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Modeling and simulation of the initial phases of chlorophyll fluorescence from Photosystem II

机译:Photosystem II的叶绿素荧光初始阶段的建模和仿真

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摘要

A simple kinetic model structure for chlorophyll fluorescence (ChlF) from Photosystem II (PSII) offers practical usefulness in quantitative analysis and extraction of information from measured ChlF. In this work, the major PSII phototransduction kinetics was represented with only five state variables. Parameters were estimated through a least-squares algorithm. The developed model structure could produce the well-known OJIP pattern and fit measured ChlF. Influences of PQ pool size, active Q_B sites, and Q_A reduction rate on ChlF emission were simulated and discussed in light of the existing literature.
机译:来自Photosystem II(PSII)的叶绿素荧光(ChlF)的简单动力学模型结构可用于定量分析和从测得的ChlF中提取信息。在这项工作中,主要的PSII光转导动力学仅用五个状态变量表示。通过最小二乘算法估计参数。所开发的模型结构可以产生众所周知的OJIP模式并拟合测得的ChlF。根据现有文献,模拟并讨论了PQ库大小,活动Q_B站点和Q_A减少速率对ChlF排放的影响。

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