SEARCH

Sequence

GENOMES

Enrichment analyses (GO, KEGG, KOG, NR, SwissProt) were conducted,
including CDS regions and upstream 2k sequences.

ZS11 - ZS11_A09G30170.t1

CDS Sequence (742 bp)
ATGGCTTCTCCAGCTTCCACTTATGCTCGAACTACATGCATTTGTTTTCCAAAAATCCAAAACAGCACGC
AATTCATTGACAGGATGGGAGCATTTAGAAATATAACGAGAAGAAGGGTGAGGCTTATTCACGCATCACA
AGGTCCAACAAAACCATTGCCTGGAGTAGACACAAGAATCCACTGGGAAAACCCGGACGATGGGTGGATC
GGTGGAGGATCCGACACGATCAAACCTGACGATACCAATCTTTTCAGTGATGACAAATTTGCTGAACTAA
TCAAAGATTCTTTTGATTCTCATTACCAATTCTTGGGTGTTTCCACGGATGCTGATCTTGAAGATATAAA
ATCTGCTTACCGGAGATTATCGAAAGAGTATCATCCAGACACAACTTCATTACCACTTAAAACAGCTTCA
GACAAGTTCATGAAACTAAGAGAAGTCTACGATGTTTTGAGCGACGAGGAGAGTAGGAGATTCTATGACT
GGACACTGGCTCAGGAGGTTGCTAGTCGTCAAGCTGAGAAGATGAGAATGAAGCTTGAGGATCCGAAAGA
GCAAGAATTTCGGAATTATGAATCTATACCCGATATGGTTGATCGGTTAGGTGGAAGGAACATGGATCTT
AGTGATCAAGCCATGACTGCCCTTACGTTCGATGTTTTGATCATTGTATTTGCCGTTTGTTGTATAGTCT
ATGTGGTTGTCTTTAAAGATCCTTATTACTAG
Upstream Sequence
CATATATTGAGGCCATGAGACAAGTTTCCACGGCCAAACCGTAACCAAAAACATAAAAAAAGAAAAGAGA
AGAAACAAGCAACAAACTATCTTGAAACACAGTACGCCATGGCTTCTCCAGCTTCCACTTATGCTCGAAC
TACATGCATTTGTTTTCCAAAAATCCAAAACAGCACGCAATTCATTGACAGGATGGGAGCATTTAGAAAT
ATAACGAGAAGAAGGGTGAGGCTTATTCACGCATCACAAGGTCCAACAAAACCATTGCCTGGAGTAGACA
CAAGAATCCACTGGGAAAACCCGGACGATGGGTGGATCGGTGGAGGATCCGACACGATCAAACCTGACGA
TACCAATCTTTTCAGTGATGACAAATTTGCTGAACTAATCAAAGATTCTTTTGATTCTCATTACCAATTC
TTGGGTGTTTCCACGGATGCTGATCTTGAAGATATAAAATCTGCTTACCGGAGATTATCGAAAGAGTATC
ATCCAGACACAACTTCATTACCACTTAAAACAGCTTCAGACAAGTTCATGAAACTAAGAGAAGTCTACGA
TGTTTTGAGCGACGAGGAGAGTAGGAGATTCTATGACTGGACACTGGCTCAGGAGGTTGCTAGTCGTCAA
GCTGAGAAGATGAGAATGAAGCTTGAGGATCCGAAAGAGCAAGAATTTCGGAATTATGAATCTATACCCG
ATATGGTTGATCGGTTAGGTGGAAGGAACATGGATCTTAGTGATCAAGCCATGACTGCCCTTACGTTCGA
TGTTTTGATCATTGTATTTGCCGTTTGTTGTATAGTCTATGTGGTTGTCTTTAAAGATCCTTATTACTAG
GTAAGGAGCTATATACAGGGAAGATGAAATTCAGGGAAATTTGTATAGGTGGAAAATGGAACATTTATAG
ATTATAACATAATCTGATTACAAGTGGTCGTCGTCTAGCCATAGTTAGATTCGGTGACATCGGTATTTGA
CAAATTTGTTACTTTGGTCTGGGC
Downstream Sequence
GTAAGACCTCAAGATACTTGTATTTTTTCCAAATCGAATTACAAATGCTATCTGTATCAT
TGTCAGATTCTTGGGTGTTTCCACGGATGCTGATCTTGAAGATATAAAATCTGCTTACCG
GAGATTATCGAAAGAGTATCATCCAGACACAACTTCATTACCACTTAAAACAGCTTCAGA
CAAGTTCATGAAACTAAGAGAAGTCTACGATGTTTTGAGCGACGAGGAGAGTAGGAGATT
CTATGACTGGACACTGGCTCAGGAGGTTGCTAGTCGTCAAGCTGAGAAGATGAGAATGAA
GCTTGAGGATCCGAAAGAGCAAGAATTTCGGAATTATGAATCTATACCCGATATGGTTGA
TCGGTTAGGTGGAAGGAACATGGATCTTAGTGATCAAGCCATGACTGCCCTTACGTTCGA
TGTTTTGATCATTGTATTTGCCGTTTGTTGTATAGTCTATGTGGTTGTCTTTAAAGATCC
TTATTACTAGGTAAGGAGCTATATACAGGGAAGATGAAATTCAGGGAAATTTGTATAGGT
GGAAAATGGAACATTTATAGATTATAACATAATCTGATTACAAGTGGTCGTCGTCTAGCC
ATAGTTAGATTCGGTGACATCGGTATTTGACAAATTTGTTACTTTGGTCTGGGCTCAATA
TCAATGAAAAATGTTAGTGAGGATGAGACTAGAACATAAAGAGTAAAACGTAAATGACGA
CTAGTTTTTTTTCTTTCAAATTCATAGAACAAGAAAGGAAATTAGACCAATCTGGTAATG
CATAAACTATGTACAATTCTCTTGAATTACCATCGTTATTACAATAAAAAATTATTTAGG
ATAACTCAGTCATAAATTAGACCTCACCATAGAGTCTAAAATTCGATCTATTAGGATCAC
ATGACTCTGAACTAAACTCCCTTGAGTCTAGACTTCAATCTCTCTGAAAATAATTCACCA
ACTATGTCATCACCTAATGCAGAGCAATAACATCAAAATCTTGATCACACAAGCGCCAAA
TATATATCTCTCCGTTTTCTTATTTTGCATAGACAATTTTCTTCATAGAGACACGTCTTC
CTTTTATACCATATATAAAATTGCTACTCAAGATCTTCCGGAGCACTTTAAACAACTTTC
CTTTCTCTTTAGTGGAAAACTTACTCTTCAAATTTCCATATATGTTTATCTTCAAGCACA
TGTTCTTTTTTCCTTTTTCAAGTTTAACAAGTCTACGCACATTACAATACACAAACTCTA
ACACAACCCATCTTCATGACACACACATGTAATACCTCTTGTAATACTTCGCGAACTAAT
ACAAAACCTTATATAAAACTGCATCTTCAATCTTCCCTTTTTTGACTTTGTATGTGAGCT
CATAAACTTTAGATGAAAAAAACATCTTCAATCTCTCTCTATGAATCACATCATAGTCAA
AACTAATATGAAGATCTACATCTGATATTTCATAGTTTGTACTGGTTTTTGACCATGATA
TAAGTCTGGTTTTAGAGTATTTCGTATATATTTTGAGTCTTTTTAGAGTCATTGCATATT
TAGGTTCATTTTGGACAACATTGCAGCTTTTGGAGCAATTTGGAGACTGACGGACCATGA
ACCTGCAAAGATCTAGTTGGATTCAATTTATGAGTCTATGTTTTAATCGACACCACCCTT
GGCCTTAGTCGTCACCCTCCATTTTTTACAAGACATTCCAATTTTAAAGATATTAAAAAG
TTCCAAAGTTTTATTTAATGGCAAAAGAGCCCAATTTGTGTGTTTAGATTATATCTTAAT
TTTTAGAGTTTTTGTAACTTATGCTTGGATACTGAGAGATTAGAGCATGAAGATTTTTGT
GGAGAGAGATCTGAACTCATACCTGTTGAGAGAAGATTTTGAACTCTTTTTTACTCTATT
ATTTAATTACGCAATTTATTCAGATTTTGATTTGTGTTTTCTTGCTCATGTCTGAGTAGT
ACCATTTTTAGATTTAGGGT
mRNA Sequence
CATATATTGAGGCCATGAGACAAGTTTCCACGGCCAAACCGTAACCAAAAACATAAAAAAAGAAAAGAGA
AGAAACAAGCAACAAACTATCTTGAAACACAGTACGCCATGGCTTCTCCAGCTTCCACTTATGCTCGAAC
TACATGCATTTGTTTTCCAAAAATCCAAAACAGCACGCAATTCATTGACAGGATGGGAGCATTTAGAAAT
ATAACGAGAAGAAGGGTGAGGCTTATTCACGCATCACAAGGTCCAACAAAACCATTGCCTGGAGTAGACA
CAAGAATCCACTGGGAAAACCCGGACGATGGGTGGATCGGTGGAGGATCCGACACGATCAAACCTGACGA
TACCAATCTTTTCAGTGATGACAAATTTGCTGAACTAATCAAAGATTCTTTTGATTCTCATTACCAATTC
TTGGGTGTTTCCACGGATGCTGATCTTGAAGATATAAAATCTGCTTACCGGAGATTATCGAAAGAGTATC
ATCCAGACACAACTTCATTACCACTTAAAACAGCTTCAGACAAGTTCATGAAACTAAGAGAAGTCTACGA
TGTTTTGAGCGACGAGGAGAGTAGGAGATTCTATGACTGGACACTGGCTCAGGAGGTTGCTAGTCGTCAA
GCTGAGAAGATGAGAATGAAGCTTGAGGATCCGAAAGAGCAAGAATTTCGGAATTATGAATCTATACCCG
ATATGGTTGATCGGTTAGGTGGAAGGAACATGGATCTTAGTGATCAAGCCATGACTGCCCTTACGTTCGA
TGTTTTGATCATTGTATTTGCCGTTTGTTGTATAGTCTATGTGGTTGTCTTTAAAGATCCTTATTACTAG
GTAAGGAGCTATATACAGGGAAGATGAAATTCAGGGAAATTTGTATAGGTGGAAAATGGAACATTTATAG
ATTATAACATAATCTGATTACAAGTGGTCGTCGTCTAGCCATAGTTAGATTCGGTGACATCGGTATTTGA
CAAATTTGTTACTTTGGTCTGGGC
Pro Sequence
MASPASTYARTTCICFPKIQNSTQFIDRMGAFRNITRRRVRLIHASQGPT
KPLPGVDTRIHWENPDDGWIGGGSDTIKPDDTNLFSDDKFAELIKDSFDS
HYQFLGVSTDADLEDIKSAYRRLSKEYHPDTTSLPLKTASDKFMKLREVY
DVLSDEESRRFYDWTLAQEVASRQAEKMRMKLEDPKEQEFRNYESIPDMV
DRLGGRNMDLSDQAMTALTFDVLIIVFAVCCIVYVVVFKDPYY