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Homology
BLAST of mRNA_P-littoralis_Contig123.101.2 vs. uniprot
Match: D8LKQ8_ECTSI (Uncharacterized protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LKQ8_ECTSI) HSP 1 Score: 157 bits (396), Expect = 1.260e-41 Identity = 88/136 (64.71%), Postives = 98/136 (72.06%), Query Frame = 2
Query: 125 ASSKIVSLRAFNADLGGTNPWDRQGPTPPPLPKRIAWPGGKIVSNKDVALASFLRRKLDQGQSLTPEQMAMLERMVDPNA----PASAAGF-----AAAAGKRQKRAVGNGRGSGGGDVGGITDARNLLKRLERKV 505
A SK V LRAFN DL GTNPW+RQGPTPPPLPKRIAWPGGKIVSNKD ALA+FLRRK+DQGQ+LTPEQMAML RM PN P +G AAA GKR+ R VG+ + GG G ARNLL +L RK+
Sbjct: 3 APSKTVCLRAFNKDLDGTNPWERQGPTPPPLPKRIAWPGGKIVSNKDEALANFLRRKVDQGQTLTPEQMAMLRRMAYPNTSVSVPPGGSGVGGTTTAAARGKRKVRGVGHVYENSGGXXXGSVYARNLLHKLGRKI 138
BLAST of mRNA_P-littoralis_Contig123.101.2 vs. uniprot
Match: A0A6H5L4S5_9PHAE (Uncharacterized protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5L4S5_9PHAE) HSP 1 Score: 152 bits (383), Expect = 2.430e-39 Identity = 86/135 (63.70%), Postives = 95/135 (70.37%), Query Frame = 2
Query: 125 ASSKIVSLRAFNADLGGTNPWDRQGPTPPPLPKRIAWPGGKIVSNKDVALASFLRRKLDQGQSLTPEQMAMLERMVDPNAPASAAG--------FAAAAGKRQKRAVGNGRGSGGGDVGGITDARNLLKRLERKV 505
A SK V LRAFN DL GTNPW+RQGP PPPLPKRIAWPGGKIVSNKD ALA+FLRRK+DQGQ+LTPEQM ML+RM PNA AS AAA GKR+ R VG+ + ARNLL +LERKV
Sbjct: 3 APSKTVCLRAFNKDLDGTNPWERQGPAPPPLPKRIAWPGGKIVSNKDEALANFLRRKVDQGQTLTPEQMTMLKRMAYPNASASVPSGGSGVGTTAAAAKGKRKVRGVGHVYENSXXXXXXSVYARNLLHKLERKV 137
BLAST of mRNA_P-littoralis_Contig123.101.2 vs. uniprot
Match: A0A4D9D0E7_9STRA (Uncharacterized protein n=1 Tax=Nannochloropsis salina CCMP1776 TaxID=1027361 RepID=A0A4D9D0E7_9STRA) HSP 1 Score: 56.6 bits (135), Expect = 3.020e-5 Identity = 27/49 (55.10%), Postives = 34/49 (69.39%), Query Frame = 2
Query: 206 PPPLPKRIAWPGGKIVSNKDVALASFLRRKLDQGQSL-TPEQMAMLERM 349
P P P+RIAW GGKI SN++ A FLRRK QG + TPEQ+ +L R+
Sbjct: 28 PEPPPRRIAWAGGKITSNREEATLQFLRRKQQQGNHVFTPEQLVLLRRL 76
BLAST of mRNA_P-littoralis_Contig123.101.2 vs. uniprot
Match: A0A7S4A6M0_9STRA (Hypothetical protein n=1 Tax=Pelagomonas calceolata TaxID=35677 RepID=A0A7S4A6M0_9STRA) HSP 1 Score: 54.7 bits (130), Expect = 5.200e-5 Identity = 33/74 (44.59%), Postives = 42/74 (56.76%), Query Frame = 2
Query: 137 IVSLRAFNADLG--------GTNPWDRQGPTPPPLPK--RIAWPGGKIVSNKDVALASFLRRKLDQGQSLTPEQ 328
+V +R +A LG G PWD P P + K RIAWPGGKI SNKD AL + +KL +G++LT Q
Sbjct: 16 VVPVRKGSASLGHIKEKRADGREPWD---PAPVEIVKKRRIAWPGGKISSNKDEALLMYFSKKLARGETLTDAQ 86
BLAST of mRNA_P-littoralis_Contig123.101.2 vs. uniprot
Match: A0A7S0PWY2_9EUKA (Hypothetical protein n=2 Tax=Coccolithus braarudii TaxID=221442 RepID=A0A7S0PWY2_9EUKA) HSP 1 Score: 55.5 bits (132), Expect = 5.540e-5 Identity = 32/59 (54.24%), Postives = 39/59 (66.10%), Query Frame = 2
Query: 206 PPPLPK-RIAWPGGKIVSN-KDVALASFLRRKLDQGQSLTPEQMAMLERMVDPNAPASA 376
PPPLPK R+AW GGKIV+N KD L F+ RK+ QGQ LT +Q L R + P+ A A
Sbjct: 67 PPPLPKDRMAWTGGKIVTNSKDACLLKFIERKVAQGQELTADQQRAL-RALQPSCDADA 124
The following BLAST results are available for this feature:
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Stop | 1 |
| Start | 1 |
| Model size | 1864 |
| Hectar predicted targeting category | other localisation |
| Exons | 5 |
| Cds size | 1032 |
Relationships
The following polypeptide feature(s) derives from this mRNA:
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1680789536.8410594-UTR-P-littoralis_Contig123:480107..480824 | 1680789536.8410594-UTR-P-littoralis_Contig123:480107..480824 | Pylaiella littoralis U1_48 | UTR | P-littoralis_Contig123 480108..480824 - |
| 1680789536.8986824-UTR-P-littoralis_Contig123:492636..492751 | 1680789536.8986824-UTR-P-littoralis_Contig123:492636..492751 | Pylaiella littoralis U1_48 | UTR | P-littoralis_Contig123 492637..492751 - |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1680789536.8516817-CDS-P-littoralis_Contig123:480824..481377 | 1680789536.8516817-CDS-P-littoralis_Contig123:480824..481377 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig123 480825..481377 - |
| 1680789536.8610537-CDS-P-littoralis_Contig123:481862..481954 | 1680789536.8610537-CDS-P-littoralis_Contig123:481862..481954 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig123 481863..481954 - |
| 1680789536.87254-CDS-P-littoralis_Contig123:483139..483313 | 1680789536.87254-CDS-P-littoralis_Contig123:483139..483313 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig123 483140..483313 - |
| 1680789536.8812485-CDS-P-littoralis_Contig123:483739..483842 | 1680789536.8812485-CDS-P-littoralis_Contig123:483739..483842 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig123 483740..483842 - |
| 1680789536.889931-CDS-P-littoralis_Contig123:492526..492636 | 1680789536.889931-CDS-P-littoralis_Contig123:492526..492636 | Pylaiella littoralis U1_48 | CDS | P-littoralis_Contig123 492527..492636 - |
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-littoralis_Contig123.101.2 >prot_P-littoralis_Contig123.101.2 ID=prot_P-littoralis_Contig123.101.2|Name=mRNA_P-littoralis_Contig123.101.2|organism=Pylaiella littoralis U1_48|type=polypeptide|length=344bp
MSVASSKIVSLRAFNADLGGTNPWDRQGPTPPPLPKRIAWPGGKIVSNKD VALASFLRRKLDQGQSLTPEQMAMLERMVDPNAPASAAGFAAAAGKRQKR AVGNGRGSGGGDVGGITDARNLLKRLERKVARDSDPFEAGKGGRSGSRIQ KLASSSEMGRRKVDLSALKRGGQAGGSGGGGAGGRRVISDGQGGFTIATR VLPSSKGVDVARGAQAAAAGPPEVQQQWATSKRPRGVAEAEAGAAATADI PEVYREAADFFGTGGGAGKKGKHGGKAGGKGKKGGAQQKQKKQLQQQNGR GKGGTVKTKGISNVSGLAGGGAGGGSGDRSLEDLMSGGLTGRR* back to topmRNA from alignment at P-littoralis_Contig123:480108..492751- Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-littoralis_Contig123.101.2 ID=mRNA_P-littoralis_Contig123.101.2|Name=mRNA_P-littoralis_Contig123.101.2|organism=Pylaiella littoralis U1_48|type=mRNA|length=12644bp|location=Sequence derived from alignment at P-littoralis_Contig123:480108..492751- (Pylaiella littoralis U1_48) CATCAATCAAGCAAACAGCACGCAATTACATTCACATTCATCCGCTTCTC
CTGCTTGACGTCTCACGCGTCGTTCAAATCGCCTGTCTGTTGCGTTGATC
GGCTCATCGGAAGATATGTCTGTTGCGTCGTCGAAGATCGTCAGCCTTCG
GGCTTTTAACGCAGACCTCGGTGGAACCAACCCTTGGGATAGGCAAGGGC
CCACGCCGCCACCACTCCCCAAACGGTGAGAATCATGTCTTTCTCATCGT
CACGTTTCTCGACGTAAAACAATCCGAGTTTTCCCGAGCTTTCCACCCAA
AACAAAAACGCTGGAGTTGTATGAAGTGCAGAGCAGATCACAGATGAGAG
GGGTAGTCTCTGTCCTTGGTCTCTCTGCATGAGATGTGCCTGTGGCCGCC
GTGGAGATGAATTTTGGTTGTCTATCGTCTGTTCCAAGTTCCAAGGGCCT
GTCAGCGGCGGATCGAACCGCGCGAGAACGGGGAGTAACGGTCCCCTAAT
AATCTCGGATGATGAAACTTTCAGGAATATGAGTAGTCGCAGCAGCTCGA
CGGAGTAGCAGGCAGCGGCGGTGCGCTCTTTTGTTCGCCTGTCGCCGTTT
ATCTGCAGCTTGACAGTAGTCATACCTAGAGCCCCACCAGTCGGCCGGTT
TGTTTGAAACGAAGTTGTTCTGAAGAGATGGAATTTGGTTTTCGCAAAAT
CACACGATTTATATCTATGTACCCTCACTTGGAAGATGCCCCTTTTCTTT
TTCCCCCAAAAAACAAAAAATCCTCCCGTGTGACCTTCCCGCTGTGTTAC
CGCGGCTGGTGCACCTACCTCATTCAAGTACTTCATACCGGAAGGTGTAG
CCAATGTGTGTGTGTGTTAGTCCCGTGTTTTCTGGCTCCAGTTTATACAC
ATTTCGGTCTACTTTTCGGTGGATAGATAGTCTCAACGTTCAGCGGGGGT
CACACAGGAGGAAGGTCAAACGGTCACACACGAGCTTTTTCTTTTTCTTT
TGTTTTACAAGTATTGCCCACACCTTTCCTCCTGCGGTACTTCCTTTAGT
TGTTGGTGTGAGAGGCTACTTATTATGTGTCATTTTTGCCAGATTATTTT
TGATCAATAATGATCTAGGTGTCACATCCGGCTTCTTTTGGTCATTTTTG
CGCCTTTTTTGATCGAAAAAAAAATGATCTGGGTTTCTGATCGCCCGAGT
TGATCAGAAAACTTGGAAAAAATGATCTGGACAGATCATTTTTTTTGTTC
ATCATTTTTGCTATTTTTGAATTTGTGCCGCATATATGATATGCCAACGG
ACGACACCAAGACGCACATCCCACAGACTCACATCCCCACAAAAGCGCTA
TGCCAGCTCGGCTGCCATCACTGCTGCTCCTACTGCTACTTTTGGTGGGT
GGTCAGCGTGTTGCTTCATCGTCGTCTCCCGCCAGCAGCGTTCATCCCAT
CATGTCCGCAGCAGCAGAGGGCAGAGTCAAAGACCTCCATCCAGAAGTCG
CGCTTGCGGCAGCGCTGGCTGCTCTGGATGACATCCAACCGGATGACATG
CTGTCAGATGCCGAGGCCGAACCTGACGAGGAACCCCGGCGCGAGAAGCG
CGGTCGAAGGAAGAGAAGGAAGAACGACACCAGCACGTGTGCTTGGGCGC
AGGTGCTGGAGGATGAAGACCTAAAGGATCCTACAAGCATAGCGGCGAAG
AAGTTTCGAGAGGACTTTCGCGTCCCCTACCCCTTTTTTCTGCGGCTTGT
GGAGTTGGTGAAGAAGAAGGATTGGTTCGCCACCGCGCAGCGCGACGCGT
ATGGGCGGCGATGCCACCCAGTGGAGCACAAAGTGAGCTTGACGAGGTTG
ATCACTCGTGGGTTGTGGCTTGTGTACAGCAGTAGTTTTACTGCACTAGC
AGACTCGGGGTGCGTTGAATTGAAGGAGGCGATATTCCAAAATGGATGAT
ACCAAAAAAGTAGCTGATACTGCTGTAGTATGTTTGTGTGTGAGAGAGAG
AGAGAGCGAGAGAGGGAGCTGCTCTCTCTCTTATACTGCTGTTGATGAAC
CCGCACCTGCTCTCTCTCTCTACTGCTGTTGATGAACCTGTGCAGCAGCA
ACGACTCTTCTTTTCACTATACAGCAGTACCCGGTACTCCATACAGCAGT
ATTGGCTACATCTGTCTGGATCGCATTCTAGTGCTGTACAGCAGTACTGG
AATATATTTTTCGTTTGTGTCACATGATGTGATATGATACAGCAGTCGCC
TCTGTCGGCTATATCATACCTTGTACTCCGTAGTACATGCTGTATCTGTC
TAGATCGGATGTAGAGCTGTAGGCTACAGCAGTAGCTTTTGTATCATATC
ATATGATACAGCAGTCGCCTTTGTCGGCTACGTCATACCTGGTACTCCGT
ACAGCAATACAGGGGACATACTCGTATTTTTGGATCCCTTTTTTGTTTGT
ATCATATGATATGATACAGCAGCCGCCGCTGTCGGCTATATCATACCTGG
TACCTGGAACTCCGTGCAGCAGTACATCTACATCTGTCTGGATCGCATTC
TAGTGCTGTACAGCAGTAGCTCTTTCAGCCGCAGAAATATAAGAAGTATA
TACCGCAACAGGACAATGTCTGGATCACACTACTGGAATATTTGTATCAC
AGCGGTGGCCCTGTTGGTTGTGTCATGCAACAGCAGGTGTTCTGTCTGGA
ACGCCTATTCCTTTGCCTGTTTTGTGCTACGCACGCGCGCCAGGGTAACA
ACGTTGCTAATTCGTCTGCACCCTGCCCCCCCCCCCCCCCAATGAACACA
TGTTGCGAATGGTGCTGCCGTAGGTGCTGGCGTGTCTGACTATACTGGGC
AGGGGGAATGTATTCGGAAGCATCTACAACCTTTCGTGGATGAGCACCCC
GACAGTGCAGAAGGTGTTCCACCAGTTCTGCGAGCACTTCGCAACCGAGA
TGTACGACGAGCACATCTTCCTTCCCAGCGAGGAGAACGGCGAGCTGGAT
CGCGTCATGGGACAGTACGAGAAGCTGGGGTTCCCGGGCGCAATGGGTTC
AACGGACGTCACCCATATCGGGTGGAGTAGGTGCCCGTACAACCAAGGAC
GTTCTTACACCGGTAAGGAAGGCAAGCCTACGGTCGGATACCAGGTGACG
GTCAACCACGCTGGGCGTGTGCTGGCCGTGACAGAGGGGTTCACTGGGTC
CACCAACGACAAGACCATCATCTGCTGTGATGAAGCGGTAGACAGAATTC
GGACCGACAAGCAGTACGCCGAAAAACCATTCACAGTCCACAAAAAGGAT
GGTACCACGGAAACCCTGAAGGGGTGCTACCTCATCGTCGACAATGGTTA
CCACAAGGTGAAAAAATGTAAAGTACCACACGAAATGTCGGGGGGGTTTT
CACGAGCACGCCTTGTTTGTCGGCCAACCTACACTATCATCCCGGTTGGT
CGAGCTCCATGCCGTGGGTTTGACGTGCGACAATGAACGCGGTATGACAC
ACAGAAGGTTAATATTTCCCCTTCTCTCCTTTGGTTTGTTTCGGTCCTTT
CATGCAGTGGCGGATGCTCATTGAACCCTCGAAGTACCCGTTGAGCGAGG
CTGACTTGCTGTTCTCGAAGAGGCTGGAGAGCGTGCGCAAGGATGTGGAG
TGTTTTTTCGGCATCCTGAAGATGCGCTTCAGAATCCTGAAGCTCGCCAT
GACCTACCAGAAGCAGGAGCGCCTCGACTACGTCTTCTTCACATGCTGTA
TCCTGCACAACATGCTCCATACGCATGACGGCATGGGCGGCCTGGAGGAG
GACGTGAACTGGGTCGGCAGTGCCGAGCTCCAGAACACGTCGGGGCACAA
CCTGGACTCGAGCTCGGTCGGGACCAAGGACCTCAACGACAAGCCCCAGG
TCGAGGCCGCCCATGCGGTGCTCAAGCGGAAGCTGACCACGAACTTCCTG
TACCGCAAGAAGCACAAGAAGGACATTGTTTGGCTTTCCAGGAAGAGGCC
TGAGATCTAACCGTAGAACTCTGTTGTTCGTTTCCCTCTCTTGGGATGCC
GCTTTTCTATTTTTTTATTAATTTCGTACGCGCTATCGCGTGTGTTGGTG
TGCGACGTTTTGTGTCATGTAGTAGGGGAGGAAAGCGTCTACTGTACCAG
TTCGTGTTTGGCAATGGCAGCGTAGAATACGAAGGAGACGCGGGTGAAAT
CTTTTTTTATGATCGTACCGTTCGTTAATTTTTTTTTGTTGTCCCATGTA
CGCAGAAAGACCAAAAATATAACAAAGACGAGCACACACACAAACAAAAA
AGAAGAACGAGCGGAGCAGTAGAAACGACAGGTGTTTACTCCGGTACCAA
CAGCACCGCATGCTCCACAAGCAATGTGAAATTCAACAAAGACAACAACA
CACAAGCACGGAAAAAAAAAATGTGGTAGACCGGCATTCACTTTTTGGTG
CAAGCGCCCTACAAAAAAAAACAAACAAGCAGAGCAGTAGAAACGACAGG
TGTTTACTCCGGTACCAACAGCACCGCATGCTCCACAAGCAATGTGAAAT
TCAACAAAGACAAAAACACACAAGCACGGAAAAAAAAATGTGGTAGACCG
GCATTCACTTTTTGGTGCAAGCGCCGTACAAAAAAAAAATAACAAGCAGA
GCAGTAGAAACGACAGGTGTTTACTCCGGTACCAACAGCACCGCATGCTC
CACAAGCAATGTGAAATTCAACAAAGACAAAAACACACAAGCACGGAAAA
AAAAATGTGGTAGACCGGCATTCACTTTGGTGCAAGCGCCGTACAAAAAA
AAATAACAAGCAGAGCAGTAGAAACGACAGGTGTTTACTCCGGTACCAAC
AGCACCGCATGCTCCACAAGCAATGTGAAATTCAACAAAGACAAAAACAC
ACAAGCACGGAATAAAAAAATGTGGTAGACCGGCATTCACTTTGGTGCAA
GCGCCCTCCAAAAAAAAAAAACAAGCAGAGCAGTAGAAACGACAGGTGTT
TACTCCGGTACCAACAGCACCGCATGCTCCACAAGCAATGTGAAATTCAA
CAAAGACAAAAACACACAAGCACGGAAAAAAAAATGTGGTAGACCGGCAT
TCACTTTGGTGCAAGCGCCGTACAAAAAAAAATAACAAGCAGAGCAGTAG
AAACGACAGGTGTTTACTCCGGTACCAACAGCACCGCATGCTCCACAAGC
AAAGTCAAATTCAACAAAGATAAAAACACACAAGCACGGAATAAAAAATG
TGGTACACATTTTTTTTGCATCACAAGGCGGCTGTGACTCTTGCGGTCAC
AGCGGGTACCTCACCACCATCGCCGCTCAGATTCTACGTTCCCCGGTTCC
GGCCACGCTTGATGTCGCCCCCCCTCCACCACTCCCCATCCCCGCTCCGC
CACCACCAGTTATGCCCGGCATGACAGGAATAGCAGGCATTCGCGCAGCA
GAGGTGGAAGTCGCAGGGGTAGATGATCCGGCTTCTGGAGATGGTGTTGT
CGCAGCTGGGGGGGTGGCTTCCATGAAGTCAGACAAGGGTTGCTGGTACA
CTGCCATTATTGCGGCACGAAGCTCATAGTACTGAGCCGAACCCACCTCC
GAAAACTCGAGTTGCCCTCGCATGTTGTTGACCTTCCTCTGCTTGCGGGA
TTCGGCGGCCGTCTCGCGTGCCCTGACCGCAGCCTCTTCATCGAGAACCC
GCCGCGCAGCAACGGAGTCCGCCAGCGTCTTCACGGCCTTAGTAATCTGG
TCACCTTGGGCGAGTCGTTTCTGGCGGAAGGCCTCATTGGCAGCCTTTGA
TTTCACCTCCGCCTGCTGCTTTTGCACCTGCGCTCGGCTTTGCGGCTCGC
CGGCCCCGGCGAATGTCCGGATAGCTGTTGACGTGAGGTTACCATCGGAC
CCTACCCCGCCTGACTCAGTTTCGCTTTCCTCCGTGCTGCTGTTCCTGCT
GCCCCCCGCGGAGCTGCTGCCCCCCCCGTCCTCCGACTTCCGCTTCGACC
CCCGCTTCGGTGGGCCGCTCGTCTTCCTGGCGGTCGCCAGGTCGGGATCC
TCGCTGTCACTGGGCCTTCCGATAAAACAGTAGATGAGGAGCAATGGGTG
CATCCATCCGTCGGGCCTTGGCGGGTAATCCCCGTCATCACCCGCCTGTT
CGTCCTCAGAAGGCACGTCGTCGTCGTCCACACTCACATCGTCATCGTCC
GGGTTCCTTTCCTTCTTGATGACAGCCGTCTTGCCCTTCTCCCCTTCCTG
GTCTGGCTTGTCCTCGTCCGGCGCACCCCCGTCTGCCTTTTCCTCCGGGG
CTTTCCCTCCGTCGGCTGCAGGAGTGGACTCCACGAGATCGTCCTCCTGC
ACAGGGCTTTCCGCGGAGCCTTTGGTTTTCGAGTAGAGACCGTCGAGAAG
GTTATTGACGGCGTCGTCTCCAGTTTGGCCCGACGGCAGGTTGCCCCCCG
GCTGGCCCTTGACGTATCTGGTGGAGATGACCCAAACATAATGTGCAGCA
GTAAGATAACTATCGAAATGCATACTGATTTTTTTTATCTTGCCACCTGA
TGTCGCAACTGTATGTGCTCAAGCGGTAACGTTGTACTCGGTCTAGCCGG
AGTACACATTCGAGGAATATGTACGTGCTCAAGGGGGCGGAGGATGGATT
CAATATGTTGCAAGCAAAAAAAGACGACCTACCTGTCCCAGATAGGGTTG
CAAAACTTCTTCATTTTAAGCATCGCGGCGTCGAACTTGGTCCAGAGCTT
CTTCCCGTTTGTGTAGAGAACCGGTGCTGCGCCGCACAACAGAAACACGC
GTAGTTTTCGCCATCAAAATAGTTATTCTTACAAACATGGGCATGCACAA
CAGCAGGGACAGTAGCTGTAGAATTAGCAGTAGTAGTGGAAGTAGTAGTA
GAATTGCAGTAGCGGTAGAGATAGCGGCAGCAGTAACTTATAGGTAGTTG
GTGCGTGGGCCAATATTGCTGTTGTATGATATGATACAGGCAGGCGACAC
ACGTTGTTCTGTAGTACTGCTGGTGTTGATGAATCAGAAGAGAAGCTACG
CTGCTGTAGTTTGCGGTAATACAGACGGGCGTGTTTTGTATCACCTGGTG
CTGCTATTATATACAGCAGATGGAAGATGGTGCTCTACTGGACACACGAA
GACTAGCGGCTACTGCTGTAGTACAGCAGTACTGCTGTACGCTGGTATGA
TATACAGCAGAGAGAGGATGATGCTCTACTGGATATACGAAGACTAGCTG
CTACTGCTGTAGTACAGCAGTACGAGATATGCAGTACAGCAGTACTGCTG
TACGATGCATGTAGGACAGCAGTACTGCTGTACGATACAACAGATACCTG
GTGCGGGCTAAATATTGCTGATGTATTAAATGATACAGGCAGACGAGACG
TTGTTCTTTAGTACTGCTGGTGTTGATGATCATAAGAGTAGTACTGCTCT
GCGGTACAGACGGGTGTATTTTAAGTACGTAGTCTATATACTATATATAC
TCATCCTGCCCCCCTTTCTCTCTGTGACATCTCTCCCTCACCTCCGTCGA
TGGAGGTGGCCCCAATCCTCTTCATGGTCAACTCAGAAGGGAACGTGATG
TCGTTGTCCCTCGCCCATCTGAAAAAGCCTGGCACGGCGATCTCTCTGTA
GCCTTTGGCAGCAGCAGCGCGCTTCGCTTCGGTGCCCACCACGCCAGCAT
TGCGCTTGACCGCCAAGCAGGAGTACACGATGCATACGTTCTGGATGAAC
AGCATCTGTTGCTTCACGGTGAACAATTTCTTGTTCTCTAGCGCGAGGTT
GATCGACGTCTTGACGTAATCATTATATACCAGGGGAAGGGGTAGTACTT
CGTCTACGTTGATGTCCATGGCTGTGGTGCGCCGTGCTGCTCGGGTTGCT
CTGTGTGCCGTCTGCTGAATCGCTGTTGACGCGTTTGAGCATTGTAGCGG
AACCGTCCGTGGACAGTCTCGTTTCGCGCGCGGATTTGAATTGTGTTGCC
CAAACGCCGCTCGGGAACCTATGAAACCCAACTTTTTTTCTGATAAATAT
TTTATGACACATAAGATTCGGGGCGTCGAGACACCTCGTCATTTTTGATG
AGATCATTTTTGATCAAAAATAATCTGATCAGATATTACACATAATAAGT
AGCCTGAGTGAGGTTCAGCAGTACCTTCCCCCTGTTTACTCACGAACATA
TCGCTTCCCACTGCTGTGAAGTCGCAGATGAACGCTCTCAGAGAGAATCG
AATCTACCACCAAGTAGGTTAACGAGGGAACCACAGACCACCGGGGCGAC
CGCGTATCGCCCAGAATAAATGCTACGAGACACACACTAGAGTTATTGTT
GTTGTTGTTGTTGTTGAACAGCGGTTTCAGGACACGGCAGACAGCAGTAT
TTATTACAGTCGAAGTCAACAATGAAGATGACACATCTGAAAACGTTTGT
ATGTAGCTCTGGTGAGCTTATTAGGCTCGACAAGACAATTTGGAGGCTGA
CTTGGAGGTTGTCTTGTGTGACACACGTCCTCGTTTTGCTTGTCGTTGTT
GAAAACTAGTGCGGTAATATGATATCCACCGAAACCACTACTGCTGCTGT
CGTAGAGGTGTTTTTATGTTTGAATGAAAAAAATAAGGATACCTGCGATA
GGTTTTCGGGCTACACTATTTGGTCGCATCAGCTCTCTCTCTCTCTCTCT
CTTTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTTGATACTT
CGCTCCTGCTGACCGTCCCTCCCCTTCCACCCCCACCCCCCCGTCGCCCT
CCGGCTGGTTTTCTTTCCTATGTTCCCTGGCTGCCTGGTTACCTCCGTCT
GTGCATGGGTGTGATGCGAACGATACGACGACGCCCATATCATATACTCC
GGTATAAAGAATCGCTTGGCCGGGGGGCAAGATCGTGTCCAACAAGGACG
TCGCGCTAGCCAGCTTTCTGAGACGGAAGCTAGACCAAGGCCAATCCCTC
ACCCCCGAGCAGGTGAGGAGGCGTCACGACACGACACAACACAACCCGCC
GGTTCGTCTCTCTCTACCCTCTCAAGCCGTGCTTGTCCGTATCGAGGCGT
GGGAGTGCGAGGAGGGGTGCAGCAAGCTGAATGGCAGCGCAGAGCACACA
CGAGGCCCTTGCGCACGGGGGGAGGGGGGGGGTCATTTCTAGATTGGTTG
GTTTTCATCCATCGTTGAGCAGAGCTTGCTGCATGCAACGCGCACATGAC
AGCGATCACGTGCGCCTTTCGAAACGATGGCGATCGATGGAGGTCCTGTT
TTTCAAAACCACCAACAACGCAACCGAAAAATGTCGGCGATACGACCACG
TGGTCACCATCATGTATCTTCATCTTCTTCATGTCCCTGGCGTGTTTTCA
TGCTCTACGAACCTACCAAACCAACCATGATCGACCAGATGGCCATGCTG
GAGAGGATGGTCGACCCGAACGCGCCAGCATCTGCGGCAGGTTTTGCTGC
GGCCGCAGGAAAGAGACAGAAGCGCGCCGTCGGCAACGGTAGAGGCAGCG
GCGGTGGCGATGTCGGCGGTATAACCGACGCTCGAAACCTGCTGAAAAGA
CTAGAGCGCAAGGTAAGGGAAAGGGAGGAAGGCAACTAGCGCGGTTCAGT
CGTGGGTGTGGTCAGCCACAGAATGGGCACCGCAGCCGAGTAAAATGCGG
CAAGTTGTTACTACCAAGGCGTGGTCGTGATCTTGTGGACGAAGGAAAGC
AGACTGGACATCCATGTTACCCGGGAGTTTTCATCTAGAAGGAAGAGAGG
AGCAGAGCAGCCCGTTCAAGCAGCCCTGGGGCGCTCCACACACATGGTTC
GCTCTTCGCAAGCACGGACCCCCCACCGTGAAGATAGATGGAGAAGGATG
CTGTGTTCAGGGGACGAGCAGGACTGTCTATTTTTGCTTGCGTTACGAAC
AAGACCTACTTGCAAGCGAGAAGTTGTTGTCCCCGCGTGGTTTTGTGGGA
CACACGCATGAAACACACGAGATACAAAAGAGAGAGATGACGACCGATTC
CTGTTCCTGGTAAGGGGTGGTCCTGGGGAGAAGGGAGAACGGGACGAGGG
AAGGAACGAGCTACAACCAGTCGCTCTCATCGGTCCGCGAAAACAACAGG
TTCCCCCGAACAAGTACACGCAAGCATGCACATATATCCATCCACCAGGT
GTCAGTCTTGCACGAGCGGCGTGACGTCCTTGTTGTTGAAAGGTAGCCTC
GGATTTCGATAGCGAAGGGCTCGTTGCTTGTGCTGTTGGGGATGTTTTGA
GACGTGCCTTAGACGCGGGCGGGGAGGGGAGGGGAGGGGAGCCTAAGACA
GTATTTTTTTTTTGGGGGTGCGTTTGCCTCAAAACTACTCTCTGCCCCAT
AGGAGTGACCGGGACATGCTTTTTGAACGACTCTCAACGCACGACTGCCT
GACAACAGCCCAGCAGCGCCACTCGGCTCGAATGTGCTGGACCGGGATAG
CTCTACCCATCTTTGGCAGTTTGTGTTCGGTGCGGTTTCTGTTTATTGAC
GAACCGATGTCAACACTACCTTCGCGACTGCGGCTACTGCTATGGCTTTT
CCACTGCCATGGTTCCAACACTGCCTGCCTTTGTACTTGTGCCTCTCCCT
CCCCCTCCCCCCCCTCAATGTCTCTCTCTCTCTCTCTCTCTCTCTCTCTC
TCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCCTCTCTCTCTCTCT
CTCTCTCTCTCTCTCTCCCTATGTGATTGTTTTTGTGCTTGTTGAAGGTT
GCCAGAGATTCTGACCCCTTCGAAGCAGGCAAGGGCGGCAGAAGCGGCAG
CAGGATTCAGAAGCTGGCGTCGTCTTCTGAAATGGGCAGGTGTGACGATT
ACGCAGACGATGGGTCGGGCATACAACGTGCAACAACAGGCATGCCAAGA
ACAAAAAGCAACACTAGAACAGTAGCGTACACCCTCTCTTCGTTCTCACT
TGACAGCTATCATAATATATCATAAGTCTCGATGAAAAAGCCCCTCTTCA
GGTGCAGGCGCGACGCACGTCAACCCACGAATACCGGTACTCGTATCATA
GCAGCCCGCTTGCTCGCGACGACGCGCCCCTCGACGTATGTTTTCGCCAA
ACACCTCCCGCCGCAGCAGCATCTATCTCACCGTCGCCCAAAACCTCCGC
AATGTCGGCCCCTGTCCCAAGCAAGCCCCCACTCCCACACGGCCAGCAGC
ACCCACGCGGTAAAACCCGTCTCGTCAGAAAACATACTAGCTCGCGAAGC
ACCGCCACTGGTGTATTTTTGTTTTGACACCCTCTCTTGCTGTTGCTGTG
CGCGTGCAACTTTGGGTCAAGCAGGCGCAAGGTAGACCTCTCGGCCCTCA
AACGCGGCGGACAAGCGGGGGGGAGCGGCGGCGGCGGTGCGGGCGGGCGG
CGTGTCATCTCCGACGGGCAGGGCGGTTTCACCATCGCGACGAGAGTGTT
ACCATCGTCGAAGGGTGTCGACGTTGCCCGTGGTGCGCAAGCCGCGGCGG
CGGGACCGCCCGAAGTGCAACAGCAGTGGGCAACTAGCAAGCGTCCACGG
GGTGTTGCCGAAGCCGAGGCAGGAGCGGCGGCGACCGCGGACATTCCTGA
GGTCTATCGCGAAGCGGCAGATTTTTTCGGCACCGGGGGCGGTGCCGGAA
AGAAGGGAAAACACGGAGGTAAGGCCGGCGGGAAGGGAAAAAAGGGAGGT
GCCCAGCAGAAGCAGAAGAAGCAGCTGCAGCAGCAGAATGGGCGTGGGAA
AGGAGGCACTGTCAAAACAAAAGGGATCTCGAACGTTAGCGGCTTAGCTG
GCGGAGGGGCGGGGGGGGGGAGCGGGGACCGGTCGCTGGAAGATTTGATG
AGCGGTGGTCTCACCGGCCGGAGATGAGAACGAGGACGACGGGGGCGACG
TGGAGAGAGCGAGGCGAACCCCGCCCGGGGCGTTTAACACCTCGGAAGGG
GTACCATATTGGTGTAGTTCCATATTTTTGTGGCGTTACAACAAGAGGCC
CCCGCGAGGTTGTTGGCCACCACGCACCTGTGTAAAAATACATGCATGGC
GGGAAGAAGTCGATGAGATGCCCGCTCGAAGTCCGATTTTTGTGGGATTT
TCTTGTGGATATCAAGCTTTTGGGGGCATGGGCCGTGCGTCGGGTGTGCG
CCTCCCGTTGTTGGCTGGACTTGACGGGTGGCAATTTTACGTGGTTTTGA
TATCTACCATCACGAGACGGGCGACTTCTTCTCCTTCTCACACTAGTCCG
TTCAGCTTTCAGACTGATCCTGATCCAGGGTCGCTGGATGTTGTTGGAAG
TGCCGATCGATGCAATTGCTGGTTGTGTGCTCTTTTTTATTTTCGAATTT
TGTGATACTGGTGGCGACAGTTTTGTTTTGGAAATAGGTGAAGGACACGT
TTTGGTTCCCTTCTTCTACGACACCCGTCCTTTGTGAATGCATTCGTGCG
TTCGCCGAGCGATTTTCTTTTTGTAAATTTAAAATATCTTGCGGATAAGA
TGAACAGCTGTAGCGGGGTACTCAAATATTACTTGCCGTGACTATTTGAC
CAGTAACCACATCCGCAGACGATGGGGGAGATGGGGGAGGGAGG back to topCoding sequence (CDS) from alignment at P-littoralis_Contig123:480108..492751- >mRNA_P-littoralis_Contig123.101.2 ID=mRNA_P-littoralis_Contig123.101.2|Name=mRNA_P-littoralis_Contig123.101.2|organism=Pylaiella littoralis U1_48|type=CDS|length=1032bp|location=Sequence derived from alignment at P-littoralis_Contig123:480108..492751- (Pylaiella littoralis U1_48) ATGTCTGTTGCGTCGTCGAAGATCGTCAGCCTTCGGGCTTTTAACGCAGA CCTCGGTGGAACCAACCCTTGGGATAGGCAAGGGCCCACGCCGCCACCAC TCCCCAAACGAATCGCTTGGCCGGGGGGCAAGATCGTGTCCAACAAGGAC GTCGCGCTAGCCAGCTTTCTGAGACGGAAGCTAGACCAAGGCCAATCCCT CACCCCCGAGCAGATGGCCATGCTGGAGAGGATGGTCGACCCGAACGCGC CAGCATCTGCGGCAGGTTTTGCTGCGGCCGCAGGAAAGAGACAGAAGCGC GCCGTCGGCAACGGTAGAGGCAGCGGCGGTGGCGATGTCGGCGGTATAAC CGACGCTCGAAACCTGCTGAAAAGACTAGAGCGCAAGGTTGCCAGAGATT CTGACCCCTTCGAAGCAGGCAAGGGCGGCAGAAGCGGCAGCAGGATTCAG AAGCTGGCGTCGTCTTCTGAAATGGGCAGGCGCAAGGTAGACCTCTCGGC CCTCAAACGCGGCGGACAAGCGGGGGGGAGCGGCGGCGGCGGTGCGGGCG GGCGGCGTGTCATCTCCGACGGGCAGGGCGGTTTCACCATCGCGACGAGA GTGTTACCATCGTCGAAGGGTGTCGACGTTGCCCGTGGTGCGCAAGCCGC GGCGGCGGGACCGCCCGAAGTGCAACAGCAGTGGGCAACTAGCAAGCGTC CACGGGGTGTTGCCGAAGCCGAGGCAGGAGCGGCGGCGACCGCGGACATT CCTGAGGTCTATCGCGAAGCGGCAGATTTTTTCGGCACCGGGGGCGGTGC CGGAAAGAAGGGAAAACACGGAGGTAAGGCCGGCGGGAAGGGAAAAAAGG GAGGTGCCCAGCAGAAGCAGAAGAAGCAGCTGCAGCAGCAGAATGGGCGT GGGAAAGGAGGCACTGTCAAAACAAAAGGGATCTCGAACGTTAGCGGCTT AGCTGGCGGAGGGGCGGGGGGGGGGAGCGGGGACCGGTCGCTGGAAGATT TGATGAGCGGTGGTCTCACCGGCCGGAGATGA back to top
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