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  Jasmonic acid and ethylene signaling pathways regulate glucosinolate levels in plants during Rhizobacteria-induced systemic resistance against a leaf-chewing herbivore

Pangesti, N., Reichelt, M., van de Mortel, J. E., Kapsomenou, E., Gershenzon, J., van Loon, J. J. A., et al. (2016). Jasmonic acid and ethylene signaling pathways regulate glucosinolate levels in plants during Rhizobacteria-induced systemic resistance against a leaf-chewing herbivore. Journal of Chemical Ecology, 42(12), 1212-1225. doi:10.1007/s10886-016-0787-7.

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 Urheber:
Pangesti, Nurmi, Autor
Reichelt, Michael1, Autor           
van de Mortel, Judith E., Autor
Kapsomenou, Eleni, Autor
Gershenzon, Jonathan1, Autor           
van Loon, Joop J. A., Autor
Dicke, Marcel, Autor
Pineda, Ana, Autor
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1Department of Biochemistry, Prof. J. Gershenzon, MPI for Chemical Ecology, Max Planck Society, ou_421893              

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 Zusammenfassung: Beneficial soil microbes can promote plant growth and induce systemic resistance (ISR) in aboveground tissues against pathogens and herbivorous insects. Despite the increasing interest in microbial-ISR against herbivores, the underlying molecular and chemical mechanisms of this phenomenon remain elusive. Using Arabidopsis thaliana and the rhizobacterium Pseudomonas simiae WCS417r (formerly known as P. fluorescens WCS417r), we here evaluate the role of the JA-regulated MYC2-branch and the JA/ET-regulated ORA59-branch in modulating rhizobacteria-ISR to Mamestra brassicae by combining gene transcriptional, phytochemical, and herbivore performance assays. Our data show a consistent negative effect of rhizobacteria-mediated ISR on the performance of M. brassicae. Functional JA- and ETsignaling pathways are required for this effect, as shown by investigating the knock-out mutants dde2-2 and ein2-1. Additionally, whereas herbivory mainly induces the MYC2- branch, rhizobacterial colonization alone or in combination with herbivore infestation induces the ORA59-branch of the JA signaling pathway. Rhizobacterial colonization enhances the synthesis of camalexin and aliphatic glucosinolates (GLS) compared to the control, while it suppresses the herbivoreinduced levels of indole GLS. These changes are associated with modulation of the JA-/ET-signaling pathways. Our data show that the colonization of plant roots by rhizobacteria modulates plant-insect interactions by prioritizing the JA/ETregulated ORA59-branch over the JA-regulated MYC2- branch. This study elucidates how microbial plant symbionts can modulate the plant immune system to mount an effective defense response against herbivorous plant attackers.

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 Datum: 2016-10-202016-11-15
 Publikationsstatus: Online veröffentlicht
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 Identifikatoren: Anderer: GER466
DOI: 10.1007/s10886-016-0787-7
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Titel: Journal of Chemical Ecology
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: New York : Plenum Pub. Corp.
Seiten: - Band / Heft: 42 (12) Artikelnummer: - Start- / Endseite: 1212 - 1225 Identifikator: ISSN: 0098-0331
CoNE: https://pure.mpg.de/cone/journals/resource/954925466258