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在 77 K 下长时间光照下莱茵衣藻的荧光猝灭的发展。

Development of fluorescence quenching in Chlamydomonas reinhardtii upon prolonged illumination at 77 K.

机构信息

LaserLaB, Department of Physics and Astronomy, Faculty of Science, Vrije Universiteit Amsterdam, De Boelelaan 1081, 1081 HV, Amsterdam, The Netherlands.

出版信息

Photosynth Res. 2018 Sep;137(3):503-513. doi: 10.1007/s11120-018-0534-8. Epub 2018 Jun 13.

Abstract

Low-temperature fluorescence measurements are frequently used in photosynthesis research to assess photosynthetic processes. Upon illumination of photosystem II (PSII) frozen to 77 K, fluorescence quenching is observed. In this work, we studied the light-induced quenching in intact cells of Chlamydomonas reinhardtii at 77 K using time-resolved fluorescence spectroscopy with a streak camera setup. In agreement with previous studies, global analysis of the data shows that prolonged illumination of the sample affects the nanosecond decay component of the PSII emission. Using target analysis, we resolved the quenching on the PSII-684 compartment which describes bulk chlorophyll molecules of the PSII core antenna. Further, we quantified the quenching rate constant and observed that as the illumination proceeds the accumulation of the quencher leads to a speed up of the fluorescence decay of the PSII-684 compartment as the decay rate constant increases from about 3 to 4 ns. The quenching on PSII-684 leads to indirect quenching of the compartments PSII-690 and PSII-695 which represent the red chlorophyll of the PSII core. These results explain past and current observations of light-induced quenching in 77 K steady-state and time-resolved fluorescence spectra.

摘要

低温荧光测量常用于光合作用研究中,以评估光合作用过程。当将光合系统 II(PSII)冷冻至 77 K 时进行光照,会观察到荧光猝灭。在这项工作中,我们使用带有条纹相机装置的时间分辨荧光光谱法,在 77 K 下研究了莱茵衣藻完整细胞中的光诱导猝灭。与先前的研究一致,对数据的全局分析表明,长时间的样品照射会影响 PSII 发射的纳秒衰减分量。使用目标分析,我们解析了 PSII-684 隔室上的猝灭,该隔室描述了 PSII 核心天线的大量叶绿素分子。此外,我们量化了猝灭速率常数,并观察到随着照射的进行,猝灭剂的积累导致 PSII-684 隔室的荧光衰减速度加快,因为衰减速率常数从约 3 增加到 4 ns。PSII-684 上的猝灭导致 PSII-690 和 PSII-695 隔室的间接猝灭,这些隔室代表 PSII 核心的红色叶绿素。这些结果解释了过去和当前在 77 K 稳态和时间分辨荧光光谱中观察到的光诱导猝灭。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/677a/6182390/d624a6771a50/11120_2018_534_Fig1_HTML.jpg

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