TYPE III SECRETION SYSTEM EFFECTOR PROTEINS: Double Agents in Bacterial Disease and Plant Defense
Top Cited Papers
- 1 September 2004
- journal article
- review article
- Published by Annual Reviews in Annual Review of Phytopathology
- Vol. 42 (1), 385-414
- https://doi.org/10.1146/annurev.phyto.42.040103.110731
Abstract
Many phytopathogenic bacteria inject virulence effector proteins into plant cells via a Hrp type III secretion system (TTSS). Without the TTSS, these pathogens cannot defeat basal defenses, grow in plants, produce disease lesions in hosts, or elicit the hypersensitive response (HR) in nonhosts. Pathogen genome projects employing bioinformatic methods to identify TTSS Hrp regulon promoters and TTSS pathway targeting signals suggest that phytopathogenic Pseudomonas, Xanthomonas, and Ralstonia spp. harbor large arsenals of effectors. The Hrp TTSS employs customized cytoplasmic chaperones, conserved export components in the bacterial envelope (also used by the TTSS of animal pathogens), and a more specialized set of TTSS-secreted proteins to deliver effectors across the plant cell wall and plasma membrane. Many effectors can act as molecular double agents that betray the pathogen to plant defenses in some interactions and suppress host defenses in others. Investigations of the functions of effectors within plant cells have demonstrated the plasma membrane and nucleus as subcellular sites for several effectors, revealed some effectors to possess cysteine protease or protein tyrosine phosphatase activity, and provided new clues to the coevolution of bacterium-plant interactions.Keywords
This publication has 178 references indexed in Scilit:
- Establishing order for type III secretion substrates – a hierarchical processTrends in Microbiology, 2003
- Arabidopsis RIN4 Is a Target of the Type III Virulence Effector AvrRpt2 and Modulates RPS2-Mediated ResistanceCell, 2003
- The Yersinia Ysc–Yop 'Type III' weaponryNature Reviews Molecular Cell Biology, 2002
- Comparison of the genomes of two Xanthomonas pathogens with differing host specificitiesNature, 2002
- RIN4 Interacts with Pseudomonas syringae Type III Effector Molecules and Is Required for RPM1-Mediated Resistance in ArabidopsisCell, 2002
- MAP kinase signalling cascade in Arabidopsis innate immunityNature, 2002
- Genome sequence of the plant pathogen Ralstonia solanacearumNature, 2002
- Plant pathogens and integrated defence responses to infectionNature, 2001
- FLS2Molecular Cell, 2000
- Induction of systemic acquired resistance in cucumber by Pseudomonas syringae pv. syringae 61 HrpZPss proteinThe Plant Journal, 1996