首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >The fine tuning of carotenoid-chlorophyll interactions in light-harvesting complexes: an important requisite to guarantee efficient photoprotection via triplet-triplet energy transfer in the complex balance of the energy transfer processes
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The fine tuning of carotenoid-chlorophyll interactions in light-harvesting complexes: an important requisite to guarantee efficient photoprotection via triplet-triplet energy transfer in the complex balance of the energy transfer processes

机译:光收集复合物中类胡萝卜素 - 叶绿素相互作用的微调:通过三重态 - 三重态能量转移在能量转移过程的复杂平衡中保证高效光保护的重要必要条件

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摘要

Triplet-triplet energy transfer (TTET) from the chlorophyll to the carotenoid triplet state is the process exploited by photosynthetic systems to protect themselves from singlet oxygen formation under light-stress conditions. A deep comprehension of the molecular strategies adopted to guarantee TTET efficiency, while at the same time maintaining minimal energy loss and efficient light-harvesting capability, is still lacking. The paramagnetic nature of the triplet state makes electron paramagnetic resonance (EPR) the method of choice when investigating TTET. In this review, we focus on our extended comparative study of two photosynthetic antenna complexes, the Peridinin-chlorophyll a-protein of dinoflagellates and the light-harvesting complex II of higher plants, in order to point out important aspects of the molecular design adopted in the photoprotection strategy. We have demonstrated that a proper analysis of the EPR data allows one to identify the pigments involved in TTET and, consequently, gain an insight into the structure of the photoprotective sites. The structural information has been complemented by a detailed description of the electronic structure provided by hyperfine spectroscopy. All these elements represent the fundamental building blocks toward a deeper understanding of the requirements for efficient photoprotection, which is fundamental to guarantee the prolonged energy conversion action of photosynthesis.
机译:从叶绿素到类胡萝卜素三重态状态的三重态 - 三联能能量转移(TTET)是光合系统利用的过程,以保护自己在亮应力条件下保护自己免受单线态氧形成。深入理解采用的分子策略来保证TTET效率,同时仍然缺乏保持最小的能量损失和有效的光收获能力。三重态状态的顺磁性使电子顺磁共振(EPR)在研究TTET时的选择方法。在本次综述中,我们专注于我们对两个光合天线复合物的扩展比较研究,Dinoflagelates的果皮叶绿素A-蛋白和高等植物的光收获复合物II,以指出所采用的分子设计的重要方面光保护策略。我们已经证明了对EPR数据的适当分析允许人们识别TTET中涉及的颜料,因此,深入了解光保护部位的结构。通过高血清光谱提供的电子结构的详细描述,已经补充了结构信息。所有这些元素都代表了对更深入了解高效光保护的要求的基本构建块,这是保证光合作用延长的能量转换作用的基础。

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