SEARCH

Sequence

GENOMES

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

TA - BnaA05T287700TA

CDS Sequence (879 bp)
ATGGGTAAAACCGCCGGGAACAGAGACTGGACTCAGATCTACGCTATCTACGGCATTCAACAATGGCAGA
CACTCGTCTTCCTCCTCTTCCACGCCTTCTTCTTCTCCCTCCTCTCTCTCCTCTTCCTCATCTACTTCGA
CCAGATTTGCTTCTTCCTCGACTCCTTCTTCCTCTCCGGCGCCTCTAGGTTTACAGCTGGCTTCACCGGC
GCAGTAACCGCTCTCTCCGCGGTCTGCCTCCTCTTCGCCGCCGCTAACTTCGTCTACTCCGACGTTCCGC
TCCAGTACGAGATGGCTCAGCGCATGGTCAGCTCCGTCAGCGACTGGTCCTGCGTCAAAACGGCGTTAGA
TCTCGGCTGCGGCCGCGGCATCTTACTCAATGCCGTCGCGACGCAGCTCAAGAAAACCGGTAGCTCGGGT
CGGGTCGTCGGGTTAGACCGCTCCAAACGCACCACTCTCTCCACTCTCCGCACAGCTAAACTCGAAGGTG
TGCAAGAGTATGTGACGTGCAGGGAAGGAGACGTGAGGACGTTGCCGTTTGGGGATAACTACTTCGACGT
GGTGGTCTCGTCGGTGTTCGTGCACACGGTGGGGAAAGAGCACGGTCAGAAGTCCGTGGAGGCGGCGGCG
GAGAGGATGAGGGTGCTTGGGGAGATAGTGAGAGTCGTGAAGCCTGGAGGTTTGTGCGTGGTTTGGGATC
TCTTACACGTGCCGGAGTACGTGCGGCGTCTCCATGAGCTGAAGATGGAGGATATCCGAGTCTCCGAGCG
AGTTACGGCGTTTATGGCCGGAAGCCACATCGTGACTTTCAGGAAACCGAGTGAACTCGTTGCTGGACCC
CGGGAAGTCCGCCTCGATTGGAGATGA
Upstream Sequence
TCTATTTTTTTCTCCTTCCGCAGCGCAGCTACATAAGCTCACTCTCCCACCATGTTATTGTGACGATACT
CTTCCAACTTACCCTACATCATATCTTCTATCGTCCTCGATCTAATTTATCCATCTCATTTACCACAGGA
ACTTCAATATTCCTTTTATTTTAATACGAAAGTTTAAGATTCAAACTCCTGAGATCTGTTTGTTTCCTTA
AAGAGAAAACATCTTGTTTTCATCGGAATAAAATGGGTAAAACCGCCGGGAACAGAGACTGGACTCAGAT
CTACGCTATCTACGGCATTCAACAATGGCAGACACTCGTCTTCCTCCTCTTCCACGCCTTCTTCTTCTCC
CTCCTCTCTCTCCTCTTCCTCATCTACTTCGACCAGATTTGCTTCTTCCTCGACTCCTTCTTCCTCTCCG
GCGCCTCTAGGTTTACAGCTGGCTTCACCGGCGCAGTAACCGCTCTCTCCGCGGTCTGCCTCCTCTTCGC
CGCCGCTAACTTCGTCTACTCCGACGTTCCGCTCCAGTACGAGATGGCTCAGCGCATGGTCAGCTCCGTC
AGCGACTGGTCCTGCGTCAAAACGGCGTTAGATCTCGGCTGCGGCCGCGGCATCTTACTCAATGCCGTCG
CGACGCAGCTCAAGAAAACCGGTAGCTCGGGTCGGGTCGTCGGGTTAGACCGCTCCAAACGCACCACTCT
CTCCACTCTCCGCACAGCTAAACTCGAAGGTGTGCAAGAGTATGTGACGTGCAGGGAAGGAGACGTGAGG
ACGTTGCCGTTTGGGGATAACTACTTCGACGTGGTGGTCTCGTCGGTGTTCGTGCACACGGTGGGGAAAG
AGCACGGTCAGAAGTCCGTGGAGGCGGCGGCGGAGAGGATGAGGGTGCTTGGGGAGATAGTGAGAGTCGT
GAAGCCTGGAGGTTTGTGCGTGGTTTGGGATCTCTTACACGTGCCGGAGTACGTGCGGCGTCTCCATGAG
CTGAAGATGGAGGATATCCGAGTCTCCGAGCGAGTTACGGCGTTTATGGCCGGAAGCCACATCGTGACTT
TCAGGAAACCGAGTGAACTCGTTGCTGGACCCCGGGAAGTCCGCCTCGATTGGAGATGATGACGTGGATA
TTTTAAAACGGCTGTGTGTCGATTCGTTTATATAGAAGACGGCACGTAGTTCAAGTCCGGAAGTTCGAAA
CAGATAATTGTGATATACACTATATTAATTACAGTCTAAACTAGAAAAACAAAAATCAAAATGTATGTAG
AAGTGTCTGGGGAGGCGAAGCGGAACCAGCTGCTTCTTGAAGAGGCAGAAACGCTGACACGACGTTTGCG
TTTTGATCTTGTATTTATATAAATAATCCTAGTAAAGTAGTACTATTATTATCGAATGTATTGTGATGCT
CTAATTTCTGCGTTAGCGTTTCTGACGCTGGTCAGTAGTCAGTTCAACGTCGTGGGGAGAAGTACCTAAC
TAATCAATGTAAAATGTAAAAAAAGGAAAGAAAAATCGACCATGTTGAATGTTGAGTGACTATCAAGAAT
GTCGTCTTATTAATATTGGTTGGGCATTAAATGTCTTGTCCTTTTATTTCACGTCGATGTGATACATCTG
TCCCC
Downstream Sequence
GTACAATTAATTAATTACTTTTTTTTACCTAAAGTTAATTAATAATTTTACTGATTCGTT
TGTGTAATTTTTAATTGTGTGTGTAGGTGTGCAAGAGTATGTGACGTGCAGGGAAGGAGA
CGTGAGGACGTTGCCGTTTGGGGATAACTACTTCGACGTGGTGGTCTCGTCGGTGTTCGT
GCACACGGTGGGGAAAGAGCACGGTCAGAAGTCCGTGGAGGCGGCGGCGGAGAGGATGAG
GGTGCTTGGGGAGATAGTGAGAGTCGTGAAGCCTGGAGGTTTGTGCGTGGTTTGGGATCT
CTTACACGTGCCGGAGTACGTGCGGCGTCTCCATGAGCTGAAGATGGAGGATATCCGAGT
CTCCGAGCGAGTTACGGCGTTTATGGCCGGAAGCCACATCGTGACTTTCAGGAAACCGAG
TGAACTCGTTGCTGGACCCCGGGAAGTCCGCCTCGATTGGAGATGATGACGTGGATATTT
TAAAACGGCTGTGTGTCGATTCGTTTATATAGAAGACGGCACGTAGTTCAAGTCCGGAAG
TTCGAAACAGATAATTGTGATATACACTATATTAATTACAGTCTAAACTAGAAAAACAAA
AATCAAAATGTATGTAGAAGTGTCTGGGGAGGCGAAGCGGAACCAGCTGCTTCTTGAAGA
GGCAGAAACGCTGACACGACGTTTGCGTTTTGATCTTGTATTTATATAAATAATCCTAGT
AAAGTAGTACTATTATTATCGAATGTATTGTGATGCTCTAATTTCTGCGTTAGCGTTTCT
GACGCTGGTCAGTAGTCAGTTCAACGTCGTGGGGAGAAGTACCTAACTAATCAATGTAAA
ATGTAAAAAAAGGAAAGAAAAATCGACCATGTTGAATGTTGAGTGACTATCAAGAATGTC
GTCTTATTAATATTGGTTGGGCATTAAATGTCTTGTCCTTTTATTTCACGTCGATGTGAT
ACATCTGTCCCCTACATATTATTTCAAATTTAATTACAACAAATCCAGTTGGGCCACGTT
TGGGCCAAGCCTTTACTTTCCGTAAGGTCACGGCAAAGCGTACAATCATAAACACGCCGA
GTTGTTCAATCACCATGCAACAAGCAGTGCCGTCTGTACTCTGAATAATAGAACACCACG
CCGTTTCCTGAATTTCATTCTAGACAACGTGTATCCACACAGATACTTCCACGTAAGCGT
CTGGAAGATGAGGCGCGCCAAGCAGAAAGAAACCTCACCGTTGCTCCTTCCCTATCCTTC
TCTGAATCACTTGCACGTCTCCATCAATGGCTTCTCCGTTGTCTCTTTCCACCGTTGTCT
CTCACCGGATCCTATCTCTCCACCCTCCGCCTCTTAACCGCAGCTTACTCTTCGTAAAAC
CCAAATTACCCTTCAGCCGAACCGTTTCCAGAGATCTACGCATGCGCTTGCATTCTCAAA
CCACGAACTATGGCGATAAGGTCGGGTTCATAGCTCTAGAAAGATGTCACACATGGGTTC
GTTATAAAGTTCCAAACTTTGCTTTCTAAATACTCGTTTTCAGCAGTGCAGGAACATAAA
CCTTCTTCAATCGATTCAAAGTTGAACCCTTTGGAAGGAGCTGGAACAAAGAATCTGGAG
AAAGTAGTTGCAACGATCCTGATACTAGCTCAAGTGTGGTCTCCGTTGCCCTTGTTTGGT
CTAGACTCTGCCTACATCTCACCTGCAGAGGCGGTTCTTTACTCTCCGGACACGAAAGTT
CCAAGGAGTGGGGAACTTGCACTAAGAAGAGCCATTCCTGCTAATCCCAATATGAAGACT
ATACAGGCTTGTCACTCTACTAGACTCTTTACATTCTGTTAGTTGTGGTGGTTATTGATT
TTGTTACGCTGTTTTGTGTGGGGTTTCCTTAGGCTTCGTTGGAAGATATATCGTATCTTC
TTAGGATCCCTCAAAGAAAGCCTTATGGTACCATGGAGAGCAATGTGAAGAAGGCTCTAA
AGGTGAACATGTTATTGTCT
mRNA Sequence
TCTATTTTTTTCTCCTTCCGCAGCGCAGCTACATAAGCTCACTCTCCCACCATGTTATTGTGACGATACT
CTTCCAACTTACCCTACATCATATCTTCTATCGTCCTCGATCTAATTTATCCATCTCATTTACCACAGGA
ACTTCAATATTCCTTTTATTTTAATACGAAAGTTTAAGATTCAAACTCCTGAGATCTGTTTGTTTCCTTA
AAGAGAAAACATCTTGTTTTCATCGGAATAAAATGGGTAAAACCGCCGGGAACAGAGACTGGACTCAGAT
CTACGCTATCTACGGCATTCAACAATGGCAGACACTCGTCTTCCTCCTCTTCCACGCCTTCTTCTTCTCC
CTCCTCTCTCTCCTCTTCCTCATCTACTTCGACCAGATTTGCTTCTTCCTCGACTCCTTCTTCCTCTCCG
GCGCCTCTAGGTTTACAGCTGGCTTCACCGGCGCAGTAACCGCTCTCTCCGCGGTCTGCCTCCTCTTCGC
CGCCGCTAACTTCGTCTACTCCGACGTTCCGCTCCAGTACGAGATGGCTCAGCGCATGGTCAGCTCCGTC
AGCGACTGGTCCTGCGTCAAAACGGCGTTAGATCTCGGCTGCGGCCGCGGCATCTTACTCAATGCCGTCG
CGACGCAGCTCAAGAAAACCGGTAGCTCGGGTCGGGTCGTCGGGTTAGACCGCTCCAAACGCACCACTCT
CTCCACTCTCCGCACAGCTAAACTCGAAGGTGTGCAAGAGTATGTGACGTGCAGGGAAGGAGACGTGAGG
ACGTTGCCGTTTGGGGATAACTACTTCGACGTGGTGGTCTCGTCGGTGTTCGTGCACACGGTGGGGAAAG
AGCACGGTCAGAAGTCCGTGGAGGCGGCGGCGGAGAGGATGAGGGTGCTTGGGGAGATAGTGAGAGTCGT
GAAGCCTGGAGGTTTGTGCGTGGTTTGGGATCTCTTACACGTGCCGGAGTACGTGCGGCGTCTCCATGAG
CTGAAGATGGAGGATATCCGAGTCTCCGAGCGAGTTACGGCGTTTATGGCCGGAAGCCACATCGTGACTT
TCAGGAAACCGAGTGAACTCGTTGCTGGACCCCGGGAAGTCCGCCTCGATTGGAGATGATGACGTGGATA
TTTTAAAACGGCTGTGTGTCGATTCGTTTATATAGAAGACGGCACGTAGTTCAAGTCCGGAAGTTCGAAA
CAGATAATTGTGATATACACTATATTAATTACAGTCTAAACTAGAAAAACAAAAATCAAAATGTATGTAG
AAGTGTCTGGGGAGGCGAAGCGGAACCAGCTGCTTCTTGAAGAGGCAGAAACGCTGACACGACGTTTGCG
TTTTGATCTTGTATTTATATAAATAATCCTAGTAAAGTAGTACTATTATTATCGAATGTATTGTGATGCT
CTAATTTCTGCGTTAGCGTTTCTGACGCTGGTCAGTAGTCAGTTCAACGTCGTGGGGAGAAGTACCTAAC
TAATCAATGTAAAATGTAAAAAAAGGAAAGAAAAATCGACCATGTTGAATGTTGAGTGACTATCAAGAAT
GTCGTCTTATTAATATTGGTTGGGCATTAAATGTCTTGTCCTTTTATTTCACGTCGATGTGATACATCTG
TCCCC
Pro Sequence
MGKTAGNRDWTQIYAIYGIQQWQTLVFLLFHAFFFSLLSLLFLIYFDQICFFLDSFFLSGASRFTAGFTG
AVTALSAVCLLFAAANFVYSDVPLQYEMAQRMVSSVSDWSCVKTALDLGCGRGILLNAVATQLKKTGSSG
RVVGLDRSKRTTLSTLRTAKLEGVQEYVTCREGDVRTLPFGDNYFDVVVSSVFVHTVGKEHGQKSVEAAA
ERMRVLGEIVRVVKPGGLCVVWDLLHVPEYVRRLHELKMEDIRVSERVTAFMAGSHIVTFRKPSELVAGP
REVRLDWR