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植物防御反应和过敏性细胞死亡过程中细胞骨架和液泡的动态细胞内重排。

Dynamic intracellular reorganization of cytoskeletons and the vacuole in defense responses and hypersensitive cell death in plants.

机构信息

Department of Integrated Biosciences, Graduate School of Frontier Sciences, The University of Tokyo, Kashiwanoha, Kashiwa, Chiba, 277-8562, Japan.

出版信息

J Plant Res. 2011 May;124(3):315-24. doi: 10.1007/s10265-011-0408-z. Epub 2011 Mar 16.

Abstract

Plants have evolved various means for controlled and organized cell destruction, known as programmed cell death (PCD). In plant immune responses against microbial infection, hypersensitive cell death as a form of PCD is a crucial event to prevent the spread of biotrophic pathogens. Recent live cell imaging techniques have revealed dynamic features and significant roles of cytoskeletons and the vacuole during defense responses and the PCD. Actin microfilaments (MFs) focus on the infection sites and function as tracks for the polar transport of antimicrobial materials. To accomplish hypersensitive cell death, further dynamic changes in cytoskeletons are induced. MFs play a role in the structural and functional regulation of the vacuole, leading to execution of the PCD. We here overview spatiotemporal dynamic changes in the cytoskeletons and the vacuoles triggered by signals from pathogens, and propose a hypothetical model for MF-regulated vacuole-mediated PCD in plant immunity.

摘要

植物进化出了各种控制和组织细胞死亡的方法,称为程序性细胞死亡(PCD)。在植物对微生物感染的免疫反应中,作为 PCD 形式的过敏性细胞死亡是防止生物营养病原体传播的关键事件。最近的活细胞成像技术揭示了细胞骨架和液泡在防御反应和 PCD 过程中的动态特征和重要作用。肌动蛋白微丝(MFs)集中在感染部位,并作为抗菌物质极性运输的轨道。为了完成过敏性细胞死亡,细胞骨架会发生进一步的动态变化。MFs 在液泡的结构和功能调节中发挥作用,导致 PCD 的执行。在这里,我们概述了由病原体信号触发的细胞骨架和液泡的时空动态变化,并提出了一个假设模型,用于解释 MF 调节的液泡介导的植物免疫中的 PCD。

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