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光合光反应——基础生产与植物免疫信号传导中的一个可调节枢纽

Photosynthetic light reactions--an adjustable hub in basic production and plant immunity signaling.

作者信息

Kangasjärvi Saijaliisa, Tikkanen Mikko, Durian Guido, Aro Eva-Mari

机构信息

Molecular Plant Biology, University of Turku, FI-20014 Turku, Finland.

Molecular Plant Biology, University of Turku, FI-20014 Turku, Finland.

出版信息

Plant Physiol Biochem. 2014 Aug;81:128-34. doi: 10.1016/j.plaphy.2013.12.004. Epub 2013 Dec 14.

Abstract

Photosynthetic efficiency is a key trait that influences the sustainable utilization of plants for energy and nutrition. By now, extensive research on photosynthetic processes has underscored important structural and functional relationships among photosynthetic thylakoid membrane protein complexes, and their roles in determining the productivity and stress resistance of plants. Photosystem II photoinhibition-repair cycle, for example, has arisen vital in protecting also Photosystem I against light-induced damage. Availability of highly sophisticated genetic, biochemical and biophysical tools has greatly expanded the catalog of components that carry out photoprotective functions in plants. On thylakoid membranes, these components encompass a network of overlapping systems that allow delicate regulation of linear and cyclic electron transfer pathways, balancing of excitation energy distribution between the two photosystems and dissipation of excess light energy in the antenna system as heat. An increasing number of reports indicate that the above mentioned mechanisms also mediate important functions in the regulation of biotic stress responses in plants. Particularly the handling of excitation energy in the light harvesting II antenna complexes appears central to plant immunity signaling. Comprehensive understanding of the underlying mechanisms and regulatory cross-talk, however, still remain elusive. This review highlights the current understanding of components that regulate the function of photosynthetic light reactions and directly or indirectly also modulate disease resistance in higher plants.

摘要

光合效率是影响植物能源和营养可持续利用的关键特性。到目前为止,对光合过程的广泛研究突出了光合类囊体膜蛋白复合物之间重要的结构和功能关系,以及它们在决定植物生产力和抗逆性方面的作用。例如,光系统II光抑制-修复循环对于保护光系统I免受光诱导损伤也至关重要。高度复杂的遗传、生化和生物物理工具的可用性极大地扩展了植物中执行光保护功能的成分目录。在类囊体膜上,这些成分包括一个重叠系统网络,该网络允许对线性和循环电子传递途径进行精细调节,平衡两个光系统之间的激发能分布,并将天线系统中多余的光能以热的形式耗散。越来越多的报告表明,上述机制在植物生物胁迫反应的调节中也介导重要功能。特别是光捕获II天线复合物中激发能的处理似乎是植物免疫信号传导的核心。然而,对潜在机制和调节相互作用的全面理解仍然难以捉摸。本综述强调了目前对调节光合光反应功能并直接或间接调节高等植物抗病性的成分的理解。

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