Homology
BLAST of mRNA_A-nodosum_M_contig83.32.1 vs. uniprot
Match:
A0A7S4HPX0_9STRA (Hypothetical protein n=1 Tax=Odontella aurita TaxID=265563 RepID=A0A7S4HPX0_9STRA)
HSP 1 Score: 73.2 bits (178), Expect = 3.610e-11
Identity = 33/40 (82.50%), Postives = 38/40 (95.00%), Query Frame = 1
Query: 460 GLGAGGMADTRDPDEMDHEDPRKSVSAAPSFEEYMKMRQS 579
GLGAGGMADTRDPD +DH+DPRKS+SAAPSFEEY+K+R S
Sbjct: 38 GLGAGGMADTRDPDALDHDDPRKSISAAPSFEEYLKLRDS 77
BLAST of mRNA_A-nodosum_M_contig83.32.1 vs. uniprot
Match:
A0A7R9ZBD2_9STRA (Hypothetical protein (Fragment) n=1 Tax=Pseudictyota dubia TaxID=2749911 RepID=A0A7R9ZBD2_9STRA)
HSP 1 Score: 67.8 bits (164), Expect = 3.080e-10
Identity = 31/38 (81.58%), Postives = 36/38 (94.74%), Query Frame = 1
Query: 466 GAGGMADTRDPDEMDHEDPRKSVSAAPSFEEYMKMRQS 579
GAGGM DTR+PD M+HEDPRKS+SAAPSFEEY+KMR+S
Sbjct: 68 GAGGMFDTRNPDAMEHEDPRKSISAAPSFEEYLKMRES 105
BLAST of mRNA_A-nodosum_M_contig83.32.1 vs. uniprot
Match:
A0A7S2MQH4_9STRA (Hypothetical protein (Fragment) n=3 Tax=Helicotheca tamesis TaxID=374047 RepID=A0A7S2MQH4_9STRA)
HSP 1 Score: 67.4 bits (163), Expect = 4.540e-10
Identity = 30/37 (81.08%), Postives = 35/37 (94.59%), Query Frame = 1
Query: 463 LGAGGMADTRDPDEMDHEDPRKSVSAAPSFEEYMKMR 573
+G+GGMADTRDPD M+HEDPRKS+SAAPSFEEY+K R
Sbjct: 34 IGSGGMADTRDPDAMEHEDPRKSISAAPSFEEYLKSR 70
BLAST of mRNA_A-nodosum_M_contig83.32.1 vs. uniprot
Match:
A0A6U6EBV6_9STRA (Hypothetical protein (Fragment) n=1 Tax=Odontella aurita TaxID=265563 RepID=A0A6U6EBV6_9STRA)
HSP 1 Score: 66.6 bits (161), Expect = 9.840e-10
Identity = 31/38 (81.58%), Postives = 34/38 (89.47%), Query Frame = 1
Query: 460 GLGAGGMADTRDPDEMDHEDPRKSVSAAPSFEEYMKMR 573
G GAGGM DTRDP+ MDHEDPRKS+SAAPSFEEY+K R
Sbjct: 52 GKGAGGMFDTRDPETMDHEDPRKSISAAPSFEEYLKSR 89
BLAST of mRNA_A-nodosum_M_contig83.32.1 vs. uniprot
Match:
A0A7S1U0L3_9STRA (Hypothetical protein (Fragment) n=1 Tax=Phaeomonas parva TaxID=124430 RepID=A0A7S1U0L3_9STRA)
HSP 1 Score: 65.5 bits (158), Expect = 1.460e-9
Identity = 30/39 (76.92%), Postives = 33/39 (84.62%), Query Frame = 1
Query: 460 GLGAGGMADTRDPDEMDHEDPRKSVSAAPSFEEYMKMRQ 576
GLGAGGMADTRDPD DH+DPR S+S AP+FEEYMK Q
Sbjct: 35 GLGAGGMADTRDPDSFDHDDPRMSISRAPTFEEYMKKSQ 73
BLAST of mRNA_A-nodosum_M_contig83.32.1 vs. uniprot
Match:
A0A6U3BSN8_9STRA (Hypothetical protein n=1 Tax=Amphiprora paludosa TaxID=265537 RepID=A0A6U3BSN8_9STRA)
HSP 1 Score: 67.0 bits (162), Expect = 1.700e-9
Identity = 30/37 (81.08%), Postives = 34/37 (91.89%), Query Frame = 1
Query: 463 LGAGGMADTRDPDEMDHEDPRKSVSAAPSFEEYMKMR 573
+GAGGMADTRDPD ++HEDPRKS+S APSFEEYMK R
Sbjct: 35 IGAGGMADTRDPDALNHEDPRKSISVAPSFEEYMKQR 71
BLAST of mRNA_A-nodosum_M_contig83.32.1 vs. uniprot
Match:
A0A835YTB4_9STRA (Uncharacterized protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YTB4_9STRA)
HSP 1 Score: 64.3 bits (155), Expect = 2.120e-9
Identity = 28/39 (71.79%), Postives = 35/39 (89.74%), Query Frame = 1
Query: 466 GAGGMADTRDPDEMDHEDPRKSVSAAPSFEEYMKMRQSS 582
G GGMADTRDP+ +DHEDPRKS+S AP+FEEYMK +Q++
Sbjct: 39 GVGGMADTRDPEPVDHEDPRKSISKAPTFEEYMKQKQAA 77
BLAST of mRNA_A-nodosum_M_contig83.32.1 vs. uniprot
Match:
A0A7S1Z902_9STRA (Hypothetical protein (Fragment) n=3 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A7S1Z902_9STRA)
HSP 1 Score: 64.7 bits (156), Expect = 2.710e-9
Identity = 29/39 (74.36%), Postives = 36/39 (92.31%), Query Frame = 1
Query: 457 GGLGAGGMADTRDPDEMDHEDPRKSVSAAPSFEEYMKMR 573
G +G+GGMADTR+PD ++HEDPRKS+SAAPSFEEY+K R
Sbjct: 33 GHIGSGGMADTRNPDALNHEDPRKSISAAPSFEEYLKSR 71
BLAST of mRNA_A-nodosum_M_contig83.32.1 vs. uniprot
Match:
A0A7S2JSU5_9STRA (Hypothetical protein (Fragment) n=1 Tax=Leptocylindrus danicus TaxID=163516 RepID=A0A7S2JSU5_9STRA)
HSP 1 Score: 65.1 bits (157), Expect = 2.780e-9
Identity = 30/41 (73.17%), Postives = 35/41 (85.37%), Query Frame = 1
Query: 460 GLGAGGMADTRDPDEMDHEDPRKSVSAAPSFEEYMKMRQSS 582
GLGAGGMADTRDP+E +DPRKS+SAAPSFEEY+K R +
Sbjct: 30 GLGAGGMADTRDPEEYSDDDPRKSISAAPSFEEYLKQRSGA 70
BLAST of mRNA_A-nodosum_M_contig83.32.1 vs. uniprot
Match:
A0A835YLE0_9STRA (Uncharacterized protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A835YLE0_9STRA)
HSP 1 Score: 63.9 bits (154), Expect = 2.900e-9
Identity = 28/38 (73.68%), Postives = 34/38 (89.47%), Query Frame = 1
Query: 466 GAGGMADTRDPDEMDHEDPRKSVSAAPSFEEYMKMRQS 579
G GGMADTRDP+ +DHEDPRKS+S AP+FEEYMK +Q+
Sbjct: 37 GVGGMADTRDPEPVDHEDPRKSISKAPTFEEYMKQKQA 74
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_contig83.32.1
>prot_A-nodosum_M_contig83.32.1 ID=prot_A-nodosum_M_contig83.32.1|Name=mRNA_A-nodosum_M_contig83.32.1|organism=Ascophyllum nodosum dioecious|type=polypeptide|length=135bp
MLNKLRGFETGGEEGEPEKTFEGDPPLAEEVATSGREENVEDELTEQQSL
NQVDTPPSPKITQGLSESRGQDTPATAVLAEEEAVEEEADEKGGLGAGGM
ADTRDPDEMDHEDPRKSVSAAPSFEEYMKMRQSS*
back to topmRNA from alignment at A-nodosum_M_contig83:361735..373427-
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_A-nodosum_M_contig83.32.1 ID=mRNA_A-nodosum_M_contig83.32.1|Name=mRNA_A-nodosum_M_contig83.32.1|organism=Ascophyllum nodosum dioecious|type=mRNA|length=11693bp|location=Sequence derived from alignment at A-nodosum_M_contig83:361735..373427- (Ascophyllum nodosum dioecious)
ATCACACCCAAGAGCTCTGATGCCTTTGTCTTCCCTCATTCGGTCCAGGG
ACATCTTGCCCCGGCCGGTAGGAGAAGTGCAACCACCTTTACCCGGCTGG
CGCGAGAGATTTCTGAGGATGAGCGGAGCAAGGCCCGCGCGGCGCTCGTG
GATTCGCCGGAGTTGAACGACCTGGTATCCATGCTGAACAAGCTCAGAGG
GTTCGAAACTGGAGGGGAAGAGGGTGAACCTGAAAAGACTTTCGAGGGCG
ACCCGCCGCTTGCCGAGGAGGTTGCAACTTCGGGAAGGGAGGTACGTTTT
TATGCCAGGACATACTGTATCTTTATTTAAATTCTTTTGATCTTTGATCT
CGAGCGTCGAGCGTATGTAGAGTCATCACATATAGCAGAGTATGGATCAA
CCGGGTAAGGTTGCCAATCCTGCTCGTGGTCAGCTGAACAGGGAAAATGA
ACATTCCCCTGTCCCCGTGCGTGCCTGAGAATTTGGTCTCGCGAGACGGG
TTCAGCCGTCCCGTCCCGCGTCAGCCTGCTCATCTCCATACTCAGGCTGA
ATCTGTAGACGCTAATCTCTCTTATAGGCCCGAGCATACGAACTCCTCCT
TGATCTTCTATTACATTACAGTATATTACATACAGTACTGTATATCCTAT
ACTTGTATGGGATGACAACAACAGACCTACTTGAACAGTACTGCAAGTAC
TCTCGTGAAGTCGATACAGGAGCAGCTCTACTACAGTAAATCCTTCAGTT
GTGCCTAGAATAACGACTGTCTGTACCAATCCGAAACTTTACGGTAGGGC
AATTGTGTTGTCTTTCTGCGAGCAACTGCCAGATGGGGACAGACAGCACT
TGGCACGAGAAACGTGCCCTTTCTTTCGATTTGCGGTTCAAGCCGTGTTA
CGTATTTTCGCCCTTTAGTTCGTACCGTAGGGAGCATTACCCCCCCCCCC
CGATCCCCCCCCAAAACGTTCCAAACTTGAAAAAAGTCCGCGGAAACTAT
AAACTTTCGGAATGAACGCTCCAAACTTTTTCATCAGGCCGGCTCTTACA
TGGGAGCAGGAATCGAAAAGCCAGAATAATGGTTGAAATCCATTTCTCAA
CCGTGGCCGAAACAAATCTAACCGAGCCAATCTTATTGGCAAACTATTTT
TTTGAGTGGGATGTTTCTGTATTATCAGCTGCGTGACGTGACTTCTTCGG
GTGGCAGACTGGGAAGTTTTATTTCAGTATCACACACTACTGACTGTACA
GCTGAACTTCTAACAAGTCAGACGCACGCGCTGATGTACTGTAGTTGTAT
CCAGGTGTGGACTAAACGTATATACTCTATAGTAACGGTAGTGATTCTGT
ACATCGTGCTTCGCGATCTTGAACAGTACATACTTAGACTAATCGTACAG
TAGTACTGTAGCACTCACCATGTTGCTACGGCAAGTACCTGGATGTATGT
ATGTATGTACCTGTGCAAGCACACCAATACTTTGGGCAAATCACTCCACA
GCAGTACGAGTAAGGTTTAATAAATAGGTTGATATGCTCCAGAGCTTGCA
CTTCAAAATAACTCTCCTACAGAGTTGGATCTTGCACGCACACGCAGTGC
CCCATGCTGTACTCGTAGAAATTGCTATAAATCGTATAAAAACAGGACTT
TTGCCTCTGTGTTCCTGTATATCATGGTGATTTTGCAAGTGTACAGTATA
ACAGCTGGTTCCTCCCCGACATTATACTGGTGACTACCATTGAGTACTGT
AACCCAATCATACCCCATCAAGAGTTTTTGGCCTTGCAGCCTAGATCTAT
GTATGTATGGTCATCACATATGGCAGAGTATGGATCAACCGGGTAAGGTT
GCCAATCCTGCTCGTGGTTGAGAATTTGGTCTCGCGAGACGGGTTCAGCC
GTCCCGTCCCGCGTCAGCGTGCTCATTCTCCATGCTCAGGCTGAATATGG
TGCTTACTCACGGGATTCCTCCCGAATTCCGCGGCGGCGCCCATTTATTT
ATATAAACCGCCATACGCCATCGGGTCAGTCCCGAGTTTTGTTACCACCT
CAACGTCTTGACAATTTTCTCCCCCTGCTTGGGCGAATGCCCAGAATGAT
GAAGGTTTAGAGGTGTCCCGAATTTTCTTGAAATACTTGGAACTGATGGC
AAATCCAACCCAAGTTGACCCCATGTTACTACCATGGGGGAACCCGTTTA
AATGCCATGAAAGGGTTTTGTCTTTGCAGCCTATGATCCGACCTAAAGGT
TTTGATATTTTTTCCCCTGACTGGGAGATGCTCAGAAGGTCTACGTAGAT
GCGTTCAGATTTTTCTTTAAACGTAACTGTGCTGTATCTTCGTTCGGCGT
GTACTATTAAGCTATTAATATCGATAATGCCTAGGTATGGTTTTGTGTAC
GTGAAGGGCGTTATGTAAGTGTATACGTGCCCTTTCCCTCCAAAGCCTGG
TTTCGGGGTATGGGTGTGGGAGGGTCTTTCCGGCGGGTGTAGGGCCGGGC
TCACCCTCGAGGGATGCAGCCAATTGGCTGTCTTTGCGATTCAGCCGGTC
AGTTGAGACGCGGCGGCGGTACGGTTGGTTGAGGATGGTGTTCCCCAGAT
GCGCGCCTCTTCCGAGCTCCAATTTGGTGCTCTTCGGGAGCGAGAGGCAG
AGGGCACTGTCGCGGAGAGCCTGGTAGCGTTCTATAGGGTGGGTACGCAC
CATATTCGGCGAGGGCGGAGGGCATATCGATCGTCGACGAGCCAGGGGAG
TGCTGAACCCCTGTGCGCGAGAATCAAAGGCGCGAACCGGGAGGTTTCTA
AGGGAAAAGCTGATCTCTGACCACGGTCTGTTTTCTTCCTACAAGGGCCA
ACAAGGAGCGGCGAACGGGCAAGATTCGTGGGGCGTTTTTCAGGGATGCA
CAGGGCTTTGGACGGCTGGATGCTGTCTCGCGCGCTGGCTTCATCAGCTC
AAGGCTTTCACCACCATGGACCTCGGCGTTTCAATTTTCCTTATTTCTGC
ATGGCGTGTGGCCTTGAGAAACTTGGGTTTGTTGATAAAAAGTGGTTGGA
GCGTGATTTGTCCGCTTTATTGCTGAGAACGCTGGCCATGAGTAGGCGAC
AACAATCCAAATTGATCGAGGTTGCTGAGCTCGATACCGAGTAAGAAGGT
TTGATGAACCGTTTTGACATTGGTTGGTGCCATTGCTTTTCAAGTGTCGC
ATGATATGTCTTGGTGTAACCCTCCGGAGAGCTAGAAAACGTGTTGTATC
ACTTTTGATAACTTTGTTGGATGGGCAGCACATCAGACGGTCTTTTCTAT
AGCTTGTAATTCAGATTCTGAAATACCGGCAGCCCTCCAGACAGTAGAAA
CTGTAATTGGTACCCAAAGACATCCGTCTTGACGCCGATAATTTTCCGAT
GTTCTCGGTTGGTTAGACCGGGCAAGGGTTTTGTCGCGATTTGGATCCCT
GTTAGTCTGAGTAGCGGGTTGTCACCATGATGTGGCCCGTTGACCTTGGT
ACCTCTTTGTGACCAAGAGCGGGATTGGCATTTGATTGGTCTATGACTGA
CTCTTTGTGTCACCGCAGTTTATTCTTCAGTAGTTACAAGGACAATACGC
TGATTGTGTGCAATCAATCAAACAATCGATCAAAATCATAGTATAATGTA
AGGTTTGTTCCCGATGTTGTGCCAACGGGGAGCCCAATTATATCCCATAA
AGATATCTTGTCTTTACAGACTATGTTCCTACCTTCTAAACGTTTTGACG
CTCTCTCCCCGATACAATAGTGTTTTAGTGTAAGTGTTGACTATTATAGC
ACATCCTACTATCGACTTCGATTCACCAATACTTGAGTCCTATCCCAAAC
AAAACATAACATAGTTTTATTTTTGTTCAGCGTGGACTTTTGCCTCTGGT
TTGGTGTATAGCACCTGCATGGCGATTAATGTAAGTATACAGTATAACGG
TGGGTTTCTCCCCGACGTTGTACTGTCTACCCTATGCTACTTCCATCTGG
GAACCCAATAATATCCCATGAAGGGTTTTTCTCCTTACAGCCTATATTAT
CACCTAGACGTTTTGACATTTTTTCCCCCCTGATTGGATGGATGCTCAGA
AGGTTTATAGAGGTTTAGATATGCGTTTATATTTTTCTTTAACCAGGTAC
AAGTGAAAAGGGCGTCTTTAACCACCAGCAGGTACATACCATCAGCAGCA
GTAGCTGTGTCAAATCAACCACTCTCAGCGCTCAAAGTAAATAAGAGGAG
AGTGACAGACAGAGAGAGGGCTGACTCCCCGTCGATTTTACTATGTACCG
ACAAAACCATGACTCATGGGAGACGTAACGCTGCTGCGGGATCCTGTTCG
ACCTTCAGAGATCACATGATCTGTTTATGGCCTGGAGGCACACTCGCGGT
ATCTGAAGCCGCTACTCACCCTAGTGGGGAGGAAGGGTCGATTGCTCTGG
GTAGAGCGATGGGTAGTGCGAGGGAGGGGTTCGATGTCCTCGTCCGCCTT
AAATGGGAGCTACGGTCATGTAGATGGCTAGAAAAGGTGCGGCTCCGGAA
CTGTTGTAGTGTGTCTCTTATTTTGAGGCAATACATCTAAAATTTGTCGC
GGGTTGTTGTTGTTGATTCACACATTCAGCGTATTGTCCTCGCATCTGAA
GAAACTACGGTGACACAACAAGTCAGCCATAGACCTATCAAATGCCAATC
CCGCTTGTGGTCACAAAGAGGTACGAGGTCAACGGGTCACATCATGGTGA
CAACCCGCTACTCAGACCAACAGGGATCCAAATCGCGACAAAAAGTTATG
CGGCTCTACAAGCAATGGCACCGACCAATATCAAAACGGTTCATCAAACC
TCCATACTCCATATTGAGAGCAACCTCGATCGACTCGGAATGTTGTCGCC
TACCCACGACCAACGTTCTCAGCAAAAAACCGGAAAGATTACGGAAAAAT
TACGCTCCAACCAGTTTTGATCAACAAGTCCAAGATTCTCAAGGCCACAC
ATTGTACAGAAATAAGAACAAATGAAATACCGAGGTCCATGGTGGTGGAG
GCCTTGAGCTGGCGAAGCCGGCGCGCGAGCCAGCATCCAGCCGTCCAAAG
CCCTGTGCATCCTTGAAAAAGCCCCACGAATCTTGCCCGTTCGCCGCTCC
TTGTGGCCCTCGTAGGAAGAAAAATGACGACCGTGGTCAGACATCAGCTT
TTCCCTCAGAAACCTCCCGGTTCAAGCCTGTGATTCTCGCGCACAGGGGT
TCAGCCCTCCCCTGGCTCGTCGACGATCGAGCTGCCCTCCGCCTTCGCCG
AATCTGGTTACAGGTAGTTTTGGTGGGTCGCCCCACTAATACCTACCTTC
TCTCCAAACGAATATCTATCTTTACCACTGAGATCTTCCATCGAACCCTG
TTCGAAGTTACCTACTAAATGTATATGGATTACTGGGAAAGTCTGACCAA
TAGGATTCATGGCAGTTTCAGCAGTCGATCTACGATGCGTGTTTGGTAGA
TCCTTAGTTGTGTTTGACTGGACCACCCTCGTCCAGTTCGTTGTGTGGAC
TCAAGGTGTTCTCTATATTGACTGTAGTACCGAGGAGGGGTCTTCAGCAA
TGTTCTAATAATATATCGGTCTTTATACTCTTATGACATGTGTTCATGTC
GAGCCTGCTCACCAAACCCACAGTACAGCACCACCACTCCCGTGTGAGTC
CCGTCCAGCTCAGAGATTTTCCATTACACTAGTGGAAGAAGAGAGAATCG
AAGATTTCTGGAGCGAGAGAGGGCATCGTCTTGAGACGATCGTGTCTTGG
AAAATTTGGGAATTTAGGGATCACTTGGAGTTAGTGAAGGAGAGCAAGAC
TTGGGACGGAAGGACAGCACCCTGCAAGAAGCTGGGGTTTAATCACCGAT
CGGCCGAAGGAGCCGGAGACACCACGGGCCGAGCGCGCTTTGAGGACAGC
GCCAGTGAGGAAGGAACCACCGGCCGCACGAGAGTAAGGATCTCGTGCCC
AGTGCAAGAACCCAGAGGGGTGAGCCTGGAATCGGGTTACAGTACTAATT
TGTCTGTACCCACACCTGCCGAAGAGCAGCAAAATCACCGGACCGAAGAA
GCTGTACATCGAGTACAACCGGCCGAGGAACGATCGAGAGAGCTGCAAGG
AGGGCGCCAGTGTAGGAGGCACCGGTCGGAGGAGCGCGAGGACTGCGCAA
CCAGGGAACGCGAGAGAGCCTGGTTTACTGGAGATCGCTCGAGACTCCAG
GTCAGGTAAACGCAAAGCCATAGTGTTCTTTTATCTGACTTTTGAAAATG
ACAACTGTCAACGAGCACGAGTACTTCAAAATGGTGCGAGCGCGTGAAGA
CAGGATTAGAACCTTCATGCAACTCGAACTCGAAGCTTGCTTGGAAGAGG
TTTGTTGGTCAATACGATGTTATAACTGCGAGGTTCTCGGCTGCCCGCAG
GAGGAGTACCCGGCGAGGCTGTTGCCTACCCTTCCGCCGAACTACGAAGA
CAATCTTCAGAATAGACTCAGAAGAGCGCAAAAAGGCATATTCCCTGCAT
CGTTGAAAATGATCTTGAATTCAGAATACCAACTCCCTGTACTTCGTTCA
GTATCACAAGTCTCAGTGCAGCCCAGTGTCATAGGGGAACATCGGGCCGG
AAAATACAGCACGGCGTCAGAGTGCGATTTATCGTCGCGACACGCCGCGG
TCGTTACGAGGTCAGAGGAACTCGAAACGCCGCCAAAGTCGCCCGCGATC
GGTACGGGACTACATGGACCCGGAGTATCGCCGGCTATTGAAGCCGATTC
ACCACAGACGGAGAAGAGCTTGTTCCCTTCTGAAACCAGCATGGAAGCTT
TTCTTAACTTCAACTTCCTAAGCCCCGAACAGGAGTGTACTTTGCACCAG
CCGGACATCGGGGTAGAATACAACGACGAAGAAACATCTAAACTTCAGGC
CGGCGCTCGCGAGAAGTCTGCGAGACCGCCAATTTGCCAGCTACGGACGA
CCGCGTGGTCAACCCAACAGAGCAAGCAGTTCGACAGGGGTCGCCTAAAA
ATGGCTGTGTTAATTTCTGACTAATATCTGCCTGCACGTTATTTTTTTGG
TTTTGTCCTTTGTATTTTGCCTGCTTTCCTGTTTTCTATCGTGTGCTTTT
TCCATCATGTCCGAAGATTTGCCGAACCAGGTACAGAAGGCGATAGGAGC
AATCGAGGCGTGTCAAATGGATGATCTGCTATATCCGGAGAGGAGCATTG
ATCATCTCGATTTTTCGCCAATGAAGGGTATTTTCTATATACAGTACTGT
CTGTACCTCTTTGTACGTTTATATTTTTCTCTGATTGCCTCCGTAATGAA
TAGTCTTTGAAAGGAGCTGATACATGGTACTGAAATCATGTGATACGTAA
GTTGAAATGATAGGCAATATTTCTCGGTACAGTAATGACTGATACGTAGA
GTATTATAGTCTTTGAAATGAGTTGATCTACAGTAGAGTACTGGAAATCA
GTATATTTGAAGTACGTAGGTCTAGTCTAGTATCACCGTGTACTCTTGAA
ATATTGAGTAAGAGCATGTCTCTCCGCAATCTTTGTCTGACGTGAGTTGA
AATGACAGGTCATATTTTTTCGGTAATGACTGATACTTAGCATCGGATGC
GAAAGACTATCGTAGACGTCATTCGCAAAAATACTTGCGACATACACTAA
GCCGGTAGGGTTCGAAAAGTTTTTTTTTTTTAATGTTTTGAACTCACAGG
TTAAATGATGCATACCGTAGTCATGAAATATTTCCTCTGCGATATGAGAT
GCATTGATGACCGTTGGAATTTGAATGTTAGTTTCAAGTAGAAAATAGGA
GATGGTCAGAACGCTTGTCTGAAGACGTTTCGAATGTTCCTACATTTAGT
AGCTGGGGAGGTTTTCGAAGTTACCTACTAAATGTATATGGATTACTGGG
AAAGTCTGACCAATAGTATTCATGGCAGTTTCAGCAGTCGATCTACAATG
CGTGTTTGGTAGATCCTTAGTTGTGTTTGACCGGACCACCCTGGTCCAGT
TCGTTGTGTGGACTCAAGGTGTTCTCTATATTGACTGTAGTACCGAGGAG
GGGTCTTCAGCAATGTTCTAATAATATATCGGTCTTTATACTCGTCTGAC
ATGTGTTCATGTCGAGCGTGCTCACCAAACCCACAGTACAGCACCACCAC
TCCCGTGTGAGTCCCGTCCAGCTCAGAGATTTTCCATTAAACCCCTCCAC
GCCCAACCACGAACGCTTGCGTCGAACGATGGCCACCAATCATGAGAAAA
TGTTACACAATGTGACTCGGGGGATGTGTTTGAGGTTATCGCTGGGGTGT
CCTTGTTTGTCCCAGTGCTCACCAAGCATCCAGAAAGGGATTCCCTGTTC
ACCGAGGTCTTGTATGAAGATGCGCTTCGATATGCAGGTTGGGGATCTTG
GTACTGAGAAACATGTCCGGCCTTGAATACGGCACTATGATAAAGAATTT
GTGGTTTAACAAAAAAGTGAAAGAAAAAAATGCATTCCGTGATGAAAAGC
ATTTGAGCGGAGTATCCACGGTAATACAGCAAAACGTCGGGTTATTGAAT
ACCCCGTGGGCACACCAAAGCCTCACGAGCCTGTCGGCGAGATATTTGCT
TGATGGAACTTTGCACCCTGCCTATGGTCACTATCGAGCCCACCCATGCC
CCACGAGAGGTCGACGAAGTCGTTTTCGGAAGCACGATGAAAGGTTGTGA
AGTTGTTGCAAGGCTGCCGCATCTCAACTATCTGCAGCCAGCCCCTCATC
ATGAAACTACCGGGTACGCACCGTCACTGCTCTTGTGCGTATAATACAAT
AGTGTACATTACAGTATAATATTATAGTACAAACCTTTTGAAAGTATCGC
ACGCCAAACTTGAACGGGCTGGAGTGAAAACTCTGTTTTGGTCTTCGAGG
GCTCTGCGGGCGAGGAAACGTTGATCGAGATCGGCAGGAGCAATCCAAGA
TGCACGTATGAGTCACCCCCGCCCGCCCCCACCCAGCTACACGCAAGTAC
TATTATTTTGCGAACTACGTCCGGGATCAAGCTGGAATCGGGCGACATGG
GAAAACGCTTGTCGGATATTTCCGGTGCTTTCAGATGCAGGAAACGTTGA
TCCCCGCAGCGACAACTTCGAGACAACGAGCTGTTTTCCCAAATCTCCTC
GCTCGTTCATGAGCGATTCTGACAACGTGATCAACATGTATCCTACATTT
TGTAGTTTTTGGGGGGGGGGGGAGGCACGGGGACGGGCGCCAATTTTTGG
CTGTTAAACTTGGCGCTTCTCATGACATAATAGACTGGATTAGGGTATTT
CGAGAATAATCCTCACTATTGTCATTTTCTCAGCAACTGTTGTCAGGAGC
TCATTTGTTGTTTTTTCCATTTTTTTTGTCTTGTTTGCAAGACCACAAAA
AGGTGTACCAGATGCACTCAGCGCATCCGCCAAACGGACACCGACGAATT
TCGTCTGAAGCCCCATCCCTGTGCGCAGCCGAATGAGTACTTCGCGCTCA
GCCACAGCGGATCCACCAGAGGGTCTCCTCTCCATCTTTATGGTTTCCAC
TCGCCTACCCGCCAGGCAGACTGCTCTGAACTCACGGCTGCCATGAGGCA
TATTGCGAGCATTGAGCTCACGCCAACCCGCCGGCGGAACAAGAGGCGAA
GCCTTCCCTTGACCATGCTCTCTGCCGCTCCTCCTCCGACCACCGGCGGT
GGCTCTGCTTCTTCCTGCTGGCGCAAAATATCGTACGGTGTATAGGGGCT
TTTGAGATGCACTCAGTTTCAATTTTCACCTCAAGGCAGATCTCGAAGTC
TGTGTCCGGCGGGCGGGGAAACTATTTTTTTTGCAGCAGCAGAAGAGGCG
GTGGAGGCGTGGCCAGAGGAGGCCTCGTGTTTTCTTCAGCCGGCGTTGGC
GCGAACTTAGATTTCGTTGTATATCCTTCATGGCAAGAGTGAGTTATCAG
TCGGCTCGCGGGTAGGCGCACGAAAATCACCGAGATGGGGGCCCTGTGGA
GGATCCGCTGTGGCTATCACGAAGTACTTGAGCGGCTGCATACAGGCATG
GGTCTTGAGAGGAAGTTCGTCGGCGTCCATATGGCGGATATCCAGGGTGC
ACCTGACTCCAGAATACCACTATCAAAAGAACAACTACGTATCTTTTTCT
GTTCCGCGAAAATGCGATGAGGTAAGTGACAAAAATGTGAACCTTTCGCA
AAGGCTCTAGCTGATCAGACAGTTTCCCTCTGTTGTTTTGTCATTGTTTT
GTTTTGGCTGCAGTTTACACTTGTCTAAGTCCCCGCGCTCCCCTTGCGGC
GCCGTTTTTCTTTTGTAACCCCACCACGTAACGGTGTTCGCCGCTCGCAA
AGGAAAATGTCGAAGACGAACTGACGGAACAGCAATCTTTGAACCAAGTA
GACACGCCTCCTTCGCCGAAGATTACCCAGGGGTTATCGGAAAGCAGGGG
CCAAGATACCCCAGCTACAGCGGTGCTGGCGGAGGAGGAAGCCGTTGAAG
AGGAAGCAGATGAGAAGGGAGGGCTTGGGGCGGGAGGCATGGCGGACACG
CGGGACCCTGACGAGATGGATCACGAGGATCCTCGCAAGTCCGTCTCGGC
CGCTCCCAGTTTCGAGGAGTATATGAAGATGAGGCAAAGCTCATGACGTG
TGGTCGGATCGTGTTTACCGTCCGCTTTTCGTTTCTTGCGTCGTACGAAG
TATATTTTGTATTTAAGGGAGAAAAGGAGTGTGAGCGTACAGGTTGATAG
TAAGTTGGTTTCTCCACAAACACGAGAGGACGATGCTTGGCTTAGCTACG
TAGTTACATCTCCTATGCTCGTACCCTCGAGTGTATAACCGGGAAAAAGG
ATGTTGGTCCTCCTATGAAATAGCCCCCTTCGCAGCAGACCCTCTTGAAG
GCCTCGCGGAAGGAATCAAATGAGATCATGGCGGCCCTGGTGGATATAGT
ATTTTTGAGGCCGCCGTAATAAGTCTCCGTAAGAGTAGTTGGTGAAAAGA
TCACACAAAACAAATTGAATGGCAACGTGGTTGGTGCCGGCGGCTCAAAA
ATACAACAGAGTATTATGGGGGAGGAGGGGGGTTGTAGAGCGTTTTGCGA
GGGGGGGCATGGATGGCGACGACGGAAGGACTCAACAATATTAGAGATAG
CAATCTGTTGCAAGCACGAAAATCGACTTTTGAGTTTTGTGAGTAAAGTA
AATGTACTGTACCGATAGAACCGGATAGAATCAACGGATGGACGGACGGA
CAAAAGAGACAATCCTTCTGTGTCTTGTATGACAGGGACTGATGTTGGGT
ATCTCTTGAGGTGATGTAGGCTTTCGTTCGTGAGGGTCTGGGAATCTGTC
CAATGCAAGGTTCAGAAGAAAGAAAAGTTATGAAGTGTACCGTGTGTTCT
CGACGCACATGGTGGAATCATGAATGAGGCTTGCCAAACTCCAAAACCGT
TCGAAGTTCTTGATAAGCAGGTGTATCTTTTCTTTAATTGGAACGAGTAC
TATTCCACAAAAAAACTGCAGTCAAGGATACATAGTTAAGCTTCCCTAGC
CAGCGCGTTCTCTGTAGCATCTAATGAAATACTTCAAAGACACATTCCTC
TAATCATCGACTGAGCGGGTTTAGTGCGGCATTGCTTAGGGGC
back to topCoding sequence (CDS) from alignment at A-nodosum_M_contig83:361735..373427-
>mRNA_A-nodosum_M_contig83.32.1 ID=mRNA_A-nodosum_M_contig83.32.1|Name=mRNA_A-nodosum_M_contig83.32.1|organism=Ascophyllum nodosum dioecious|type=CDS|length=405bp|location=Sequence derived from alignment at A-nodosum_M_contig83:361735..373427- (Ascophyllum nodosum dioecious)
ATGCTGAACAAGCTCAGAGGGTTCGAAACTGGAGGGGAAGAGGGTGAACC
TGAAAAGACTTTCGAGGGCGACCCGCCGCTTGCCGAGGAGGTTGCAACTT
CGGGAAGGGAGGAAAATGTCGAAGACGAACTGACGGAACAGCAATCTTTG
AACCAAGTAGACACGCCTCCTTCGCCGAAGATTACCCAGGGGTTATCGGA
AAGCAGGGGCCAAGATACCCCAGCTACAGCGGTGCTGGCGGAGGAGGAAG
CCGTTGAAGAGGAAGCAGATGAGAAGGGAGGGCTTGGGGCGGGAGGCATG
GCGGACACGCGGGACCCTGACGAGATGGATCACGAGGATCCTCGCAAGTC
CGTCTCGGCCGCTCCCAGTTTCGAGGAGTATATGAAGATGAGGCAAAGCT
CATGA
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