Gene Details:

  • Gene ID: AT4G16760
  • Gene Symbol: ACX1, ATACX1
  • Gene Name: acyl-CoA oxidase 1
  • Description: acyl-CoA oxidase 1;(source:Araport11)
  • TAIR Accession: locus:2129121
  • Genome: Araport11_genome_release
  • Species: Arabidopsis thaliana

Transcripts:

Plant Ontology Annotations:

  • PO:0009005  — root — raíz (Spanish, exact), radices (exact, plural), radix (exact), 根 (Japanese, exact), aerial root (narrow), climbing root (narrow)
  • PO:0025195  — pollen tube cell — célula del tubo polínico (Spanish, exact), 花粉管細胞 (Japanese, exact)
  • PO:0025281  — pollen — polen (Spanish, exact), pollen grain (exact), 花粉 (Japanese, exact)
  • PO:0000293  — guard cell — célula guardiana (Spanish, exact), occlusive cell (exact), 孔辺細胞 (Japanese, exact)

Gene Ontology:

  • GO:0005777  — is active in — peroxisome
  • GO:0071949  — enables — FAD binding
  • GO:0006635  — acts upstream of or within — fatty acid beta-oxidation
  • GO:0003997  — enables — acyl-CoA oxidase activity
  • GO:0005777  — located in — peroxisome
  • GO:0001676  — involved in — long-chain fatty acid metabolic process
  • GO:0001676  — acts upstream of or within — long-chain fatty acid metabolic process
  • GO:0009620  — acts upstream of or within — response to fungus
  • GO:0005829  — located in — cytosol
  • GO:0002213  — acts upstream of or within — defense response to insect
  • GO:0055088  — involved in — lipid homeostasis
  • GO:0009695  — acts upstream of or within — jasmonic acid biosynthetic process
  • GO:0005737  — located in — cytoplasm
  • GO:0033540  — involved in — fatty acid beta-oxidation using acyl-CoA oxidase
  • GO:0050660  — enables — flavin adenine dinucleotide binding
  • GO:0005504  — enables — fatty acid binding
  • GO:0009555  — acts upstream of or within — pollen development
  • GO:0009506  — located in — plasmodesma
  • GO:0006635  — involved in — fatty acid beta-oxidation
  • GO:0009611  — acts upstream of or within — response to wounding

Literature:

Sequence:

cDNA Sequence
  • >AT4G16760.1 TTTAAATCAATTTGTCTTTCTCTTCTTTTATCTCCGAAATAAAAAGCTTAATTGTTCTTCCAACTACTCTGCAATTAAATCGGTAGAGTGAGGCATTGTCCTTCTTTTTCTCCCTCTGTTTTTTTTTTTTTTTTTTCCTATCATCTCTGAGAGTTTTCTCGAGAAACTTTTGAGTGTTTAGCTACTAGATTCTGAATTACGAATCATGGAAGGAATTGATCACCTCGCCGATGAGAGAAACAAAGCAGAGTTCGACGTTGAGGATATGAAGATCGTCTGGGCTGGTTCCCGCCACGCTTTTGAGGTTTCCGATCGAATTGCCCGCCTTGTCGCCAGCGATCCGGTATTTGAGAAAAGCAATCGAGCTCGGTTGAGTAGGAAGGAGCTGTTTAAGAGTACGTTGAGAAAATGTGCCCATGCGTTTAAAAGGATTATCGAGCTTCGTCTCAATGAGGAAGAAGCAGGAAGATTGAGGCACTTTATCGACCAGCCTGCCTATGTGGATCTGCACTGGGGAATGTTTGTGCCTGCTATTAAGGGGCAGGGTACAGAGGAGCAGCAGAAGAAGTGGTTGTCGCTGGCCAATAAGATGCAGATTATTGGGTGTTATGCACAGACTGAGCTTGGTCATGGCTCAAATGTTCAAGGACTTGAGACAACTGCCACATTTGATCCCAAGACTGATGAGTTTGTAATTCACACTCCAACTCAGACTGCATCCAAATGGTGGCCTGGTGGTTTGGGAAAAGTTTCTACTCATGCTGTTGTTTACGCTCGTCTCATAACTAACGGAAAAGACTACGGTATCCATGGATTCATCGTGCAACTGCGAAGCTTAGAAGATCATTCTCCTCTTCCGAATATAACTGTTGGTGATATCGGGACAAAGATGGGAAATGGAGCATATAATTCAATGGACAACGGGTTTCTTATGTTTGATCATGTTCGCATTCCTAGAGATCAAATGCTCATGAGGCTGTCAAAAGTTACAAGAGAAGGAGAATATGTTCCATCGGATGTTCCAAAGCAGCTGGTATATGGTACTATGGTGTATGTGAGACAAACAATTGTGGCTGATGCTTCCAATGCACTATCTCGAGCAGTTTGCATAGCTACAAGATACAGTGCAGTGCGGAGGCAATTTGGCGCACATAATGGTGGCATTGAGACACAGGTGATTGATTATAAAACTCAGCAGAACAGGCTATTTCCTCTGCTAGCATCTGCATATGCATTTCGATTTGTTGGAGAGTGGCTAAAATGGCTGTACACGGATGTAACTGAAAGACTGGCGGCTAGTGATTTCGCAACTTTGCCTGAGGCTCATGCATGCACTGCAGGATTGAAGTCTCTCACCACCACAGCCACTGCGGATGGCATTGAAGAATGTCGTAAGTTATGTGGTGGACATGGATACTTGTGGTGCAGTGGGCTCCCCGAGCTGTTTGCTGTATATGTTCCTGCCTGCACATACGAAGGAGACAATGTTGTGCTGCAATTACAGGTTGCTCGATTCCTCATGAAGACAGTCGCCCAGCTGGGATCTGGAAAGGTTCCTGTTGGCACAACTGCTTATATGGGCCGGGCAGCACATCTTTTGCAATGTCGTTCTGGTGTTCAAAAGGCTGAGGATTGGTTAAACCCTGATGTTGTACTGGAAGCTTTCGAAGCTAGGGCTCTCAGAATGGCTGTTACGTGTGCCAAAAATCTCAGCAAGTTTGAGAATCAGGAACAAGGATTCCAAGAGCTCTTGGCTGATTTGGTTGAGGCCGCTATTGCTCATTGCCAATTGATTGTTGTTTCCAAGTTCATAGCGAAACTGGAGCAAGACATAGGTGGCAAAGGAGTGAAGAAACAGCTGAATAATCTGTGTTACATTTATGCTCTTTATCTCCTCCACAAACATCTCGGCGATTTCCTCTCCACTAACTGCATCACTCCCAAACAAGCCTCTCTTGCTAACGACCAGCTCCGTTCCTTATACACTCAGGTCCGGCCTAATGCGGTTGCACTTGTGGACGCCTTCAATTACACCGACCATTACTTGAACTCGGTTCTTGGCCGTTACGACGGTAATGTGTACCCAAAGCTCTTTGAGGAAGCGTTGAAGGATCCATTGAACGACTCGGTGGTTCCTGATGGGTACCAAGAATACCTTCGACCTGTGCTTCAGCAGCAACTTCGTACCGCTAGGCTCTGAAGAGTTTTCTTTGCTTGATACTCGATATGGTTAATCACATTAGACTTGCTTCGTCCTTCTTCTTCGTCTTCTTCTTCTTCTCGCTTTGAATAATTTCGCAGTTTAAAAACTGGCGATGCCCTTATTTATATGTAGCAATGTAATAGTTAATGTACGATCGTCATATGGCGGAATTTTAGTACTATTTTTCGTTTTCAATGCAACATTAATACAATTGATCGTTTCTACTCTGAGAAGGATATGTGGGATATTTGTAATCTTCGTATATAGTCCAATCACATATATTGACATTTCTCTATTGCTTTCGTTAAGATTGTATTATGTAATATATAGGGTTAGGGTTACTTAGGCAAAGTTATTTCAGAAATTATGCAACTTCCATTGTAGAAATTTTTT
  • >AT4G16760.2 TTTAAATCAATTTGTCTTTCTCTTCTTTTATCTCCGAAATAAAAAGCTTAATTGTTCTTCCAACTACTCTGCAATTAAATCGGTAGAGTGAGGCATTGTCCTTCTTTTTCTCCCTCTGTTTTTTTTTTTTTTTTTTCCTATCATCTCTGAGAGTTTTCTCGAGAAACTTTTGAGTGTTTAGCTACTAGATTCTGAATTACGAATCATGGAAGGAATTGATCACCTCGCCGATGAGAGAAACAAAGCAGAGTTCGACGTTGAGGATATGAAGATCGTCTGGGCTGGTTCCCGCCACGCTTTTGAGGTTTCCGATCGAATTGCCCGCCTTGTCGCCAGCGATCCGGTATTTGAGAAAAGCAATCGAGCTCGGTTGAGTAGGAAGGAGCTGTTTAAGAGTACGTTGAGAAAATGTGCCCATGCGTTTAAAAGGATTATCGAGCTTCGTCTCAATGAGGAAGAAGCAGGAAGATTGAGGCACTTTATCGACCAGCCTGCCTATGTGGATCTGCACTGGGGAATGTTTGTGCCTGCTATTAAGGGGCAGGGTACAGAGGAGCAGCAGAAGAAGTGGTTGTCGCTGGCCAATAAGATGCAGATTATTGGGTGTTATGCACAGACTGAGCTTGGTCATGGCTCAAATGTTCAAGGACTTGAGACAACTGCCACATTTGATCCCAAGACTGATGAGTTTGTAATTCACACTCCAACTCAGACTGCATCCAAATGGTGGCCTGGTGGTTTGGGAAAAGTTTCTACTCATGCTGTTGTTTACGCTCGTCTCATAACTAACGGAAAAGACTACGGTATCCATGGATTCATCGTGCAACTGCGAAGCTTAGAAGATCATTCTCCTCTTCCGAATATAACTGTTGGTGATATCGGGACAAAGATGGGAAATGGAGCATATAATTCAATGGACAACGGGTTTCTTATGTTTGATCATGTTCGCATTCCTAGAGATCAAATGCTCATGAGGCTGTCAAAAGTTACAAGAGAAGGAGAATATGTTCCATCGGATGTTCCAAAGCAGCTGGTATATGGTACTATGGTGTATGTGAGACAAACAATTGTGGCTGATGCTTCCAATGCACTATCTCGAGCAGTTTGCATAGCTACAAGATACAGTGCAGTGCGGAGGCAATTTGGCGCACATAATGGTGGCATTGAGACACAGGTGATTGATTATAAAACTCAGCAGAACAGGCTATTTCCTCTGCTAGCATCTGCATATGCATTTCGATTTGTTGGAGAGTGGCTAAAATGGCTGTACACGGATGTAACTGAAAGACTGGCGGCTAGTGATTTCGCAACTTTGCCTGAGGCTCATGCATGCACTGCAGGATTGAAGTCTCTCACCACCACAGCCACTGCGGATGGCATTGAAGAATGTCGTAAGTTATGTGGTGGACATGGATACTTGTGGTGCAGTGGGCTCCCCGAGCTGTTTGCTGTATATGTTCCTGCCTGCACATACGAAGGAGACAATGTTGTGCTGCAATTACAGGTTGCTCGATTCCTCATGAAGACAGTCGCCCAGCTGGGATCTGGAAAGGTTCCTGTTGGCACAACTGCTTATATGGGCCGGGCAGCACATCTTTTGCAATGTCGTTCTGGTGTTCAAAAGGCTGAGGATTGGTTAAACCCTGATGTTGTACTGGAAGCTTTCGAAGCTAGGGCTCTCAGAATGGCTGTTACGTGTGCCAAAAATCTCAGCAAGTTTGAGAATCAGGAACAAGGATTCCAAGAGCTCTTGGCTGATTTGGTTGAGGCCGCTATTGCTCATTGCCAATTGATTGTTGTTTCCAAGTTCATAGCGAAACTGGAGCAAGACATAGGTGGCAAAGGAGTGAAGAAACAGCTGAATAATCTGTGTTACATTTATGCTCTTTATCTCCTCCACAAACATCTCGGCGATTTCCTCTCCACTAACTGCATCACTCCCAAACAAGCCTCTCTTGCTAACGACCAGCTCCGTTCCTTATACACTCAGGTCCGGCCTAATGCGGTTGCACTTGTGGACGCCTTCAATTACACCGACCATTACTTGAACTCGGTTCTTGGCCGTTACGACGGTAATGTGTACCCAAAGCTCTTTGAGGAAGCGTTGAAGGATCCATTGAACGACTCGGTGGTTCCTGATGGGTACCAAGAATACCTTCGACCTGTGCTTCAGCAGCAACTTCGTACCGCTAGGCTCTGAAGAGTTTTCTTTGCTTGATACTCGATATGGTTAATCACATTAGACTTGCTTCGTCCTTCTTCTTCGTCTTCTTCTTCTTCTCGCTTTGAATAATTTCGCAGTTTAAAAACTGGCGATGCCCTTATTTATATGTAGCAATGTAATAGTTAATGTACGATCGTCATATGGCGGAATTTTAGTACTATTTTTCGTTTTCAATGCAACATTAATACAATTGATCGTTTCTACTCTGAGAAGGATATGTGGGATATTTGTAATCTTCGTATATAGTCCAATCACATATATTGACATTTCTCTATTGCTTTCGTTAAGATTGTATTATGTAATATATAGGGTTAGGGTTACTTAGGCAAAGTTATTTCAGAAATTATGCAACTTCCATTGTAGAAATTTTTT
CDS Sequence
Protein Sequence