A novel membrane fusion-mediated plant immunity against bacterial pathogens
- 15 October 2009
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 23 (21), 2496-2506
- https://doi.org/10.1101/gad.1825209
Abstract
Plants have developed their own defense strategies because they have no immune cells. A common plant defense strategy involves programmed cell death (PCD) at the infection site, but how the PCD-associated cell-autonomous immunity is executed in plants is not fully understood. Here we provide a novel mechanism underlying cell-autonomous immunity, which involves the fusion of membranes of a large central vacuole with the plasma membrane, resulting in the discharge of vacuolar antibacterial proteins to the outside of the cells, where bacteria proliferate. The extracellular fluid that was discharged from the vacuoles of infected leaves had both antibacterial activity and cell death-inducing activity. We found that a defect in proteasome function abolished the membrane fusion associated with both disease resistance and PCD in response to avirulent bacterial strains but not to a virulent strain. Furthermore, RNAi plants with a defective proteasome subunit PBA1 have reduced DEVDase activity, which is an activity associated with caspase-3, one of the executors of animal apoptosis. The plant counterpart of caspase-3 has not yet been identified. Our results suggest that PBA1 acts as a plant caspase-3-like enzyme. Thus, this novel defense strategy through proteasome-regulating membrane fusion of the vacuolar and plasma membranes provides plants with a mechanism for attacking intercellular bacterial pathogens.Keywords
This publication has 45 references indexed in Scilit:
- Proteasome-Mediated Turnover of the Transcription Coactivator NPR1 Plays Dual Roles in Regulating Plant ImmunityCell, 2009
- A SNARE Complex Unique to Seed Plants Is Required for Protein Storage Vacuole Biogenesis and Seed Development ofArabidopsis thalianaPlant Cell, 2008
- Ubiquitin, Hormones and Biotic Stress in PlantsAnnals of Botany, 2007
- Divergent functions of VTI12 and VTI11 in trafficking to storage and lytic vacuoles in ArabidopsisProceedings of the National Academy of Sciences, 2007
- The ubiquitin–proteasome system regulates membrane fusion of yeast vacuolesThe EMBO Journal, 2006
- The plant immune systemNature, 2006
- Protein Polyubiquitination Plays a Role in Basal Host Resistance of BarleyPlant Cell, 2006
- Role of SGT1 in resistance protein accumulation in plant immunityThe EMBO Journal, 2006
- RIN4 Interacts with Pseudomonas syringae Type III Effector Molecules and Is Required for RPM1-Mediated Resistance in ArabidopsisCell, 2002
- Plant pathogens and integrated defence responses to infectionNature, 2001