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OsWRKY76 positively regulates drought stress via OsbHLH148-mediated jasmonate signaling in rice

Drought stress is a major environmental threat that limits plant growth and crop productivity. Therefore, it is necessary to uncover the molecular mechanisms behind drought tolerance in crops. Here, OsWRKY76 positively regulated drought stress in rice. OsWRKY76 expression was induced by PEG treatmen...

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Autores principales: Zhang, Mingxing, Zhao, Ranran, Huang, Kai, Wei, Zhiqi, Guo, Boya, Huang, Shuangzhan, Li, Zhao, Jiang, Wenzhu, Wu, Tao, Du, Xinglin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10113545/
https://www.ncbi.nlm.nih.gov/pubmed/37089644
http://dx.doi.org/10.3389/fpls.2023.1168723
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author Zhang, Mingxing
Zhao, Ranran
Huang, Kai
Wei, Zhiqi
Guo, Boya
Huang, Shuangzhan
Li, Zhao
Jiang, Wenzhu
Wu, Tao
Du, Xinglin
author_facet Zhang, Mingxing
Zhao, Ranran
Huang, Kai
Wei, Zhiqi
Guo, Boya
Huang, Shuangzhan
Li, Zhao
Jiang, Wenzhu
Wu, Tao
Du, Xinglin
author_sort Zhang, Mingxing
collection PubMed
description Drought stress is a major environmental threat that limits plant growth and crop productivity. Therefore, it is necessary to uncover the molecular mechanisms behind drought tolerance in crops. Here, OsWRKY76 positively regulated drought stress in rice. OsWRKY76 expression was induced by PEG treatment, dehydration stress, and exogenous MeJA rather than by no treatment. Notably, OsWRKY76 knockout weakened drought tolerance at the seedling stage and decreased MeJA sensitivity. OsJAZ12 was significantly induced by drought stress, and its expression was significantly higher in OsWRKY76-knockout mutants than in wild-type ZH11 under drought stress. Yeast two-hybrid and bimolecular fluorescence complementation assays showed that OsWRKY76 interacted with OsJAZ12. OsWRKY76 weakened the interaction between OsbHLH148 and OsJAZ12 in yeast cells. The OsJAZ12 protein repressed the transactivation activity of OsbHLH148, and this repression was partly restored by OsWRKY76 in rice protoplasts. Moreover, OsDREB1E expression was lower in OsWRKY76-knockout mutants than in wild-type ZH11 under drought stress, but it was upregulated under normal growth conditions. Yeast one-hybrid, electrophoretic mobility shift, and dual-luciferase assays showed that OsWRKY76 and OsbHLH148 bound directly to the OsDREB1E promoter and activated OsDREB1E expression in response to drought stress. These results suggest that OsWRKY76 confers drought tolerance through OsbHLH148-mediated jasmonate signaling in rice, offering a new clue to uncover the mechanisms behind drought tolerance.
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spelling pubmed-101135452023-04-20 OsWRKY76 positively regulates drought stress via OsbHLH148-mediated jasmonate signaling in rice Zhang, Mingxing Zhao, Ranran Huang, Kai Wei, Zhiqi Guo, Boya Huang, Shuangzhan Li, Zhao Jiang, Wenzhu Wu, Tao Du, Xinglin Front Plant Sci Plant Science Drought stress is a major environmental threat that limits plant growth and crop productivity. Therefore, it is necessary to uncover the molecular mechanisms behind drought tolerance in crops. Here, OsWRKY76 positively regulated drought stress in rice. OsWRKY76 expression was induced by PEG treatment, dehydration stress, and exogenous MeJA rather than by no treatment. Notably, OsWRKY76 knockout weakened drought tolerance at the seedling stage and decreased MeJA sensitivity. OsJAZ12 was significantly induced by drought stress, and its expression was significantly higher in OsWRKY76-knockout mutants than in wild-type ZH11 under drought stress. Yeast two-hybrid and bimolecular fluorescence complementation assays showed that OsWRKY76 interacted with OsJAZ12. OsWRKY76 weakened the interaction between OsbHLH148 and OsJAZ12 in yeast cells. The OsJAZ12 protein repressed the transactivation activity of OsbHLH148, and this repression was partly restored by OsWRKY76 in rice protoplasts. Moreover, OsDREB1E expression was lower in OsWRKY76-knockout mutants than in wild-type ZH11 under drought stress, but it was upregulated under normal growth conditions. Yeast one-hybrid, electrophoretic mobility shift, and dual-luciferase assays showed that OsWRKY76 and OsbHLH148 bound directly to the OsDREB1E promoter and activated OsDREB1E expression in response to drought stress. These results suggest that OsWRKY76 confers drought tolerance through OsbHLH148-mediated jasmonate signaling in rice, offering a new clue to uncover the mechanisms behind drought tolerance. Frontiers Media S.A. 2023-04-05 /pmc/articles/PMC10113545/ /pubmed/37089644 http://dx.doi.org/10.3389/fpls.2023.1168723 Text en Copyright © 2023 Zhang, Zhao, Huang, Wei, Guo, Huang, Li, Jiang, Wu and Du https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Zhang, Mingxing
Zhao, Ranran
Huang, Kai
Wei, Zhiqi
Guo, Boya
Huang, Shuangzhan
Li, Zhao
Jiang, Wenzhu
Wu, Tao
Du, Xinglin
OsWRKY76 positively regulates drought stress via OsbHLH148-mediated jasmonate signaling in rice
title OsWRKY76 positively regulates drought stress via OsbHLH148-mediated jasmonate signaling in rice
title_full OsWRKY76 positively regulates drought stress via OsbHLH148-mediated jasmonate signaling in rice
title_fullStr OsWRKY76 positively regulates drought stress via OsbHLH148-mediated jasmonate signaling in rice
title_full_unstemmed OsWRKY76 positively regulates drought stress via OsbHLH148-mediated jasmonate signaling in rice
title_short OsWRKY76 positively regulates drought stress via OsbHLH148-mediated jasmonate signaling in rice
title_sort oswrky76 positively regulates drought stress via osbhlh148-mediated jasmonate signaling in rice
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10113545/
https://www.ncbi.nlm.nih.gov/pubmed/37089644
http://dx.doi.org/10.3389/fpls.2023.1168723
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