光防护重访:遗传和分子方法。

Krishna K. Niyogi
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引用次数: 1924

摘要

在含氧光合作用中,激发和高活性中间体的参与给藻类和植物带来了独特的问题,因为它们可能对光合器官造成氧化损伤。光保护过程防止或减少氧化分子的产生,有效地清除活性氧,修复不可避免的损伤。本文综述了植物和绿藻叶绿体中的几种光保护机制。最近遗传和分子生物学方法的应用为光保护提供了新的见解,特别是在过量吸收光能的热耗散、替代电子传递途径、叶绿体抗氧化系统和光系统II的修复方面。
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PHOTOPROTECTION REVISITED: Genetic and Molecular Approaches.

The involvement of excited and highly reactive intermediates in oxygenic photosynthesis poses unique problems for algae and plants in terms of potential oxidative damage to the photosynthetic apparatus. Photoprotective processes prevent or minimize generation of oxidizing molecules, scavenge reactive oxygen species efficiently, and repair damage that inevitably occurs. This review summarizes several photoprotective mechanisms operating within chloroplasts of plants and green algae. The recent use of genetic and molecular biological approaches is providing new insights into photoprotection, especially with respect to thermal dissipation of excess absorbed light energy, alternative electron transport pathways, chloroplast antioxidant systems, and repair of photosystem II.

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CIRCADIAN RHYTHMS IN PLANTS. MOLECULAR ENGINEERING OF C4 PHOTOSYNTHESIS. ISOPRENE EMISSION FROM PLANTS. CHLAMYDOMONAS AS A MODEL ORGANISM. THE PLASTID DIVISION MACHINE.
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