Other names: Lycopersicon esculentum, Lycopersicon esculentum Mill., Lycopersicon esculentum var. esculentum, Lycopersicon lycopersicum, Lycopersicum esculentum, Solanum esculentum, Solanum esculentum Dunal, Solanum lycopersicon, Solanum lycopersicum L., tomato
NCBI Species: 4081
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List of reference R-genes
List of putative R-genes
PRGdb ID | Gene name | Genome version | Class | View |
---|---|---|---|---|
PRGDB2822630 | Solyc07g062080.3 | 514_ITAG3.2 | KIN | View |
PRGDB2822631 | Solyc12g077370.2 | 514_ITAG3.2 | CK | View |
PRGDB2822632 | Solyc10g085990.2 | 514_ITAG3.2 | KIN | View |
PRGDB2822633 | Solyc12g005160.2 | 514_ITAG3.2 | KIN | View |
PRGDB2822634 | Solyc04g077340.3 | 514_ITAG3.2 | KIN | View |
PRGDB2822635 | Solyc10g012170.3 | 514_ITAG3.2 | KIN | View |
PRGDB2822636 | Solyc04g015980.3 | 514_ITAG3.2 | RLK | View |
PRGDB2822637 | Solyc04g011520.3 | 514_ITAG3.2 | KIN | View |
PRGDB2822638 | Solyc10g074900.2 | 514_ITAG3.2 | RLK | View |
PRGDB2822639 | Solyc02g079570.3 | 514_ITAG3.2 | LECRK | View |
List of scientific literature with expression data
Author | Reference | Pathogen lineage | Pathogen name |
---|---|---|---|
Badet et al., 2017 | Badet, T., Voisin, D., Mbengue, M., Barascud, M., Sucher, J., Sadon, P., Balagué, C., Roby, D. and Raffaele, S. (2017a) Parallel evolution of the POQR prolyl oligo peptidase gene conferring plant quantitative disease resistance. PLoS Genet. 13, e1007143. | Fungus | Sclerotinia sclerotium |
Canto-Pastor et al., 2018 | Canto-Pastor, A., Santos, B., Valli, A., Summers, W., Schornack, S. and Baulcombe, D. (2018) Enhanced resistance to bacterial and oomycete pathogens by short tandem target mimic RNAs in tomato. bioRxiv, 396564. | Fungus | Phytophthora infestans |
D'esposito et al., 2021 | DATA UNDER PEER REVISION | Pest | Tuta absoluta |
French et al., 2018 | French, E., Kim, B.S., Rivera-Zuluaga, K. and Iyer-Pascuzzi, A.S. (2018) Whole root transcriptomic analysis suggests a role for auxin pathways in resistance to Ralstonia solanacearum in tomato. Mol. Plant Microbe Interact. 31, 432– 444. | Bacteria | Ralstonia solanacearum |
Fukuhara et al., 2020 | Fukuhara, T.; Tabara, M.; Koiwa, H.; Takahashi, H. Effect of asymptomatic infection with southern tomato virus on tomato plants. Arch. Virol. 2020, 165, 11–20. | Virus | Southen Tomato Virus |
Padmanabhan et al., 2019 | Padmanabhan, C., Ma, Q., Shekasteband, R., Stewart, K. S., Hutton, S. F., Scott, J. W., et al. (2019). Comprehensive transcriptome analysis and functional characterization of PR-5 for its involvement in tomato Sw-7 resistance to tomato spotted wilt tospovirus. Sci. Rep. 9:7673. doi: 10.1038/s41598-019-44100-x | Virus | Tomato spotted wilt tospovirus |
Yang et al., 2015 | Yang, Y. X., Wang, M. M., Yin, Y. L., Onac, E., Zhou, G. F., Peng, S., et al. (2015). RNA-seq analysis reveals the role of red light in resistance against Pseudomonas syringae pv. tomato DC3000 in tomato plants. BMC Genomics 16:120. doi: 10.1186/s12864-015-1228-7 | Bacteria | Pseudomonas syringae pv.tomato DC3000 |
Zhao et al., 2019 | Zhao T, Liu W, Zhao Z, et al. Transcriptome profiling reveals the response process of tomato carrying Cf-19 and Cladosporium fulvum interaction [J]. BMC Plant Biol. 2019;19(1):1–12. | Fungus | Cladosporium fulvum |