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鉴定嗜极红藻 Cyanidioschyzon merolae 中的多种非光化学猝灭过程。

Identification of multiple nonphotochemical quenching processes in the extremophilic red alga Cyanidioschyzon merolae.

机构信息

Department of Biological Sciences, National Sun Yat-sen University, Kaohsiung, 80424, Taiwan.

出版信息

Photosynth Res. 2022 Nov;154(2):125-141. doi: 10.1007/s11120-022-00963-2. Epub 2022 Sep 26.

Abstract

Nonphotochemical quenching acts as a frontline response to prevent excitation energy from reaching the photochemical reaction center of photosystem II before photodamage occurs. Strong fluorescence quenching after merely one multi-turnover saturating light pulse characterizes a unique feature of nonphotochemical quenching in red algae. Several mechanisms underlying red algal nonphotochemical quenching have been proposed, yet which process(es) dominantly account for the strong fluorescence quenching is still under discussion. Here we assessed multiple nonphotochemical quenching processes in the extremophilic red alga Cyanidioschyzon merolae under light pulse and continuous illumination conditions. To assess the nonphotochemical quenching processes that might display different kinetics, fluorescence emission spectra at 77 K were measured after different periods of light treatments, and external fluorophores were added for normalization of the fluorescence level. The phycobilisome- and photosystem II-related nonphotochemical quenching processes were distinguished by light preferentially absorbed by phycobilisomes and photosystems, respectively. Multiple nonphotochemical quenching processes, including the energetic decoupling of phycobilisomes from photosystem II, the energy spillover from phycobilisomes to photosystem I and from photosystem II to photosystem I, were identified along with the previously identified intrinsic quenching within photosystem II. The ability to use multiple nonphotochemical quenching processes appears to maximize the light harvesting efficiency for photochemistry and to provide the flexibility of the energy redistribution between photosystem II and photosystem I. The effect of the various ionophores on the nonphotochemical quenching level suggests that nonphotochemical quenching is modulated by transmembrane gradients of protons and other cations.

摘要

非光化学猝灭作用是一种前沿响应,可以防止激发能量在光化学反应中心发生光破坏之前到达光系统 II。在仅仅一个多周转饱和光脉冲后出现强烈的荧光猝灭,这是红藻中非光化学猝灭的一个独特特征。已经提出了几种红藻非光化学猝灭的机制,但哪种过程(或多个过程)占主导地位仍然存在争议。在这里,我们在强光脉冲和连续光照条件下评估了极端嗜热红藻 Cyanidioschyzon merolae 中的多种非光化学猝灭过程。为了评估可能表现出不同动力学的非光化学猝灭过程,在不同的光处理后测量了在 77 K 时的荧光发射光谱,并添加了外部荧光团以归一化荧光水平。藻胆体和光系统 II 相关的非光化学猝灭过程分别通过藻胆体和光系统优先吸收的光来区分。除了先前在光系统 II 内鉴定出的固有猝灭外,还确定了多种非光化学猝灭过程,包括藻胆体与光系统 II 之间的能量解偶联、藻胆体向光系统 I 和光系统 II 向光系统 I 的能量溢出。能够使用多种非光化学猝灭过程似乎可以最大限度地提高光化学的光捕获效率,并提供在光系统 II 和光系统 I 之间能量再分配的灵活性。各种离液剂对非光化学猝灭水平的影响表明,非光化学猝灭受到质子和其他阳离子跨膜梯度的调节。

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