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Recent advances in understanding the molecular mechanism of chloroplast photorelocation movement

机译:叶绿体光定位运动分子机制的最新研究进展

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摘要

Plants are photosynthetic organisms that have evolved unique systems to adapt fluctuating environmental light conditions. In addition to well-known movement responses such as phototropism, stomatal opening, and nastic leaf movements, chloroplast photorelocation movement is one of the essential cellular responses to optimize photosynthetic ability and avoid photodamage. For these adaptations, chloroplasts accumulate at the areas of cells illuminated with low light (called accumulation response), while they scatter from the area illuminated with strong light (called avoidance response). Plant-specific photoreceptors (phototropin, phytochrome, and/or neochrome) mediate these dynamic directional movements in response to incident light position and intensity. Several factors involved in the mechanisms underlying the processes from light perception to actin-based movements have also been identified through molecular genetic approach. This review aims to discuss recent findings in the field relating to how chloroplasts move at molecular levels. This article is part of a Special Issue entitled: Dynamic and ultrastructure of bioenergetic membranes and their components.
机译:植物是光合生物,已经进化出独特的系统来适应不断变化的环境光条件。除了众所周知的运动响应,例如光致向性,气孔打开和鼻叶运动之外,叶绿体光复运动是优化光合能力和避免光损伤的重要细胞响应之一。对于这些适应,叶绿体聚集在弱光照射的细胞区域(称为累积响应),而它们从强光照射的区域散射(称为回避响应)。特定于植物的感光体(光蛋白,植物色素和/或新色素)响应入射光的位置和强度来介导这些动态的定向运动。还已经通过分子遗传学方法确定了涉及从光感知到基于肌动蛋白的运动过程背后的机制的几个因素。这篇综述旨在讨论该领域中有关叶绿体如何在分子水平上移动的最新发现。本文是名为“生物能膜及其组件的动态和超微结构”的特刊的一部分。

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