATTAATCTCCATGCAGGGACACCAAAACCACAATCCTTTTTATCTA
AGAGTCCTGGACTACAGTGTAGTAATATGGTCTTATATGGTCTTAGAGAA
ATTAAAGTAAAATTAAATTAATATTAGTATATAGGTGAGGTTCTTTGTTA
TTGATATAAATTGATGGGAGGCGACATAGGGATATTCAATAGGGTCAGAG
AGGGAACGATACAAGTATATAATCATTATGCAGTAGTAACAAAAGCAAGT
ATAGTAAGATTATAGTAGTACAGGTGTACATTATATTTGCACTTCCGGAT
TACAGTAGTAGTGAGGTCGTAGAGAGACTCCAAAATTTATTCTATGGGAG
ACTTATAAACCTCGCCCTAGAGTTTGATGTACATTAACAACGGGTGAAAA
CAGATCCAAAGGGAAAATCGGAAGAAACCTTACATTATACTAAACTACAA
TAACCATTATGCAGGGCTACAGAAGATCAGGGAAGGAGTTCTCTTAGGTC
TAGATGTACACTAAATAATGTGGAATTCAGTGTTATAAAGTAGCTGTAAG
ATATATACAATATATAGCGTATACAGTTTTAATAGAGATGATGCAGATTG
TGAAAAGAGGTACAAAGGGTAAAAGGGTCTTTAGGAGGGACGAAGAAGAC
GACCAGCCAGGTAGATATCTTCAACATAATCCAGAAAAGACCAACAACGG
TATTCACCTGAAAGTAGAGTAGAGTAAGTAGACGAGGCAATGGAGGGTCG
TACGAGGAAGTGAGAAGCAGGTAGGTGAAGAGCCTCCTTACTATCTGTCA
GAACTACAGCTAACTCGAACACTCCTCAAGCAGTACAGGTCCAGGTCTCA
GTACAGGTCCACGTGAGACCTAACACAATTTAGGAGTATCGGTAGCAAAG
ACAAATGACAGGTAGGCCTCTCAACATCCAAGTACCAAGTTATTATATCT
ACAATACTATTGTAATCCAAGACACGTTGACCATCCCCTTTTTTAGTTCG
TGATACGGCCACCATCCATTTGCCGACACTAAAGCCTACAGCCGCTCGAA
CCCCCCCAAAAAGATTCGCTGTTGATGGGTATTGCCGCTCAATACAGCTG
CTGTCACCTGCTGTTGACACCCCCTGCATTGGTGTACAGTATATGTATGT
ATGTATGTATGTATGGTCATCACATATAGCAGAGTATGGATCAACCGGGT
AAGGTTGCCAATCCTGCTCGTGGTCAGCTGAACAGGGAAATTAGTATTCC
CCTGTCCCCGTGCGTGCCTGAGAATTTGGTCTCGCGAGACGGGTTCAGCC
GTCCCGTCCCGCGTCAGCCTGCTCATCTCCATCCTCAGGCTGAATCTGGT
ATGATATGATAGGATATAATATGATATGATAGTCTTCTATTAAGTCTTAT
GTAATCTTCTATAGTCTTCTGTAATCTTCTATGATCTTGCGATAGTCTTG
TATTTTACCCAAGGACTCATACTGTAACTCATACTGTACCATCAATTAAA
AAAGGCACAGGAACCAACAGTAACAGAAATCGCTTTGAGTTTAAGAAAAA
TCTGAACGCATCTAAACCTTCTGAGCATCCACCTATCTCACCTGCTGTCA
ATACGTCAATACGTCAATACTCCACGTCACATGGGCGGAGTGTTTCAGTT
GTTCCTCTGGTCCGGGCTACATATCAATGGTCTGTTCGAGTAGCCCACCG
GAGGGGAACATAATATGGCCAAAAACGATCATAGAGAAGATCGGGAGAAC
TCTACAGCCAATGTTCCACCTAAGCCTTCAGACGTTTTTTCCCCTGAAGG
TGGACGCTCAGAAGGCTTAGATGCGTTCAGATTTTTCTTAAACACGGCTT
CTCCCCGATATTATAATGTTGACCCTATGTGACTACATTGGGAAACCCGT
TTGATACCATGGAGAGTTTTTGTCCCTACAGCCAATGTTTCCACCTAAAT
ATTTTGACAATTTTTCCCCTAAAGGTGGATGCTCAAAAGATTTAGATGCG
TTCAGATTTTTCTTAAACACGGTCGTTTTTGAGCAGAAACGGGTGAAGTG
GGTGCTAGCCAATCAGATATTCTCAATCAGCCAATCAGATATTCTCCGCC
ACCCTTGTATTTCGGTACACCAGGATTTGGCCGGAAAGGCACTGGGTGCT
GCCGTTTTTGGCCATTGCCCATTGCCCTTTCAAAAATAGCTCATGTCCTA
TCCTACTCTCAAAACAAAACTCTTGGCTACGACTTAATGTACGCTACACT
ACTGTACTACACTACACTATGAATATGTTGATCACTGCTGTACTACACGT
CACAGGGGGGGTCTGGGGATGACAGAGGCGCTCCTTGAGCTGCTGCCGGA
ATCACCCGTCTACCACGTCGGCATGTACCGCAACCCGGGAAGCAACATCC
CTGTGCAGTACTACAACAGACTGCCCAAGGGAAATCCTTCCGACGTTGCG
CTCATACTGGATCCCGTCATCGCATCATGTCAGTCATTCAGTCAGTCAGT
CATTCAATCAGTCAGTCAGTCGTTCGTTGTATCGGTCCCTAGTTTTTCGA
TCGCATCATGTCGTTCCAAAGAAGATGAGATAATCACCCCACTATTATAC
CAGTATTATATTAGTATTAGTGTTGATATGATACCATTATAATACCAGTA
CCGGTATTATGTTGGTATTAATATTGATATTAATATTGATTTTACTTGAT
TTGATTTATACTCCACGCTCGCATAACTCGATAGCCCTCTCTGTTTTCAA
GTCAATCCTCGAAACCGTGTACACTTACTACAATCGTCTACGAGCATGTG
TGTTGTTCTGTTCTGTGCTAGATGGTGATGGCTTTAGTCCTTTTGTCGTT
ATCGTTGCCCAAATCATCCTCCTACCATTCGTATTAAATAATATCATATA
CTGGTACTGTACAGTAACGGATCTCACTCCCCGTCGCTCCATTCCAGCTC
GCACGATCACGGCTGTCGTGTCCATCGTCAAGAAGTGGGGAGCAAAGAAG
ATCAAGGTATGTACATGTACAGTGCGCTATGTACACTACCAGGTACACTA
CAAGACTTGTGTTAATAGTTGTACGATTTTGCTATTTATTTCGTCGTTTC
GTCGTCGCCTGCCGTACAACCGTTCAGGAATTGATTCCCATGAGAGTGTA
CGAGTTTTATTTTATACTGTAATGCTGTGCTACGGGCGTATCATATCGTT
GCGTGTACATCTTCCAAATATTTTTCTTCGATGGAGTGTTCTTTTTGTAC
AGTTTACATTTTAGGGAAAATACGCCTATTGACCGGCGCGCACTATTATA
GAGCAGATCCCCTACGGTAGCATTCGCTCCGCTTGAAACAAATGCTAATG
TTCGAAGCAGAATGCACTCACTGACAATCATTGACAATCATTACATTAAA
CTTACGAGTAGGACGGCGAATATTGTGATGACCGAAGATACCATTATCTA
ATATAGTATTACAGTAATACATACCTGGTAAGTGAAAGAAAGGGTAGCGC
TTTACCATGTACTCATTAATACGAACATTGGAGAAATTCGCTCAGCTTCA
ACGAATGCATCGGGCAGACTCGGATAACTCACCTCAAAGTTAAGTCAAGC
CTTGGACGATGGTCGGTGGGTGGAATTTGACTCGGTCGTTGGCAACTTTT
GAAGTCCTTAAAGTGACGGGGGTACAAACTTTTGTAGTACTGGGCTGCCT
TCGTAAAGCCTTAAATAAAATCTTCTCTGCAAGTGAAGCCATAAAAATGA
CGGGGGTACAAACTTTGCTGTACTGAACTGCCTTAGTAGTGCCTTAAAAG
GCTTTAACTTATCTCAAGCATCTTCTTCGAGGGTTTCCACCGCTGACTCC
AACTGCTGAATTTGCTGTGTATCCCGCACGCTGCTGTGCAACCACATATC
ACACCTTTCGGCGATGGCGATCAAATGCTATGTATGACATGGGTCCCACA
CCTGACGGCAATGAAAGGTTGTCACCTTGGTCGCGTCGCGAAGTGGACTG
GAAGCTCTCTGCAACATGCACCCCGAAGTGCAAGTTTATCTTGCCTCGAT
CGACGAGTTGGCAGAGGTACGATACTACGATGATATATCATACTGTACAC
AGTGTCTTGTCTTGATGAGTACTCTCCAGAAAACGCATTAACGTCACTAC
ACAACACTAATCAACGTTACTTATTTAGACCAAACGCAGGAAATTCCATT
ACTACATGCGATGTCTAACCTCATGATGGCTCGCTCGTGCTGTCTTAGTC
CAGCCCTGTATTGAGCATGTCGTAAGTAAGTTCGCTCCTATAATAAAGTC
TTACCACGAAAGCACCCTCTGTTGAAATAACAAACTGTACTGATGCTGCA
TGGTACGTGGTATATGTCCAACGCTTTCGTATTTCGTGTGTTGCGTGTTA
TGTATGTTTTGGGATGGCAGAATGGTCTCGATCTGATTCCTGGCATAGGC
GACGCTGGAGACCGCTTATACCTCGGGGCGCACAACAAAGACATGGCATC
GTCTGCAGAC
back to topCoding sequence (CDS) from alignment at A-nodosum_M_contig112:54666..71625-
>mRNA_A-nodosum_M_contig112.19.1 ID=mRNA_A-nodosum_M_contig112.19.1|Name=mRNA_A-nodosum_M_contig112.19.1|organism=Ascophyllum nodosum dioecious|type=CDS|length=408bp|location=Sequence derived from alignment at A-nodosum_M_contig112:54666..71625- (Ascophyllum nodosum dioecious)
ATGACAGAGGCGCTCCTTGAGCTGCTGCCGGAATCACCCGTCTACCACGT
CGGCATGTACCGCAACCCGGGAAGCAACATCCCTGTGCAGTACTACAACA
GACTGCCCAAGGGAAATCCTTCCGACGTTGCGCTCATACTGGATCCCGTC
ATCGCATCATCTCGCACGATCACGGCTGTCGTGTCCATCGTCAAGAAGTG
GGGAGCAAAGAAGATCAAGGTTGTCACCTTGGTCGCGTCGCGAAGTGGAC
TGGAAGCTCTCTGCAACATGCACCCCGAAGTGCAAGTTTATCTTGCCTCG
ATCGACGAGTTGGCAGAGAATGGTCTCGATCTGATTCCTGGCATAGGCGA
CGCTGGAGACCGCTTATACCTCGGGGCGCACAACAAAGACATGGCATCGT
CTGCAGAC
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