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[光诱导的基质和类囊体腔pH变化对叶绿体中电子传递动力学的影响。一个数学模型]

[Effects of light-induced changes in pH of stroma and lumen on the kinetics of electron transport in chloroplasts. A mathematical model].

作者信息

Frolov A E, Tikhonov A N

出版信息

Biofizika. 2007 Jul-Aug;52(4):656-66.

Abstract

A mathematical model for the description of electron and proton transport in chloroplasts of higher plants has been developed. The model takes into account the light-induced changes in the pH values of stroma (pH(o)) and intrathylakoid lumen (pH(i)), electron transport from photosystem 2 (PS2) to NADP+, a terminal electron acceptor of photosystem 1 (PS1), ATP synthesis from ADP and P(i) coupled to the transmembrane proton flow, and the consumption of NADPH and ATP in the Calvin cycle reactions. The effects of the light-induced changes in the values of pH(i) and pH(o) on the rates of electron flow on the plastoquinone segment of electron transport chain and on the acceptor side of PS1 allowed us to describe some peculiarities of the complex kinetics of electron transport in intact chloroplasts. According to computer experiments, the acceleration of electron efflux from PS1 due to the activation of Calvin cycle reactions in response to the light-induced rise of pH(o) may be one of the reasons for the non-monotonous kinetics of P700 redox transients, which is typical of dark-adapted cyanobacteria, algae, and intact chloroplasts of higher plants.

摘要

已建立了一个用于描述高等植物叶绿体中电子和质子传输的数学模型。该模型考虑了基质(pH(o))和类囊体腔内(pH(i))pH值的光诱导变化、从光系统2(PS2)到光系统1(PS1)的末端电子受体NADP+的电子传输、与跨膜质子流耦合的由ADP和P(i)合成ATP,以及卡尔文循环反应中NADPH和ATP的消耗。pH(i)和pH(o)值的光诱导变化对电子传输链质体醌段上的电子流速率以及PS1受体侧的影响,使我们能够描述完整叶绿体中电子传输复杂动力学的一些特点。根据计算机实验,由于卡尔文循环反应的激活响应光诱导的pH(o)升高而导致PS1电子外流加速,可能是P700氧化还原瞬变非单调动力学的原因之一,这在暗适应的蓝细菌、藻类和高等植物的完整叶绿体中很典型。

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