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六十年与光合作用及相关过程的不解之缘:非正式的个人视角。

A sixty-year tryst with photosynthesis and related processes: an informal personal perspective.

机构信息

Department of Plant Biology, Department of Biochemistry, Center of Biophysics and Quantitative Biology, University of Illinois at Urbana-Champaign, Urbana, IL, 61801, USA.

出版信息

Photosynth Res. 2019 Mar;139(1-3):15-43. doi: 10.1007/s11120-018-0590-0. Epub 2018 Oct 20.

Abstract

After briefly describing my early collaborative work at the University of Allahabad, that had laid the foundation of my research life, I present here some of our research on photosynthesis at the University of Illinois at Urbana-Champaign, randomly selected from light absorption to NADP reduction in plants, algae, and cyanobacteria. These include the fact that (i) both the light reactions I and II are powered by light absorbed by chlorophyll (Chl) a of different spectral forms; (ii) light emission (fluorescence, delayed fluorescence, and thermoluminescence) by plants, algae, and cyanobacteria provides detailed information on these reactions and beyond; (iii) primary photochemistry in both the photosystems I (PS I) and II (PS II) occurs within a few picoseconds; and (iv) most importantly, bicarbonate plays a unique role on the electron acceptor side of PS II, specifically at the two-electron gate of PS II. Currently, the ongoing research around the world is, and should be, directed towards making photosynthesis better able to deal with the global issues (such as increasing population, dwindling resources, and rising temperature) particularly through genetic modification. However, basic research is necessary to continue to provide us with an understanding of the molecular mechanism of the process and to guide us in reaching our goals of increasing food production and other chemicals we need for our lives.

摘要

在简要描述了我在印度阿拉哈巴德大学的早期合作工作之后,这些工作为我的研究生涯奠定了基础,我在这里介绍了我们在伊利诺伊大学厄巴纳-香槟分校的一些光合作用研究,这些研究是随机选择的,从植物、藻类和蓝细菌的光吸收到 NADP 还原。其中包括以下事实:(i) 光反应 I 和 II 都由不同光谱形式的叶绿素 (Chl) a 吸收的光提供动力;(ii) 植物、藻类和蓝细菌的光发射(荧光、延迟荧光和热致发光)提供了关于这些反应及其他反应的详细信息;(iii) 在两个光系统 I (PS I) 和 II (PS II) 中,初级光化学都在几皮秒内发生;(iv) 最重要的是,碳酸氢盐在 PS II 的电子受体侧,特别是在 PS II 的两电子门,起着独特的作用。目前,全世界正在进行的研究应该旨在使光合作用能够更好地应对全球问题(例如人口增长、资源减少和气温上升),特别是通过基因改造。然而,基础研究是必要的,以继续为我们提供对该过程的分子机制的理解,并指导我们实现增加粮食生产和其他我们生活所需化学品的目标。

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