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单色光对蓝绿藻多变鱼腥藻质子外流的影响。

Effect of Monochromatic Light on Proton Efflux of the Blue-Green Alga Anabaena variabilis.

作者信息

Scherer S, Hinrichs I, Böger P

机构信息

Lehrstuhl für Physiologie und Biochemie der Pflanzen, Universität Konstanz, D-7750 Konstanz, West Germany.

出版信息

Plant Physiol. 1986 Jul;81(3):939-41. doi: 10.1104/pp.81.3.939.

Abstract

Light-induced proton efflux of Anabaena variabilis was found to be biphasic, the second phase being inhibited by the ATPase inhibitor nitrofen (2,4-dichloro-1-[4-nitrophenoxy]benzene). The first, fast phase was triggered by monochromatic light of 707 nanometers, whereas the second, slower phase was not. With 707 nanometers, light, respiratory O(2) uptake was inhibited. Using light composed of two wavelengths (616 and 707 nanometers) a marked enhancement of both O(2) evolution as well as the second phase of proton efflux was observed. The first phase was not enhanced. Thus, phase II is driven by both photosystems. As concluded from the action spectrum phase I is markedly determined by photosystem-I activity. Altogether the data show that two different mechanisms of light-induced proton efflux exist on the cytoplasmic membrane of Anabaena, the slower one being dependent on ATP and linear photosynthetic electron flow.

摘要

已发现多变鱼腥藻的光诱导质子外流呈双相性,第二相受到ATP酶抑制剂硝酚(2,4 - 二氯 - 1 - [4 - 硝基苯氧基]苯)的抑制。第一相快速相由707纳米的单色光触发,而第二相较慢相则不然。在707纳米光下,呼吸性氧气摄取受到抑制。使用由两个波长(616和707纳米)组成的光时,观察到氧气释放以及质子外流的第二相均有显著增强。第一相未增强。因此,第二相由两个光系统驱动。从作用光谱得出的结论是,第一相明显由光系统I的活性决定。总体而言,数据表明多变鱼腥藻细胞质膜上存在两种不同的光诱导质子外流机制,较慢的一种依赖于ATP和线性光合电子流。

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