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Salicylic acid‐dependent immunity contributes to resistance against Rhizoctonia solani, a necrotrophic fungal agent of sheath blight, in rice and Brachypodium distachyon

Rhizoctonia solani is a soil‐borne fungus causing sheath blight. In consistent with its necrotrophic life style, no rice cultivars fully resistant to R. solani are known, and agrochemical plant defense activators used for rice blast, which upregulate a phytohormonal salicylic acid (SA)‐dependent pat...

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Autores principales: Kouzai, Yusuke, Kimura, Mamiko, Watanabe, Megumi, Kusunoki, Kazuki, Osaka, Daiki, Suzuki, Tomoko, Matsui, Hidenori, Yamamoto, Mikihiro, Ichinose, Yuki, Toyoda, Kazuhiro, Matsuura, Takakazu, Mori, Izumi C., Hirayama, Takashi, Minami, Eiichi, Nishizawa, Yoko, Inoue, Komaki, Onda, Yoshihiko, Mochida, Keiichi, Noutoshi, Yoshiteru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5765516/
https://www.ncbi.nlm.nih.gov/pubmed/29048113
http://dx.doi.org/10.1111/nph.14849
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author Kouzai, Yusuke
Kimura, Mamiko
Watanabe, Megumi
Kusunoki, Kazuki
Osaka, Daiki
Suzuki, Tomoko
Matsui, Hidenori
Yamamoto, Mikihiro
Ichinose, Yuki
Toyoda, Kazuhiro
Matsuura, Takakazu
Mori, Izumi C.
Hirayama, Takashi
Minami, Eiichi
Nishizawa, Yoko
Inoue, Komaki
Onda, Yoshihiko
Mochida, Keiichi
Noutoshi, Yoshiteru
author_facet Kouzai, Yusuke
Kimura, Mamiko
Watanabe, Megumi
Kusunoki, Kazuki
Osaka, Daiki
Suzuki, Tomoko
Matsui, Hidenori
Yamamoto, Mikihiro
Ichinose, Yuki
Toyoda, Kazuhiro
Matsuura, Takakazu
Mori, Izumi C.
Hirayama, Takashi
Minami, Eiichi
Nishizawa, Yoko
Inoue, Komaki
Onda, Yoshihiko
Mochida, Keiichi
Noutoshi, Yoshiteru
author_sort Kouzai, Yusuke
collection PubMed
description Rhizoctonia solani is a soil‐borne fungus causing sheath blight. In consistent with its necrotrophic life style, no rice cultivars fully resistant to R. solani are known, and agrochemical plant defense activators used for rice blast, which upregulate a phytohormonal salicylic acid (SA)‐dependent pathway, are ineffective towards this pathogen. As a result of the unavailability of genetics, the infection process of R. solani remains unclear. We used the model monocotyledonous plants Brachypodium distachyon and rice, and evaluated the effects of phytohormone‐induced resistance to R. solani by pharmacological, genetic and microscopic approaches to understand fungal pathogenicity. Pretreatment with SA, but not with plant defense activators used in agriculture, can unexpectedly induce sheath blight resistance in plants. SA treatment inhibits the advancement of R. solani to the point in the infection process in which fungal biomass shows remarkable expansion and specific infection machinery is developed. The involvement of SA in R. solani resistance is demonstrated by SA‐deficient NahG transgenic rice and the sheath blight‐resistant B. distachyon accessions, Bd3‐1 and Gaz‐4, which activate SA‐dependent signaling on inoculation. Our findings suggest a hemi‐biotrophic nature of R. solani, which can be targeted by SA‐dependent plant immunity. Furthermore, B. distachyon provides a genetic resource that can confer disease resistance against R. solani to plants.
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spelling pubmed-57655162018-02-01 Salicylic acid‐dependent immunity contributes to resistance against Rhizoctonia solani, a necrotrophic fungal agent of sheath blight, in rice and Brachypodium distachyon Kouzai, Yusuke Kimura, Mamiko Watanabe, Megumi Kusunoki, Kazuki Osaka, Daiki Suzuki, Tomoko Matsui, Hidenori Yamamoto, Mikihiro Ichinose, Yuki Toyoda, Kazuhiro Matsuura, Takakazu Mori, Izumi C. Hirayama, Takashi Minami, Eiichi Nishizawa, Yoko Inoue, Komaki Onda, Yoshihiko Mochida, Keiichi Noutoshi, Yoshiteru New Phytol Research Rhizoctonia solani is a soil‐borne fungus causing sheath blight. In consistent with its necrotrophic life style, no rice cultivars fully resistant to R. solani are known, and agrochemical plant defense activators used for rice blast, which upregulate a phytohormonal salicylic acid (SA)‐dependent pathway, are ineffective towards this pathogen. As a result of the unavailability of genetics, the infection process of R. solani remains unclear. We used the model monocotyledonous plants Brachypodium distachyon and rice, and evaluated the effects of phytohormone‐induced resistance to R. solani by pharmacological, genetic and microscopic approaches to understand fungal pathogenicity. Pretreatment with SA, but not with plant defense activators used in agriculture, can unexpectedly induce sheath blight resistance in plants. SA treatment inhibits the advancement of R. solani to the point in the infection process in which fungal biomass shows remarkable expansion and specific infection machinery is developed. The involvement of SA in R. solani resistance is demonstrated by SA‐deficient NahG transgenic rice and the sheath blight‐resistant B. distachyon accessions, Bd3‐1 and Gaz‐4, which activate SA‐dependent signaling on inoculation. Our findings suggest a hemi‐biotrophic nature of R. solani, which can be targeted by SA‐dependent plant immunity. Furthermore, B. distachyon provides a genetic resource that can confer disease resistance against R. solani to plants. John Wiley and Sons Inc. 2017-10-19 2018-01 /pmc/articles/PMC5765516/ /pubmed/29048113 http://dx.doi.org/10.1111/nph.14849 Text en © 2017 The Authors. New Phytologist © 2017 New Phytologist Trust This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Kouzai, Yusuke
Kimura, Mamiko
Watanabe, Megumi
Kusunoki, Kazuki
Osaka, Daiki
Suzuki, Tomoko
Matsui, Hidenori
Yamamoto, Mikihiro
Ichinose, Yuki
Toyoda, Kazuhiro
Matsuura, Takakazu
Mori, Izumi C.
Hirayama, Takashi
Minami, Eiichi
Nishizawa, Yoko
Inoue, Komaki
Onda, Yoshihiko
Mochida, Keiichi
Noutoshi, Yoshiteru
Salicylic acid‐dependent immunity contributes to resistance against Rhizoctonia solani, a necrotrophic fungal agent of sheath blight, in rice and Brachypodium distachyon
title Salicylic acid‐dependent immunity contributes to resistance against Rhizoctonia solani, a necrotrophic fungal agent of sheath blight, in rice and Brachypodium distachyon
title_full Salicylic acid‐dependent immunity contributes to resistance against Rhizoctonia solani, a necrotrophic fungal agent of sheath blight, in rice and Brachypodium distachyon
title_fullStr Salicylic acid‐dependent immunity contributes to resistance against Rhizoctonia solani, a necrotrophic fungal agent of sheath blight, in rice and Brachypodium distachyon
title_full_unstemmed Salicylic acid‐dependent immunity contributes to resistance against Rhizoctonia solani, a necrotrophic fungal agent of sheath blight, in rice and Brachypodium distachyon
title_short Salicylic acid‐dependent immunity contributes to resistance against Rhizoctonia solani, a necrotrophic fungal agent of sheath blight, in rice and Brachypodium distachyon
title_sort salicylic acid‐dependent immunity contributes to resistance against rhizoctonia solani, a necrotrophic fungal agent of sheath blight, in rice and brachypodium distachyon
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5765516/
https://www.ncbi.nlm.nih.gov/pubmed/29048113
http://dx.doi.org/10.1111/nph.14849
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