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PMID: 9245833 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Differential induction of systemic resistance in Arabidopsis by biocontrol bacteria.

Molecular plant-microbe interactions : MPMI ·Vol. 10 ·No. 6 ·1997-08-00 ·Pages 716-24

Van Wees SC, Pieterse CM, Trijssenaar A, Van 't Westende YA, Hartog F, Van Loon LC

Abstract

Selected nonpathogenic, root-colonizing bacteria are able to elicit induced systemic resistance (ISR) in plants. To elucidate the molecular mechanisms underlying this type of systemic resistance, an Arabidopsis-based model system was developed in which Pseudomonas syringae pv. tomato and Fusarium oxysporum f. sp. raphani were used as challenging pathogens. In Arabidopsis thaliana ecotypes Columbia and Landsberg erecta, colonization of the rhizosphere by P. fluorescens strain WCS417r induced systemic resistance against both pathogens. In contrast, ecotype RLD did not respond to WCS417r treatment, whereas all three ecotypes expressed systemic acquired resistance upon treatment with salicylic acid (SA). P. fluorescens strain WCS374r, previously shown to induce ISR in radish, did not elicit ISR in Arabidopsis. The opposite was found for P. putida strain WCS358r, which induced ISR in Arabidopsis but not in radish. These results demonstrate that rhizosphere pseudomonads are differentially active in eliciting ISR in related plant species. The outer membrane lipopolysaccharide (LPS) of WCS417r is the main ISR-inducing determinant in radish and carnation, and LPS-containing cell walls also elicit ISR in Arabidopsis. However, mutant WCS417rOA-, lacking the O-antigenic side chain of the LPS, induced levels of protection similar to those induced by wild-type WCS417r. This indicates that ISR-inducing bacteria produce more than a single factor that trigger ISR in Arabidopsis. Furthermore, WCS417r and WCS358r induced protection in both wild-type Arabidopsis and SA-nonaccumulating NahG plants without activating pathogenesis-related gene expression. This suggests that elicitation of an SA-independent signaling pathway is a characteristic feature of ISR-inducing biocontrol bacteria.

MeSH Terms
Arabidopsis/microbiology Fusarium/pathogenicity Lipopolysaccharides/pharmacology Pest Control, Biological/methods Plant Diseases/microbiology Plant Roots/microbiology Pseudomonas/classification,pathogenicity,physiology Species Specificity
Chemicals
Lipopolysaccharides
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Van Wees S C
Department of Plant Ecology and Evolutionary Biology, Utrecht University, The Netherlands. s.vanwees@boev.biol.ruu.nl
Pieterse C M
Trijssenaar A
Van 't Westende Y A
Hartog F
Van Loon L C
Article Info
Journal
Molecular plant-microbe interactions : MPMI
Abbr.
Mol Plant Microbe Interact
ISSN
0894-0282
Published
1997-08-00
Pages
716-24
Language
English
Region
United States
NLM ID
9107902
Subset
IM
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