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微藻光合电子传递的调控

Regulation of Microalgal Photosynthetic Electron Transfer.

作者信息

Milrad Yuval, Mosebach Laura, Buchert Felix

机构信息

Institute of Plant Biology and Biotechnology, University of Münster, Schlossplatz 8, 48143 Münster, Germany.

出版信息

Plants (Basel). 2024 Jul 29;13(15):2103. doi: 10.3390/plants13152103.

Abstract

The global ecosystem relies on the metabolism of photosynthetic organisms, featuring the ability to harness light as an energy source. The most successful type of photosynthesis utilizes a virtually inexhaustible electron pool from water, but the driver of this oxidation, sunlight, varies on time and intensity scales of several orders of magnitude. Such rapid and steep changes in energy availability are potentially devastating for biological systems. To enable a safe and efficient light-harnessing process, photosynthetic organisms tune their light capturing, the redox connections between core complexes and auxiliary electron mediators, ion passages across the membrane, and functional coupling of energy transducing organelles. Here, microalgal species are the most diverse group, featuring both unique environmental adjustment strategies and ubiquitous protective mechanisms. In this review, we explore a selection of regulatory processes of the microalgal photosynthetic apparatus supporting smooth electron flow in variable environments.

摘要

全球生态系统依赖于光合生物的新陈代谢,其特点是能够利用光作为能源。最成功的光合作用类型利用了几乎取之不尽的来自水的电子池,但这种氧化作用的驱动因素——阳光,在几个数量级的时间和强度尺度上都会发生变化。能量可用性的这种快速而剧烈的变化对生物系统可能具有毁灭性。为了实现安全高效的光捕获过程,光合生物会调节它们的光捕获、核心复合物与辅助电子介质之间的氧化还原连接、跨膜离子通道以及能量转换细胞器的功能耦合。在这里,微藻物种是最多样化的群体,具有独特的环境适应策略和普遍存在的保护机制。在这篇综述中,我们探讨了一系列微藻光合装置的调节过程,这些过程支持在可变环境中实现顺畅的电子流动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89f1/11314055/a5039633a836/plants-13-02103-g001.jpg

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