Bacterial elicitors and plant signaling in induced systemic resistance.

Publication date

2008

Authors

Bakker, Peter A.H.M.ISNI 0000000393767106
van Pelt, J.A.ORCID 0000-0002-1202-4291ISNI 0000000392588982
van der Sluis, I.ISNI 0000000391456806
Pieterse, Corné M.J.ORCID 0000-0002-5473-4646ISNI 0000000357875345

Editors

Sorvari, S.
Pirttilä, A.M.

Advisors

Supervisors

DOI

Document Type

Part of book
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License

Abstract

Plant root colonizing, fluorescent Pseudomonas spp. have been studied for decades for their plant growth promoting properties and their effective suppression of soil borne plant diseases. The modes of action that play a role in disease suppression by these bacteria include siderophore-mediated competition for iron, antibiosis, and induced systemic resistance (ISR). The involvement of ISR is typically studied in systems in which the Pseudomonas bacteria and the pathogen are inoculated and remain spatially separated on the plant, e.g. the bacteria on the root and the pathogen on the leaf, or the use of split root systems. Since no direct interactions are possible between the two populations, suppression of disease development has to be plant mediated. We discuss bacterial traits and the plant signal transduction pathways involved in Pseudomonas mediated ISR, in particular in the model plant Arabidopsis thaliana.

Keywords

Plant biology (Botany), Life sciences, Biologie/Milieukunde (BIOL)

Citation

Bakker, P A H M, van Pelt, J A, van der Sluis, I & Pieterse, C M J 2008, Bacterial elicitors and plant signaling in induced systemic resistance. in S Sorvari & A M Pirttilä (eds), Prospects and Applications for Plant-Associated Microbes. A Laboratory Manual, Part A: Bacteria.. BioBien Innovations, Piikkiö, Finland, pp. 276-282.