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A sulfur-containing volatile emitted by potato-associated bacteria confers protection against late blight through direct anti-oomycete activity

Chinchilla, Delphine and Bruisson, Sébastien and Meyer, Silvan and Zühlke, Daniela and Hirschfeld, Claudia and Joller, Charlotte and L'Haridon, Floriane and Mène-Saffrané, Laurent and Riedel, Katharina and Weisskopf, Laure. (2019) A sulfur-containing volatile emitted by potato-associated bacteria confers protection against late blight through direct anti-oomycete activity. Science Reports, 9 (1). p. 18778.

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Official URL: https://edoc.unibas.ch/82557/

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Abstract

Plant diseases are a major cause for yield losses and new strategies to control them without harming the environment are urgently needed. Plant-associated bacteria contribute to their host's health in diverse ways, among which the emission of disease-inhibiting volatile organic compounds (VOCs). We have previously reported that VOCs emitted by potato-associated bacteria caused strong in vitro growth inhibition of the late blight causing agent Phytophthora infestans. This work focuses on sulfur-containing VOCs (sVOCs) and demonstrates the high in planta protective potential of S-methyl methane thiosulfonate (MMTS), which fully prevented late blight disease in potato leaves and plantlets without phytotoxic effects, in contrast to other sVOCs. Short exposure times were sufficient to protect plants against infection. We further showed that MMTS's protective activity was not mediated by the plant immune system but lied in its anti-oomycete activity. Using quantitative proteomics, we determined that different sVOCs caused specific proteome changes in P. infestans, indicating perturbations in sulfur metabolism, protein translation and redox balance. This work brings new perspectives for plant protection against the devastating Irish Famine pathogen, while opening new research avenues on the role of sVOCs in the interaction between plants and their microbiome.
Faculties and Departments:05 Faculty of Science > Departement Umweltwissenschaften > Integrative Biologie > Plant-Microbe Interaction (Schläppi)
UniBasel Contributors:Chinchilla, Delphine
Item Type:Article, refereed
Article Subtype:Research Article
Publisher:Nature
e-ISSN:2045-2322
Note:Publication type according to Uni Basel Research Database: Journal article
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Last Modified:12 Apr 2021 09:25
Deposited On:12 Apr 2021 09:25

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