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光合作用系统 II 光损伤的混合机制理论框架。

A theoretical framework of the hybrid mechanism of photosystem II photodamage.

机构信息

Research School of Biology, Australian National University, Canberra, ACT, 2600, Australia.

Climate Change Cluster (C3), University of Technology Sydney, Sydney, NSW, 2007, Australia.

出版信息

Photosynth Res. 2021 Aug;149(1-2):107-120. doi: 10.1007/s11120-021-00843-1. Epub 2021 Aug 2.

DOI:10.1007/s11120-021-00843-1
PMID:34338941
Abstract

Photodamage of photosystem II is a significant physiological process that is prevalent in the fields of photobiology, photosynthesis research and plant/algal stress. Since its discovery, numerous efforts have been devoted to determine the causes and mechanisms of action of photosystem II photodamage. There are two contrasting hypotheses to explain photodamage: (1) the excitation pressure induced by light absorption by the photosynthetic pigments and (2) direct photodamage of the Mn cluster located at the water-splitting site, which is independent of excitation pressure. While these two hypotheses seemed mutually exclusive, during the last decade, several independent works have proposed an alternative approach indicating that both hypotheses are valid. This was termed the dual hypothesis of photosystem II photodamage, and it postulates that both excess excitation and direct Mn photodamage operate at the same time, independently or in a synergic manner, depending on the type of sample, temperature, light spectrum, or other environmental stressors. In this mini-review, a brief summary of the contrasting hypotheses is presented, followed by recapitulation of key discoveries in the field of photosystem II photodamage of the last decade, and a synthesis of how these works support a full hybrid framework (operation of several mechanisms and their permutations) to explain PSII photodamage. All these are in recognition of Prof. Wah Soon Chow (the Australian National University), one of the key proposers of the dual hypothesis.

摘要

光系统 II 光损伤是光合作用研究和植物/藻类胁迫领域中一种常见的重要生理过程。自发现以来,人们已经付出了大量努力来确定光系统 II 光损伤的原因和作用机制。有两种相互矛盾的假说可以解释光损伤:(1)由光合色素吸收光引起的激发压力;(2)位于水分解位点的 Mn 簇的直接光损伤,与激发压力无关。虽然这两种假说似乎相互排斥,但在过去十年中,几项独立的研究工作提出了一种替代方法,表明这两种假说都是有效的。这被称为光系统 II 光损伤的双重假说,它假设过量激发和直接 Mn 光损伤同时发生,无论是独立的还是协同的,这取决于样品类型、温度、光谱或其他环境胁迫因素。在这篇简短的综述中,简要总结了相互矛盾的假说,然后回顾了过去十年中光系统 II 光损伤领域的关键发现,并综合了这些工作如何支持一个完整的混合框架(多个机制及其排列的运作)来解释 PSII 光损伤。所有这些都是为了纪念 Wah Soon Chow 教授(澳大利亚国立大学),他是双重假说的主要提出者之一。

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Sci Rep. 2019 Nov 21;9(1):17275. doi: 10.1038/s41598-019-53030-7.
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ACS Omega. 2023 Oct 16;8(43):40005-40014. doi: 10.1021/acsomega.3c05895. eCollection 2023 Oct 31.
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