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蓝细菌中的光保护作用:与橙色类胡萝卜素蛋白(OCP)相关的非光化学猝灭机制。

Photoprotection in cyanobacteria: the orange carotenoid protein (OCP)-related non-photochemical-quenching mechanism.

作者信息

Kirilovsky Diana

机构信息

CEA, SB2SM, iBiTecS, URA 2096, CNRS, 91191, Gif sur Yvette, France.

出版信息

Photosynth Res. 2007 Jul-Sep;93(1-3):7-16. doi: 10.1007/s11120-007-9168-y. Epub 2007 May 8.

Abstract

Plants and algae have developed multiple protective mechanisms to survive under high light conditions. Thermal dissipation of excitation energy in the membrane-bound chlorophyll-antenna of photosystem II (PSII) decreases the energy arriving at the reaction center and thus reduces the generation of toxic photo-oxidative species. This process results in a decrease of PSII-related fluorescence emission, known as non-photochemical quenching (NPQ). It has always been assumed that cyanobacteria, the progenitor of the chloroplast, lacked an equivalent photoprotective mechanism. Recently, however, evidence has been presented for the existence of at least three distinct mechanisms for dissipating excess absorbed energy in cyanobacteria. One of these mechanisms, characterized by a blue-light-induced fluorescence quenching, is related to the phycobilisomes, the extramembranal antenna of cyanobacterial PSII. In this photoprotective mechanism the soluble carotenoid-binding protein (OCP) encoded by the slr1963 gene in Synechocystis sp. PCC 6803, of previously unknown function, plays an essential role. The amount of energy transferred from the phycobilisomes to the photosystems is reduced and the OCP acts as the photoreceptor and as the mediator of this antenna-related process. These are novel roles for a soluble carotenoid protein.

摘要

植物和藻类已经进化出多种保护机制,以便在高光条件下生存。光系统II(PSII)膜结合叶绿素天线中激发能的热耗散减少了到达反应中心的能量,从而减少了有毒光氧化物种的产生。这一过程导致PSII相关荧光发射减少,即所谓的非光化学猝灭(NPQ)。人们一直认为,叶绿体的祖先蓝藻缺乏类似的光保护机制。然而,最近有证据表明,蓝藻中存在至少三种不同的机制来耗散过量吸收的能量。其中一种机制以蓝光诱导的荧光猝灭为特征,与蓝藻PSII的膜外天线藻胆体有关。在这种光保护机制中,集胞藻PCC 6803中由slr1963基因编码的功能未知的可溶性类胡萝卜素结合蛋白(OCP)起着至关重要的作用。从藻胆体转移到光系统的能量减少,OCP作为光感受器和这一天线相关过程的介质。这些是可溶性类胡萝卜素蛋白的新功能。

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