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Exogenous melatonin improved photosynthetic efficiency of photosystem II by reversible phosphorylation of thylakoid proteins in wheat under osmotic stress

It has been well demonstrated that melatonin plays an important protective role in photosynthesis of plants under various environmental stresses, while the detailed mechanisms by which melatonin protects photosystem II (PSII) under environmental stress are still unclear. In the study, the effects of...

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Autores principales: Lin, Shuai, Song, Xiao-Fang, Mao, Hao-Tian, Li, Shuang-Qing, Gan, Jie-Ying, Yuan, Ming, Zhang, Zhong-Wei, Yuan, Shu, Zhang, Huai-Yu, Su, Yan-Qiu, Chen, Yang-Er
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9380962/
https://www.ncbi.nlm.nih.gov/pubmed/35982696
http://dx.doi.org/10.3389/fpls.2022.966181
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author Lin, Shuai
Song, Xiao-Fang
Mao, Hao-Tian
Li, Shuang-Qing
Gan, Jie-Ying
Yuan, Ming
Zhang, Zhong-Wei
Yuan, Shu
Zhang, Huai-Yu
Su, Yan-Qiu
Chen, Yang-Er
author_facet Lin, Shuai
Song, Xiao-Fang
Mao, Hao-Tian
Li, Shuang-Qing
Gan, Jie-Ying
Yuan, Ming
Zhang, Zhong-Wei
Yuan, Shu
Zhang, Huai-Yu
Su, Yan-Qiu
Chen, Yang-Er
author_sort Lin, Shuai
collection PubMed
description It has been well demonstrated that melatonin plays an important protective role in photosynthesis of plants under various environmental stresses, while the detailed mechanisms by which melatonin protects photosystem II (PSII) under environmental stress are still unclear. In the study, the effects of melatonin on photosynthetic efficiency, energy dissipation, PSII protein composition, and reversible phosphorylation of thylakoid proteins were investigated in wheat plants under osmotic stress. The results showed that osmotic stress significantly reduced pigment content, photochemical efficiency of PSII, oxygen-evolving activity, and dissipation of excess excitation energy, while 25 μM melatonin applications greatly alleviated their decline under osmotic stress. Western blot data of PSII proteins revealed that melatonin upregulated the levels of D1, Lhcb5, Lhcb6, PsbQ, and PsbS proteins in wheat exposed to osmotic stress. In addition, thylakoid membrane proteins were strongly phosphorylated in wheat under osmotic stress with or without melatonin. Furthermore, the results from PSII protein dephosphorylation showed that exogenous melatonin promoted the dephosphorylation of LCHII, CP43, and D1 under osmotic stress. Therefore, our findings suggest that melatonin can provide an effective protection for the photosynthetic apparatus by the regulation of PSII proteins and the reversible phosphorylation of thylakoid proteins under drought stress.
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spelling pubmed-93809622022-08-17 Exogenous melatonin improved photosynthetic efficiency of photosystem II by reversible phosphorylation of thylakoid proteins in wheat under osmotic stress Lin, Shuai Song, Xiao-Fang Mao, Hao-Tian Li, Shuang-Qing Gan, Jie-Ying Yuan, Ming Zhang, Zhong-Wei Yuan, Shu Zhang, Huai-Yu Su, Yan-Qiu Chen, Yang-Er Front Plant Sci Plant Science It has been well demonstrated that melatonin plays an important protective role in photosynthesis of plants under various environmental stresses, while the detailed mechanisms by which melatonin protects photosystem II (PSII) under environmental stress are still unclear. In the study, the effects of melatonin on photosynthetic efficiency, energy dissipation, PSII protein composition, and reversible phosphorylation of thylakoid proteins were investigated in wheat plants under osmotic stress. The results showed that osmotic stress significantly reduced pigment content, photochemical efficiency of PSII, oxygen-evolving activity, and dissipation of excess excitation energy, while 25 μM melatonin applications greatly alleviated their decline under osmotic stress. Western blot data of PSII proteins revealed that melatonin upregulated the levels of D1, Lhcb5, Lhcb6, PsbQ, and PsbS proteins in wheat exposed to osmotic stress. In addition, thylakoid membrane proteins were strongly phosphorylated in wheat under osmotic stress with or without melatonin. Furthermore, the results from PSII protein dephosphorylation showed that exogenous melatonin promoted the dephosphorylation of LCHII, CP43, and D1 under osmotic stress. Therefore, our findings suggest that melatonin can provide an effective protection for the photosynthetic apparatus by the regulation of PSII proteins and the reversible phosphorylation of thylakoid proteins under drought stress. Frontiers Media S.A. 2022-08-02 /pmc/articles/PMC9380962/ /pubmed/35982696 http://dx.doi.org/10.3389/fpls.2022.966181 Text en Copyright © 2022 Lin, Song, Mao, Li, Gan, Yuan, Zhang, Yuan, Zhang, Su and Chen. 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
Lin, Shuai
Song, Xiao-Fang
Mao, Hao-Tian
Li, Shuang-Qing
Gan, Jie-Ying
Yuan, Ming
Zhang, Zhong-Wei
Yuan, Shu
Zhang, Huai-Yu
Su, Yan-Qiu
Chen, Yang-Er
Exogenous melatonin improved photosynthetic efficiency of photosystem II by reversible phosphorylation of thylakoid proteins in wheat under osmotic stress
title Exogenous melatonin improved photosynthetic efficiency of photosystem II by reversible phosphorylation of thylakoid proteins in wheat under osmotic stress
title_full Exogenous melatonin improved photosynthetic efficiency of photosystem II by reversible phosphorylation of thylakoid proteins in wheat under osmotic stress
title_fullStr Exogenous melatonin improved photosynthetic efficiency of photosystem II by reversible phosphorylation of thylakoid proteins in wheat under osmotic stress
title_full_unstemmed Exogenous melatonin improved photosynthetic efficiency of photosystem II by reversible phosphorylation of thylakoid proteins in wheat under osmotic stress
title_short Exogenous melatonin improved photosynthetic efficiency of photosystem II by reversible phosphorylation of thylakoid proteins in wheat under osmotic stress
title_sort exogenous melatonin improved photosynthetic efficiency of photosystem ii by reversible phosphorylation of thylakoid proteins in wheat under osmotic stress
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9380962/
https://www.ncbi.nlm.nih.gov/pubmed/35982696
http://dx.doi.org/10.3389/fpls.2022.966181
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