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一种基于OJIP瞬态的质体醌库氧化还原状态的非侵入性检测方法。

A non-invasive assay of the plastoquinone pool redox state based on the OJIP-transient.

作者信息

Tóth Szilvia Z, Schansker Gert, Strasser Reto J

机构信息

Laboratory of Bioenergetics, University of Geneva, Chemin des Embrouchis 10, CH-1254, Jussy, Geneva, Switzerland.

出版信息

Photosynth Res. 2007 Jul-Sep;93(1-3):193-203. doi: 10.1007/s11120-007-9179-8. Epub 2007 May 9.

Abstract

The plastoquinone (PQ) pool of the photosynthetic electron transport chain becomes reduced under anaerobic conditions. Here, anaerobiosis was used as a tool to manipulate the PQ-pool redox state in darkness and to study the effects of the PQ-redox state on the Chl-a fluorescence (OJIP) kinetics in pea leaves (Pisum sativum L.). It is shown that the F(J) (fluorescence intensity at 3 ms) is linearly related to the area above the OJ-phase (first 3 ms) representing the reduction of the acceptor side of photosystem II (PSII) and F(J) is also linearly related to the area above the JI-phase (3-30 ms) that parallels the reduction of the PQ-pool. This means that F(J) depends on the availability of oxidized PQ-molecules bound to the Q(B)-site. The linear relationships between F(J) and the two areas indicate that F(J) is not sensitive to energy transfer between PSII-antennae (connectivity). It is further shown that a approximately 94% reduced PQ-pool is in equilibrium with a approximately 19% reduction of Q(A) (primary quinone acceptor of PSII). The non-linear relationship between the initial fluorescence value (F(20 micros)) and the area above the OJ-phase supports the idea that F(20 mus )is sensitive to connectivity. This is reinforced by the observation that this non-linearity can be overcome by transforming the F(20 micros)-values into [Q(A) (-)]-values. Based on the F(J)-value of the OJIP-transient, a simple method for the quantification of the redox state of the PQ-pool is proposed.

摘要

在厌氧条件下,光合电子传递链中的质体醌(PQ)库会被还原。在此,利用厌氧状态作为一种工具,在黑暗中操控PQ库的氧化还原状态,并研究PQ氧化还原状态对豌豆叶片(Pisum sativum L.)叶绿素a荧光(OJIP)动力学的影响。结果表明,F(J)(3毫秒时的荧光强度)与OJ相(最初3毫秒)上方的面积呈线性关系,该面积代表光系统II(PSII)受体侧的还原,并且F(J)也与JI相(3 - 30毫秒)上方的面积呈线性关系,该面积与PQ库的还原平行。这意味着F(J)取决于与Q(B)位点结合的氧化态PQ分子的可用性。F(J)与这两个面积之间的线性关系表明F(J)对PSII天线之间的能量转移(连接性)不敏感。进一步表明,大约94%还原的PQ库与大约19%还原的Q(A)(PSII的初级醌受体)处于平衡状态。初始荧光值(F(20微秒))与OJ相上方面积之间的非线性关系支持了F(20微秒)对连接性敏感的观点。通过将F(20微秒)值转换为[Q(A) (-)]值可以克服这种非线性这一观察结果进一步强化了这一点。基于OJIP瞬态的F(J)值,提出了一种简单的定量PQ库氧化还原状态的方法。

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