含氧光合作用:叶绿素a荧光的诱导和硅类囊体膜中电子传递的调控

A. V. Vershubskii, V. I. Priklonskii, A. N. Tikhonov
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引用次数: 0

摘要

本文描述了叶绿体中光合作用电子传递链中电子传递关键阶段调控的扩展数学模型,以及与之相关的反式类囊体质子传递和ATP合成过程。该模型包括与光系统2 (PS2)相关的初级质体醌PQA,以及与PS2和光系统1 (PS1)之间的电子载体池中的质体醌分子交换的次生质体醌PQB。该模型充分描述了叶绿素荧光诱导的多相非单调曲线和P700氧化还原转化(光反应中心PS1)、质体醌、管腔(pHi)和基质(pHo)中ATP和pH浓度的变化,这些变化取决于叶绿体的光照条件(光的强度和光谱组成的变化)。计算机模拟的结果与高等植物叶片光诱导P700转化动力学和叶绿素a荧光诱导的实验数据一致。所获得的数据在完整叶绿体中ph依赖的电子传输调节的“短期”机制(PS2中激发的非光化学猝灭和卡尔文-本森循环反应的激活)的背景下进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Oxygenic Photosynthesis: Induction of Chlorophyll a Fluorescence and Regulation of Electron Transport in Thylakoid Membranes In Silico

The paper describes an extended mathematical model for the regulation of the key stages of electron transfer in the photosynthetic chain of electron transport and the associated processes of trans-thylakoid proton transfer and ATP synthesis in chloroplasts. This model includes primary plastoquinone PQA, associated with photosystem 2 (PS2), and secondary plastoquinone PQB, exchanging with plastoquinone molecules that are part of the pool of electronic carriers between PS2 and photosystem 1 (PS1). The model adequately describes the multiphase non-monotonic curves of chlorophyll fluorescence induction and the kinetics of P700 redox transformations (photoreaction center PS1), plastoquinone, changes in ATP and pH concentrations in lumen (pHi) and stroma (pHo) depending on the illuminating conditions of chloroplasts (variation in intensity and spectral composition of light). The results of computer simulation are consistent with experimental data on the kinetics of photoinduced P700 transformations in the leaves of higher plants and the induction of chlorophyll a fluorescence. The obtained data are discussed in the context of “short-term” mechanisms of pH-dependent regulation of electron transport in intact chloroplasts (non-photochemical quenching of excitation in PS2 and activation of the Calvin–Benson cycle reactions).

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来源期刊
CiteScore
1.40
自引率
0.00%
发文量
28
期刊介绍: Biochemistry (Moscow), Supplement Series A: Membrane and Cell Biology   is an international peer reviewed journal that publishes original articles on physical, chemical, and molecular mechanisms that underlie basic properties of biological membranes and mediate membrane-related cellular functions. The primary topics of the journal are membrane structure, mechanisms of membrane transport, bioenergetics and photobiology, intracellular signaling as well as membrane aspects of cell biology, immunology, and medicine. The journal is multidisciplinary and gives preference to those articles that employ a variety of experimental approaches, basically in biophysics but also in biochemistry, cytology, and molecular biology. The journal publishes articles that strive for unveiling membrane and cellular functions through innovative theoretical models and computer simulations.
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