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https://hdl.handle.net/20.500.14094/90007045
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2025-06-26
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90007045 (fulltext)
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2.89 MB
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メタデータID
90007045
アクセス権
open access
出版タイプ
Version of Record
タイトル
Molecular Mechanism of Oxidation of P700 and Suppression of ROS Production in Photosystem I in Response to Electron-Sink Limitations in C3 Plants
著者
著者ID
A0017
研究者ID
1000080294289
KUID
https://kuid-rm-web.ofc.kobe-u.ac.jp/search/detail?systemId=3c4f300c59e5cf95520e17560c007669
著者名
Miyake, Chikahiro
三宅, 親弘
ミヤケ, チカヒロ
所属機関名
農学研究科
言語
English (英語)
収録物名
Antioxidants
巻(号)
9(3)
ページ
230-230
出版者
MDPI
刊行日
2020-03
公開日
2020-04-23
抄録
Photosynthesis fixes CO2 and converts it to sugar, using chemical-energy compounds of both NADPH and ATP, which are produced in the photosynthetic electron transport system. The photosynthetic electron transport system absorbs photon energy to drive electron flow from Photosystem II (PSII) to Photosystem I (PSI). That is, both PSII and PSI are full of electrons. O2 is easily reduced to a superoxide radical (O2−) at the reducing side, i.e., the acceptor side, of PSI, which is the main production site of reactive oxygen species (ROS) in photosynthetic organisms. ROS-dependent inactivation of PSI in vivo has been reported, where the electrons are accumulated at the acceptor side of PSI by artificial treatments: exposure to low temperature and repetitive short-pulse (rSP) illumination treatment, and the accumulated electrons flow to O2, producing ROS. Recently, my group found that the redox state of the reaction center of chlorophyll P700 in PSI regulates the production of ROS: P700 oxidation suppresses the production of O2− and prevents PSI inactivation. This is why P700 in PSI is oxidized upon the exposure of photosynthesis organisms to higher light intensity and/or low CO2 conditions, where photosynthesis efficiency decreases. In this study, I introduce a new molecular mechanism for the oxidation of P700 in PSI and suppression of ROS production from the robust relationship between the light and dark reactions of photosynthesis. The accumulated protons in the lumenal space of the thylakoid membrane and the accumulated electrons in the plastoquinone (PQ) pool drive the rate-determining step of the P700 photo-oxidation reduction cycle in PSI from the photo-excited P700 oxidation to the reduction of the oxidized P700, thereby enhancing P700 oxidation.
キーワード
P700
P700 oxidation system
photorespiration
photosynthesis
Photosystem I (PSI)
reactive oxygen species (ROS)
reduction-induced suppression of electron flow (RISE)
repetitive short-pulse (SP) illumination (rSP illumination treatment)
カテゴリ
農学研究科
学術雑誌論文
権利
© 2020 by the author. Licensee MDPI, Basel, Switzerland.
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
関連情報
DOI
https://doi.org/10.3390/antiox9030230
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資源タイプ
journal article
eISSN
2076-3921
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