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Rhizobacterium‐derived diacetyl modulates plant immunity in a phosphate‐dependent manner

Plants establish mutualistic associations with beneficial microbes while deploying the immune system to defend against pathogenic ones. Little is known about the interplay between mutualism and immunity and the mediator molecules enabling such crosstalk. Here, we show that plants respond differentia...

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Autores principales: Morcillo, Rafael JL, Singh, Sunil K, He, Danxia, An, Guo, Vílchez, Juan I, Tang, Kai, Yuan, Fengtong, Sun, Yazhou, Shao, Chuyang, Zhang, Song, Yang, Yu, Liu, Xiaomin, Dang, Yashan, Wang, Wei, Gao, Jinghui, Huang, Weichang, Lei, Mingguang, Song, Chun‐Peng, Zhu, Jian‐Kang, Macho, Alberto P, Paré, Pual W, Zhang, Huiming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6960444/
https://www.ncbi.nlm.nih.gov/pubmed/31802519
http://dx.doi.org/10.15252/embj.2019102602
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author Morcillo, Rafael JL
Singh, Sunil K
He, Danxia
An, Guo
Vílchez, Juan I
Tang, Kai
Yuan, Fengtong
Sun, Yazhou
Shao, Chuyang
Zhang, Song
Yang, Yu
Liu, Xiaomin
Dang, Yashan
Wang, Wei
Gao, Jinghui
Huang, Weichang
Lei, Mingguang
Song, Chun‐Peng
Zhu, Jian‐Kang
Macho, Alberto P
Paré, Pual W
Zhang, Huiming
author_facet Morcillo, Rafael JL
Singh, Sunil K
He, Danxia
An, Guo
Vílchez, Juan I
Tang, Kai
Yuan, Fengtong
Sun, Yazhou
Shao, Chuyang
Zhang, Song
Yang, Yu
Liu, Xiaomin
Dang, Yashan
Wang, Wei
Gao, Jinghui
Huang, Weichang
Lei, Mingguang
Song, Chun‐Peng
Zhu, Jian‐Kang
Macho, Alberto P
Paré, Pual W
Zhang, Huiming
author_sort Morcillo, Rafael JL
collection PubMed
description Plants establish mutualistic associations with beneficial microbes while deploying the immune system to defend against pathogenic ones. Little is known about the interplay between mutualism and immunity and the mediator molecules enabling such crosstalk. Here, we show that plants respond differentially to a volatile bacterial compound through integral modulation of the immune system and the phosphate‐starvation response (PSR) system, resulting in either mutualism or immunity. We found that exposure of Arabidopsis thaliana to a known plant growth‐promoting rhizobacterium can unexpectedly have either beneficial or deleterious effects to plants. The beneficial‐to‐deleterious transition is dependent on availability of phosphate to the plants and is mediated by diacetyl, a bacterial volatile compound. Under phosphate‐sufficient conditions, diacetyl partially suppresses plant production of reactive oxygen species (ROS) and enhances symbiont colonization without compromising disease resistance. Under phosphate‐deficient conditions, diacetyl enhances phytohormone‐mediated immunity and consequently causes plant hyper‐sensitivity to phosphate deficiency. Therefore, diacetyl affects the type of relation between plant hosts and certain rhizobacteria in a way that depends on the plant's phosphate‐starvation response system and phytohormone‐mediated immunity.
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spelling pubmed-69604442020-01-17 Rhizobacterium‐derived diacetyl modulates plant immunity in a phosphate‐dependent manner Morcillo, Rafael JL Singh, Sunil K He, Danxia An, Guo Vílchez, Juan I Tang, Kai Yuan, Fengtong Sun, Yazhou Shao, Chuyang Zhang, Song Yang, Yu Liu, Xiaomin Dang, Yashan Wang, Wei Gao, Jinghui Huang, Weichang Lei, Mingguang Song, Chun‐Peng Zhu, Jian‐Kang Macho, Alberto P Paré, Pual W Zhang, Huiming EMBO J Articles Plants establish mutualistic associations with beneficial microbes while deploying the immune system to defend against pathogenic ones. Little is known about the interplay between mutualism and immunity and the mediator molecules enabling such crosstalk. Here, we show that plants respond differentially to a volatile bacterial compound through integral modulation of the immune system and the phosphate‐starvation response (PSR) system, resulting in either mutualism or immunity. We found that exposure of Arabidopsis thaliana to a known plant growth‐promoting rhizobacterium can unexpectedly have either beneficial or deleterious effects to plants. The beneficial‐to‐deleterious transition is dependent on availability of phosphate to the plants and is mediated by diacetyl, a bacterial volatile compound. Under phosphate‐sufficient conditions, diacetyl partially suppresses plant production of reactive oxygen species (ROS) and enhances symbiont colonization without compromising disease resistance. Under phosphate‐deficient conditions, diacetyl enhances phytohormone‐mediated immunity and consequently causes plant hyper‐sensitivity to phosphate deficiency. Therefore, diacetyl affects the type of relation between plant hosts and certain rhizobacteria in a way that depends on the plant's phosphate‐starvation response system and phytohormone‐mediated immunity. John Wiley and Sons Inc. 2019-12-05 2020-01-15 /pmc/articles/PMC6960444/ /pubmed/31802519 http://dx.doi.org/10.15252/embj.2019102602 Text en © 2019 The Authors. Published under the terms of the CC BY NC ND 4.0 license This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Articles
Morcillo, Rafael JL
Singh, Sunil K
He, Danxia
An, Guo
Vílchez, Juan I
Tang, Kai
Yuan, Fengtong
Sun, Yazhou
Shao, Chuyang
Zhang, Song
Yang, Yu
Liu, Xiaomin
Dang, Yashan
Wang, Wei
Gao, Jinghui
Huang, Weichang
Lei, Mingguang
Song, Chun‐Peng
Zhu, Jian‐Kang
Macho, Alberto P
Paré, Pual W
Zhang, Huiming
Rhizobacterium‐derived diacetyl modulates plant immunity in a phosphate‐dependent manner
title Rhizobacterium‐derived diacetyl modulates plant immunity in a phosphate‐dependent manner
title_full Rhizobacterium‐derived diacetyl modulates plant immunity in a phosphate‐dependent manner
title_fullStr Rhizobacterium‐derived diacetyl modulates plant immunity in a phosphate‐dependent manner
title_full_unstemmed Rhizobacterium‐derived diacetyl modulates plant immunity in a phosphate‐dependent manner
title_short Rhizobacterium‐derived diacetyl modulates plant immunity in a phosphate‐dependent manner
title_sort rhizobacterium‐derived diacetyl modulates plant immunity in a phosphate‐dependent manner
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6960444/
https://www.ncbi.nlm.nih.gov/pubmed/31802519
http://dx.doi.org/10.15252/embj.2019102602
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