Gene Details:
- Gene ID: AT5G06230
- Gene Symbol: TBL9
- Gene Name: TRICHOME BIREFRINGENCE-LIKE 9
- Description: TRICHOME BIREFRINGENCE-LIKE 9;(source:Araport11)
- TAIR Accession: locus:2160717
- Genome: Araport11_genome_release
- Species: Arabidopsis thaliana
Transcripts:
Gene Ontology:
- GO:0044248 — acts upstream of or within — cellular catabolic process
- GO:0009414 — acts upstream of or within — response to water deprivation
- GO:0016413 — enables — O-acetyltransferase activity
- GO:0009651 — acts upstream of or within — response to salt stress
- GO:0042742 — acts upstream of or within — defense response to bacterium
- GO:0005794 — is active in — Golgi apparatus
- GO:0005576 — located in — extracellular region
- GO:0050832 — acts upstream of or within — defense response to fungus
Literature:
- Arabidopsis ESK1 encodes a novel regulator of freezing tolerance. DOI: 10.1111/j.1365-313X.2006.02994.x ; PMID: 17316173
- TRICHOME BIREFRINGENCE and its homolog AT5G01360 encode plant-specific DUF231 proteins required for cellulose biosynthesis in Arabidopsis. DOI: 10.1104/pp.110.153320 ; PMID: 20388664
- Involvement of TBL/DUF231 proteins into cell wall biology. DOI: 10.4161/psb.5.8.12414 ; PMID: 20657172
- Molecular Mechanism of Polysaccharide Acetylation by the Arabidopsis Xylan O-acetyltransferase XOAT1. DOI: 10.1105/tpc.20.00028 ; PMID: 32354790
Sequences:
cDNA Sequence
- >AT5G06230.3
GAAAAAGAAGAAGACTTGTTCAAAGAGAGAAAGAAGAGATCACACACAACATGGATCATCATCAACTCTTCTCTCTCTGCTCATTTTCGTACATCTTCAAGATCAAGAAACATCTCTTCGTCAGCCTCTTTTTACTTAGCCTCCTCATATTCTCGACCGTGGTCGTCGACGTCATGCCCTCTCTTCGTATCGGATTGTTGTCATCGTCATCATCGCAAACAGTAACAAAGGAGTGCGATTACTCCAAAGGAAAATGGGTTCGTCGAGCATCATCATCATCATCATCCGTTAATGGATTGTTTTATGGCGAAGAGTGTCGCTTTCTTGACTCTGGTTTTCGTTGTCATAAGCATGGAAGAAAAGATTCTGGTTATCTTGATTGGCGATGGCAACCACACGGCTGCGATCTTCCACGATTTAACGCAAGTGATTTACTTGAGAGGAGTCGGAACGGGAGGATAGTGTTCGTGGGAGATTCCATCGGAAGAAACCAGTGGGAATCCCTTATGTGCATGCTCTCACAAGCAATACCTAATAAATCTGAGATCTATGAAGTAAATGGGAACCCTATAACTAAACACAAGGGCTTTCTCTCCATGCGATTCCCTCGGGAAAACCTCACTGTTGAGTATCACAGATCACCCTTTCTTGTCGTGATTGGTCGGCCACCGGATAAATCACCGAAAGAGATCAAAACCACAGTGAGAGTTGATGAGTTTAACTGGCAGTCGAAAAGATGGGTCGGGTCAGACGTTCTGGTCTTCAATTCAGGGCATTGGTGGAACGAAGACAAAACTGTGTTAACGGGATGCTATTTTGAGGAGGGAAGGAAAGTGAACAAGACAATGGGAGTAATGGAGGCATTTGGAAAGTCTTTGAAGACATGGAAGTCATGGGTCTTGGAGAAACTTGATCCTGACAAGAGTTATGTCTTCTTCAGAAGCTACTCTCCAGTGCACTACAGGTTAGGACAATTCAGATAA - >AT5G06230.1
GAAAAAGAAGAAGACTTGTTCAAAGAGAGAAAGAAGAGATCACACACAACATGGATCATCATCAACTCTTCTCTCTCTGCTCATTTTCGTACATCTTCAAGATCAAGAAACATCTCTTCGTCAGCCTCTTTTTACTTAGCCTCCTCATATTCTCGACCGTGGTCGTCGACGTCATGCCCTCTCTTCGTATCGGATTGTTGTCATCGTCATCATCGCAAACAGTAACAAAGGAGTGCGATTACTCCAAAGGAAAATGGGTTCGTCGAGCATCATCATCATCATCATCCGTTAATGGATTGTTTTATGGCGAAGAGTGTCGCTTTCTTGACTCTGGTTTTCGTTGTCATAAGCATGGAAGAAAAGATTCTGGTTATCTTGATTGGCGATGGCAACCACACGGCTGCGATCTTCCACGATTTAACGCAAGTGATTTACTTGAGAGGAGTCGGAACGGGAGGATAGTGTTCGTGGGAGATTCCATCGGAAGAAACCAGTGGGAATCCCTTATGTGCATGCTCTCACAAGCAATACCTAATAAATCTGAGATCTATGAAGTAAATGGGAACCCTATAACTAAACACAAGGGCTTTCTCTCCATGCGATTCCCTCGGGAAAACCTCACTGTTGAGTATCACAGATCACCCTTTCTTGTCGTGATTGGTCGGCCACCGGATAAATCACCGAAAGAGATCAAAACCACAGTGAGAGTTGATGAGTTTAACTGGCAGTCGAAAAGATGGGTCGGGTCAGACGTTCTGGTCTTCAATTCAGGGCATTGGTGGAACGAAGACAAAACTGTGTTAACGGGATGCTATTTTGAGGAGGGAAGGAAAGTGAACAAGACAATGGGAGTAATGGAGGCATTTGGAAAGTCTTTGAAGACATGGAAGTCATGGGTCTTGGAGAAACTTGATCCTGACAAGAGTTATGTCTTCTTCAGAAGCTACTCTCCAGTGCACTACAGGTTAGGACAATTCAGATAA - >AT5G06230.2
GAAAAAGAAGAAGACTTGTTCAAAGAGAGAAAGAAGAGATCACACACAACATGGATCATCATCAACTCTTCTCTCTCTGCTCATTTTCGTACATCTTCAAGATCAAGAAACATCTCTTCGTCAGCCTCTTTTTACTTAGCCTCCTCATATTCTCGACCGTGGTCGTCGACGTCATGCCCTCTCTTCGTATCGGATTGTTGTCATCGTCATCATCGCAAACAGTAACAAAGGAGTGCGATTACTCCAAAGGAAAATGGGTTCGTCGAGCATCATCATCATCATCATCCGTTAATGGATTGTTTTATGGCGAAGAGTGTCGCTTTCTTGACTCTGGTTTTCGTTGTCATAAGCATGGAAGAAAAGATTCTGGTTATCTTGATTGGCGATGGCAACCACACGGCTGCGATCTTCCACGATTTAACGCAAGTGATTTACTTGAGAGGAGTCGGAACGGGAGGATAGTGTTCGTGGGAGATTCCATCGGAAGAAACCAGTGGGAATCCCTTATGTGCATGCTCTCACAAGCAATACCTAATAAATCTGAGATCTATGAAGTAAATGGGAACCCTATAACTAAACACAAGGGCTTTCTCTCCATGCGATTCCCTCGGGAAAACCTCACTGTTGAGTATCACAGATCACCCTTTCTTGTCGTGATTGGTCGGCCACCGGATAAATCACCGAAAGAGATCAAAACCACAGTGAGAGTTGATGAGTTTAACTGGCAGTCGAAAAGATGGGTCGGGTCAGACGTTCTGGTCTTCAATTCAGGGCATTGGTGGAACGAAGACAAAACTGTGTTAACGGGATGCTATTTTGAGGAGGGAAGGAAAGTGAACAAGACAATGGGAGTAATGGAGGCATTTGGAAAGTCTTTGAAGACATGGAAGTCATGGGTCTTGGAGAAACTTGATCCTGACAAGAGTTATGTCTTCTTCAGAAGCTACTCTCCAGTGCACTACAGGTTAGGACAATTCAGATAA
CDS Sequence
Protein Sequence