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首页> 外文期刊>Photosynthesis Research: An International Journal >Xanthophyll cycle-dependent nonphotochemical quenching in Photosystem II: Mechanistic insights gained from Arabidopsis thaliana L. mutants that lack violaxanthin deepoxidase activity and/or lutein
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Xanthophyll cycle-dependent nonphotochemical quenching in Photosystem II: Mechanistic insights gained from Arabidopsis thaliana L. mutants that lack violaxanthin deepoxidase activity and/or lutein

机译:叶绿素周期依赖性的非光化学猝灭在光系统II中:从缺乏紫黄质深氧化酶活性和/或叶黄素的拟南芥突变体获得的机理见解

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摘要

This study compares Photosystem II (PS II) chlorophyll(Chl) a fluorescence yield changes of arabidopsis thaliana L. nuclear gene mutants, thoughtfully provided by the authors of Pogson et al. (1998 Proc Natl Acad Sci USA 95. 13324-13329). One single mutant (npq1) inhibits the violaxanthin deepoxidase that converts violaxanthin to antheraxanthin and zeaxanthin. A second single mutant (lut2) inhibits the epsilon -cyclization enzyme step between lycopene and beta,epsilon -carotene causing accumulation of beta,beta -carotene derivatives, primarily the violaxanthin cycle pigments, at the expense of lutein. The double mutant (lut2-npq1) incorporates both lesions. PS II Chi a fluorescence was characterized in leaves and thylakoids using both steady state and time-resolved methods, the intrathylakoid pH was estimated by 9-aminoacridine fluorescence quenching and chloroplast pigments were determined by HPLC. Under maximal PS II Chi a fluorescence intensity conditions without intrathylakoid acidification, the main 2 nanosecond (ns) fluorescence lifetime distribution mode parameters were similar for the WT and mutants both before and after illumination. The light and ATPase mediated intrathylakoid pH levels were also similar and caused similar changes in the fluorescence lifetime distribution widths and centers for the WT and each mutant. The npq1 exhibited low antheraxanthin and zeaxanthin and high violaxanthin levels and the uncoupler-sensitive amplitudes of short (< 1 ns) PS II Chi a fluorescence distribution modes were strongly inhibited compared to the WT. Lutein deficiency coincided with pleiotropic effects on PS II energy dissipation and probably altered conformations of PS II carotenoid-chlorophyll binding proteins. The lut2 exhibited separate active and inactive pools of antheraxanthin and zeaxanthin with respect to all deepoxidation, epoxidation and fluorescence quenching activities. The active xanthophyll cycle pool in lut2 exhibited a lower (35% of WT) concentration efficiency, for a given intrathylakoid pH, to increase the sub-nanosecond distribution amplitudes, which predicts and explains inhibited induction kinetics and fluorescence quenching. The lut2-npq1 mutant exhibited a constant pool of antheraxanthin and zeaxanthin, no deepoxidation and little or no pH-reversible fluorescence decrease. It is concluded that in addition to intrathylakoid acidification, a certain level of zeaxanthin and antheraxanthin (or lutein) is absolutely required for the major reversible component of PS II Chi a fluorescence quenching.
机译:这项研究比较了Photosystem II(PS II)叶绿素(Chl)a拟南芥核基因突变体的荧光产量变化,该研究由Pogson等人的作者提供。 (1998 Proc Natl Acad Sci USA 95.13324-13329)。一个单一的突变体(npq1)抑制紫黄质深氧化酶,该酶将紫黄质转化为花药黄质和玉米黄质。第二个单一突变体(lut2)抑制番茄红素和β,ε-胡萝卜素之间的ε-环化酶步骤,导致β,β-胡萝卜素衍生物(主要是紫黄质循环色素)的积累,但以叶黄素为代价。双重突变体(lut2-npq1)包含两个病变。用稳态和时间分辨方法对叶片和类囊体中的PS II Chi a荧光进行了表征,通过9-氨基ac啶荧光猝灭法估算了类囊体中的pH,并通过HPLC测定了叶绿体色素。在没有类囊体内酸化的最大PS II Chi荧光强度条件下,WT和突变体在照射前和照射后的主要2纳秒(ns)荧光寿命分布模式参数相似。光和ATPase介导的类囊内pH值也相似,并导致WT和每个突变体的荧光寿命分布宽度和中心发生相似的变化。 npq1表现出低的花药黄素和玉米黄质和高的紫黄质水平,并且与WT相比,短(<1 ns)PS II Chi a的解偶联剂敏感幅度被强烈抑制。叶黄素缺乏症与PS II能量耗散的多效性相符,并且可能改变了PS II类胡萝卜素-叶绿素结合蛋白的构象。 lut2在所有的深度氧化,环氧化和荧光猝灭活性方面均显示出分别由花药黄素和玉米黄质组成的活性和非活性库。对于给定的类囊体内pH,lut2中的活性叶黄素循环池显示出较低的( 35%左右)浓度效率,以增加亚纳秒的分布幅度,从而预测并解释了诱导动力学和荧光猝灭的抑制作用。 lut2-npq1突变体显示出恒定的花药黄嘌呤和玉米黄质池,没有深度氧化并且几乎没有或没有pH可逆的荧光降低。结论是,除了类囊体内酸化以外,对于PS II Chi荧光猝灭的主要可逆成分,绝对需要一定水平的玉米黄质和花药黄质(或叶黄素)。

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