Runaway cell death, but not basal disease resistance, in lsd1 is SA‐ and NIM1/NPR1‐dependent
- 13 February 2002
- journal article
- research article
- Published by Wiley in The Plant Journal
- Vol. 29 (3) , 381-391
- https://doi.org/10.1046/j.0960-7412.2001.01225.x
Abstract
LSD1 was defined as a negative regulator of plant cell death and basal disease resistance based on its null mutant phenotypes. We addressed the relationship between lsd1-mediated runaway cell death and signaling components required for systemic acquired resistance (SAR), namely salicylic acid (SA) accumulation and NIM1/NPR1. We present two important findings. First, SA accumulation and NIM1/NPR1 are required for lsd1-mediated runaway cell death following pathogen infection or application of chemicals that mimic SA action. This implies that lsd1-dependent cell death occurs ‘downstream’ of the accumulation of SA. As SA application triggers runaway cell death in lsd1 but not wild-type plants, we infer that LSD1 negatively regulates an SA-dependent signal leading to cell death. Thus SA is both a trigger and a required mediator of lsd1 runaway cell death. Second, neither SA accumulation nor NIM1/NPR1 function is required for the basal resistance operating in lsd1. Therefore LSD1 negatively regulates a basal defense pathway that can act upstream or independently of both NIM1/NPR1 function and SA accumulation following avirulent or virulent pathogen challenge. Our data, together with results from other studies, point to the existence of an SA-dependent ‘signal potentiation loop’ controlling HR. Continued escalation of signaling in the absence of LSD1 leads to runaway cell death. We propose that LSD1 is a key negative regulator of this signal potentiation.Keywords
This publication has 72 references indexed in Scilit:
- The Disease Resistance Signaling Components EDS1 and PAD4 Are Essential Regulators of the Cell Death Pathway Controlled by LSD1 in ArabidopsisPlant Cell, 2001
- Direct interaction between the Arabidopsis disease resistance signaling proteins, EDS1 and PAD4The EMBO Journal, 2001
- Plant pathogens and integrated defence responses to infectionNature, 2001
- The Arabidopsis Downy Mildew Resistance Gene, RPP13-Nd, Functions Independently of NDR1 and EDS1 and Does Not Require the Accumulation of Salicylic AcidMolecular Plant-Microbe Interactions®, 2001
- THE OXIDATIVE BURST IN PLANT DISEASE RESISTANCEAnnual Review of Plant Biology, 1997
- PROGRAMMED CELL DEATH IN PLANT-PATHOGEN INTERACTIONSAnnual Review of Plant Biology, 1997
- A Novel Zinc Finger Protein Is Encoded by the Arabidopsis LSD1 Gene and Functions as a Negative Regulator of Plant Cell DeathCell, 1997
- The Arabidopsis NPR1 Gene That Controls Systemic Acquired Resistance Encodes a Novel Protein Containing Ankyrin RepeatsCell, 1997
- Salicylic Acid Is Not the Translocated Signal Responsible for Inducing Systemic Acquired Resistance but Is Required in Signal TransductionPlant Cell, 1994
- Involvement of superoxide anion generation in the hypersensitive response of potato tuber tissues to infection with an incompatible race of Phytophthora infestans and to the hyphal wall componentsPhysiological Plant Pathology, 1983