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Zeaxanthin and the Induction and Relaxation Kinetics of the Dissipation of Excess Excitation Energy in Leaves in 2% O2, 0% CO21

机译:玉米黄质和2%O2、0%CO21中叶片过量激发能耗散的诱导和弛豫动力学

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摘要

The relationship between the carotenoid zeaxanthin, formed by violaxanthin de-epoxidation, and nonphotochemical fluorescence quenching (qNP) in the light was investigated in leaves of Glycine max during a transient from dark to light in 2% O2, 0% CO2 at 100 to 200 micromoles of photons per square meter per second. (a) Up to a qNP (which can vary between 0 and 1) of about 0.7, the zeaxanthin content of leaves was linearly correlated with qNP as well as with the rate constant for radiationless energy dissipation in the antenna chlorophyll (kD). Beyond this point, at very high degrees of fluorescence quenching, only kD was directly proportional to the zeaxanthin content. (b) The relationship between zeaxanthin and kD was quantitatively similar for the rapidly relaxing quenching induced in 2% O2, 0% CO2 at 200 micromoles of photons per square meter per second and for the sustained quenching induced by long-term exposure of Nerium oleander to drought in high light (B Demmig, K Winter, A Krüger, F-C Czygan [1988] Plant Physiol 87: 17-24). These findings suggest that the same dissipation process may be induced by very different treatments and that this particular dissipation process can have widely different relaxation kinetics. (c) A rapid induction of strong nonphotochemical fluorescence quenching within about 1 minute was observed exclusively in leaves which already contained a background level of zeaxanthin.
机译:在2%O2、0%CO2中从100%到200%的暗到亮过渡期间,研究了大豆大豆叶片中由紫黄质脱环氧化形成的类胡萝卜素玉米黄质与光中非光化学荧光猝灭(qNP)之间的关系。每平方米每秒的微摩尔光子。 (a)直到大约0.7的qNP(可以在0和1之间变化),叶中的玉米黄质含量与qNP以及天线叶绿素(kD)中无辐射能量耗散的速率常数线性相关。超过这一点,在非常高的荧光猝灭度下,只有kD与玉米黄质含量成正比。 (b)玉米黄质与kD的关系在数量上相似,即在2%O2、0%CO2中以每秒200微摩尔的光子/平方米/秒诱导的快速弛豫淬灭以及长期暴露于夹竹桃夹心引起的持续淬灭在强光下干旱(B Demmig,K Winter,AKrüger,FC Czygan [1988] Plant Physiol 87:17-24)。这些发现表明,相同的耗散过程可以通过非常不同的处理来诱发,并且这种特定的耗散过程可以具有截然不同的弛豫动力学。 (c)仅在已经含有玉米黄质背景水平的叶子中,仅在约1分钟内观察到快速诱导强烈的非光化学荧光猝灭。

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