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拟南芥中光系统 II 核心复合物的降解与叶绿素降解介导的 Stay-Green Mg 脱螯酶无关。

Degradation of the photosystem II core complex is independent of chlorophyll degradation mediated by Stay-Green Mg dechelatase in Arabidopsis.

机构信息

Institute of Low Temperature Science, Hokkaido University, Sapporo, Japan.

Institute for Sustainable Agro-Ecosystem Services, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, Japan.

出版信息

Plant Sci. 2021 Jun;307:110902. doi: 10.1016/j.plantsci.2021.110902. Epub 2021 Apr 3.

Abstract

During leaf senescence, the degradation of photosystems and photosynthetic pigments proceeds in a coordinated manner, which would minimize the potential photodamage to cells. Both photosystem I and II are composed of core complexes and peripheral antenna complexes, with the former binding chlorophyll a and the latter binding chlorophyll a and b. Although the degradation of peripheral antenna complexes is initiated by chlorophyll degradation, it remains unclear whether the degradation of core complexes and chlorophyll is coordinated. In this study, we examined the degradation of peripheral antenna and core complexes in the Arabidopsis sgr1/sgr2/sgrl triple mutant, lacking all the isoforms of chlorophyll a:Mg dechelatase. In this mutant, the degradation of peripheral antenna complexes and photosystem I core complexes was substantially retarded, but the core complexes of photosystem II were rapidly degraded during leaf senescence. On the contrary, the photosynthetic activity declined at a similar rate as in the wild type plants. These results suggest that the degradation of photosystem II core complexes is regulated independently of the major chlorophyll degradation pathway mediated by the dechelatase. The study should contribute to the understanding of the complex molecular mechanisms underlying the degradation of photosystems, which is an essential step during leaf senescence.

摘要

在叶片衰老过程中,光合系统和光合色素的降解是协调进行的,这可以最大限度地减少细胞潜在的光损伤。光系统 I 和光系统 II 都由核心复合物和外周天线复合物组成,前者结合叶绿素 a,后者结合叶绿素 a 和 b。尽管外周天线复合物的降解是由叶绿素降解引发的,但核心复合物和叶绿素的降解是否协调仍不清楚。在这项研究中,我们研究了拟南芥 sgr1/sgr2/sgrl 三重突变体中,缺乏所有叶绿素 a:Mg 脱镁酶同工型的外周天线和核心复合物的降解。在这个突变体中,外周天线复合物和光系统 I 核心复合物的降解明显受阻,但在叶片衰老过程中,光系统 II 的核心复合物迅速降解。相反,光合作用活性的下降速度与野生型植物相似。这些结果表明,光系统 II 核心复合物的降解是由脱镁酶介导的主要叶绿素降解途径之外的调控机制独立调控的。这项研究有助于理解叶片衰老过程中光合系统降解的复杂分子机制,这是一个关键步骤。

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