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质体醌在植物热应激反应中的作用。

Function of plastoquinone in heat stress reactions of plants.

作者信息

Pshybytko Natallia L, Kruk Jerzy, Kabashnikova Liudmila F, Strzalka Kazimierz

机构信息

Institute of Biophysics and Cell Engineering, National Academy of Sciences of Belarus, Akademicheskaya 27, 220072 Minsk, Belarus.

出版信息

Biochim Biophys Acta. 2008 Nov;1777(11):1393-9. doi: 10.1016/j.bbabio.2008.08.005. Epub 2008 Aug 20.

Abstract

The effect of high temperature treatment (40 degrees C, 3 h, illumination at 100 micromol m(-2) s(-1)) on the photosynthetic electron flow in barley seedlings of different age was investigated. Thermoinduced inhibition of the liner electron flow due to partial impairment of the water oxidizing complex (WOC) and the increase in the extent of Q(A)(-) reoxidation by Tyr(z)(ox) in thylakoids isolated from 4-day-old leaves was shown by measurements of oxygen evolution using benzoquinone or potassium ferricyanide as electron acceptors, as well as by following Q(A)(-) reoxidation kinetics in the absence and presence of exogenous electron acceptors, DCBQ and DMBQ. Using HPLC analysis, an increase in the oxidation of the photoactive plastoquinone pool in young leaves under heating was shown. In older, 11-day-old leaves, heat treatment limited both photosynthetic electron flow and oxygen evolution. The same effects of heat shock on oxygen evolution caused an inhibition of electron flow on the donor side of PSII only. However, a rise in the proportion of PSII with Q(A)(-) reoxidized through recombination with the S(2)/S(3) state of the WOC was observed. The addition of exogenous electron acceptors (DCBQ and DMBQ) and a donor (DPC) showed that the thermoinduced decrease in the electron transport rate was caused by an impediment of electron flow from Q(A)(-) to acceptor pool. The decrease in size of the photoactive PQ-pool and a change in the proportions of oxidized and reduced PQ in older leaves under heat treatment were shown. It was suggested that a thermoinduced change of the redox state of the PQ-pool and a redistribution of plastoquinone molecules between photoactive and non-photoactive pools are the mechanisms which reflect and regulate the response of the photosynthetic apparatus under heat stress conditions.

摘要

研究了高温处理(40℃,3小时,光照强度为100微摩尔·米⁻²·秒⁻¹)对不同年龄大麦幼苗光合电子流的影响。通过使用苯醌或铁氰化钾作为电子受体测量氧气释放,以及在有无外源电子受体DCBQ和DMBQ存在的情况下跟踪Q(A)⁻再氧化动力学,结果表明,从4日龄叶片分离的类囊体中,由于水氧化复合物(WOC)部分受损,热诱导线性电子流受到抑制,并且Tyr(z)(ox)对Q(A)⁻的再氧化程度增加。通过HPLC分析表明,加热时幼叶中光活性质体醌库的氧化增加。在11日龄的老叶中,热处理限制了光合电子流和氧气释放。热激对氧气释放的相同影响仅导致PSII供体侧的电子流受到抑制。然而,观察到通过与WOC的S(2)/S(3)状态重组而使Q(A)⁻再氧化的PSII比例增加。添加外源电子受体(DCBQ和DMBQ)和供体(DPC)表明,热诱导的电子传输速率降低是由电子从Q(A)⁻流向受体库受阻引起的。结果表明,热处理下老叶中光活性PQ库大小的减小以及氧化和还原PQ比例的变化。有人提出,PQ库氧化还原状态的热诱导变化以及质体醌分子在光活性和非光活性库之间的重新分布是反映和调节热胁迫条件下光合机构响应的机制。

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