|
|
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following start_codon feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| Gcaud7925.t1.start1 | Gcaud7925.t1.start1 | Gracilaria caudata M_176_S67 male | start_codon | NODE_314_length_30704_cov_3.921177 26532..26534 + |
The following CDS feature(s) are a part of this mRNA:
The following exon feature(s) are a part of this mRNA:
The following intron feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| Gcaud7925.t1.intron1 | Gcaud7925.t1.intron1 | Gracilaria caudata M_176_S67 male | intron | NODE_314_length_30704_cov_3.921177 30470..30540 + |
The following stop_codon feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| Gcaud7925.t1.stop1 | Gcaud7925.t1.stop1 | Gracilaria caudata M_176_S67 male | stop_codon | NODE_314_length_30704_cov_3.921177 30542..30544 + |
Sequences
The following sequences are available for this feature:
mRNA sequence >Gcaud7925.t1 ID=Gcaud7925.t1|Name=Gcaud7925.t1|organism=Gracilaria caudata M_176_S67 male|type=mRNA|length=1314bp MDYETLSNSFWFIVSAYIAAFLPWTAIASTDFISAKWISVRRTRTAGYRN LVWTVFPMAYVILYSVVQGKASDYSEMCAAVVAAVFAGLIGVRTVWGLWQ LHDFHRWATRSIEGLRCMGIEYKPLRLKGMEEEWETSISDMKSADIADEI VVNEKIIDNQIMHGDVQCYIKFGGMVALKSEESIGPPIMKNRVLRMVWEI VVATMEPLEMGLRLVLMPFGIVLEIFQVVVGKKREKRLRQVPKTPSEVWV HWGAAFASQGLQQWMSEFEVVCDANGSGEADGKRRESGMENLDRRCKYFG AEVLGSAAMHLWWEYGDGGRGTSPMMWNNWKEGSEMSDGRVVKQELLRDA MEKGACLPFGAEDVQWRRREGEQEKAQFGYDGYKEILGEFISELPVQYSY VKEMRKFDVDMLEWLTIILHLGSMNLDKEKKAKEDEIENENRAKGMEDTA NVSDCVSKEGARGKVRSTEREGFVNRGGEAVKVLCSQLGLEKGGWAREWK SGVEKGCGSERGVPVSSIPMMGSVIPILSEGNRMVCKVGELVDVWMSLLC GDQLGFLVRELNEEWEKMCLGAVKGNSSGGEDYEEECEGEARLDMIDMRE IHKEVEKRRLQGRVGNEEGSRYGYVEECVTFMGYRMEMVRTVIGRWVDGN EGKCGDDMFSGISGKHMKEVKIDVELSEEVKRALSDFGEDGGKGGLGGRG VQCRVIWELQNQLEKKLLDGERKWGEGKEKLEMTVSTIMLFLLSFPGLRV EAGECGVVGEDGVVEENKEWCCINIGWCRGSKCCYGTCECGDEEEDGEGR GVGCMKGSNRWKGIEIWAMCGPQRMGVGVVLNGRGKWGLKVLNEEGGEFK WKWWRDAFIGRLEVMERWQNEVGMSGVGVERWGMRNGESESVIREVETLS KKKVRTWSEWGPFRMAFCRFELESKELLEQPSKDGLKIGKFVDQVDTTWD RVTLELQRVRNVRYGEVEEGMLRQYCDLVREGLNCEVLDGRKEVSKKGEK KMEDANGGYEGRRRAREADVGASDGLVRYRAAALRDGDVDGLKESMRMLC GSAKNARRISEGMELLCSFVGAMHQAGGEKAKVSVEREGEVGEVILPECL KLMEVVERNEGHEDLLLRVLLACLTVDPDEHGEKVMRMMQRMMSLSSGTG AELVCQKYVGQGMLFMGKHLLKEKFLGSRKEKMRITVKILEILVKSVDYS GGVQTKRTKEMRIWKWLGDKSKVGVIHRGIERKRLGNGRTKIRAKLSAGA LGTLGLLLGFGGEGIEMDKRRAIELLECVIEERNDFNAMQNLGLLLQQGE DGVPKDVRRAMEL* back to topspliced messenger RNA >Gcaud7925.t1 ID=Gcaud7925.t1|Name=Gcaud7925.t1|organism=Gracilaria caudata M_176_S67 male|type=mRNA|length=3942bp|location=Sequence derived from alignment at NODE_314_length_30704_cov_3.921177:26532..30544+ (Gracilaria caudata M_176_S67 male)|Notes=Excludes all bases but those of type(s): exon.
ATGGACTATGAAACGCTCTCCAACTCGTTCTGGTTCATTGTGTCGGCATA CATTGCGGCGTTTTTGCCATGGACCGCAATTGCGTCCACGGATTTCATCA GTGCCAAGTGGATATCGGTGAGACGAACGCGCACGGCGGGATACCGAAAC CTGGTGTGGACTGTATTTCCGATGGCATATGTGATTTTGTACAGCGTGGT GCAGGGAAAGGCGAGCGATTATTCGGAAATGTGTGCTGCTGTGGTGGCGG CTGTGTTTGCTGGACTGATTGGAGTACGGACTGTATGGGGGCTGTGGCAA CTGCACGACTTTCACAGATGGGCAACAAGATCGATTGAGGGGTTGAGGTG TATGGGTATTGAATACAAACCTCTTCGTTTAAAGGGAATGGAAGAGGAAT GGGAAACATCAATATCGGATATGAAGAGTGCGGACATTGCGGATGAGATT GTGGTAAACGAGAAAATTATCGACAATCAGATCATGCACGGTGATGTACA ATGTTATATAAAGTTTGGGGGAATGGTGGCATTGAAAAGCGAAGAGAGTA TTGGACCGCCGATCATGAAGAATCGTGTTTTGAGAATGGTATGGGAGATT GTGGTGGCGACGATGGAACCGCTTGAGATGGGTCTACGATTGGTGCTGAT GCCGTTTGGGATTGTGTTGGAAATTTTTCAGGTAGTTGTAGGAAAAAAGC GAGAGAAGCGGCTTCGACAAGTTCCGAAAACGCCGAGCGAGGTATGGGTA CACTGGGGGGCAGCGTTTGCATCACAGGGACTTCAACAGTGGATGTCGGA ATTTGAAGTAGTTTGTGACGCAAATGGTAGCGGTGAGGCGGATGGAAAGA GGAGGGAGAGTGGGATGGAGAACTTAGATAGACGATGCAAGTACTTTGGT GCTGAAGTACTGGGGTCAGCTGCAATGCACCTTTGGTGGGAATATGGAGA TGGAGGAAGGGGAACGAGTCCGATGATGTGGAACAACTGGAAGGAGGGAA GTGAAATGAGTGACGGGCGAGTCGTGAAACAAGAGTTACTGAGAGATGCG ATGGAGAAAGGAGCATGTCTTCCGTTTGGGGCAGAAGACGTGCAATGGAG GAGGAGGGAAGGAGAGCAAGAGAAGGCGCAGTTCGGCTACGATGGATATA AGGAGATTCTGGGAGAATTTATATCGGAGTTACCTGTGCAATACTCATAT GTGAAGGAGATGCGAAAGTTTGATGTGGACATGCTGGAGTGGCTGACGAT CATTCTGCACTTGGGAAGTATGAATTTGGACAAGGAGAAGAAGGCCAAGG AAGATGAAATTGAAAATGAAAATCGAGCAAAAGGGATGGAGGATACTGCA AATGTATCGGACTGTGTTTCAAAGGAGGGTGCTAGGGGTAAGGTTAGGAG CACGGAGAGGGAGGGGTTTGTAAATAGAGGTGGGGAAGCGGTGAAGGTGT TGTGCTCGCAACTTGGTTTGGAGAAAGGAGGATGGGCGAGGGAGTGGAAG AGCGGCGTGGAGAAGGGTTGTGGGAGTGAGAGGGGAGTTCCGGTGAGCAG CATTCCGATGATGGGAAGTGTCATACCGATTCTTTCAGAAGGGAACCGGA TGGTGTGTAAGGTTGGGGAACTGGTGGACGTGTGGATGAGTCTTTTGTGT GGGGATCAATTGGGATTCTTGGTGAGGGAGCTAAACGAGGAGTGGGAGAA GATGTGCTTAGGTGCAGTGAAGGGTAATAGTAGCGGTGGAGAAGATTATG AAGAGGAGTGTGAAGGGGAGGCCAGACTGGATATGATTGATATGCGTGAG ATTCACAAGGAGGTTGAAAAACGACGTTTGCAAGGGAGAGTTGGAAATGA AGAGGGGAGTCGATACGGGTATGTGGAGGAATGTGTGACGTTCATGGGGT ACCGAATGGAGATGGTACGGACTGTGATTGGTCGATGGGTGGATGGGAAC GAGGGAAAGTGCGGGGATGATATGTTCAGTGGGATAAGCGGGAAACATAT GAAAGAGGTGAAGATTGATGTGGAACTGAGCGAGGAGGTGAAGAGGGCTT TGAGCGATTTTGGAGAGGATGGAGGGAAGGGAGGTTTAGGAGGACGTGGA GTGCAGTGTCGGGTAATATGGGAGTTACAGAACCAGTTGGAAAAGAAGTT GCTTGATGGAGAAAGGAAATGGGGAGAAGGGAAGGAGAAGTTGGAGATGA CAGTTTCGACGATAATGCTGTTTCTGTTATCATTCCCTGGGCTGAGGGTC GAGGCGGGAGAATGTGGAGTAGTTGGGGAAGATGGGGTTGTTGAAGAGAA TAAGGAATGGTGCTGCATCAATATAGGATGGTGTAGGGGTAGTAAATGTT GTTATGGCACATGCGAATGTGGAGATGAAGAGGAAGATGGGGAGGGAAGA GGGGTTGGATGTATGAAAGGGAGTAATAGATGGAAGGGCATTGAGATATG GGCGATGTGTGGACCACAAAGGATGGGGGTAGGAGTGGTGTTGAACGGGA GGGGAAAATGGGGATTGAAGGTACTGAATGAGGAGGGAGGAGAGTTCAAA TGGAAATGGTGGAGGGATGCGTTTATTGGACGTCTGGAGGTGATGGAAAG GTGGCAGAATGAAGTTGGGATGAGTGGGGTTGGAGTGGAGCGATGGGGAA TGAGGAATGGAGAAAGTGAATCTGTGATAAGGGAGGTAGAAACGTTGTCA AAGAAAAAGGTAAGAACTTGGAGTGAATGGGGTCCATTCCGGATGGCGTT CTGTCGATTTGAGCTGGAGAGCAAAGAATTGTTAGAACAACCGTCTAAGG ATGGACTGAAGATCGGGAAGTTTGTGGACCAAGTTGATACAACTTGGGAT AGAGTCACGCTAGAGCTGCAGCGGGTGAGGAATGTGAGATACGGTGAAGT GGAAGAGGGGATGTTGAGACAGTATTGTGATCTTGTTAGGGAAGGACTGA ACTGTGAAGTACTGGATGGAAGAAAGGAAGTGAGTAAGAAGGGTGAGAAG AAGATGGAGGACGCAAATGGAGGATATGAGGGGCGGAGAAGAGCACGGGA AGCAGATGTTGGGGCTTCCGATGGATTGGTGCGTTATCGTGCTGCTGCAT TGAGAGATGGAGACGTCGATGGATTGAAAGAGAGTATGAGAATGTTGTGT GGGTCAGCAAAAAATGCAAGACGGATTTCGGAAGGAATGGAGTTGCTTTG CAGTTTTGTGGGAGCGATGCATCAGGCAGGGGGTGAGAAGGCAAAAGTGA GTGTGGAAAGGGAAGGAGAAGTAGGAGAGGTGATATTACCGGAATGTTTG AAGTTGATGGAAGTGGTGGAGAGGAATGAAGGTCATGAGGACCTATTGCT ACGAGTTTTATTGGCATGCCTTACCGTAGATCCGGATGAGCATGGAGAAA AGGTGATGAGAATGATGCAACGAATGATGTCGTTGAGCAGTGGGACAGGA GCAGAACTGGTTTGCCAGAAATATGTTGGACAAGGAATGTTGTTTATGGG GAAGCATTTGTTGAAGGAGAAATTTCTTGGAAGCAGGAAGGAGAAGATGC GAATTACTGTGAAAATCCTTGAGATCTTGGTAAAGTCTGTTGACTATTCT GGAGGTGTACAAACAAAGAGAACCAAGGAGATGAGAATATGGAAGTGGCT GGGAGATAAGAGCAAGGTGGGGGTAATACACCGTGGAATAGAAAGAAAGA GGTTGGGAAATGGACGTACGAAGATTCGGGCAAAGTTATCTGCGGGGGCT TTGGGAACCTTAGGTTTGCTCCTCGGTTTCGGCGGAGAAGGAATTGAGAT GGATAAGAGAAGGGCCATCGAGCTTCTTGAATGTGTGATCGAAGAAAGGA ATGACTTTAATGCAATGCAAAATTTGGGTTTGTTGTTACAACAAGGTGAG GACGGCGTGCCAAAGGATGTGAGACGAGCTATGGAGCTGTGA back to topprotein sequence of Gcaud7925.t1 >Gcaud7925.t1 ID=Gcaud7925.t1|Name=Gcaud7925.t1|organism=Gracilaria caudata M_176_S67 male|type=polypeptide|length=1314bp
MDYETLSNSFWFIVSAYIAAFLPWTAIASTDFISAKWISVRRTRTAGYRN LVWTVFPMAYVILYSVVQGKASDYSEMCAAVVAAVFAGLIGVRTVWGLWQ LHDFHRWATRSIEGLRCMGIEYKPLRLKGMEEEWETSISDMKSADIADEI VVNEKIIDNQIMHGDVQCYIKFGGMVALKSEESIGPPIMKNRVLRMVWEI VVATMEPLEMGLRLVLMPFGIVLEIFQVVVGKKREKRLRQVPKTPSEVWV HWGAAFASQGLQQWMSEFEVVCDANGSGEADGKRRESGMENLDRRCKYFG AEVLGSAAMHLWWEYGDGGRGTSPMMWNNWKEGSEMSDGRVVKQELLRDA MEKGACLPFGAEDVQWRRREGEQEKAQFGYDGYKEILGEFISELPVQYSY VKEMRKFDVDMLEWLTIILHLGSMNLDKEKKAKEDEIENENRAKGMEDTA NVSDCVSKEGARGKVRSTEREGFVNRGGEAVKVLCSQLGLEKGGWAREWK SGVEKGCGSERGVPVSSIPMMGSVIPILSEGNRMVCKVGELVDVWMSLLC GDQLGFLVRELNEEWEKMCLGAVKGNSSGGEDYEEECEGEARLDMIDMRE IHKEVEKRRLQGRVGNEEGSRYGYVEECVTFMGYRMEMVRTVIGRWVDGN EGKCGDDMFSGISGKHMKEVKIDVELSEEVKRALSDFGEDGGKGGLGGRG VQCRVIWELQNQLEKKLLDGERKWGEGKEKLEMTVSTIMLFLLSFPGLRV EAGECGVVGEDGVVEENKEWCCINIGWCRGSKCCYGTCECGDEEEDGEGR GVGCMKGSNRWKGIEIWAMCGPQRMGVGVVLNGRGKWGLKVLNEEGGEFK WKWWRDAFIGRLEVMERWQNEVGMSGVGVERWGMRNGESESVIREVETLS KKKVRTWSEWGPFRMAFCRFELESKELLEQPSKDGLKIGKFVDQVDTTWD RVTLELQRVRNVRYGEVEEGMLRQYCDLVREGLNCEVLDGRKEVSKKGEK KMEDANGGYEGRRRAREADVGASDGLVRYRAAALRDGDVDGLKESMRMLC GSAKNARRISEGMELLCSFVGAMHQAGGEKAKVSVEREGEVGEVILPECL KLMEVVERNEGHEDLLLRVLLACLTVDPDEHGEKVMRMMQRMMSLSSGTG AELVCQKYVGQGMLFMGKHLLKEKFLGSRKEKMRITVKILEILVKSVDYS GGVQTKRTKEMRIWKWLGDKSKVGVIHRGIERKRLGNGRTKIRAKLSAGA LGTLGLLLGFGGEGIEMDKRRAIELLECVIEERNDFNAMQNLGLLLQQGE DGVPKDVRRAMEL* back to topmRNA from alignment at NODE_314_length_30704_cov_3.921177:26532..30544+ Legend: polypeptidestart_codonCDSexonintronstop_codon Hold the cursor over a type above to highlight its positions in the sequence below. >Gcaud7925.t1 ID=Gcaud7925.t1|Name=Gcaud7925.t1|organism=Gracilaria caudata M_176_S67 male|type=mRNA|length=4013bp|location=Sequence derived from alignment at NODE_314_length_30704_cov_3.921177:26532..30544+ (Gracilaria caudata M_176_S67 male) ATGGACTATGAAACGCTCTCCAACTCGTTCTGGTTCATTGTGTCGGCATA
CATTGCGGCGTTTTTGCCATGGACCGCAATTGCGTCCACGGATTTCATCA
GTGCCAAGTGGATATCGGTGAGACGAACGCGCACGGCGGGATACCGAAAC
CTGGTGTGGACTGTATTTCCGATGGCATATGTGATTTTGTACAGCGTGGT
GCAGGGAAAGGCGAGCGATTATTCGGAAATGTGTGCTGCTGTGGTGGCGG
CTGTGTTTGCTGGACTGATTGGAGTACGGACTGTATGGGGGCTGTGGCAA
CTGCACGACTTTCACAGATGGGCAACAAGATCGATTGAGGGGTTGAGGTG
TATGGGTATTGAATACAAACCTCTTCGTTTAAAGGGAATGGAAGAGGAAT
GGGAAACATCAATATCGGATATGAAGAGTGCGGACATTGCGGATGAGATT
GTGGTAAACGAGAAAATTATCGACAATCAGATCATGCACGGTGATGTACA
ATGTTATATAAAGTTTGGGGGAATGGTGGCATTGAAAAGCGAAGAGAGTA
TTGGACCGCCGATCATGAAGAATCGTGTTTTGAGAATGGTATGGGAGATT
GTGGTGGCGACGATGGAACCGCTTGAGATGGGTCTACGATTGGTGCTGAT
GCCGTTTGGGATTGTGTTGGAAATTTTTCAGGTAGTTGTAGGAAAAAAGC
GAGAGAAGCGGCTTCGACAAGTTCCGAAAACGCCGAGCGAGGTATGGGTA
CACTGGGGGGCAGCGTTTGCATCACAGGGACTTCAACAGTGGATGTCGGA
ATTTGAAGTAGTTTGTGACGCAAATGGTAGCGGTGAGGCGGATGGAAAGA
GGAGGGAGAGTGGGATGGAGAACTTAGATAGACGATGCAAGTACTTTGGT
GCTGAAGTACTGGGGTCAGCTGCAATGCACCTTTGGTGGGAATATGGAGA
TGGAGGAAGGGGAACGAGTCCGATGATGTGGAACAACTGGAAGGAGGGAA
GTGAAATGAGTGACGGGCGAGTCGTGAAACAAGAGTTACTGAGAGATGCG
ATGGAGAAAGGAGCATGTCTTCCGTTTGGGGCAGAAGACGTGCAATGGAG
GAGGAGGGAAGGAGAGCAAGAGAAGGCGCAGTTCGGCTACGATGGATATA
AGGAGATTCTGGGAGAATTTATATCGGAGTTACCTGTGCAATACTCATAT
GTGAAGGAGATGCGAAAGTTTGATGTGGACATGCTGGAGTGGCTGACGAT
CATTCTGCACTTGGGAAGTATGAATTTGGACAAGGAGAAGAAGGCCAAGG
AAGATGAAATTGAAAATGAAAATCGAGCAAAAGGGATGGAGGATACTGCA
AATGTATCGGACTGTGTTTCAAAGGAGGGTGCTAGGGGTAAGGTTAGGAG
CACGGAGAGGGAGGGGTTTGTAAATAGAGGTGGGGAAGCGGTGAAGGTGT
TGTGCTCGCAACTTGGTTTGGAGAAAGGAGGATGGGCGAGGGAGTGGAAG
AGCGGCGTGGAGAAGGGTTGTGGGAGTGAGAGGGGAGTTCCGGTGAGCAG
CATTCCGATGATGGGAAGTGTCATACCGATTCTTTCAGAAGGGAACCGGA
TGGTGTGTAAGGTTGGGGAACTGGTGGACGTGTGGATGAGTCTTTTGTGT
GGGGATCAATTGGGATTCTTGGTGAGGGAGCTAAACGAGGAGTGGGAGAA
GATGTGCTTAGGTGCAGTGAAGGGTAATAGTAGCGGTGGAGAAGATTATG
AAGAGGAGTGTGAAGGGGAGGCCAGACTGGATATGATTGATATGCGTGAG
ATTCACAAGGAGGTTGAAAAACGACGTTTGCAAGGGAGAGTTGGAAATGA
AGAGGGGAGTCGATACGGGTATGTGGAGGAATGTGTGACGTTCATGGGGT
ACCGAATGGAGATGGTACGGACTGTGATTGGTCGATGGGTGGATGGGAAC
GAGGGAAAGTGCGGGGATGATATGTTCAGTGGGATAAGCGGGAAACATAT
GAAAGAGGTGAAGATTGATGTGGAACTGAGCGAGGAGGTGAAGAGGGCTT
TGAGCGATTTTGGAGAGGATGGAGGGAAGGGAGGTTTAGGAGGACGTGGA
GTGCAGTGTCGGGTAATATGGGAGTTACAGAACCAGTTGGAAAAGAAGTT
GCTTGATGGAGAAAGGAAATGGGGAGAAGGGAAGGAGAAGTTGGAGATGA
CAGTTTCGACGATAATGCTGTTTCTGTTATCATTCCCTGGGCTGAGGGTC
GAGGCGGGAGAATGTGGAGTAGTTGGGGAAGATGGGGTTGTTGAAGAGAA
TAAGGAATGGTGCTGCATCAATATAGGATGGTGTAGGGGTAGTAAATGTT
GTTATGGCACATGCGAATGTGGAGATGAAGAGGAAGATGGGGAGGGAAGA
GGGGTTGGATGTATGAAAGGGAGTAATAGATGGAAGGGCATTGAGATATG
GGCGATGTGTGGACCACAAAGGATGGGGGTAGGAGTGGTGTTGAACGGGA
GGGGAAAATGGGGATTGAAGGTACTGAATGAGGAGGGAGGAGAGTTCAAA
TGGAAATGGTGGAGGGATGCGTTTATTGGACGTCTGGAGGTGATGGAAAG
GTGGCAGAATGAAGTTGGGATGAGTGGGGTTGGAGTGGAGCGATGGGGAA
TGAGGAATGGAGAAAGTGAATCTGTGATAAGGGAGGTAGAAACGTTGTCA
AAGAAAAAGGTAAGAACTTGGAGTGAATGGGGTCCATTCCGGATGGCGTT
CTGTCGATTTGAGCTGGAGAGCAAAGAATTGTTAGAACAACCGTCTAAGG
ATGGACTGAAGATCGGGAAGTTTGTGGACCAAGTTGATACAACTTGGGAT
AGAGTCACGCTAGAGCTGCAGCGGGTGAGGAATGTGAGATACGGTGAAGT
GGAAGAGGGGATGTTGAGACAGTATTGTGATCTTGTTAGGGAAGGACTGA
ACTGTGAAGTACTGGATGGAAGAAAGGAAGTGAGTAAGAAGGGTGAGAAG
AAGATGGAGGACGCAAATGGAGGATATGAGGGGCGGAGAAGAGCACGGGA
AGCAGATGTTGGGGCTTCCGATGGATTGGTGCGTTATCGTGCTGCTGCAT
TGAGAGATGGAGACGTCGATGGATTGAAAGAGAGTATGAGAATGTTGTGT
GGGTCAGCAAAAAATGCAAGACGGATTTCGGAAGGAATGGAGTTGCTTTG
CAGTTTTGTGGGAGCGATGCATCAGGCAGGGGGTGAGAAGGCAAAAGTGA
GTGTGGAAAGGGAAGGAGAAGTAGGAGAGGTGATATTACCGGAATGTTTG
AAGTTGATGGAAGTGGTGGAGAGGAATGAAGGTCATGAGGACCTATTGCT
ACGAGTTTTATTGGCATGCCTTACCGTAGATCCGGATGAGCATGGAGAAA
AGGTGATGAGAATGATGCAACGAATGATGTCGTTGAGCAGTGGGACAGGA
GCAGAACTGGTTTGCCAGAAATATGTTGGACAAGGAATGTTGTTTATGGG
GAAGCATTTGTTGAAGGAGAAATTTCTTGGAAGCAGGAAGGAGAAGATGC
GAATTACTGTGAAAATCCTTGAGATCTTGGTAAAGTCTGTTGACTATTCT
GGAGGTGTACAAACAAAGAGAACCAAGGAGATGAGAATATGGAAGTGGCT
GGGAGATAAGAGCAAGGTGGGGGTAATACACCGTGGAATAGAAAGAAAGA
GGTTGGGAAATGGACGTACGAAGATTCGGGCAAAGTTATCTGCGGGGGCT
TTGGGAACCTTAGGTTTGCTCCTCGGTTTCGGCGGAGAAGGAATTGAGAT
GGATAAGAGAAGGGCCATCGAGCTTCTTGAATGTGTGATCGAAGAAAGGA
ATGACTTTAATGCAATGCAAAATTTGGGTTTGTTGTTACAACAAGGTGAG
GACGGCGTGCCAAAGGATGTGAGACGAGCTATGGAGCTGTACGAACGCgc
gatcgaagaaggaagaaacactgatgcaatgtgtaagttaggtttgttgt
tacaaGAAGGTGA back to topCoding sequence (CDS) from alignment at NODE_314_length_30704_cov_3.921177:26532..30544+ >Gcaud7925.t1 ID=Gcaud7925.t1|Name=Gcaud7925.t1|organism=Gracilaria caudata M_176_S67 male|type=CDS|length=3942bp|location=Sequence derived from alignment at NODE_314_length_30704_cov_3.921177:26532..30544+ (Gracilaria caudata M_176_S67 male) ATGGACTATGAAACGCTCTCCAACTCGTTCTGGTTCATTGTGTCGGCATA CATTGCGGCGTTTTTGCCATGGACCGCAATTGCGTCCACGGATTTCATCA GTGCCAAGTGGATATCGGTGAGACGAACGCGCACGGCGGGATACCGAAAC CTGGTGTGGACTGTATTTCCGATGGCATATGTGATTTTGTACAGCGTGGT GCAGGGAAAGGCGAGCGATTATTCGGAAATGTGTGCTGCTGTGGTGGCGG CTGTGTTTGCTGGACTGATTGGAGTACGGACTGTATGGGGGCTGTGGCAA CTGCACGACTTTCACAGATGGGCAACAAGATCGATTGAGGGGTTGAGGTG TATGGGTATTGAATACAAACCTCTTCGTTTAAAGGGAATGGAAGAGGAAT GGGAAACATCAATATCGGATATGAAGAGTGCGGACATTGCGGATGAGATT GTGGTAAACGAGAAAATTATCGACAATCAGATCATGCACGGTGATGTACA ATGTTATATAAAGTTTGGGGGAATGGTGGCATTGAAAAGCGAAGAGAGTA TTGGACCGCCGATCATGAAGAATCGTGTTTTGAGAATGGTATGGGAGATT GTGGTGGCGACGATGGAACCGCTTGAGATGGGTCTACGATTGGTGCTGAT GCCGTTTGGGATTGTGTTGGAAATTTTTCAGGTAGTTGTAGGAAAAAAGC GAGAGAAGCGGCTTCGACAAGTTCCGAAAACGCCGAGCGAGGTATGGGTA CACTGGGGGGCAGCGTTTGCATCACAGGGACTTCAACAGTGGATGTCGGA ATTTGAAGTAGTTTGTGACGCAAATGGTAGCGGTGAGGCGGATGGAAAGA GGAGGGAGAGTGGGATGGAGAACTTAGATAGACGATGCAAGTACTTTGGT GCTGAAGTACTGGGGTCAGCTGCAATGCACCTTTGGTGGGAATATGGAGA TGGAGGAAGGGGAACGAGTCCGATGATGTGGAACAACTGGAAGGAGGGAA GTGAAATGAGTGACGGGCGAGTCGTGAAACAAGAGTTACTGAGAGATGCG ATGGAGAAAGGAGCATGTCTTCCGTTTGGGGCAGAAGACGTGCAATGGAG GAGGAGGGAAGGAGAGCAAGAGAAGGCGCAGTTCGGCTACGATGGATATA AGGAGATTCTGGGAGAATTTATATCGGAGTTACCTGTGCAATACTCATAT GTGAAGGAGATGCGAAAGTTTGATGTGGACATGCTGGAGTGGCTGACGAT CATTCTGCACTTGGGAAGTATGAATTTGGACAAGGAGAAGAAGGCCAAGG AAGATGAAATTGAAAATGAAAATCGAGCAAAAGGGATGGAGGATACTGCA AATGTATCGGACTGTGTTTCAAAGGAGGGTGCTAGGGGTAAGGTTAGGAG CACGGAGAGGGAGGGGTTTGTAAATAGAGGTGGGGAAGCGGTGAAGGTGT TGTGCTCGCAACTTGGTTTGGAGAAAGGAGGATGGGCGAGGGAGTGGAAG AGCGGCGTGGAGAAGGGTTGTGGGAGTGAGAGGGGAGTTCCGGTGAGCAG CATTCCGATGATGGGAAGTGTCATACCGATTCTTTCAGAAGGGAACCGGA TGGTGTGTAAGGTTGGGGAACTGGTGGACGTGTGGATGAGTCTTTTGTGT GGGGATCAATTGGGATTCTTGGTGAGGGAGCTAAACGAGGAGTGGGAGAA GATGTGCTTAGGTGCAGTGAAGGGTAATAGTAGCGGTGGAGAAGATTATG AAGAGGAGTGTGAAGGGGAGGCCAGACTGGATATGATTGATATGCGTGAG ATTCACAAGGAGGTTGAAAAACGACGTTTGCAAGGGAGAGTTGGAAATGA AGAGGGGAGTCGATACGGGTATGTGGAGGAATGTGTGACGTTCATGGGGT ACCGAATGGAGATGGTACGGACTGTGATTGGTCGATGGGTGGATGGGAAC GAGGGAAAGTGCGGGGATGATATGTTCAGTGGGATAAGCGGGAAACATAT GAAAGAGGTGAAGATTGATGTGGAACTGAGCGAGGAGGTGAAGAGGGCTT TGAGCGATTTTGGAGAGGATGGAGGGAAGGGAGGTTTAGGAGGACGTGGA GTGCAGTGTCGGGTAATATGGGAGTTACAGAACCAGTTGGAAAAGAAGTT GCTTGATGGAGAAAGGAAATGGGGAGAAGGGAAGGAGAAGTTGGAGATGA CAGTTTCGACGATAATGCTGTTTCTGTTATCATTCCCTGGGCTGAGGGTC GAGGCGGGAGAATGTGGAGTAGTTGGGGAAGATGGGGTTGTTGAAGAGAA TAAGGAATGGTGCTGCATCAATATAGGATGGTGTAGGGGTAGTAAATGTT GTTATGGCACATGCGAATGTGGAGATGAAGAGGAAGATGGGGAGGGAAGA GGGGTTGGATGTATGAAAGGGAGTAATAGATGGAAGGGCATTGAGATATG GGCGATGTGTGGACCACAAAGGATGGGGGTAGGAGTGGTGTTGAACGGGA GGGGAAAATGGGGATTGAAGGTACTGAATGAGGAGGGAGGAGAGTTCAAA TGGAAATGGTGGAGGGATGCGTTTATTGGACGTCTGGAGGTGATGGAAAG GTGGCAGAATGAAGTTGGGATGAGTGGGGTTGGAGTGGAGCGATGGGGAA TGAGGAATGGAGAAAGTGAATCTGTGATAAGGGAGGTAGAAACGTTGTCA AAGAAAAAGGTAAGAACTTGGAGTGAATGGGGTCCATTCCGGATGGCGTT CTGTCGATTTGAGCTGGAGAGCAAAGAATTGTTAGAACAACCGTCTAAGG ATGGACTGAAGATCGGGAAGTTTGTGGACCAAGTTGATACAACTTGGGAT AGAGTCACGCTAGAGCTGCAGCGGGTGAGGAATGTGAGATACGGTGAAGT GGAAGAGGGGATGTTGAGACAGTATTGTGATCTTGTTAGGGAAGGACTGA ACTGTGAAGTACTGGATGGAAGAAAGGAAGTGAGTAAGAAGGGTGAGAAG AAGATGGAGGACGCAAATGGAGGATATGAGGGGCGGAGAAGAGCACGGGA AGCAGATGTTGGGGCTTCCGATGGATTGGTGCGTTATCGTGCTGCTGCAT TGAGAGATGGAGACGTCGATGGATTGAAAGAGAGTATGAGAATGTTGTGT GGGTCAGCAAAAAATGCAAGACGGATTTCGGAAGGAATGGAGTTGCTTTG CAGTTTTGTGGGAGCGATGCATCAGGCAGGGGGTGAGAAGGCAAAAGTGA GTGTGGAAAGGGAAGGAGAAGTAGGAGAGGTGATATTACCGGAATGTTTG AAGTTGATGGAAGTGGTGGAGAGGAATGAAGGTCATGAGGACCTATTGCT ACGAGTTTTATTGGCATGCCTTACCGTAGATCCGGATGAGCATGGAGAAA AGGTGATGAGAATGATGCAACGAATGATGTCGTTGAGCAGTGGGACAGGA GCAGAACTGGTTTGCCAGAAATATGTTGGACAAGGAATGTTGTTTATGGG GAAGCATTTGTTGAAGGAGAAATTTCTTGGAAGCAGGAAGGAGAAGATGC GAATTACTGTGAAAATCCTTGAGATCTTGGTAAAGTCTGTTGACTATTCT GGAGGTGTACAAACAAAGAGAACCAAGGAGATGAGAATATGGAAGTGGCT GGGAGATAAGAGCAAGGTGGGGGTAATACACCGTGGAATAGAAAGAAAGA GGTTGGGAAATGGACGTACGAAGATTCGGGCAAAGTTATCTGCGGGGGCT TTGGGAACCTTAGGTTTGCTCCTCGGTTTCGGCGGAGAAGGAATTGAGAT GGATAAGAGAAGGGCCATCGAGCTTCTTGAATGTGTGATCGAAGAAAGGA ATGACTTTAATGCAATGCAAAATTTGGGTTTGTTGTTACAACAAGGTGAG GACGGCGTGCCAAAGGATGTGAGACGAGCTATGGAGCTGTGA back to top
|