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PMID: 17194768 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Phytotoxicity and innate immune responses induced by Nep1-like proteins.

The Plant cell ·Vol. 18 ·No. 12 ·2006-12-00 ·Pages 3721-44

Qutob D, Kemmerling B, Brunner F, Küfner I, Engelhardt S, Gust AA, Luberacki B, Seitz HU, Stahl D, Rauhut T, Glawischnig E, Schween G, Lacombe B, Watanabe N, Lam E, Schlichting R, Scheel D, Nau K, Dodt G, Hubert D, Gijzen M, Nürnberger T

Abstract

We show that oomycete-derived Nep1 (for necrosis and ethylene-inducing peptide1)-like proteins (NLPs) trigger a comprehensive immune response in Arabidopsis thaliana, comprising posttranslational activation of mitogen-activated protein kinase activity, deposition of callose, production of nitric oxide, reactive oxygen intermediates, ethylene, and the phytoalexin camalexin, as well as cell death. Transcript profiling experiments revealed that NLPs trigger extensive reprogramming of the Arabidopsis transcriptome closely resembling that evoked by bacteria-derived flagellin. NLP-induced cell death is an active, light-dependent process requiring HSP90 but not caspase activity, salicylic acid, jasmonic acid, ethylene, or functional SGT1a/SGT1b. Studies on animal, yeast, moss, and plant cells revealed that sensitivity to NLPs is not a general characteristic of phospholipid bilayer systems but appears to be restricted to dicot plants. NLP-induced cell death does not require an intact plant cell wall, and ectopic expression of NLP in dicot plants resulted in cell death only when the protein was delivered to the apoplast. Our findings strongly suggest that NLP-induced necrosis requires interaction with a target site that is unique to the extracytoplasmic side of dicot plant plasma membranes. We propose that NLPs play dual roles in plant pathogen interactions as toxin-like virulence factors and as triggers of plant innate immune responses.

MeSH Terms
Arabidopsis/genetics,immunology,microbiology,radiation effects Cell Death/drug effects,radiation effects Cell Membrane/drug effects Cytoplasm/drug effects Fungal Proteins/metabolism,pharmacology Gene Expression Regulation, Plant Genes, Plant Genetic Variation Germination/drug effects,radiation effects Immunity, Innate/drug effects,radiation effects Light Lipid Bilayers/metabolism Phylogeny Plant Leaves/drug effects,enzymology,microbiology,radiation effects Protein Binding/drug effects,radiation effects Seedlings/drug effects,microbiology,radiation effects Tobacco/drug effects,microbiology,radiation effects
Chemicals
Fungal Proteins Lipid Bilayers
Authors & Affiliations
22 authors, click to expand affiliations / ORCID
Qutob Dinah
Agriculture and Agri-Food Canada, London ON N5V 4T3, Canada.
Kemmerling Birgit
Brunner Frédéric
Küfner Isabell
Engelhardt Stefan
Gust Andrea A
Luberacki Borries
Seitz Hanns Ulrich
Stahl Dietmar
Rauhut Thomas
Glawischnig Erich
Schween Gabriele
Lacombe Benoit
Watanabe Naohide
Lam Eric
Schlichting Rita
Scheel Dierk
Nau Katja
Dodt Gabriele
Hubert David
Gijzen Mark
Nürnberger Thorsten
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Article Info
Journal
The Plant cell
Abbr.
Plant Cell
ISSN
1040-4651
Published
2006-12-00
Epub
2006-00-28
Pages
3721-44
Language
English
Region
England
NLM ID
9208688
PMCID
PMC1785393
Subset
IM
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