首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >PsbS-specific zeaxanthin-independent changes in fluorescence emission spectrum as a signature of energy-dependent non-photochemical quenching in higher plants
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PsbS-specific zeaxanthin-independent changes in fluorescence emission spectrum as a signature of energy-dependent non-photochemical quenching in higher plants

机译:PsbS特定玉米黄质的荧光发射光谱变化,是高等植物能量依赖性非光化学猝灭的标志

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摘要

The PsbS protein of photosystem II is necessary for the development of energy-dependent quenching of chlorophyll (Chl) fluorescence (qE), and PsbS-deficient Arabidopsis plant leaves failed to show qE-specific changes in the steady-state 77 K fluorescence emission spectra observed in wild-type leaves. The difference spectrum between the quenched and un-quenched states showed a negative peak at 682 nm. Although the level of qE development in the zeaxanthin-less npq1-2 mutant plants, which lacked violaxanthin de-epoxidase enzyme, was only half that of wild type, there were no noticeable changes in this qE-dependent difference spectrum. This zeaxanthin-independent AF682 signal was not dependent on state transition, and the signal was not due to photobleaching of pigments either. These results suggest that AF682 signal is formed due to PsbS-specific conformational changes in the quenching site of qE and is a new signature of qE generation in higher plants.
机译:光系统II的PsbS蛋白对于叶绿素(Chl)荧光(qE)的能量依赖性猝灭的发展是必需的,并且缺乏PsbS的拟南芥植物叶片未能在稳态77 K荧光发射光谱中显示qE特异性变化在野生型叶片中观察到。淬灭态和非淬灭态之间的差异光谱在682 nm处显示负峰。尽管缺乏玉米黄素的npq1-2突变植物中缺乏紫黄质脱环氧化酶的qE发育水平仅为野生型的一半,但在此qE依赖性差异谱中却没有明显变化。该与玉米黄素无关的AF682信号不依赖于状态转变,该信号也不归因于颜料的光漂白。这些结果表明AF682信号是由于qE的淬灭位点中的PsbS特异性构象变化而形成的,并且是高等植物中qE产生的新标志。

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