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首页> 外文期刊>Photosynthesis Research: An International Journal >PS II model-based simulations of single turnover flash-induced transients of fluorescence yield monitored within the time domain of 100 ns-10 s on dark-adapted Chlorella pyrenoidosa cells
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PS II model-based simulations of single turnover flash-induced transients of fluorescence yield monitored within the time domain of 100 ns-10 s on dark-adapted Chlorella pyrenoidosa cells

机译:基于PS II模型的暗适应小球藻小球藻在100 ns-10 s的时域内监测单次翻转闪光诱导的荧光产量瞬态的模拟

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The set up described in Steffen et al. (Biochemistry 40:173-180, 2001) was used to monitor in the time domain from 100 ns to 10 s single turnover flash-induced transients of the normalized fluorescence yield (SFITFY) on dark-adapted cells of the thermophilic algae Chlorella pyrenoidosa Chick. Perfect data fit was achieved within the framework of a previously proposed model for the PS II reaction pattern (Lebedeva et al., Biophysics 47:968-980, 2002; Belyaeva et al., Biophysics 51:860-872, 2006) after its modification by taking into account nonradiative decay processes including nonphotochemical quenching due to time-dependent populations of P680(+*) and (3)Car. On the basis of data reported in the literature, a consistent set of rate constants was obtained for electron transfer at the donor and acceptor sides of PS II, pH in lumen and stroma, the initial redox state of plastoquinone pool and the rate of plastoquinone oxidation. The evaluation of the rate constant values of dissipative processes due to quenching by carotenoid triplets in antennae and P680(+*)Q(A) (-*) recombination as well as the initial state populations after excitation with a single laser flash are close to that outlined in (Steffen et al., Biochemistry 44:3123-3133, 2005a). The simulations based on the model of the PS II reaction pattern provide information on the time courses of population probabilities of different PS II states. We analyzed the maximum ([Formula: see text]) and minimum (F (0)) of the normalized FL yield dependence on the rate of the recombination processes (radiative and dissipative nonradiative) and of P680(+*) reduction. The developed PS II model provides a basis for theoretical comparative analyses of time-dependent fluorescence signals, observed at different photosynthetic samples under various conditions (e.g. presence of herbicides, other stress conditions, excitation with actinic pulses of different intensity, and duration).
机译:在Steffen等人中描述的设置。 (Biochemistry 40:173-180,2001)被用于在100 ns到10 s的时域中监测嗜热藻类小球藻Chlorella pyrenoidosa Chick的暗适应细胞上的单个周转快速诱导的归一化荧光产量(SFITFY)的瞬变。 。在先前提出的PS II反应模式模型的框架内(Lebedeva等人,Biophysics 47:968-980,2002; Belyaeva等人,Biophysics 51:860-872,2006),在之前提出的PS II反应模式模型的框架内实现了完美的数据拟合。通过考虑非辐射衰变过程(包括由于时间依赖性的P680(+ *)和(3)Car族引起的非光化学猝灭)进行修饰。根据文献报道的数据,在PS II供体和受体侧的电子转移,管腔和基质的pH,质体醌池的初始氧化还原状态和质体醌氧化速率方面获得了一套一致的速率常数。对天线中类胡萝卜素三联体和P680(+ *)Q(A)(-*)重组的耗散过程的速率常数值的评估以及单个激光闪光灯激发后的初始态种群接近于(Steffen等人,Biochemistry 44:3123-3133,2005a)中概述的方法。基于PS II反应模式模型的模拟提供了有关不同PS II状态的总体概率随时间变化的信息。我们分析了归一化FL产量对重组过程(辐射性和耗散性非辐射性)和P680(+ *)还原速率的依赖性的最大值([公式:请参见文本])和最小值(F(0))。所开发的PS II模型为在不同条件下(例如除草剂的存在,其他胁迫条件,不同强度的光化脉冲激发和持续时间下)在不同光合作用样品上观察到的随时间变化的荧光信号进行理论比较分析提供了基础。

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