SEARCH

Sequence

GENOMES

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

ZS11 - ZS11_A06G12840.t1

CDS Sequence (678 bp)
ATGGCTTCATTGCTAGCTCGCAGGTCGTTCAATGCTCTCCGCGCCCGACATCTCGTTTTTTCGGGGCAAG
CTTTACAGGGACCTCATCTCTCTGCGCTACAATCCCGTGCTATATCGTATGGCACTAACAAAGATGATGA
AGAAGCTGAGAAACTTGCTAAGGAGATCTCCAAGGACTGGAGCACTGTCTTTGAGCGGAGCATGAACACC
CTATTTCTCACTGAAATGGTCCGGGGTTTGTCTCTGACCCTCAAGTACTTCTTTGATCCAAAAGTTACTA
TCAATTATCCTTTTGAAAAGGGTCCATTGAGCCCTCGCTTCCGTGGTGAGCACGCTCTTCGAAGGTATCC
AACTGGGGAAGAACGCTGCATTGCTTGTAAACTCTGTGAAGCTGTATGTCCAGCTCAAGCAATCACCATA
GAGGCAGAGGAGAGGGAAGATGGAAGCCGCAGAACCACTAGGTATGATATCGACATGACAAAGTGCATCT
ACTGTGGTTTCTGCCAAGAAGCTTGCCCTGTTGATGCAATCGTCGAAGGACCCAACTTTGAGTTTGCAAC
CGAGACCCATGAGGAACTTTTGTATGACAAAGAGAAACTTCTTGAGAATGGAGATCGGTGGGAGACAGAG
ATTGCCGAGAATCTGAAGTCGGAGAGCCTCTACCGCTGA
Upstream Sequence
TTGTCTTCTTCGTGTCCATGCCCTTGTCCTTGTGAGAGAGATCGAACTTTCTCGGGTTTATTTGTGTATC
ATCGTGTTCAAGGTTAGCGTGTAATACCAGTGAAAGTGATATTTGGAGCTCCATCAATGGCTTCATTGCT
AGCTCGCAGGTCGTTCAATGCTCTCCGCGCCCGACATCTCGTTTTTTCGGGGCAAGCTTTACAGGGACCT
CATCTCTCTGCGCTACAATCCCGTGCTATATCGTATGGCACTAACAAAGATGATGAAGAAGCTGAGAAAC
TTGCTAAGGAGATCTCCAAGGACTGGAGCACTGTCTTTGAGCGGAGCATGAACACCCTATTTCTCACTGA
AATGGTCCGGGGTTTGTCTCTGACCCTCAAGTACTTCTTTGATCCAAAAGTTACTATCAATTATCCTTTT
GAAAAGGGTCCATTGAGCCCTCGCTTCCGTGGTGAGCACGCTCTTCGAAGGTATCCAACTGGGGAAGAAC
GCTGCATTGCTTGTAAACTCTGTGAAGCTGTATGTCCAGCTCAAGCAATCACCATAGAGGCAGAGGAGAG
GGAAGATGGAAGCCGCAGAACCACTAGGTATGATATCGACATGACAAAGTGCATCTACTGTGGTTTCTGC
CAAGAAGCTTGCCCTGTTGATGCAATCGTCGAAGGACCCAACTTTGAGTTTGCAACCGAGACCCATGAGG
AACTTTTGTATGACAAAGAGAAACTTCTTGAGAATGGAGATCGGTGGGAGACAGAGATTGCCGAGAATCT
GAAGTCGGAGAGCCTCTACCGCTGAATGTTTCCGAAGGTCTTTCGCCTGATTTATTGGTTTGAATAAAGA
TACTGATGTGAAAACTGGGGTTGGTTTTGTTTACGGTTTAAATTGGACCATAAATACCATACCGAACACT
TTGGAATATGAAGTTATGATTACATGGAGTTGTTACTCTCTCTAGCCTAG
Downstream Sequence
GTATGACTCTTTTTTTTTTTTTTTGCATTTTATGTCCTGAGTGTTGCTATCCATTCCAAT
CTGCATCTTTTGGTCTATAGATTGGTGGAAATTGGAATTTGTAATTTAACACCAATTGGA
ACTGGCTACAGATTTTAAAGATTTAGTTTATTGTTATTGTTGATTATCATCAGGAGGCTA
TATTATTCTATATGTCGTTACTCTTCCTTTAAGATAGAATGGGTGGTGTTGGTGGTAATG
TTTTAGCTCAATCTCTGCAAGTACATGTCCTTTAAGTGAGAGCAACCTTTGTTATAGTTA
ACTTTTAGGTTCTTTAGCTTCTTCTGCTGGGTTATGATAATGATGAGATTCTTCTTGTAT
AGGTTTTTTCGGGGCAAGCTTTACAGGGACCTCATCTCTCTGCGCTACAATCCCGTGCTA
TATCGTATGGCACTAACAAAGGTATATATATATTTCTTCTCTTGTTTCAGGCATATATGA
TTAGACTAATTAATGGTTTGCCTTTATAACTTGCAGATGATGAAGAAGCTGAGAAACTTG
CTAAGGAGATCTCCAAGGACTGGAGCACTGGTAAGCTATTTGATCCACGCACACTTTTCT
ACCTTTCTATGAGTATTGACGGTTCTTAATTTTACAGTCTTTGAGCGGAGCATGAACACC
CTATTTCTCACTGAAATGGTCCGGGGTTTGTCTCTGACCCTCAAGTACTTCTTTGATCCA
AAAGTTACTGTGAGTGACAGTCTTCCCTGACTTTAGTTATTAGGTTGAAAGAAGAAACAT
TTTGTGAATTCTGAAGTTTTTGTCCTGTATGCAGATCAATTATCCTTTTGAAAAGGGTCC
ATTGAGCCCTCGCTTCCGTGGTGAGCACGCTCTTCGAAGGTATCCAACTGGGGAAGAACG
CTGCATTGCTTGTAAACTCTGTGAAGCTGTAAGTTTTTAAAAGTCTTATGTTACTCGTAC
CATAGCATCACAATTCACCTGAAATTTGAGGGATACTGGGTTTTTTTTTCCTTTTCATCA
GGTATGTCCAGCTCAAGCAATCACCATAGAGGCAGAGGAGAGGGAAGATGGAAGCCGCAG
AACCACTAGGTCTCCACTTAAGCTCCCATTCATTAACCATATGCTTTCTTCTAGATACCA
TCTTGTCTCTCTGGTTATGTACATTTCATAGTGTAAGTGTAGTGATGGTTTGGAGCTGTA
CACAGGTATGATATCGACATGACAAAGTGCATCTACTGTGGTTTCTGCCAAGAAGCTTGC
CCTGTTGATGCAATCGTCGAAGGACCCAACTTTGAGTTTGCAACCGAGACCCATGAGGTA
AACACTAGAATAGATAGAGACATACCATTTGTCCATGATCCTAAAGTTAAGATGGTGTAT
CTGATTCTTCTTTTTTATGAAAACGCTGCAGGAACTTTTGTATGACAAAGAGAAACTTCT
TGAGAATGGAGATCGGTGGGAGACAGAGATTGCCGAGAATCTGAAGTCGGAGAGCCTCTA
CCGCTGAATGTTTCCGAAGGTCTTTCGCCTGATTTATTGGTTTGAATAAAGATACTGATG
TGAAAACTGGGGTTGGTTTTGTTTACGGTTTAAATTGGACCATAAATACCATACCGAACA
CTTTGGAATATGAAGTTATGATTACATGGAGTTGTTACTCTCTCTAGCCTAGTGTAAAGT
ACTGCTGTAAAGTAGCTGAAGAAAAGAAACAGAGACAGTCACGACTTCTAAAATCAGCAA
AGATGGCTCTTGTTTCTGTTTCAAGCTGTGTTGAACCTCGGTGTTTGTATGTTCGTAGTC
GTCCTCCCACAAAGGGCATTTATTAGCCACTATAAAAAAAAACTGCAAGGAGGCCAGTCA
CGACCTGCCTTGAGGAACAAGCTAATGTACGTGTCCTTGCCGGTTTGAAAATCGAAAGCA
GTAGTACTACAATGGACAAAGCTCTAGTAGTATCAAATGGTGCTAATTGGGTGGGTGCCT
CTAACCCAAGTAAATTTGCT
mRNA Sequence
TTGTCTTCTTCGTGTCCATGCCCTTGTCCTTGTGAGAGAGATCGAACTTTCTCGGGTTTATTTGTGTATC
ATCGTGTTCAAGGTTAGCGTGTAATACCAGTGAAAGTGATATTTGGAGCTCCATCAATGGCTTCATTGCT
AGCTCGCAGGTCGTTCAATGCTCTCCGCGCCCGACATCTCGTTTTTTCGGGGCAAGCTTTACAGGGACCT
CATCTCTCTGCGCTACAATCCCGTGCTATATCGTATGGCACTAACAAAGATGATGAAGAAGCTGAGAAAC
TTGCTAAGGAGATCTCCAAGGACTGGAGCACTGTCTTTGAGCGGAGCATGAACACCCTATTTCTCACTGA
AATGGTCCGGGGTTTGTCTCTGACCCTCAAGTACTTCTTTGATCCAAAAGTTACTATCAATTATCCTTTT
GAAAAGGGTCCATTGAGCCCTCGCTTCCGTGGTGAGCACGCTCTTCGAAGGTATCCAACTGGGGAAGAAC
GCTGCATTGCTTGTAAACTCTGTGAAGCTGTATGTCCAGCTCAAGCAATCACCATAGAGGCAGAGGAGAG
GGAAGATGGAAGCCGCAGAACCACTAGGTATGATATCGACATGACAAAGTGCATCTACTGTGGTTTCTGC
CAAGAAGCTTGCCCTGTTGATGCAATCGTCGAAGGACCCAACTTTGAGTTTGCAACCGAGACCCATGAGG
AACTTTTGTATGACAAAGAGAAACTTCTTGAGAATGGAGATCGGTGGGAGACAGAGATTGCCGAGAATCT
GAAGTCGGAGAGCCTCTACCGCTGAATGTTTCCGAAGGTCTTTCGCCTGATTTATTGGTTTGAATAAAGA
TACTGATGTGAAAACTGGGGTTGGTTTTGTTTACGGTTTAAATTGGACCATAAATACCATACCGAACACT
TTGGAATATGAAGTTATGATTACATGGAGTTGTTACTCTCTCTAGCCTAG
Pro Sequence
MASLLARRSFNALRARHLVFSGQALQGPHLSALQSRAISYGTNKDDEEAE
KLAKEISKDWSTVFERSMNTLFLTEMVRGLSLTLKYFFDPKVTINYPFEK
GPLSPRFRGEHALRRYPTGEERCIACKLCEAVCPAQAITIEAEEREDGSR
RTTRYDIDMTKCIYCGFCQEACPVDAIVEGPNFEFATETHEELLYDKEKL
LENGDRWETEIAENLKSESLYR