Gene Details:
- Gene ID: AT5G18370
- Gene Symbol: DSC2
- Gene Name: DOMINANT SUPRESSOR OF camta3 NUMBER 2
- Description: disease resistance protein (TIR-NBS-LRR class) family protein;(source:Araport11)
- TAIR Accession: locus:2146253
- Genome: Araport11_genome_release
- Species: Arabidopsis thaliana
Transcripts:
Gene Ontology:
- GO:0043531 — enables — ADP binding
- GO:0007165 — involved in — signal transduction
- GO:0042742 — involved in — defense response to bacterium
- GO:0005737 — located in — cytoplasm
- GO:0061809 — enables — NAD+ nucleotidase, cyclic ADP-ribose generating
- GO:0006952 — acts upstream of or within — defense response
- GO:0050135 — enables — NAD(P)+ nucleosidase activity
- GO:0005515 — enables — protein binding
Literature:
- Pronounced intraspecific haplotype divergence at the RPP5 complex disease resistance locus of Arabidopsis. DOI: NA ; PMID: 10559437
- Genome-wide analysis of NBS-LRR-encoding genes in Arabidopsis. DOI: 10.1105/tpc.009308 ; PMID: 12671079
- Genome-wide investigation on the genetic variations of rice disease resistance genes. DOI: 10.1007/s11103-006-9012-3 ; PMID: 16915523
- Global expression analysis of nucleotide binding site-leucine rich repeat-encoding and related genes in Arabidopsis. DOI: 10.1186/1471-2229-7-56 ; PMID: 17956627
- Matching NLR Immune Receptors to Autoimmunity in camta3 Mutants Using Antimorphic NLR Alleles. DOI: 10.1016/j.chom.2017.03.005 ; PMID: 28407487
- Coordinated regulation of plant defense and autoimmunity by paired trihelix transcription factors ASR3/AITF1 in Arabidopsis. DOI: 10.1111/nph.18562 ; PMID: 36266950
- Pronounced intraspecific haplotype divergence at the RPP5 complex disease resistance locus of Arabidopsis. DOI: NA ; PMID: 10559437
Sequence:
cDNA Sequence
- >AT5G18370.1 TTTTTTATTTTATTGTTTTGGTCAACGAAAATAGTAATGATTATGTTGGCTTAGCATTTTTTCTTTTACGTATATCGGTAAAGTCTTTGTCTCTCCATCAGACTGTAGTCGTTCAATGGCTATTGCAGAGGTGATTGGTTTCTTCACACTTGTTTGTGTAATTTGGTATTGGGTTTACAAAAAGCACAAGAATTTGCAGCTGAAGATATGCAGATCATCAATCGAGTCTTCTTCTTCTTCGTCGTCCCTTTCATCTCCTCCATCTCTTTCGTCTCCTATATCTCGAACCTGGACACACCAAGTCTTTCCGAGCTTCCGCGGGGAAGACGTACGGAAAGGGTTTCTTAGTCATATCCAGAAGGAGTTCAAAAGCAAAGGAATCGTTCCCTTTATTGATGACGAAATGAAGAGAGGCGAATCGATCGGTCCGGGGCTGTTTCAGGCCATTAGAGAATCAAAGATAGCAATTGTCTTGCTCTCAAAGAACTACGCTTCGTCTAGCTGGTGCCTCAACGAATTGGTGGAGATTATGAATTGCAGGGAAGAGATTGGTCAAACGGTGATGACTGTTTTCTATCAAGTGGATCCATCTGATGTGAGAAAACAGACCGGAGATTTCGGTAAAGCCTTTAAGAAAACCTGTGTTGGCAAAACACAAGAGGTGAAGCAGAGATGGAGTCGAGCTTTGATGGACGTCGCAAACATACTCGGACAAGATTCTCGCAAATGGGATAAAGAAGCGGACATGATTGTGAAAGTTGCAAAAGATGTATCAGACGTCTTGAGCTATACGCCGTCGAGGGATTTTGATGACTATGTTGGAATCCGTCCTCATATCACAAGAATCAATTCCTTGTTATGCCTAGAGTCTAGTGATGTGAGGATGATAGGGATATTGGGTCCTCCTGGGATTGGCAAGACCACCATTGCACGAGTTTTATATGATCAAATCTCTGAAAAGTTCCAGTTTTCTGCCTTTATAGAGAACATCAGACTAAGCTACTGGAAAGGCTGGCACGATGAGGGTAATTTGGATTTTCCAGTTGAGATCATGACTGGAGACCGGCAAAGGAAGTTGAATTTACAAAGACGGCTTTTGTCTGAGTTATTCAACCAGAAGGATATCCAGGTTCGTCATTTAGGTGCAGTTCAGGAGAGGCTCAGGGACCACAAAGTTCTTGTCATTCTTGATGGCGTCGATCAATTAGAGCAGCTAACTGCATTGGCGAAAGAAACTCAGTGGTTCGGCTATGGAAGTAGGATTATCATCACAACACAAGATCAAAGGCTTTTGAGAGCGCATGAGATCAACCATGTTTACAAGGTGGACCTCCCTGCTACAGATGAAGCTCTCCAGATCTTCTGTCTGTATGCTTTTGGTCAAAAGTTCCCATATGATGGTTTTAAGAAACTTGCTCGGGAGTTTACTGCACTTGCAGGTGAACTTCCTCTAGGTCTAAGAGTTTTGGGATCTTATTTGCGAGGAATGTCCTTGGAGGAGTGGAAAAACGCACTACCACGGTTAAGGACTAGCCTTGACGGTGAAATTGAGAAAACTCTAAGATTTGCCTACAATGTCTTGAGCGATAAAGATAAATCTCTTTTTCTCCATATAGCATGTTTGTTCAACGGCTGTCAAGTTAATCATGTGAAACAGTGGCTTGCTAACAGCAGTTTGGACGTTAACCATGGCTTTGAAGTCTTGAGCAATAAGTCTCTCATATCTACAGATATGGGACTCGTACGGATGCATTCTTTGCTTCAACAACTAGGTGTTGACATTGTCCGTAAACAATCTATTGGAGAGCCTGAAAAACGTCAGTTTTTAGTTGACGTTAATGAGATTTCTGATGTTATCACCGACAATACAGGCACTGGGACTATTCTAGGCATAATGCTTCATGTCTCTAAGATCGAGGATGTATTAGTTATAGAAGAAACGGTGTTTGATAGGATGACTAATCTCCAGTTTTTAATATTGGACGAGTGTTTGAGGGATAAGTTGAACTTACCACTAGGCCTGAATTGTCTACCCCGTAAAATCAGGTTATTGCGTTGGGACTATTGTCCGTTGAGCATTTGGCCCTCTAAGTTCTCTGCAAAGTTTCTCGTTGAGCTTATCATGCGGGCGAACAAATTTGAAAAACTGTGGGAAGGAATTCAGCCACTTAAAAATCTCAAAAGGATGGAGCTGGGTGACGCCAGGAACCTGAAAGAGATTCCAGATCTCTCAAATGCCACTAACCTCGAGTCATTGCTTCTCTCTTTTTGCACTAGTCTGTTGGAAATTCCTTCCTCTATTAGAGGCACCACTAATCTCAAGGAATTGGATCTCGGTGGTTGCGCAAGTCTGGTGAAGCTCTCTTCCTGTATTTGTAATGCCACTAGTCTCGAAGAATTGAATCTTAGTGCTTGCTCAAATTTGGTGGAGCTCCCCTGTGCTCTTCCTGGCGACAGCAATATGAGATCTCTGTCTAAACTTCTTTTGAACGGAAGCTCACGGTTGAAAACTTTTCCAGAGATCTCCACAAACATCCAAGAACTCAATCTGAGTGGTACAGCGATAGAAGAAGTGCCTTCATCGATCAGGTTGTGGTCTCGTCTCGATAAATTAGATATGTCGCGGTGCAAAAACCTGAAGATGTTTCCACCTGTTCCTGATGGAATTTCAGTGCTAAACTTGAGTGAGACAGAAATAGAAGACATTCCTCCGTGGGTCGAGAATCTCTCTCAGCTTCGACACTTCGTTATGATCAGATGCAAGAAGCTGGACAACATCTCATTATCAAGAATTTCCAAGATGGAAGGTGTTCATTGTCTGCAAATTACTCGTGGTGATGAGGATGTCTCTGGTGATTCGATAGTAAACATCAGGTGGTACTCTAACTTCCCAAACCAATGGACTTTACAGTCGGATATGTTACAAATTTGTCTGCCAGAGTTGGTTTATACTTCCCCAGTGTCCCTACACTTCATCAGTAATGAATTCAAGACTATTCCAGATTGCATCAAAAATCTTTCTCAACTACATCAGCTTTCGTTCTATAGATGCCATAAGCTTGTATCGCTGCCGCAACTTTCAGACTGCCTCTCATCTCTAGATGCAGAAAATTGTGTGTCACTTGAGACAATAGATGGCTCCTTTCACAATCCAGATATCCGTCTGAATTTTTTAAACTGCAACAACTTGAATCAAGAAGCAAGAGAACTCATCCAGAAATCGGTTTGCAAACATGCTCTGTTACCTTCTGGAGAAGTTCCTGCATACTTCATTCATCGAGCTATTGGAGATTCCGTAACAATTCATTTGAAAGAGAGGCATCTTCCTCTATATTTGATATTTAAGGCTTCTCTAGTGCTGTTCAATGACGATGAAATCAATTACGATTACGATGATGACGATGATGATGACTATGACGAGGAGGTCATAGTCTATGGTGATTATGATAGTTACCCTCATAGCGATGATTATACCAAACAGGAGACCATGAGGTTATCTTGTCGTGTCGAAGGCAAACAGAATGGCCTCACTATTCAGTATGGATCTAGTGTGCACCTTCTACCAACTCCGCATAGGTATACAGAGCATGTGTATATATTTGAAGCTTCTTTCTCCCTAGGCGAGTGCAACAGTCCTGAAGCAGAAAGCGAGCTTGTCTTTGACTTCAAGGTTCACGATTACTTTTGGGCGATAAAAGAGTGTGGTCTTCGACTCTTGGAGCTCCCTCATGCTCATGGAGACGATTGACAAGAGCTTCAGATGTAGTAGCAGAGGTTGTGCAGACAGCCAGATGGAGAAGAATCTGGCAATAACGAGGATGAGCAAAAAAAATAGTGACATCTGTATAAACCTCTCTGGTGCATATATGAAAGTGGGATCAAGATGGTGTTCTTGATGCAGCAATCAAGTGGGGCTCTAACTTGATGCACAATATCCATACCTGAGAAGGCTTACACTTCTCCAATTTTGGTGTTCTTGTTCCGTAATGATTTAAGGCGCTACCACACTGTAACGTATGTCTCCCTCGACTACAACAGCTTGTAGTGAAGATTAAGGCAAAAAAAATTCTTGGAAGATTGGTTCATCATTTGCTCTCAAAAAGCCTGCAAAATTTCTCTTAAAGGATAATCTAGATGATGACTTGGATCTTATTGATGAAGATTCTCTGCTAACGGAGGATGACTTGAAGAAGCCTCAAGTTCCTGCTGCCAGCGGTTGTGAGACCCCCAAAAAAGCTTGCAAGAACTGTGTCTGTGGTCGAGATGAGATCGAGAGAAAAGCTGTGAAGCTGGGCCTCACAGAGGATCAAATCGAGAATCCACAATCATCATGTGGCAGCATAAGCTTCTTAAGAGTTTGTTGGTCGTGGTGCTCGTGCTTGTTACCAGAAGAGTTGCCGTTAAAAAGCTGGTTTGTTTTGTTTTTCAATTTCGAGTTATCGTAAGTTTTTTTTGGAGTATGGACTTGTGAGACTCTTTAGATTTATATTTTTCAGCTTTATTGGATAATGGTGATTCTCCTAGAAACTTATGTTTTGTTATGTCTACTCGTTTGCTATCTTACAGTTGTTATCTTTATTTCAATATCTTGTGTTTTTCACTCTTTCGTTCTTGTCCCATGATGTATGATGACATTTGCTTTGTTCTATCAATAGCTTGATTCACTCA
CDS Sequence
Protein Sequence