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叶绿体在叶片衰老过程中的解体。

Chloroplast dismantling in leaf senescence.

机构信息

Instituto de Bioquímica Vegetal y Fotosíntesis, Universidad de Sevilla and Consejo Superior de Investigaciones Científicas, Avda. Américo Vespucio 49, 41092-Sevilla, Spain.

出版信息

J Exp Bot. 2021 Aug 11;72(16):5905-5918. doi: 10.1093/jxb/erab200.

Abstract

In photosynthetic plant cells, chloroplasts act as factories of metabolic intermediates that support plant growth. Chloroplast performance is highly influenced by environmental cues. Thus, these organelles have the additional function of sensing ever changing environmental conditions, thereby playing a key role in harmonizing the growth and development of different organs and in plant acclimation to the environment. Moreover, chloroplasts constitute an excellent source of metabolic intermediates that are remobilized to sink tissues during senescence so that chloroplast dismantling is a tightly regulated process that plays a key role in plant development. Stressful environmental conditions enhance the generation of reactive oxygen species (ROS) by chloroplasts, which may lead to oxidative stress causing damage to the organelle. These environmental conditions trigger mechanisms that allow the rapid dismantling of damaged chloroplasts, which is crucial to avoid deleterious effects of toxic by-products of the degradative process. In this review, we discuss the effect of redox homeostasis and ROS generation in the process of chloroplast dismantling. Furthermore, we summarize the structural and biochemical events, both intra- and extraplastid, that characterize the process of chloroplast dismantling in senescence and in response to environmental stresses.

摘要

在光合作用的植物细胞中,叶绿体是代谢中间产物的工厂,为植物的生长提供支持。叶绿体的性能受环境信号的高度影响。因此,这些细胞器具有感知不断变化的环境条件的额外功能,从而在协调不同器官的生长和发育以及植物适应环境方面发挥着关键作用。此外,叶绿体是代谢中间产物的极好来源,这些中间产物在衰老过程中被重新转移到汇组织中,因此,叶绿体解体是一个受到严格调控的过程,在植物发育中起着关键作用。胁迫环境条件会增强叶绿体产生活性氧(ROS)的能力,这可能导致氧化应激,从而对细胞器造成损伤。这些环境条件会触发允许快速解体受损叶绿体的机制,这对于避免降解过程中有毒副产物的有害影响至关重要。在这篇综述中,我们讨论了氧化还原平衡和 ROS 生成对叶绿体解体过程的影响。此外,我们总结了衰老和响应环境胁迫时叶绿体解体过程中质体内外的结构和生化事件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e956/8760853/ca501e2bb3d2/erab200_fig1.jpg

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