Gene Details:
- Gene ID: AT5G10600
- Gene Symbol: CYP81K2
- Gene Name: cytochrome P450, family 81, subfamily K, polypeptide 2
- Description: cytochrome P450, family 81, subfamily K, polypeptide 2;(source:Araport11)
- TAIR Accession: locus:2142509
- Genome: Araport11_genome_release
- Species: Arabidopsis thaliana
Transcripts:
Gene Ontology:
- GO:0016070 — acts upstream of or within — RNA metabolic process
- GO:0050832 — acts upstream of or within — defense response to fungus
- GO:0004497 — enables — monooxygenase activity
- GO:0042742 — acts upstream of or within — defense response to bacterium
- GO:0020037 — enables — heme binding
- GO:0016705 — enables — oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen
- GO:0032870 — acts upstream of or within — cellular response to hormone stimulus
- GO:0031347 — acts upstream of or within — regulation of defense response
- GO:0005506 — enables — iron ion binding
- GO:1901701 — acts upstream of or within — cellular response to oxygen-containing compound
- GO:0010035 — acts upstream of or within — response to inorganic substance
- GO:0007165 — acts upstream of or within — signal transduction
- GO:0005783 — located in — endoplasmic reticulum
Literature:
- Global analysis of Arabidopsis gene expression uncovers a complex array of changes impacting pathogen response and cell cycle during geminivirus infection. DOI: 10.1104/pp.108.121038 ; PMID: 18650403
Sequence:
cDNA Sequence
- >AT5G10600.1 AAATTGTCTTATTTATATAAAAACTAAATCCACAAGAATTTATAAATCATTAACACAAGATTGATAAGAGAAAAACGACTCTATTTTAGAATAGACAAAATTTTTAACGGTAACTAACGGAGTTAAACGGTTTGGTCAACGGAAAGTTTTGTTTTTTTTAACGGAAAAAAATGGAACAAAAGTGATTTAAATGATGTTTTTTCTTCTTCTGATAGTTTACGAGATTGACTCAAAAAGGAAAATGGAAAATCTCTGGGTCATCTTCTTGCTCACAGCTACTTTGACCTTCTTCATCACCAAGTTCCTATGGAGTCAAAACCCTAAACTACCTCCAAGTCCTACTCCACTTCCGATCATCGGTCATCTTCATCTCATCAATAAGTATCCTTTACCACAAGCTCTACATCATCTCTCTTCAAACTACGGCCCGGTTCTGTTCCTCAAATTCGGATGCCGTGAAGTTTTGATCCTCTCTTCTCCAGATTCCATCGAAGAATGCTTCACCAATCACGACATAGCCCTTGCGAATCGTCCCAAGACCATTACCTCCGATCACTTCAGCTACGGCTACAAAAACTTTGGATTTGCTCCTTATGGCGATCTCTGGCGGACTCTCCGTCGTCTCTCCACTCTCGAAGTCTTCTCCTCCGTCAGCTTACAGAAGAACTCTTCCATACGAACTGAAGAAGTCTCCAATCTCTGTTCGAGTCTCTTCAGATTCTCCGGTGGTAATTCTTGTAAAGTGGATCTCAGGTATCAATTCACTCTTCTCACCGCTCACGTCATGCTTAGATTAGTATCTGGAAATCGCGGGGTCAATGAGAGTGATTCAGAATCAGAGACGAAGTTCTTAGATGAATTCAAATCAAGGTTTTTCTCGAGCCTATCGTCGATGAATGTCTGTGACTATTTCCCAGTGTTGAGATGGATTGGGTACAAAGGTCTTGAGAACAGAGTGATTGAGATACAGAGGATGAGAGATGAGTATCTTCAGCGACTCATTGATGATATTCGAATGAAGAAGTTTGATTCCACTGGTTCAGTAGTGGAGAAATTCTTGAAGCTTCAAGAATCAGAACCTGAATTTTACTCTGATGATGTTATCAAAGGAATTGTAGTGTTAATGTTCAACGCCGGATCGGATACTTCACCGGTGACAATGGAATGGGCAATGGCGCTTTTACTGAACCATCCAGATAAGCTTGACAAGGTCAGAGAAGAAATCAAATCTAATGTTAAACACAAAGGGATTATACAAGACTCGGATCTCTCAAGCTTACCTTATCTTCGATGTGTCATCTATGAGACGCTTAGGCTACACCCTGCAGCTCCTATCTTGCCTCCTCACTGTTCATCCAAGAGATTCAACTTAGGCAACTACGAGATCCCTGAAAATACAGTGTTGTTGGTGAATGCTTGGGCTGTTCATAGGGACGGTGAGCTTTGGGAAGAAGCAGATGTTTTCAAGCCGGAGAGATTTGAAGAGTTTGTTGGCGATAGAGATGGTTTTAGGTTTTTGCCATTTGGAGTTGGGAGGCGGGCGTGCCCTGCAGCTGGACTTGCAATGAGGGTAGTGTCGCTTGCTGTTGGAGCATTGGTTCAATGTTTTGAGTGGGAGAAGGTAGAAAAAGAAGACATAGACATGAGGCCTGCGTTCAGTGTGGCAATGGATAGGGCTGAGCCGCTTATTGCATTGCTTAAGCCATGCCCAGAAATGGTTCCTATCTTGTCTCAGCTCTAGTCTCCTCTGTGTTGGCCAAGAGAGTTGATTTAGAGGATGGTTTTTACATATAAATATTGATAATAAGGCGAATGAATGATCATAAAAGCACAAATGGTTACCTAAATTATATAATGG
CDS Sequence
Protein Sequence