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Abiotic Stresses Antagonize the Rice Defence Pathway through the Tyrosine-Dephosphorylation of OsMPK6

Plants, as sessile organisms, survive environmental changes by prioritizing their responses to the most life-threatening stress by allocating limited resources. Previous studies showed that pathogen resistance was suppressed under abiotic stresses. Here, we show the mechanism underlying this phenome...

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Autores principales: Ueno, Yoshihisa, Yoshida, Riichiro, Kishi-Kaboshi, Mitsuko, Matsushita, Akane, Jiang, Chang-Jie, Goto, Shingo, Takahashi, Akira, Hirochika, Hirohiko, Takatsuji, Hiroshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4617645/
https://www.ncbi.nlm.nih.gov/pubmed/26485146
http://dx.doi.org/10.1371/journal.ppat.1005231
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author Ueno, Yoshihisa
Yoshida, Riichiro
Kishi-Kaboshi, Mitsuko
Matsushita, Akane
Jiang, Chang-Jie
Goto, Shingo
Takahashi, Akira
Hirochika, Hirohiko
Takatsuji, Hiroshi
author_facet Ueno, Yoshihisa
Yoshida, Riichiro
Kishi-Kaboshi, Mitsuko
Matsushita, Akane
Jiang, Chang-Jie
Goto, Shingo
Takahashi, Akira
Hirochika, Hirohiko
Takatsuji, Hiroshi
author_sort Ueno, Yoshihisa
collection PubMed
description Plants, as sessile organisms, survive environmental changes by prioritizing their responses to the most life-threatening stress by allocating limited resources. Previous studies showed that pathogen resistance was suppressed under abiotic stresses. Here, we show the mechanism underlying this phenomenon. Phosphorylation of WRKY45, the central transcription factor in salicylic-acid (SA)-signalling-dependent pathogen defence in rice, via the OsMKK10-2–OsMPK6 cascade, was required to fully activate WRKY45. The activation of WRKY45 by benzothiadiazole (BTH) was reduced under low temperature and high salinity, probably through abscisic acid (ABA) signalling. An ABA treatment dephosphorylated/inactivated OsMPK6 via protein tyrosine phosphatases, OsPTP1/2, leading to the impaired activation of WRKY45 and a reduction in Magnaporthe oryzae resistance, even after BTH treatment. BTH induced a strong M. oryzae resistance in OsPTP1/2 knockdown rice, even under cold and high salinity, indicating that OsPTP1/2 is the node of SA-ABA signalling crosstalk and its down-regulation makes rice disease resistant, even under abiotic stresses. These results points to one of the directions to further improve crops by managing the tradeoffs between different stress responses of plants.
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spelling pubmed-46176452015-10-29 Abiotic Stresses Antagonize the Rice Defence Pathway through the Tyrosine-Dephosphorylation of OsMPK6 Ueno, Yoshihisa Yoshida, Riichiro Kishi-Kaboshi, Mitsuko Matsushita, Akane Jiang, Chang-Jie Goto, Shingo Takahashi, Akira Hirochika, Hirohiko Takatsuji, Hiroshi PLoS Pathog Research Article Plants, as sessile organisms, survive environmental changes by prioritizing their responses to the most life-threatening stress by allocating limited resources. Previous studies showed that pathogen resistance was suppressed under abiotic stresses. Here, we show the mechanism underlying this phenomenon. Phosphorylation of WRKY45, the central transcription factor in salicylic-acid (SA)-signalling-dependent pathogen defence in rice, via the OsMKK10-2–OsMPK6 cascade, was required to fully activate WRKY45. The activation of WRKY45 by benzothiadiazole (BTH) was reduced under low temperature and high salinity, probably through abscisic acid (ABA) signalling. An ABA treatment dephosphorylated/inactivated OsMPK6 via protein tyrosine phosphatases, OsPTP1/2, leading to the impaired activation of WRKY45 and a reduction in Magnaporthe oryzae resistance, even after BTH treatment. BTH induced a strong M. oryzae resistance in OsPTP1/2 knockdown rice, even under cold and high salinity, indicating that OsPTP1/2 is the node of SA-ABA signalling crosstalk and its down-regulation makes rice disease resistant, even under abiotic stresses. These results points to one of the directions to further improve crops by managing the tradeoffs between different stress responses of plants. Public Library of Science 2015-10-20 /pmc/articles/PMC4617645/ /pubmed/26485146 http://dx.doi.org/10.1371/journal.ppat.1005231 Text en © 2015 Ueno et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ueno, Yoshihisa
Yoshida, Riichiro
Kishi-Kaboshi, Mitsuko
Matsushita, Akane
Jiang, Chang-Jie
Goto, Shingo
Takahashi, Akira
Hirochika, Hirohiko
Takatsuji, Hiroshi
Abiotic Stresses Antagonize the Rice Defence Pathway through the Tyrosine-Dephosphorylation of OsMPK6
title Abiotic Stresses Antagonize the Rice Defence Pathway through the Tyrosine-Dephosphorylation of OsMPK6
title_full Abiotic Stresses Antagonize the Rice Defence Pathway through the Tyrosine-Dephosphorylation of OsMPK6
title_fullStr Abiotic Stresses Antagonize the Rice Defence Pathway through the Tyrosine-Dephosphorylation of OsMPK6
title_full_unstemmed Abiotic Stresses Antagonize the Rice Defence Pathway through the Tyrosine-Dephosphorylation of OsMPK6
title_short Abiotic Stresses Antagonize the Rice Defence Pathway through the Tyrosine-Dephosphorylation of OsMPK6
title_sort abiotic stresses antagonize the rice defence pathway through the tyrosine-dephosphorylation of osmpk6
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4617645/
https://www.ncbi.nlm.nih.gov/pubmed/26485146
http://dx.doi.org/10.1371/journal.ppat.1005231
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