SEARCH

Sequence

GENOMES

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

P202 - BnaA02G005240P202.1

CDS Sequence (988 bp)
ATGGCGGTTTATGACCATAGCGGAGACATTAACAGTACTCAACTCGATCCATCGCGTAAAAGGAAAGCGA
GGAGTAGACGTGACGGTACCACTGTGGCTGAGAGGCTTCAGTTGTGGAAGGACTATAATGAGACGACCGA
AGAAGCTTCCCCCAAGAAGAGGAAAGTACCTGCGAAAGGATCAAAGAAAGGCTGTATGAAAGGCAAAGGA
GGACCAGAGAATAGTCAGTGTAGCTTCAGGGGAGTTAGGCAGAGGATTTGGGGTAAATGGGTTGCTGAGA
TTAGAGAGCCGAACAGAGGAAGTAGGCTTTGGCTTGGTACTTTCCCTACTGCTAAAGAAGCTGCTTTGGC
TTATGATGAGGCGGCTAGGGTTATGTATGGTCCGTTGGCGAGGGTTAATTTCCCTCAGAGGTCTGTGTCT
GACGTTATGAGTACGTCGAGCCAGTCTGAGGTGTGCACGGCTGGGACTAGTGGGCGTGTTCATGTGAAAA
CAGAGGATGGAGATTGTGACTCTGAAGCTAGTCCGTTAGAAGAGATGAAGAAGGAGGTGAAGGTAGACGC
TAATGCAAGTGTTCCAAGCAGTGATTGGCTGAGCGAGTTTGAGCAGAAGTATTGGAACGAGGTTCTGGAG
GAGAAAGAGAAACAGAAGAAGCAAGAGATAGAAGAAACCTGTCAGAAGCAGCCGGGTTCACTTTCTGTTT
CAGTTTCAGATTATGGTTGGCCGGAGGATCTAAATCAGAGTCAGTGGGACTCTTCAGAGATGTTTGATGT
TTCTGAGCTTCTAGGTGACTTGAATGGGGACATCTTTACAGGCTTGGACCAGGTCTCATACCCGCTGGAC
AATGTCGCAGGTGGGTTGCCTGAAACCGAGAAGCTTCAAGGCCTTGACTCTAGTTATGGATTGCCTCCGT
TTCAGCTAGAGGCACAGGATGGTAACGAGTTCTTCGATCTGAGTTTCTTGGATCTGGAGAAGTGA
Upstream Sequence
ATTTTTGATTTCTGGTAAAAGCTTACTGACCAAAAACGAGAGACAAAGAGAGATCACTAGAGAAGAAGAC
GCGAGAAAGTAATAAACTGAACAAGAAGATTACACGAACAATCAAACACGAAACCGATTCATATCTCCGC
AAAGAAACAGATTTGATTTCAATCGGAACCTCAGATTCTGAGTTCTCTACGCCAATAGATTGTGTTGTTT
CCCTGAAGAAGATGGCGGTTTATGACCATAGCGGAGACATTAACAGTACTCAACTCGATCCATCGCGTAA
AAGGAAAGCGAGGAGTAGACGTGACGGTACCACTGTGGCTGAGAGGCTTCAGTTGTGGAAGGACTATAAT
GAGACGACCGAAGAAGCTTCCCCCAAGAAGAGGAAAGTACCTGCGAAAGGATCAAAGAAAGGCTGTATGA
AAGGCAAAGGAGGACCAGAGAATAGTCAGTGTAGCTTCAGGGGAGTTAGGCAGAGGATTTGGGGTAAATG
GGTTGCTGAGATTAGAGAGCCGAACAGAGGAAGTAGGCTTTGGCTTGGTACTTTCCCTACTGCTAAAGAA
GCTGCTTTGGCTTATGATGAGGCGGCTAGGGTTATGTATGGTCCGTTGGCGAGGGTTAATTTCCCTCAGA
GGTCTGTGTCTGACGTTATGAGTACGTCGAGCCAGTCTGAGGTGTGCACGGCTGGGACTAGTGGGCGTGT
TCATGTGAAAACAGAGGATGGAGATTGTGACTCTGAAGCTAGTCCGTTAGAAGAGATGAAGAAGGAGGTG
AAGGTAGACGCTAATGCAAGTGTTCCAAGCAGTGATTGGCTGAGCGAGTTTGAGCAGAAGTATTGGAACG
AGGTTCTGGAGGAGAAAGAGAAACAGAAGAAGCAAGAGATAGAAGAAACCTGTCAGAAGCAGCCGGGTTC
ACTTTCTGTTTCAGTTTCAGATTATGGTTGGCCGGAGGATCTAAATCAGAGTCAGTGGGACTCTTCAGAG
ATGTTTGATGTTTCTGAGCTTCTAGGTGACTTGAATGGGGACATCTTTACAGGCTTGGACCAGGTCTCAT
ACCCGCTGGACAATGTCGCAGGTGGGTTGCCTGAAACCGAGAAGCTTCAAGGCCTTGACTCTAGTTATGG
ATTGCCTCCGTTTCAGCTAGAGGCACAGGATGGTAACGAGTTCTTCGATCTGAGTTTCTTGGATCTGGAG
AAGTGAGAGAGTTGGATACATTTTGGATCTTGTTATTTGCCTTAAATGATAAAAATCCCATCATGACTTT
TGAGACTCTATTGAGTTTTTTTAGTGATAGAGAATCTCATAAGGACTAGAAAAGGGAAATTGTATATACT
GAGATGATGTTTTGTGTAATAACACACTGTAACAGAAAAAAAATAAAACCTGCTACACTGCTTCGAACAA
CAAGAAGATCAAGAACTAGTTCACACTTTGATGGGCCTTACAGTCTGAAACTTGTCTGAAACAATGAAAC
TGAGAAACAGGAAACTGGACTCCATCAACTTGACCACTCTCTAGCTCGATGCGCATGATGGTAAATGAGT
TCCCTCGATCTGAGTTTCTTGGATCTACAGAAGTGAGAGTTGGATATATTTCGGAATTTGTTATTGCAAT
AGTACCATCAGCGACTGTTGAGAGCCATTGAGTTTTTAGTTTACAAGACTGAGAGGAGAGACTTTTTAGT
TTCTAGTTATCTTGATTTCTTTCTTGTTAAAAAATGAACTAAGATGATTGTATGTGACACATGCTTGATC
TTAATCATTCATTCTCTGAGTGGAATGTTGTACATGCTATTCTCACTTCTACGTACTTCAATAGTAATAA
ACT
Downstream Sequence
AGAGAGTTGGATACATTTTGGATCTTGTTATTTGCCTTAAATGATAAAAATCCCATCATG
ACTTTTGAGACTCTATTGAGTTTTTTTAGTGATAGAGAATCTCATAAGGACTAGAAAAGG
GAAATTGTATATACTGAGATGATGTTTTGTGTAATAACACACTGTAACAGAAAAAAAATA
AAACCTGCTACACTGCTTCGAACAACAAGAAGATCAAGAACTAGTTCACACTTTGATGGG
CCTTACAGTCTGAAACTTGTCTGAAACAATGAAACTGAGAAACAGGAAACTGGACTCCAT
CAACTTGACCACTCTCTAGCTCGATGCGCATGATGGTAAATGAGTTCCCTCGATCTGAGT
TTCTTGGATCTACAGAAGTGAGAGTTGGATATATTTCGGAATTTGTTATTGCAATAGTAC
CATCAGCGACTGTTGAGAGCCATTGAGTTTTTAGTTTACAAGACTGAGAGGAGAGACTTT
TTAGTTTCTAGTTATCTTGATTTCTTTCTTGTTAAAAAATGAACTAAGATGATTGTATGT
GACACATGCTTGATCTTAATCATTCATTCTCTGAGTGGAATGTTGTACATGCTATTCTCA
CTTCTACGTACTTCAATAGTAATAAACTAAAACATGTAAATAGTTAATTAGTACTTTACT
CTCAAATGTATAATGTTTTAAGAATATGTGTTTCAAAAATGTAAAAATGTTTTGATATTT
CTTAATTTATTTTAATTTTATCCAAAATTATGTAACTTCTATTATTTTATAACTTTCGAA
TTAATGTTTTGAGTTATATATTAACCAAAATCCACAGAGAGAATCTATTCTGTTAAACGA
TAGTCAGATACGTAACCATAAATACTAATGATTCTTTTTTAACACGATGGCTGATATTAT
GTTTTCTAAAATTAACTTCTTACAAGAATCTAATATATCCATACTCTGTAGATTCTAGAA
TATAAAATTTCGAGTATATAGAATGAGGAATATTCGGTGGATATTCTTGATTTGGTAAAA
ATGAAGGAGGCTTCCTATGGTAAGGAATCTTGGAACATAAGATCATAACGTATATGGTCA
CAGCACAGATAAGCACAACTGAGTATGTGCACACACAAATCCTTCACATCACAACCTATC
TCTATCTCTATCCTTCTACAAATATTCATATATAAAACACACACAATATGTCCATAACTT
ATTATCAAAAAGTTGATCATCCTTCTTAAATTTCTTAAGCAAAACCAACTTGATAACTTT
TCTCATCAACTGATAACATCAGAAATAAGAGATTCAGCATTTATAGAGAGAGATAAAACA
TGACATCACCGGTGCAGCTCCATCACGGCTTCCACACGCTGCAGCCTCCCGATCAAACCG
ATGGACTGATCAGAAGAGTCTTTCTCACGCGAGGTATGCACGTGCCAGAGCACGTGGCGA
TGCACCACACACATGACCTTGGTCCAGGCAAGTGCTGCTCCTCGGTGGTGCAGACGATCC
ACGCCCCGCTCGAGTCCGTGTGGGCCCTCGTGCGTCGTTTTGATAACCCTAAACTTTACA
AGAACTTCGTAAAGCAGTGCCGTATCGTCCAAGGAGACGGGCTCCACGTCGGCGATCTTA
GGGAGGTCATGGTCGTGTCTGGACTCCCGGCGGTCTCTAGCACCGAAAGGCTCGAGATAT
TGGACGAGGAGCGTTATGTGATAAGCTTTAGCGTCGTGGGTGGGGACCACAGGCTCGAGA
ACTACCGATCGGTGACGACTCTCCATGCGTCGGACGATGAAGGAACCGTTGTGGTGGAGT
CATATGTCGTCGATGTGCCGCCGGGGAACACGGAGGAGGAGACTCTTAGCTTTGTGGATA
CTATCGTCCGGTGCAACCTTCAGAGTCTTGCTAGAAGTACCAACCGGCAATAATCTCGTC
TGTAAATTTATTGCAATTATGTTATGTATATGTTATTATTTTAAATAAAAACATTTCCTC
TGGATGTTTCAATCATCACA
mRNA Sequence
ATTTTTGATTTCTGGTAAAAGCTTACTGACCAAAAACGAGAGACAAAGAGAGATCACTAGAGAAGAAGAC
GCGAGAAAGTAATAAACTGAACAAGAAGATTACACGAACAATCAAACACGAAACCGATTCATATCTCCGC
AAAGAAACAGATTTGATTTCAATCGGAACCTCAGATTCTGAGTTCTCTACGCCAATAGATTGTGTTGTTT
CCCTGAAGAAGATGGCGGTTTATGACCATAGCGGAGACATTAACAGTACTCAACTCGATCCATCGCGTAA
AAGGAAAGCGAGGAGTAGACGTGACGGTACCACTGTGGCTGAGAGGCTTCAGTTGTGGAAGGACTATAAT
GAGACGACCGAAGAAGCTTCCCCCAAGAAGAGGAAAGTACCTGCGAAAGGATCAAAGAAAGGCTGTATGA
AAGGCAAAGGAGGACCAGAGAATAGTCAGTGTAGCTTCAGGGGAGTTAGGCAGAGGATTTGGGGTAAATG
GGTTGCTGAGATTAGAGAGCCGAACAGAGGAAGTAGGCTTTGGCTTGGTACTTTCCCTACTGCTAAAGAA
GCTGCTTTGGCTTATGATGAGGCGGCTAGGGTTATGTATGGTCCGTTGGCGAGGGTTAATTTCCCTCAGA
GGTCTGTGTCTGACGTTATGAGTACGTCGAGCCAGTCTGAGGTGTGCACGGCTGGGACTAGTGGGCGTGT
TCATGTGAAAACAGAGGATGGAGATTGTGACTCTGAAGCTAGTCCGTTAGAAGAGATGAAGAAGGAGGTG
AAGGTAGACGCTAATGCAAGTGTTCCAAGCAGTGATTGGCTGAGCGAGTTTGAGCAGAAGTATTGGAACG
AGGTTCTGGAGGAGAAAGAGAAACAGAAGAAGCAAGAGATAGAAGAAACCTGTCAGAAGCAGCCGGGTTC
ACTTTCTGTTTCAGTTTCAGATTATGGTTGGCCGGAGGATCTAAATCAGAGTCAGTGGGACTCTTCAGAG
ATGTTTGATGTTTCTGAGCTTCTAGGTGACTTGAATGGGGACATCTTTACAGGCTTGGACCAGGTCTCAT
ACCCGCTGGACAATGTCGCAGGTGGGTTGCCTGAAACCGAGAAGCTTCAAGGCCTTGACTCTAGTTATGG
ATTGCCTCCGTTTCAGCTAGAGGCACAGGATGGTAACGAGTTCTTCGATCTGAGTTTCTTGGATCTGGAG
AAGTGAGAGAGTTGGATACATTTTGGATCTTGTTATTTGCCTTAAATGATAAAAATCCCATCATGACTTT
TGAGACTCTATTGAGTTTTTTTAGTGATAGAGAATCTCATAAGGACTAGAAAAGGGAAATTGTATATACT
GAGATGATGTTTTGTGTAATAACACACTGTAACAGAAAAAAAATAAAACCTGCTACACTGCTTCGAACAA
CAAGAAGATCAAGAACTAGTTCACACTTTGATGGGCCTTACAGTCTGAAACTTGTCTGAAACAATGAAAC
TGAGAAACAGGAAACTGGACTCCATCAACTTGACCACTCTCTAGCTCGATGCGCATGATGGTAAATGAGT
TCCCTCGATCTGAGTTTCTTGGATCTACAGAAGTGAGAGTTGGATATATTTCGGAATTTGTTATTGCAAT
AGTACCATCAGCGACTGTTGAGAGCCATTGAGTTTTTAGTTTACAAGACTGAGAGGAGAGACTTTTTAGT
TTCTAGTTATCTTGATTTCTTTCTTGTTAAAAAATGAACTAAGATGATTGTATGTGACACATGCTTGATC
TTAATCATTCATTCTCTGAGTGGAATGTTGTACATGCTATTCTCACTTCTACGTACTTCAATAGTAATAA
ACT
Pro Sequence
MAVYDHSGDINSTQLDPSRKRKARSRRDGTTVAERLQLWKDYNETTEEASPKKRKVPAKGSKKGCMKGKG
GPENSQCSFRGVRQRIWGKWVAEIREPNRGSRLWLGTFPTAKEAALAYDEAARVMYGPLARVNFPQRSVS
DVMSTSSQSEVCTAGTSGRVHVKTEDGDCDSEASPLEEMKKEVKVDANASVPSSDWLSEFEQKYWNEVLE
EKEKQKKQEIEETCQKQPGSLSVSVSDYGWPEDLNQSQWDSSEMFDVSELLGDLNGDIFTGLDQVSYPLD
NVAGGLPETEKLQGLDSSYGLPPFQLEAQDGNEFFDLSFLDLEK