Gene Details:

  • Gene ID: AT4G16750
  • Gene Symbol: ERF39
  • Gene Name: Ethylene-responsive transcription factor 39
  • Description: Integrase-type DNA-binding superfamily protein;(source:Araport11)
  • TAIR Accession: locus:2129111
  • 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:0020100  — hypocotyl — hipocótile (Spanish, exact), 胚軸 (Japanese, exact)

Gene Ontology:

  • GO:0006355  — involved in — regulation of DNA-templated transcription
  • GO:0009737  — acts upstream of or within — response to abscisic acid
  • GO:0036211  — acts upstream of or within — protein modification process
  • GO:0009753  — acts upstream of or within — response to jasmonic acid
  • GO:0006082  — acts upstream of or within — organic acid metabolic process
  • GO:0009813  — acts upstream of or within — flavonoid biosynthetic process
  • GO:0005634  — located in — nucleus
  • GO:0019760  — acts upstream of or within — glucosinolate metabolic process
  • GO:0000976  — enables — transcription cis-regulatory region binding
  • GO:0009414  — acts upstream of or within — response to water deprivation
  • GO:0009611  — acts upstream of or within — response to wounding
  • GO:0003700  — enables — DNA-binding transcription factor activity
  • GO:0044248  — acts upstream of or within — cellular catabolic process
  • GO:0009651  — acts upstream of or within — response to salt stress
  • GO:1901565  — acts upstream of or within — organonitrogen compound catabolic process
  • GO:0009409  — acts upstream of or within — response to cold
  • GO:0019748  — acts upstream of or within — secondary metabolic process
  • GO:0046148  — acts upstream of or within — pigment biosynthetic process

Literature:

Sequence:

cDNA Sequence
  • >AT4G16750.1 TTATACATAAAAGAAAAAACATACACACAAGAATAATTGCTTCGTATTTGGATGTATATATTAGAAAGAAGCAAACCAATCTCTTCTCCTCAAAACTATTCCTACTCTCACACTCCAAAATACCAAAAACAAAACATTTTTTTTAATCTTCCCACCAATTTTTTTCTCTTTCTCTCGTTACATTAAATTATCTTTAGATGCAAGACTCTTCCTCTCACGAATCGCAACGTAACCTCCGGTCACCGGTGCCGGAGAAAACCGGAAAGAGTTCTAAGACTAAAAATGAGCAAAAAGGTGTTTCTAAACAACCAAATTTTCGTGGGGTCAGAATGAGACAATGGGGAAAATGGGTGTCTGAAATTAGAGAACCAAGAAAGAAATCAAGAATATGGCTCGGTACTTTCTCTACGCCGGAGATGGCGGCGCGTGCACACGACGTGGCGGCTTTAGCCATCAAAGGTGGCTCTGCCCACCTTAATTTCCCGGAGCTAGCTTACCATTTGCCGAGACCGGCTAGCGCGGACCCTAAAGACATTCAAGAAGCCGCCGCCGCAGCAGCTGCCGTTGACTGGAAAGCACCGGAGTCTCCGTCTAGCACCGTGACGTCATCTCCAGTCGCCGACGACGCTTTCTCCGATCTTCCTGATCTTTTGCTTGACGTGAATGATCACAACAAAAACGATGGATTCTGGGACTCGTTTCCGTACGAAGATCCTTTCTTCTTGGAAAATTACTAGAAGGCAAATTCTTGCCGGCGAACGGATTTTCCGGTGGTTTCCCGGTAAATAAGAAGACGATGTCGTTTTGTACCTTTTTTGTCTACGATGGGAAATTTCTTTTTTTTTTACGTGTGAGTAAAAGTTTCCGAATGTGTGATGTGTAAGTAAGTACAGGTTATTTAATTTCTTTTTTTTGTACAAATACGTACGTCATTACCAAAAAGTTTTCATTTATTGTGCTTTTATCTTCCAAATTCATTAAGTGTGTGTCTTGACCCTTTATTTTCACATCTTTGAGTTCTGACAAAGACTCTAACTTTACTCCCATAGAGCCGGCAAAGAATATATACATTTAGGGTTTCTTCGAAATCTTTTTTTTTTTTGTAAACATCTTCGACATGTAAATGTAAAGATCAGTATTTTCATGGTTAACATAGATGACTTATGACTTGTATAGTTATTCGTTATGTAACCCATCTCAAAATCAG
CDS Sequence
Protein Sequence