光合作用中的光诱导过程--从飞秒到秒。

IF 2.9 3区 生物学 Q2 PLANT SCIENCES Photosynthesis Research Pub Date : 2024-03-01 Epub Date: 2024-03-12 DOI:10.1007/s11120-024-01090-w
Harvey J M Hou, Suleyman I Allakhverdiev
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引用次数: 0

摘要

光合作用滋养着地球上几乎所有的生命。因此,深入了解太阳光转化为储存化学能的过程是基础科学研究面临的一项重要且持续的挑战。本特刊旨在纪念弗拉基米尔-舒瓦洛夫院士(1943-2022)。我们很高兴在本特刊中推出 15 篇手稿,包括 2 篇评论文章和 13 篇研究论文。这些论文由来自 8 个国家的 67 位作者撰写,包括中国(9 篇)、德国(8 篇)、匈牙利(4 篇)、意大利(6 篇)、日本(2 篇)、俄罗斯(24 篇)、台湾(9 篇)和美国(5 篇)。本特刊提供了光合作用初始步骤动力学方面的一些最新研究成果,包括激发能量转移、电子传输以及从飞秒到秒的时域能量耗散。我们希望读者能从本特刊中介绍的 Shuvalov 教授的研究成果中获益匪浅。我们希望本特刊能为激发研究工作、启动潜在合作以及促进光合作用领域的新方向提供宝贵的资源。
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Photo-induced processes in photosynthesis-from femtoseconds to seconds.

Photosynthesis nourishes nearly all life on Earth. Therefore, a deeper understanding of the processes by which sunlight is converted into stored chemical energy presents an important and continuing challenge for fundamental scientific research. This Special Issue is dedicated to academician Vladimir A. Shuvalov (1943-2022). We are delighted to present 15 manuscripts in the Special Issue, including two review articles and 13 research papers. These papers are contributed by 67 authors from 8 countries, including China (9), Germany (8), Hungary (4), Italy (6), Japan (2), Russia (24), Taiwan (9), and USA (5). This Special Issue provides some of the recent updates on the dynamical aspects of the initial steps of photosynthesis, including excitation energy transfer, electron transport, and dissipation of energy across time domains from femtoseconds to seconds. We hope that the readers will benefit from the work presented in this Special Issue in honor of Prof. Shuvalov in many ways. We hope that the Special Issue will provide a valued resource to stimulate research efforts, initiate potential collaboration, and promote new directions in the photosynthesis community.

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来源期刊
Photosynthesis Research
Photosynthesis Research 生物-植物科学
CiteScore
6.90
自引率
8.10%
发文量
91
审稿时长
4.5 months
期刊介绍: Photosynthesis Research is an international journal open to papers of merit dealing with both basic and applied aspects of photosynthesis. It covers all aspects of photosynthesis research, including, but not limited to, light absorption and emission, excitation energy transfer, primary photochemistry, model systems, membrane components, protein complexes, electron transport, photophosphorylation, carbon assimilation, regulatory phenomena, molecular biology, environmental and ecological aspects, photorespiration, and bacterial and algal photosynthesis.
期刊最新文献
Tribute to Kenneth Sauer (1931-2022): a mentor, a role-model, and an inspiration to all in the field of photosynthesis. Editorial for the Special Issue 'Energy Conversion Reactions in Natural and Artificial Photosynthesis': A Tribute to Ken Sauer. Bicarbonate is a key regulator but not a substrate for O2 evolution in Photosystem II. Mg2+ limitation leads to a decrease in chlorophyll, resulting in an unbalanced photosynthetic apparatus in the cyanobacterium Synechocytis sp. PCC6803. Effects of drought and moisture stress on the growth and ecophysiological traits of Schima superba seedlings.
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