SEARCH

Sequence

GENOMES

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

ZS11 - ZS11_A01G26510.t1

CDS Sequence (848 bp)
ATGTCGGGATTTCGCCATGCCGGTGTGTCCAAGATCGGCGTTGGATCCATCACCTGTTACCGCCAGATCC
GCCGCCTACGGAGTTGTCCCGCGGCCTTAAACGGTGGCTCTGAAACAGAGACCAACTCCGAAACCCTAGC
TTCACGGATCTGCTCAAGCCTCCAATCGTCGCTTAGCGTTTTCAGCGGTACTCATGCCAGCCACCGTGAT
AACTATCTCACTGGTGTCTTTGTTGGGGACTGTCCACGTTTAGGTCCCGCGTTGCAGAAACTTCAGCACC
AGAACCTGAAGTGCACAGAAGAAAGTAGTTTGGAGAAGAAAGCTATAAGTTCACTAGCTGGGACACCTGT
GCACTGGCACGCTACTCTTGAAGAGGTACCATCAGGAGTACCAACAATAATCATAGCTCATGAGTTCTAT
GATGCTCTTCCAGTTCATCAGTTTCAGCAGTTCATCTTGAAGAAACAACATGAAGCTCTCCAGAAGCAAC
AAGGTCAGTCTTACGCACCTAATGAAGAGATGGATGAGAGTCTTCATGTAGCGACAAGTGGACGATCACA
TGGGCATGGGGAGTTTGAATTCAGCGAGATCTTTTCTTCACACTCGGAGATATCGTCAGTCTTCTATGAG
ACTATGAGAAGGTCGCCCTTCTCGCTTGGGGTACAACAATGTGTTGATCCTGATCGTTGGGATCATTGTT
TTCATATTGTGGGATTGCTGCTGGTTATAGAGACACTGAGCACGTTCCTTCGCGCACTGCGTCTCCACTT
GGTGGAGTTTCAGAACAAATTCTACGCTCATTTCTCTTTCGTTCTCACCGGAAACAAAGACGATTGA
Upstream Sequence
ATGTCGGGATTTCGCCATGCCGGTGTGTCCAAGATCGGCGTTGGATCCATCACCTGTTACCGCCAGATCC
GCCGCCTACGGAGTTGTCCCGCGGCCTTAAACGGTGGCTCTGAAACAGAGACCAACTCCGAAACCCTAGC
TTCACGGATCTGCTCAAGCCTCCAATCGTCGCTTAGCGTTTTCAGCGGTACTCATGCCAGCCACCGTGAT
AACTATCTCACTGGTGTCTTTGTTGGGGACTGTCCACGTTTAGGTCCCGCGTTGCAGAAACTTCAGCACC
AGAACCTGAAGTGCACAGAAGAAAGTAGTTTGGAGAAGAAAGCTATAAGTTCACTAGCTGGGACACCTGT
GCACTGGCACGCTACTCTTGAAGAGGTACCATCAGGAGTACCAACAATAATCATAGCTCATGAGTTCTAT
GATGCTCTTCCAGTTCATCAGTTTCAGCAGTTCATCTTGAAGAAACAACATGAAGCTCTCCAGAAGCAAC
AAGGTCAGTCTTACGCACCTAATGAAGAGATGGATGAGAGTCTTCATGTAGCGACAAGTGGACGATCACA
TGGGCATGGGGAGTTTGAATTCAGCGAGATCTTTTCTTCACACTCGGAGATATCGTCAGTCTTCTATGAG
ACTATGAGAAGGTCGCCCTTCTCGCTTGGGGTACAACAATGTGTTGATCCTGATCGTTGGGATCATTGTT
TTCATATTGTGGGATTGCTGCTGGTTATAGAGACACTGAGCACGTTCCTTCGCGCACTGCGTCTCCACTT
GGTGGAGTTTCAGAACAAATTCTACGCTCATTTCTCTTTCGTTCTCACCGGAAACAAAGACGATTGA
Downstream Sequence
GGTCTGAGAATCACAAGCAGACGCACTCCCAAGACGGCGGGGAATAAGCTGGACCGAAGA
GAAACAAACGAGAGAGAACCGCCATCCCTCACCGTAGATTCGTCGACACCATCTCCGTCC
AGCTACGACCTCTGAACTTCATCACTTATTAATTCAATCTCCATCAATCATCAATCATCT
TCGCCACCCTTAGCATTCAGAAGTATCTTCTGATTAGCCAATTATAGCAGTGGATCTCCC
AAATTCCTTTTATCTCGGTACGTTCTTATTTGTTCATTCCTGCAAATCTACTTCTACTTC
CTGTGTCCATATGTTTTCTTGATCTTACGGATCCTTTGTTAAATTATGTCATAAATGATG
AATCTTTTTCTTCTTATTGAAGACATCACTAAGCATATATAtatatatatatataTATAT
ATATTTACTATATCTTTACCAATGTTAGCACATGTATGTATCTGATCTTATTGTCTTGAA
TCTGGTTATTTATTTGTTTTTTTAAAGCGTTTTCAGCGGTACTCATGCCAGCCACCGTGA
TAACTATCTCACTGGTGTCTTTGTTGGGGACTGTCCACGTTTAGGGTACATCAAAGTTTA
GAAATTTGACGGAGTCATTGCATATACACTTGGTGGAGTGCAGTCCCGCGTTGCAGAAAC
TTCAGCACCAGAACCTGAAGTGCACAGAAGAAAGTAGTTTGGAGAAGAAAGCTATAAGTT
CACTAGCTGGGACACCTGTGCACTGGCACGCTACTCTTGAAGAGGTACCATCAGGAGGTA
TGCATGTTTGTTACATTTACTTATTGAGAATCTCTTATGAGGCTCTTGGCTTAATATAGC
AACAGTCAACGTCGTAAGCAATGAAAAATATGATGATCTGCATCGTTCCTCATTGTATCT
ATTGTTCTCTTTTGCTTGCCTTGGAAGTACCAACAATAATCATAGCTCATGAGTTCTATG
ATGCTCTTCCAGTTCATCAGTTTCAGGTTTGTGTGATTTGCAATATAGTCTTCTCATTTT
TCCAGCTTGTGCTTCTCTTTCTGGTTATTTTCTATGTTCTGTGTATGTTGCTTTCAAAGC
AGTTCATCTTGAAGAAACAACATGAAGCTGTGAGATTCTTTCCCTTTTAGTTCCTATATA
ATGGTCTTTCTTTTTCTATTGCTGGTCATTCTAAATGGTTTCCTTATCCAGCTCCAGAAG
CAACAAGGTCAGTCTTACGCACCTAATGAAGAGATGGATGAGAGTCTTCATGTAGCGACA
AGTGGACGATCACATGGGCATGGGGAGTTTGAATTCAGCGAGATCTTTGTGCATCGGTTT
TTTCACACCATAGAATTTTTTGCTTAGAGCTGTTTCCAACACCTCTTCTTACCTGCGTAT
ATGGGCTCTCAGGTATCTATCTAATCATGGAGTAGTAGGAAGCTATTATATATATTACTC
ATGGCTTAATTATATCAATCATCCTTTGTGTGTATTGCAGTCTTCACACTCGGAGATATC
GTCAGTCTTCTATGAGACTATGAGAAGGTCGCCCTTCTCGCTTGGGGTATGCGCATCCTC
TCATTCTCTCTCTCTCTTAGTCTAACTAATATTATCAAATCAACTAATCGATCTTTGTTT
TTTTATTAAAATAAACAGGTACAACAATGTGTTGATCCTGATCGTTGGGATCATTGTTTT
CATATTGTGGGATTGCTGCTGGTTATAGAGACACTGAGCACGTTCCTTCGCGCACTGCGT
CTCCACTTGGTGGAGTTTCAGAACAAATTCTACGCTCATTTCTCTTTCGTTCTCACCGGA
AACAAAGACGATTGATAGGGATGAATGATTGTTCCATTCCTATCCCATTCTCTGCAAAAT
TTGCATATATAAAAAAGGAACAAGACAAACCAAGTTTTATTTATTTTCTGCGAATATATT
TTTCCCCTTCCACTTTCAGGGTGGGCAGAATTAAATATGTTTATTTTGTTTGCCTGTCTG
GAGATTAGATTTTTTTAAAC
mRNA Sequence
ATGTCGGGATTTCGCCATGCCGGTGTGTCCAAGATCGGCGTTGGATCCATCACCTGTTACCGCCAGATCC
GCCGCCTACGGAGTTGTCCCGCGGCCTTAAACGGTGGCTCTGAAACAGAGACCAACTCCGAAACCCTAGC
TTCACGGATCTGCTCAAGCCTCCAATCGTCGCTTAGCGTTTTCAGCGGTACTCATGCCAGCCACCGTGAT
AACTATCTCACTGGTGTCTTTGTTGGGGACTGTCCACGTTTAGGTCCCGCGTTGCAGAAACTTCAGCACC
AGAACCTGAAGTGCACAGAAGAAAGTAGTTTGGAGAAGAAAGCTATAAGTTCACTAGCTGGGACACCTGT
GCACTGGCACGCTACTCTTGAAGAGGTACCATCAGGAGTACCAACAATAATCATAGCTCATGAGTTCTAT
GATGCTCTTCCAGTTCATCAGTTTCAGCAGTTCATCTTGAAGAAACAACATGAAGCTCTCCAGAAGCAAC
AAGGTCAGTCTTACGCACCTAATGAAGAGATGGATGAGAGTCTTCATGTAGCGACAAGTGGACGATCACA
TGGGCATGGGGAGTTTGAATTCAGCGAGATCTTTTCTTCACACTCGGAGATATCGTCAGTCTTCTATGAG
ACTATGAGAAGGTCGCCCTTCTCGCTTGGGGTACAACAATGTGTTGATCCTGATCGTTGGGATCATTGTT
TTCATATTGTGGGATTGCTGCTGGTTATAGAGACACTGAGCACGTTCCTTCGCGCACTGCGTCTCCACTT
GGTGGAGTTTCAGAACAAATTCTACGCTCATTTCTCTTTCGTTCTCACCGGAAACAAAGACGATTGA
Pro Sequence
MSGFRHAGVSKIGVGSITCYRQIRRLRSCPAALNGGSETETNSETLASRI
CSSLQSSLSVFSGTHASHRDNYLTGVFVGDCPRLGPALQKLQHQNLKCTE
ESSLEKKAISSLAGTPVHWHATLEEVPSGVPTIIIAHEFYDALPVHQFQQ
FILKKQHEALQKQQGQSYAPNEEMDESLHVATSGRSHGHGEFEFSEIFSS
HSEISSVFYETMRRSPFSLGVQQCVDPDRWDHCFHIVGLLLVIETLSTFL
RALRLHLVEFQNKFYAHFSFVLTGNKDD