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Evidence for direct carotenoid involvement in the regulation of photosynthetic light harvesting.

机译:直接类胡萝卜素参与光合作用光收获调节的证据。

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Nonphotochemical quenching (NPQ) refers to a process that regulates photosynthetic light harvesting in plants as a response to changes in incident light intensity. By dissipating excess excitation energy of chlorophyll molecules as heat, NPQ balances the input and utilization of light energy in photosynthesis and protects the plant against photooxidative damage. To understand the physical mechanism of NPQ, we have performed femtosecond transient absorption experiments on intact thylakoid membranes isolated from spinach and transgenic Arabidopsis thaliana plants. These plants have well defined quenching capabilities and distinct contents of xanthophyll (Xan) cycle carotenoids. The kinetics probed in the spectral region of the S(1) --> S(n) transition of Xans (530-580 nm) were found to be significantly different under the quenched and unquenched conditions, corresponding to maximum and no NPQ, respectively. The lifetime and the spectral characteristics indicate that the kinetic difference originated fromthe involvement of the S(1) state of a specific Xan, zeaxanthin, in the quenched case.
机译:非光化学猝灭(NPQ)是指调节植物光合作用的光吸收过程,以响应入射光强度的变化。通过耗散叶绿素分子的过量激发能作为热量,NPQ平衡了光合作用中光能的输入和利用,并保护了植物免受光氧化损害。为了了解NPQ的物理机制,我们对分离自菠菜和转基因拟南芥植物的完整类囊体膜进行了飞秒瞬态吸收实验。这些植物具有明确定义的猝灭能力和不同的叶黄素(Xan)周期类胡萝卜素含量。发现在Xans(530-580 nm)的S(1)-> S(n)跃迁的光谱区域中探查的动力学在淬灭和非淬灭条件下显着不同,分别对应于最大和没有NPQ 。寿命和光谱特性表明,动力学差异源自淬灭情况下特定Xan(玉米黄质)的S(1)状态的参与。

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