Gene Details:

  • Gene ID: AT5G36220
  • Gene Symbol: CYP81D1, CYP91A1
  • Gene Name: cytochrome P450, family 81, subfamily D, polypeptide 1, CYTOCHROME P450 91A1
  • Description: cytochrome p450 81d1;(source:Araport11)
  • TAIR Accession: locus:2183597
  • Genome: Araport11_genome_release
  • Species: Arabidopsis thaliana

Transcripts:

Gene Ontology:

  • GO:0009507  — located in — chloroplast
  • GO:0016709  — enables — oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen, NAD(P)H as one donor, and incorporation of one atom of oxygen
  • GO:0002213  — acts upstream of or within — defense response to insect
  • GO:0009414  — acts upstream of or within — response to water deprivation
  • GO:0071396  — acts upstream of or within — cellular response to lipid
  • GO:1901701  — acts upstream of or within — cellular response to oxygen-containing compound
  • GO:0009753  — acts upstream of or within — response to jasmonic acid
  • GO:0043436  — acts upstream of or within — oxoacid metabolic process
  • GO:0009611  — acts upstream of or within — response to wounding
  • GO:1901135  — acts upstream of or within — carbohydrate derivative metabolic process
  • GO:0007165  — acts upstream of or within — signal transduction
  • GO:0032870  — acts upstream of or within — cellular response to hormone stimulus
  • GO:0014070  — acts upstream of or within — response to organic cyclic compound
  • GO:0009737  — acts upstream of or within — response to abscisic acid
  • GO:0006979  — acts upstream of or within — response to oxidative stress
  • GO:0016705  — enables — oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen
  • GO:0016020  — is active in — membrane
  • GO:0020037  — enables — heme binding
  • GO:0005506  — enables — iron ion binding
  • GO:0031347  — acts upstream of or within — regulation of defense response

Literature:

Sequence:

cDNA Sequence
  • >AT5G36220.2 TATGTCTTCAAGCTGTAAGTGGTAGATCTACTATTGTACAATTATGATCTAAAAGAAGACAACACTTAGTGAAAAAAAAAAAAAGTTCATACATCTTATTTAGTCTCATCCCGTCACGATCCTTATTTTTAATTATTAAATCCTAATTACCAAACGTGTCGAAATTCGAATAATATAACCAACTTTTTGATTTTTGATTTTTCTAAACTTCATCATATAAACAACTTTACTAAAGAGGACAAGAAAAAAAAGAAGAAGCAAACAGTCAAATGGAAGAAACCAACATTAGAGTTGTTCTCTACTCCATTTTCTCTCTCATCTTCTTGATAATCTCTTTCAAGTTCTTAAAACCAAAGAAACAGAATCTTCCACCGTCTCCGCCGGGATGGTTGCCAATAATAGGCCATCTCCGCCTTCTGAAGCCACCCATCCACCGCACCCTCCGCTCCTTCTCCGAGACCCTCGACCACAACGATGGTGGCGGCGTGATGTCCCTCCGACTTGGATCCCGTCTAGTCTACGTGGTGTCGTCACATAAGGTTGCGGCAGAGGAGTGCTTTGGCAAGAACGACGTCGTTCTAGCTAACCGGCCACAGGTGATCATCGGAAAACATGTTGGTTATAACAATACAAACATGATCGCTGCACCTTACGGTGATCACTGGCGTAACCTCCGTCGCCTCTGCACTATCGAGATCTTTTCAACACACCGCCTTAACTGCTTTCTTTATGTCCGTACCGACGAAGTACGTCGCCTTATAAGCCGCCTCTCTCGTCTCGCAGGTATATATGTATTAATGTATATGCTACAAGTGCTTTCATCATTCGTTGACTTTTCATTTATGTTTGTCTTATCTTAGTGTTATAGTGACCACAAAAAATTGAAATATGATTATATGAAATAATGATGATACGAAAATAAGGATGAGATAGCTTGTGGTGGCCGTAATTGATGAATAGAATGAGTTTCTTTTGCAAAGTCGAAATACTAAAATGTACGTATTACGAAAATAAAGTTTTTATTAAAAATTTAAAATATGTTACATAGTAATGACTAATGAGAAAAGTTTTGTCACATGTGTTTTTTTCATCGTCGTGAAGTTTGTTGATAAAGACTAGTCAACTTTTCAATTTTTTTTGGTGTTATTTAAGTGCTAATTATATTGACCACTGAGTCTTTGTGGGCGTCAATCGTACCATGAAGATTTCTTAAAACTCTTTTACTTTTAGAACGTTTTACGTCAATATTTTTAGAATAGAGATTTCTAAAAACATTTTACAAAGTAATGAAGAAAAGCTCGACTACTCTATTTTTGGTTCTCGTTTGGTTCTCGATTTTCCTTTTTCTTTTAATAATTGCAGGAACCAAAAAAACTGTTGTGGAATTGAAACCAATGCTTATGGACTTGACATTCAACAACATAATGAGAATGATGACCGGAAAACGATACTACGGTGAAGAAACAACCGATGAGGAAGAAGCAAAGCGTGTCCGTAAGTTGGTAGCAGATGTTGGGGCTAACACGAGTTCAGGCAACGCCGTTGACTACGTCCCCATCCTCAGACTGTTTTCAAGTTATGAAAATAGGGTTAAAAAGTTAGGAGAGGAGACAGATAAGTTTTTACAAGGTCTCATTGACGATAAACGTGGGCAACAAGAAACCGGTACTACAATGATCGATCATTTGCTTGTCCTCCAAAAATCTGATATTGAGTATTACACTGATCAAATCATCAAAGGCATCATACTGATAATGGTAATAGCAGGGACTAACACATCAGCAGTCACTCTAGAATGGGCACTTTCCAATTTGCTTAACCATCCTGACGTAATATCTAAAGCGAGAGACGAAATCGATAACCGGGTTGGTTTAGACCGGCTTATCGAAGAAGCAGATCTTAGCGAGCTACCATATCTAAAGAACATTGTCCTTGAGACCCTTAGGCTACACCCAGCTACACCATTGCTAGTCCCACACATGGCATCAGAAGATTGCAAGATAGGATCCTACGATATGCCACGTGGTACAACGTTGTTGGTGAATGCATGGGCCATACATAGGGATCCAAACACGTGGGATGATCCGGATAGCTTTAAACCAGAGCGGTTTGAGAAAGAAGAGGAAGCACAAAAGCTTCTGGCGTTTGGATTAGGTAGAAGAGCGTGTCCTGGATCGGGTCTGGCCCAACGAATCGTGGGACTAGCTCTCGGGTCATTGATACAATGCTTTGAATGGGAGAGAGTTGGGAATGTGGAAGTGGATATGAAGGAAGGAGTTGGGAATACTGTACCCAAAGCGATTCCTTTGAAAGCTATTTGCAAAGCTCGTCCATTTCTACATAAGATTATTTCCTAAAATTGTTGAAACTACGAATAAAAGATGTGTGACATGTTAATGCAAATCAATGATTCTCTCTACATGTAAAATCTTGATGGATTATTATGGCTATCTTAATTATTTTTAATAAGTGTTACTAGCAGATTTATAGAAAAGCAATCGAGTATTATAA
  • >AT5G36220.1 TATGTCTTCAAGCTGTAAGTGGTAGATCTACTATTGTACAATTATGATCTAAAAGAAGACAACACTTAGTGAAAAAAAAAAAAAGTTCATACATCTTATTTAGTCTCATCCCGTCACGATCCTTATTTTTAATTATTAAATCCTAATTACCAAACGTGTCGAAATTCGAATAATATAACCAACTTTTTGATTTTTGATTTTTCTAAACTTCATCATATAAACAACTTTACTAAAGAGGACAAGAAAAAAAAGAAGAAGCAAACAGTCAAATGGAAGAAACCAACATTAGAGTTGTTCTCTACTCCATTTTCTCTCTCATCTTCTTGATAATCTCTTTCAAGTTCTTAAAACCAAAGAAACAGAATCTTCCACCGTCTCCGCCGGGATGGTTGCCAATAATAGGCCATCTCCGCCTTCTGAAGCCACCCATCCACCGCACCCTCCGCTCCTTCTCCGAGACCCTCGACCACAACGATGGTGGCGGCGTGATGTCCCTCCGACTTGGATCCCGTCTAGTCTACGTGGTGTCGTCACATAAGGTTGCGGCAGAGGAGTGCTTTGGCAAGAACGACGTCGTTCTAGCTAACCGGCCACAGGTGATCATCGGAAAACATGTTGGTTATAACAATACAAACATGATCGCTGCACCTTACGGTGATCACTGGCGTAACCTCCGTCGCCTCTGCACTATCGAGATCTTTTCAACACACCGCCTTAACTGCTTTCTTTATGTCCGTACCGACGAAGTACGTCGCCTTATAAGCCGCCTCTCTCGTCTCGCAGGTATATATGTATTAATGTATATGCTACAAGTGCTTTCATCATTCGTTGACTTTTCATTTATGTTTGTCTTATCTTAGTGTTATAGTGACCACAAAAAATTGAAATATGATTATATGAAATAATGATGATACGAAAATAAGGATGAGATAGCTTGTGGTGGCCGTAATTGATGAATAGAATGAGTTTCTTTTGCAAAGTCGAAATACTAAAATGTACGTATTACGAAAATAAAGTTTTTATTAAAAATTTAAAATATGTTACATAGTAATGACTAATGAGAAAAGTTTTGTCACATGTGTTTTTTTCATCGTCGTGAAGTTTGTTGATAAAGACTAGTCAACTTTTCAATTTTTTTTGGTGTTATTTAAGTGCTAATTATATTGACCACTGAGTCTTTGTGGGCGTCAATCGTACCATGAAGATTTCTTAAAACTCTTTTACTTTTAGAACGTTTTACGTCAATATTTTTAGAATAGAGATTTCTAAAAACATTTTACAAAGTAATGAAGAAAAGCTCGACTACTCTATTTTTGGTTCTCGTTTGGTTCTCGATTTTCCTTTTTCTTTTAATAATTGCAGGAACCAAAAAAACTGTTGTGGAATTGAAACCAATGCTTATGGACTTGACATTCAACAACATAATGAGAATGATGACCGGAAAACGATACTACGGTGAAGAAACAACCGATGAGGAAGAAGCAAAGCGTGTCCGTAAGTTGGTAGCAGATGTTGGGGCTAACACGAGTTCAGGCAACGCCGTTGACTACGTCCCCATCCTCAGACTGTTTTCAAGTTATGAAAATAGGGTTAAAAAGTTAGGAGAGGAGACAGATAAGTTTTTACAAGGTCTCATTGACGATAAACGTGGGCAACAAGAAACCGGTACTACAATGATCGATCATTTGCTTGTCCTCCAAAAATCTGATATTGAGTATTACACTGATCAAATCATCAAAGGCATCATACTGATAATGGTAATAGCAGGGACTAACACATCAGCAGTCACTCTAGAATGGGCACTTTCCAATTTGCTTAACCATCCTGACGTAATATCTAAAGCGAGAGACGAAATCGATAACCGGGTTGGTTTAGACCGGCTTATCGAAGAAGCAGATCTTAGCGAGCTACCATATCTAAAGAACATTGTCCTTGAGACCCTTAGGCTACACCCAGCTACACCATTGCTAGTCCCACACATGGCATCAGAAGATTGCAAGATAGGATCCTACGATATGCCACGTGGTACAACGTTGTTGGTGAATGCATGGGCCATACATAGGGATCCAAACACGTGGGATGATCCGGATAGCTTTAAACCAGAGCGGTTTGAGAAAGAAGAGGAAGCACAAAAGCTTCTGGCGTTTGGATTAGGTAGAAGAGCGTGTCCTGGATCGGGTCTGGCCCAACGAATCGTGGGACTAGCTCTCGGGTCATTGATACAATGCTTTGAATGGGAGAGAGTTGGGAATGTGGAAGTGGATATGAAGGAAGGAGTTGGGAATACTGTACCCAAAGCGATTCCTTTGAAAGCTATTTGCAAAGCTCGTCCATTTCTACATAAGATTATTTCCTAAAATTGTTGAAACTACGAATAAAAGATGTGTGACATGTTAATGCAAATCAATGATTCTCTCTACATGTAAAATCTTGATGGATTATTATGGCTATCTTAATTATTTTTAATAAGTGTTACTAGCAGATTTATAGAAAAGCAATCGAGTATTATAA
CDS Sequence
Protein Sequence