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对藻类和高等植物光合作用适应性的全系统理解。

A systems-wide understanding of photosynthetic acclimation in algae and higher plants.

作者信息

Moejes Fiona Wanjiku, Matuszynska Anna, Adhikari Kailash, Bassi Roberto, Cariti Federica, Cogne Guillaume, Dikaios Ioannis, Falciatore Angela, Finazzi Giovanni, Flori Serena, Goldschmidt-Clermont Michel, Magni Stefano, Maguire Julie, Le Monnier Adeline, Müller Kathrin, Poolman Mark, Singh Dipali, Spelberg Stephanie, Stella Giulio Rocco, Succurro Antonella, Taddei Lucilla, Urbain Brieuc, Villanova Valeria, Zabke Claudia, Ebenhöh Oliver

机构信息

Cluster of Excellence on Plant Sciences (CEPLAS), Institute of Quantitative and Theoretical Biology, Heinrich Heine University Düsseldorf, Germany.

Bantry Marine Research Station, Gearhies, Bantry, Co. Cork, Ireland P75 AX07.

出版信息

J Exp Bot. 2017 May 17;68(11):2667-2681. doi: 10.1093/jxb/erx137.

Abstract

The ability of phototrophs to colonise different environments relies on robust protection against oxidative stress, a critical requirement for the successful evolutionary transition from water to land. Photosynthetic organisms have developed numerous strategies to adapt their photosynthetic apparatus to changing light conditions in order to optimise their photosynthetic yield, which is crucial for life on Earth to exist. Photosynthetic acclimation is an excellent example of the complexity of biological systems, where highly diverse processes, ranging from electron excitation over protein protonation to enzymatic processes coupling ion gradients with biosynthetic activity, interact on drastically different timescales from picoseconds to hours. Efficient functioning of the photosynthetic apparatus and its protection is paramount for efficient downstream processes, including metabolism and growth. Modern experimental techniques can be successfully integrated with theoretical and mathematical models to promote our understanding of underlying mechanisms and principles. This review aims to provide a retrospective analysis of multidisciplinary photosynthetic acclimation research carried out by members of the Marie Curie Initial Training Project, AccliPhot, placing the results in a wider context. The review also highlights the applicability of photosynthetic organisms for industry, particularly with regards to the cultivation of microalgae. It intends to demonstrate how theoretical concepts can successfully complement experimental studies broadening our knowledge of common principles in acclimation processes in photosynthetic organisms, as well as in the field of applied microalgal biotechnology.

摘要

光合生物定殖于不同环境的能力依赖于对氧化应激的强大保护,这是从水生到陆生成功进化转变的关键要求。光合生物已开发出多种策略来使其光合装置适应不断变化的光照条件,以优化光合产量,而这对地球上生命的存在至关重要。光合适应是生物系统复杂性的一个绝佳例子,其中从电子激发到蛋白质质子化,再到将离子梯度与生物合成活性耦合的酶促过程等高度多样的过程,在从皮秒到小时的截然不同的时间尺度上相互作用。光合装置的高效运作及其保护对于包括代谢和生长在内的高效下游过程至关重要。现代实验技术可以成功地与理论和数学模型相结合,以增进我们对潜在机制和原理的理解。本综述旨在对玛丽·居里初始培训项目“光合适应”(AccliPhot)成员开展的多学科光合适应研究进行回顾性分析,并将结果置于更广泛的背景中。该综述还强调了光合生物在工业上的适用性,特别是在微藻培养方面。它旨在展示理论概念如何能够成功地补充实验研究,拓宽我们对光合生物适应过程以及应用微藻生物技术领域共同原理的认识。

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