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拟南芥dgd1突变体叶片中半乳糖脂二半乳糖基二酰基甘油缺乏时水氧化复合物的修饰

Modification of the water oxidizing complex in leaves of the dgd1 mutant of Arabidopsis thaliana deficient in the galactolipid digalactosyldiacylglycerol.

作者信息

Reifarth F, Christen G, Seeliger A G, Dörmann P, Benning C, Renger G

机构信息

Max-Volmer-Institut für Biophysikalische Chemie und Biochemie, Technische Universität Berlin, Strasse des 17. Juni 135, D-10623 Berlin, Germany.

出版信息

Biochemistry. 1997 Sep 30;36(39):11769-76. doi: 10.1021/bi9709654.

Abstract

The primary biochemical defect in the genetically well characterized dgd1 mutant of Arabidopsis thaliana causes a 90% reduction in the relative amount of the galactolipid digalactosyldiacylglycerol (DGDG). To study the effect of this DGDG deficiency on photosystem II (PS II), time-resolved transients of laser-flash-induced changes of the relative fluorescence quantum yield Fvar,rel(t) were measured in whole leaves from wild-type and the dgd1 mutant. The results obtained reveal (i) in untreated leaves the decay kinetics of Fvar, rel(t) reflecting QA.- reoxidation by endogenous plastoquinone are very similar in wild-type and the dgd1 mutant at room temperature, (ii) the Arrhenius plot of the temperature dependence of electron transfer from QA.- to QB exhibits a break point at about 19 degrees C in wild-type and about 12 degrees C in the dgd1 mutant, (iii) in leaves treated with DCMU the slow reoxidation of QA.- by the PS II donor side is blocked to a much higher extent in the dgd1 mutant (about 50%) compared to wild-type (about 10%), and iv) the normalized amplitude of Fvar,rel(t = 1 micros) reflecting the percentage of fast P680.+ reduction by YZ exhibits a characteristic period four oscillation in wild-type while this feature is strongly damped in the dgd1 mutant. Presumably, the severe DGDG deficiency is causing the thermal down shift of a lipid phase transition that affects the QA.- reoxidation by QB. Most strikingly, the properties of the WOC are modified as a result of reduced DGDG content. Thus, the lipid DGDG appears to be of structural relevance for the WOC.

摘要

在基因特征明确的拟南芥dgd1突变体中,主要的生化缺陷导致半乳糖脂二半乳糖基二酰基甘油(DGDG)的相对含量降低了90%。为了研究这种DGDG缺乏对光系统II(PS II)的影响,在野生型和dgd1突变体的全叶中测量了激光闪光诱导的相对荧光量子产率Fvar,rel(t)变化的时间分辨瞬态。所得结果表明:(i)在未处理的叶片中,反映QA-被内源性质体醌再氧化的Fvar,rel(t)的衰减动力学在野生型和dgd1突变体中于室温下非常相似;(ii)从QA-到QB的电子转移的温度依赖性的阿累尼乌斯图在野生型中约19℃处有一个断点,在dgd1突变体中约12℃处有一个断点;(iii)在用敌草隆(DCMU)处理的叶片中,PS II供体侧对QA-的缓慢再氧化在dgd1突变体中(约50%)比野生型(约10%)受到更高程度的阻断;(iv)反映YZ对快速P680+还原百分比的Fvar,rel(t = 1微秒)的归一化幅度在野生型中呈现特征性的四周期振荡,而在dgd1突变体中该特征强烈衰减。据推测,严重的DGDG缺乏导致脂质相变的热下移,从而影响QA-被QB再氧化。最显著的是,由于DGDG含量降低,水氧化复合物(WOC)的性质发生了改变。因此,脂质DGDG似乎与WOC具有结构相关性。

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