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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Changes in the Energy Transfer Pathways within Photosystem II Antenna Induced by Xanthophyli Cycle Activity
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Changes in the Energy Transfer Pathways within Photosystem II Antenna Induced by Xanthophyli Cycle Activity

机译:叶黄素循环活动引起的光系统II天线内能量传递途径的变化

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Energy transfer pathways between photosystem II (PSII) antenna complexes in intact thylakoid membranes have been studied using low-temperature (77 K) excitation fluorescence spectroscopy. The focus of this study was to see whether de-epoxidation of violaxanthin into zeaxanthin causes any alterations in the energetic couplings between the core antenna complexes CP43 and CP47 and the peripheral light-harvesting antenna (LHCII). It was discovered that the appearance of zeaxanthin caused characteristic alterations in the PSII excitation fluorescence spectra in the Soret-band region. While in the dark violaxanthin was found to be largely uncoupled from any emitting chlorophylls, its intensive de-epoxidation resulted in the appearance of two additional bands at 509 and 492 nm. The former was attributed to weak coupling of zeaxanthin to emitters in the CP43 and LHCIl complexes and the latter to efficient coupling of violaxanthin of the CP29 complex to emitters in the CP43, CP47, and LHCIl complexes. The role of CP29-bound violaxanthin is discussed in light of both its efficient energetic coupling and strong physical binding to this complex. The finding that zeaxanthin is energetically coupled to chlorophyll a emitters of the PSII antenna ,is discussed with respect to its suggested role as a quencher involved in photoprotective energy dissipation, or non-photochemical quenching (NPQ), in the photosynthetic membrane.
机译:已使用低温(77 K)激发荧光光谱研究了完整类囊体膜中光系统II(PSII)天线复合体之间的能量转移途径。这项研究的重点是观察紫黄嘌呤的脱环氧化成玉米黄质是否会引起核心天线复合物CP43和CP47与外围光收集天线(LHCII)之间的能量耦合发生任何变化。发现玉米黄质的出现引起了Soret带区域的PSII激发荧光光谱的特征性变化。尽管在黑暗中发现紫堇黄质与任何发出的叶绿素基本不偶联,但其强烈的脱环氧化作用导致在509和492 nm处出现两个附加谱带。前者归因于玉米黄质与CP43和LHCI1复合物中的发光体的弱偶联,而后者归因于CP29复合物的紫黄质与CP43,CP47和LHC11复合体中的发光体的有效偶联。鉴于CP29结合的紫黄质的有效能量耦合和与该复合物的牢固物理结合,讨论了其作用。讨论了玉米黄质与PSII天线的叶绿素a发射体能量耦合的发现,并讨论了其作为光合作用膜中涉及光保护能量耗散或非光化学猝灭(NPQ)的猝灭剂的建议作用。

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