首页> 美国卫生研究院文献>Biophysical Journal >Theory of fluorescence induction in photosystem II: derivation of analytical expressions in a model including exciton-radical-pair equilibrium and restricted energy transfer between photosynthetic units.
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Theory of fluorescence induction in photosystem II: derivation of analytical expressions in a model including exciton-radical-pair equilibrium and restricted energy transfer between photosynthetic units.

机译:光系统II中的荧光诱导理论:模型的分析表达式的推导包括激子-自由基对平衡和光合作用单元之间有限的能量转移。

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摘要

The theoretical relationships between the fluorescence and photochemical yields of PS II and the fraction of open reaction centers are examined in a general model endowed with the following features: i) a homogeneous, infinite PS II domain; ii) exciton-radical-pair equilibrium; and iii) different rates of exciton transfer between core and peripheral antenna beds. Simple analytical relations are derived for the yields and their time courses in induction experiments. The introduction of the exciton-radical-pair equilibrium, for both the open and closed states of the trap, is shown to be equivalent to an irreversible trapping scheme with modified parameters. Variation of the interunit transfer rate allows continuous modulation from the case of separated units to the pure lake model. Broadly used relations for estimating the relative amount of reaction centers from the complementary area of the fluorescence kinetics or the photochemical yield from fluorescence levels are examined in this framework. Their dependence on parameters controlling exciton decay is discussed, allowing assessment of their range of applicability. An experimental induction curve is analyzed, with a discussion of its decomposition into alpha and beta contributions. The sigmoidicity of the induction kinetics is characterized by a single parameter J related to Joliot's p, which is shown to depend on both the connectivity of the photosynthetic units and reaction center parameters. On the other hand, the relation between J and the extreme fluorescence levels (or the deviation from the linear Stern-Volmer dependence of 1/phi f on the fraction of open traps) is controlled only by antenna connectivity. Experimental data are consistent with a model of connected units for PS II alpha, intermediate between the pure lake model of unrestricted exciton transfer and the isolated units model.
机译:在具有以下特征的通用模型中检查了PS II的荧光和光化学产率与开放反应中心的比例之间的理论关系:i)均匀,无限的PS II结构域; ii)激子-自由基对平衡; iii)核心天线床与外围天线床之间的激子传输速率不同。在感应实验中得出了产量及其时间过程的简单分析关系。对于阱的打开和关闭状态,激子-自由基对平衡的引入被认为等效于具有修改参数的不可逆俘获方案。单元间传输速率的变化允许从分离单元到纯色湖模型的连续调制。在此框架中检查了广泛使用的关系,这些关系用于从荧光动力学的互补区域估算反应中心的相对数量,或从荧光水平估算光化学产率。讨论了它们对控制激子衰减的参数的依赖性,从而可以评估其适用范围。分析了实验感应曲线,并讨论了其分解为α和β贡献的情况。感应动力学的适度性是由与乔利奥特p有关的单个参数J来表征的,该参数显示出既取决于光合作用单元的连通性又取决于反应中心参数。另一方面,J与极端荧光水平之间的关系(或偏离开放性陷阱的分数与1 / phi f的线性斯特恩-沃尔默相关性的偏差)仅由天线连通性控制。实验数据与PS II alpha的连接单元模型一致,介于无限制激子转移的纯湖模型和孤立单元模型之间。

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