Molecular mechanisms involved in bacterial speck disease resistance of tomato
Open Access
- 29 September 1998
- journal article
- Published by The Royal Society in Philosophical Transactions Of The Royal Society B-Biological Sciences
- Vol. 353 (1374) , 1455-1461
- https://doi.org/10.1098/rstb.1998.0301
Abstract
An important recent advance in the field of plant–microbe interactions has been the cloning of genes that confer resistance to specific viruses, bacteria, fungi or nematodes. Disease resistance (R) genes encode proteins with predicted structural motifs consistent with them having roles in signal recognition and transduction. The future challenge is to understand howRgene products specifically perceive defence–eliciting signals from the pathogen and transduce those signals to pathways that lead to the activation of plant defence responses. In tomatoes, the Pto kinase (product of thePto Rgene) confers resistance to strains of the bacterial speck pathogen,Pseudomonas syringaepv.tomato, that carry the corresponding avirulence geneavrPto. Resistance to bacterial speck disease is initiated by a mechanism involving the physical interaction of the Pto kinase and the AvrPto protein. This recognition event initiates signalling events that lead to defence responses including an oxidative burst, the hypersensitive response and expression of pathogenesis–related genes. Pto–interacting (Pti) proteins have been identified that appear to act downstream of the Pto kinase and our current studies are directed at elucidating the roles of these components.Keywords
This publication has 52 references indexed in Scilit:
- The Myristylation Motif of Pto Is Not Required for Disease ResistanceMolecular Plant-Microbe Interactions®, 1998
- Initiation of Plant Disease Resistance by Physical Interaction of AvrPto and Pto KinaseScience, 1996
- Differential expression of the 1‐aminocyclopropane‐1‐carboxylate oxidase gene family of tomatoThe Plant Journal, 1996
- Generation of active oxygen in elicited cells of Arabidopsis thaliana is mediated by a NADPH oxidase‐like enzymeFEBS Letters, 1996
- The oxidative burst in plant defense: Function and signal transductionPhysiologia Plantarum, 1996
- The tomato gene Pti1 encodes a serine/threonine kinase that is phosphorylated by Pto and is involved in the hypersensitive responseCell, 1995
- The Pto Bacterial Resistance Gene and the Fen Insecticide Sensitivity Gene Encode Functional Protein Kinases with Serine/Threonine SpecificityPlant Physiology, 1995
- Pièce de Résistance: Novel Classes of Plant Disease Resistance GenesCell, 1995
- Tomato mutants altered in bacterial disease resistance provide evidence for a new locus controlling pathogen recognition.Plant Cell, 1994
- CfGene-Dependent Inductionof a β-1,3-Glucanase Promoter in Tomato PlantsInfected withCladosporium fulvumMolecular Plant-Microbe Interactions®, 1994