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PMID: 20687803 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Age-related resistance of Nicotiana benthamiana against hemibiotrophic pathogen Phytophthora infestans requires both ethylene- and salicylic acid-mediated signaling pathways.

Molecular plant-microbe interactions : MPMI ·Vol. 23 ·No. 9 ·2010-09-00 ·Pages 1130-42

Shibata Y, Kawakita K, Takemoto D

Abstract

Phytophthora infestans, the agent of late blight disease of potato, is a hemibiotrophic pathogen with biotrophic action during early infection and necrotrophic in the later stage of colonization. Mature Nicotiana benthamiana was resistant to P. infestans, whereas relatively young plants were susceptible to this pathogen. Young plants became resistant following a pretreatment with acibenzolar-S-methyl, a functional analog of salicylic acid (SA), indicating that susceptibility of young plants is due to a lack of induction of SA signaling. Further analysis with virus-induced gene silencing indicated that NbICS1 and NbEIN2, the genes for SA biosynthesis and ethylene (ET) signaling, respectively, are required for the resistance of mature N. benthamiana against P. infestans. Furthermore, these genes are required for the production of reactive oxygen species (ROS) induced by treatment of the INF1 elicitor. In NbICS1-silenced plants, cell death induced by either INF1 or necrosis-inducing protein NPP1.1 was significantly accelerated. Expression of genes for phytoalexin (capsidiol) biosynthesis, NbEAS and NbEAH, were regulated by ET, and gene silencing of either of them compromised resistance of N. benthamiana to P. infestans. Together, these results suggest that resistance of N. benthamiana against hemibiotrophic P. infestans requires both SA-regulated appropriate induction of cell death and ET-induced production of phytoalexin.

MeSH Terms
Ethylenes/metabolism Gene Expression Regulation, Plant Gene Silencing Immunity, Innate Phytophthora infestans Plant Diseases/immunology,microbiology Plant Proteins/genetics,metabolism Reactive Oxygen Species Salicylic Acid/metabolism Signal Transduction Tobacco/immunology,microbiology,physiology
Chemicals
Ethylenes Plant Proteins Reactive Oxygen Species ethylene Salicylic Acid
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Shibata Yusuke
Plant Pathology Laboratory, Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya, 464-8601, Japan.
Kawakita Kazuhito
Takemoto Daigo
Article Info
Journal
Molecular plant-microbe interactions : MPMI
Abbr.
Mol Plant Microbe Interact
ISSN
0894-0282
Published
2010-09-00
Pages
1130-42
Language
English
Region
United States
NLM ID
9107902
Subset
IM
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