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[红球藻经红光和远红光处理后类囊体膜质子动力势的变化]

[Changes in trans-thylakoid membrane proton motive force induced by treatments with red and far-red light in Dunaliella salina].

作者信息

Liu Xian-De, Shen Yun-Gang

机构信息

Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, and Graduate School of the Chinese Academy of Sciences, Shanghai 200032, China.

出版信息

Zhi Wu Sheng Li Yu Fen Zi Sheng Wu Xue Xue Bao. 2005 Jun;31(3):317-21.

Abstract

The changes in trans-thylakoid membrane proton motive force caused by red light and caused by far-red light in the halotolerant green alga, Dunaliella salina are investigated. Irradiation with red light decreased the intensity of the fast phase of millisecond delayed light emission (ms-DLE) in D. salina, and far-red light led to the opposite effects. Under low temperature conditions (4 degrees C), red light still decreased ms-DLE fast phase intensity, however, far-red light did not enhance the ms-DLE fast phase intensity as it did at room temperature. In the presence of the uncoupler, nigericin, which eliminates the proton gradient across the thylakoid membrane, there was still a decrease in ms-DLE after red light irradiation, while far-red light had no stimulatory effects anymore. The far-red light-induced increase in ms-DLE fast phase is thus suggested to be due to the proton gradient formed by water oxidation in photosystem II. Previous studies with higher plants revealed that far red light increased ms-DLE fast phase intensity slightly, while red light caused a transient increase in ms-DLE fast phase intensity followed by a gradual decrease. Taken together, green algae differ from higher plants with respect to red light- and far red light-induced changes in ms-DLE. The possible reason is discussed.

摘要

研究了耐盐绿藻杜氏盐藻中由红光和远红光引起的类囊体膜质子动力势的变化。红光照射降低了杜氏盐藻中毫秒延迟发光(ms-DLE)快速相的强度,而远红光则产生相反的效果。在低温条件(4摄氏度)下,红光仍会降低ms-DLE快速相强度,然而,远红光不像在室温下那样增强ms-DLE快速相强度。在存在解偶联剂尼日利亚菌素(其消除了类囊体膜上的质子梯度)的情况下,红光照射后ms-DLE仍会降低,而远红光不再有刺激作用。因此,远红光诱导的ms-DLE快速相增加被认为是由于光系统II中水分氧化形成的质子梯度所致。先前对高等植物的研究表明,远红光略微增加了ms-DLE快速相强度,而红光导致ms-DLE快速相强度短暂增加,随后逐渐降低。综上所述,绿藻在红光和远红光诱导的ms-DLE变化方面与高等植物不同。讨论了可能的原因。

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