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微藻中电子传递的调控

Regulation of electron transport in microalgae.

作者信息

Cardol Pierre, Forti Giorgio, Finazzi Giovanni

机构信息

Laboratoire de Génétique des Microorganismes, Institut de Botanique, Université de Liège, 27 bld du rectorat, B-4000 Liège, Belgium.

出版信息

Biochim Biophys Acta. 2011 Aug;1807(8):912-8. doi: 10.1016/j.bbabio.2010.12.004. Epub 2010 Dec 15.

Abstract

Unicellular algae are characterized by an extreme flexibility with respect to their responses to environmental constraints. This flexibility probably explains why microalgae show a very high biomass yield, constitute one of the major contributors to primary productivity in the oceans and are considered a promising choice for biotechnological applications. Flexibility results from a combination of several factors including fast changes in the light-harvesting apparatus and a strong interaction between different metabolic processes (e.g. respiration and photosynthesis), which all take place within the same cell. Microalgae are also capable of modifying their photosynthetic electron flow capacity, by changing its maximum rate and/or by diverting photogenerated electrons towards different sinks depending on their growth status. In this review, we will focus on the occurrence and regulation of alternative electron flows in unicellular algae and compare data obtained in these systems with those available in vascular plants. This article is part of a Special Issue entitled: Regulation of Electron Transport in Chloroplasts.

摘要

单细胞藻类的特点是对环境限制因素的反应具有极大的灵活性。这种灵活性可能解释了为什么微藻具有很高的生物量产量,是海洋初级生产力的主要贡献者之一,并被认为是生物技术应用的一个有前途的选择。灵活性源于多种因素的综合作用,包括光捕获装置的快速变化以及不同代谢过程(如呼吸作用和光合作用)之间的强烈相互作用,而这些过程都发生在同一个细胞内。微藻还能够根据其生长状态,通过改变光合电子流的最大速率和/或将光生电子导向不同的电子受体,来调节其光合电子流能力。在这篇综述中,我们将重点关注单细胞藻类中替代电子流的发生和调控,并将这些系统中获得的数据与维管植物中的数据进行比较。本文是名为:叶绿体中电子传递的调控的特刊的一部分。

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