Rubin A B, Krendeleva T E
Lomonosov Moskow State University, Moscow, Vorob'evy Gory, 119899 Russia.
Biofizika. 2004 Mar-Apr;49(2):239-53.
The mechanisms of primary processes of photosynthesis and macromolecular conformational changes that control the efficiency of primary energy transformation in photosynthesis are discussed. Special attention is focused on the analysis of chlorophyll fluorescence as an integrated parameter indicative of the efficiency and dynamics of primary steps of photosynthesis. Sharp changes in environmental conditions and other unfavorable factors may lead to the distortions of the coupling between consecutive electron transfer steps. As a result, an excess of electrons and/or electronic excitation energy may form at some sites of the electron transport chain. This may lead to the generation of reactive oxygen species responsible for the subsequent oxidative stress. The results of the application of these data in the areas of biotechnology and ecology are demonstrated.
讨论了光合作用初级过程的机制以及控制光合作用初级能量转化效率的大分子构象变化。特别关注叶绿素荧光分析,它是光合作用初级步骤效率和动态的综合指标。环境条件的急剧变化和其他不利因素可能导致连续电子传递步骤之间耦合的扭曲。结果,电子传输链的某些位点可能形成过量的电子和/或电子激发能。这可能导致活性氧的产生,进而引发氧化应激。展示了这些数据在生物技术和生态学领域应用的结果。