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Kinetic Mechanisms of Biological Regulation in Photosynthetic Organisms

机译:光合生物中生物调节的动力学机制

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摘要

Principles of regulation on different levels of photosynthetic apparatus are discussed. Mathematical models of isolated photosynthetic reaction centers and general system of energy transduction in chloroplast are developed. A general approach to model these complex metabolic systems is suggested. Regulatory mechanisms in plant cell are correlated with the different patterns of fluorescence induction curve at different internal physiological states of the cells and external (environmental) conditions. Light regulation inside photosynthetic reaction centers, diffusion processes in thylakoid membrane, generation of transmembrane electrochemical potential, coupling with processes of CO2 fixation in Calvin Cycle are considered as stages of control of energy transformation in chloroplasts in their connection with kinetic patterns of fluorescence induction curves and other spectrophotometric data.
机译:讨论了在不同水平的光合作用装置上的调节原理。建立了孤立的光合作用反应中心的数学模型和叶绿体中能量转换的一般系统。建议了对这些复杂的代谢系统建模的通用方法。植物细胞中的调节机制与在细胞的不同内部生理状态和外部(环境)条件下的荧光诱导曲线的不同模式相关。光合作用中心的光调节,类囊体膜中的扩散过程,跨膜电化学势的产生,加尔文循环中CO2固定过程的耦合被认为是叶绿体能量转化控制的阶段,它们与荧光诱导曲线的动力学模式有关。其他分光光度数据。

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