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绿色光合细菌中的电子传递。

Electron transport in green photosynthetic bacteria.

机构信息

Department of Chemistry, Amherst, Amherst College, 01002, Amherst, MA, USA.

出版信息

Photosynth Res. 1985 Dec;6(4):317-33. doi: 10.1007/BF00054106.

Abstract

Green bacteria make up two of the four families of anoxygenic photosynthetic prokaryotes. The two families have similar pigment compositions and membrane fine structure, and both contain a specialized antenna structure known as a chlorosome. The primary photochemistry and electron transport pathways of the two groups are, however, quite distinct. The anaerobic green bacteria (Chlorobiaceae) contain low-potential iron-sulfur proteins as early electron acceptors and can directly reduce NAD(+) in a manner reminiscent of Photosystem I of oxygenic organisms. The facultatively aerobic green bacteria (Chloroflexaceae) contain quinone-type acceptors and have an overall pattern of electron transport very similar to that found in purple bacteria. Many aspects of energy storage in green bacteria, especially photophosphorylation and the role of cytochrome b/c complexes in electron transport, remain poorly understood.

摘要

绿菌包括两种非氧光合原核生物的四个科。这两个科具有相似的色素组成和膜精细结构,并且都含有一种称为菌绿体的特殊天线结构。然而,这两个组的初级光化学和电子传递途径却截然不同。厌氧绿菌(绿菌科)含有低电位铁硫蛋白作为早期电子受体,并且可以直接还原 NAD(+),这让人联想到好氧生物的光系统 I。兼性需氧绿菌(绿屈挠菌科)含有醌型受体,并且其电子传递模式与紫色细菌非常相似。绿菌中能量储存的许多方面,特别是光合磷酸化和细胞色素 b/c 复合物在电子传递中的作用,仍未得到很好的理解。

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