SEARCH

Sequence

GENOMES

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

ZS11 - ZS11_A06G13420.t1

CDS Sequence (864 bp)
ATGTCAAGGTTTCGATCATTGTTGCAAGCCTCAGTAAATGCAACGAAAAGGGCTTTTACGTGGAACATTG
AAGAATGGATACCACCTCCAGAGAAGTATATATTTAAGTTTCATTCGAAAGAAGACTTGAAGAAATGGCA
TCTCTATTCTGATTCTGAATATGGAGGATTATCTTCGGCTTCCTTGGAGATCCCAGATGGAGGAAAAGAA
TCAGATGGAACTGGAATTTTCTCGGGAAACCTTTCCGTAGACCTTAGTGAGGGATCAAAGTGGAACATCA
GTCGGAGTGGCTTCTGTGGAATGCGCTCAAAGAAGTTTGATGGCTTCATTGATCTGGACGGGTATGATGC
AATAGCCATGAGGCTTAGAGGAGATGGAAGGTGTTATATATCTACCATCTATACCGAAAACTGGGTGAAT
TCACCAGGACAAACAGAAGATAACTCGTGGCAAGCTTTCGTCTTTGCTCCAAAGGACAGGTGGTATACTG
CCAAGATCCCTCTGGCTAGATACTTGCCAACATGGAGAGGAAATGTAATCGATGTGGAAATGGAGATGAA
TCCAGGTCGTGTTCTGGGTATGTCACTGTCGGTTAACGCAGAAGGTGGTGCGGTTGGAGCCAAGTCAGGA
GCAGACTGTTACGCGAAGGAAGAAATAAAAAAGGTGAAAGTTGTCCGAAAGGAAGCACTCTCTCTCTCTA
GAGCTTCACATTCTCTATCTACTAGAGATATAAAAAAGGGAAAGTTCTTCCTCAATTTGGGCAAGGAGAA
AGATTGCAAAACACCATTGTCCTCACGACAGGTTTCTCTGGGATTATATAATCTGTTGAAGGATACACAT
TTTGGTCTATAA
Upstream Sequence
ATGTCAAGGTTTCGATCATTGTTGCAAGCCTCAGTAAATGCAACGAAAAGGGCTTTTACGTGGAACATTG
AAGAATGGATACCACCTCCAGAGAAGTATATATTTAAGTTTCATTCGAAAGAAGACTTGAAGAAATGGCA
TCTCTATTCTGATTCTGAATATGGAGGATTATCTTCGGCTTCCTTGGAGATCCCAGATGGAGGAAAAGAA
TCAGATGGAACTGGAATTTTCTCGGGAAACCTTTCCGTAGACCTTAGTGAGGGATCAAAGTGGAACATCA
GTCGGAGTGGCTTCTGTGGAATGCGCTCAAAGAAGTTTGATGGCTTCATTGATCTGGACGGGTATGATGC
AATAGCCATGAGGCTTAGAGGAGATGGAAGGTGTTATATATCTACCATCTATACCGAAAACTGGGTGAAT
TCACCAGGACAAACAGAAGATAACTCGTGGCAAGCTTTCGTCTTTGCTCCAAAGGACAGGTGGTATACTG
CCAAGATCCCTCTGGCTAGATACTTGCCAACATGGAGAGGAAATGTAATCGATGTGGAAATGGAGATGAA
TCCAGGTCGTGTTCTGGGTATGTCACTGTCGGTTAACGCAGAAGGTGGTGCGGTTGGAGCCAAGTCAGGA
GCAGACTGTTACGCGAAGGAAGAAATAAAAAAGGTGAAAGTTGTCCGAAAGGAAGCACTCTCTCTCTCTA
GAGCTTCACATTCTCTATCTACTAGAGATATAAAAAAGGGAAAGTTCTTCCTCAATTTGGGCAAGGAGAA
AGATTGCAAAACACCATTGTCCTCACGACAGGTTTCTCTGGGATTATATAATCTGTTGAAGGATACACAT
TTTGGTCTATAA
Downstream Sequence
GTATTCACTTTCCACCTTTCCGTCAATTAAAATATTCGTGATCTACTGATTTCCTGCTTG
TGTGTCGATGTTCTTGCTTTTGTTCAACTGTGTTTGTGCCTTTATTTAGACGGTGAATCA
TAGCAAGTAATGTTTGAGAAGCTGAATGGCGCTGTTTTTATGTTCCAAGATTTATCAACA
TTTTGTGATTACCATTATATCTTTCTACTAGCTTTAATGCTTTTGAATGCTAGTTTCTGA
CTTATCTTCACCACTTTTCAAACTGTTAGCTTTTACGTGGAACATTGAAGAATGGATACC
ACCTCCAGAGAAGTATATATTTAAGTTTCATTCGAAAGAAGACTTGAAGAAATGGCATCT
CTATTCTGATTCTGAATATGGAGGTACTTAATAAAGAGTGTCTGATATTGTTTTCTGTTG
TTGTTTCCCTTGCATTTCCATGCGTTGTTGATTTATATGGACAACTAACTACTGAGACAA
AATAAGATTCATAAAGATTTAGAATTAAATGATATCGTAAAGAATTCGTTATGAATTTTA
TAATTTATTTGGTGGCAACATGTTTGATGATTATTTTCACAGGATTATCTTCGGCTTCCT
TGGAGATCCCAGATGGAGGAAAAGAATCAGATGGAACTGGTTAGCAACTTCGTAACTCTT
TTTTTTTTTTGTGGACATGATTTTCGTTAACAAACATATGAGACGTTTCTATGTTACGGT
AGCGTTGTTTATGTCTTTATTATGTTTCTTACACTGCTCACTTGGTGATATTTTTCTCCC
TTATATCTTATATAGGAATTTTCTCGGGAAACCTTTCCGTAGACCTTAGTGAGGGATCAA
AGTGGAACATCAGTCGGAGTGGCTTCTGTGGAATGCGCTCAAAGAAGGTTAACAACGAAC
AGCTTTTATTTTACTTACAATGCAAATCTTAAGCAAACTCTAACTCTTACATTCAACTAT
TGTTTGAAGACAAGATTGAATTGTCATCTTGGTTTGTAACCCGAAGACTTTGCGAGTTAA
CTGATCATACTATTTCAACTAACTAACTTCCTTTTTTTTGTTTTGCAGTTTGATGGCTTC
ATTGATCTGGACGGGTATGATGCAATAGCCATGAGGCTTAGAGGAGATGGAAGGTGTTAT
ATATCTACCGTAAGTTTTCATGCTCATATTCACCTTTCCTATTACTCCAGATGAAACAAC
AAATGTTGTAGGAGGGAAAAGGGTTGTTATACTAAACCTTGATTTTGATTCAGATCTATA
CCGAAAACTGGGTGAATTCACCAGGACAAACAGAAGATAACTCGTGGCAAGCTTTCGTCT
TTGCTCCAAAGGACAGGTGGTATACTGCCAAGGCAAGTACTCACTTCTACAAATGTTACC
GATAAGGAGTTTTAGTGCATTGTACATATCCTGTTTTCTGAACTCCCAAAAAGACAGATA
GAGATTATGAGTTCACTTGAATGTTTCGCTTCTAGTCTAAGGCCATTAGTAACTGGAGTT
TTGATTATATATCAGATCCCTCTGGCTAGATACTTGCCAACATGGAGAGGAAATGTAATC
GATGTGGAAATGGAGATGAATCCAGGTCGTGTTCTGGGTATGTCACTGTCGGTTAACGCA
GAAGGTGGTGCGGTTGGAGCCAAGTCAGGAGCAGGTGATTTCAGAGTTGAAATTGACTGG
ATCAAAGCCTTGAGAATGCCATGAACGGGTGAAGCGTTATGGCAATGTATGATGTCTTTG
TTGCTTATTCTTTGTTTTAGCTTGTAAAAAACAGGCCTGAGTTGATACTTTGGTGGCCTT
GTTTAAGCTGGTCAACACTTTGAGCATGTTTTAACTATGTTCATCAAATAAAAAATACAT
GACACGAATCAAAAAGATATGATCATTATCTTATGTTTTGTAGTTTATCCGTTTTTGGTC
AACTTGTTAATACTTATTTATGGTCGTGATTGAATAAGAGAGAGTATGTTAAGTTACTAT
AATTGGTTGGTAAACAAAGA
mRNA Sequence
ATGTCAAGGTTTCGATCATTGTTGCAAGCCTCAGTAAATGCAACGAAAAGGGCTTTTACGTGGAACATTG
AAGAATGGATACCACCTCCAGAGAAGTATATATTTAAGTTTCATTCGAAAGAAGACTTGAAGAAATGGCA
TCTCTATTCTGATTCTGAATATGGAGGATTATCTTCGGCTTCCTTGGAGATCCCAGATGGAGGAAAAGAA
TCAGATGGAACTGGAATTTTCTCGGGAAACCTTTCCGTAGACCTTAGTGAGGGATCAAAGTGGAACATCA
GTCGGAGTGGCTTCTGTGGAATGCGCTCAAAGAAGTTTGATGGCTTCATTGATCTGGACGGGTATGATGC
AATAGCCATGAGGCTTAGAGGAGATGGAAGGTGTTATATATCTACCATCTATACCGAAAACTGGGTGAAT
TCACCAGGACAAACAGAAGATAACTCGTGGCAAGCTTTCGTCTTTGCTCCAAAGGACAGGTGGTATACTG
CCAAGATCCCTCTGGCTAGATACTTGCCAACATGGAGAGGAAATGTAATCGATGTGGAAATGGAGATGAA
TCCAGGTCGTGTTCTGGGTATGTCACTGTCGGTTAACGCAGAAGGTGGTGCGGTTGGAGCCAAGTCAGGA
GCAGACTGTTACGCGAAGGAAGAAATAAAAAAGGTGAAAGTTGTCCGAAAGGAAGCACTCTCTCTCTCTA
GAGCTTCACATTCTCTATCTACTAGAGATATAAAAAAGGGAAAGTTCTTCCTCAATTTGGGCAAGGAGAA
AGATTGCAAAACACCATTGTCCTCACGACAGGTTTCTCTGGGATTATATAATCTGTTGAAGGATACACAT
TTTGGTCTATAA
Pro Sequence
MSRFRSLLQASVNATKRAFTWNIEEWIPPPEKYIFKFHSKEDLKKWHLYS
DSEYGGLSSASLEIPDGGKESDGTGIFSGNLSVDLSEGSKWNISRSGFCG
MRSKKFDGFIDLDGYDAIAMRLRGDGRCYISTIYTENWVNSPGQTEDNSW
QAFVFAPKDRWYTAKIPLARYLPTWRGNVIDVEMEMNPGRVLGMSLSVNA
EGGAVGAKSGADCYAKEEIKKVKVVRKEALSLSRASHSLSTRDIKKGKFF
LNLGKEKDCKTPLSSRQVSLGLYNLLKDTHFGL