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Organisation and regulation of the cytoskeleton in plant programmed cell death.

机译:植物程序性细胞死亡中细胞骨架的组织和调节。

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Programmed cell death (PCD) involves precise integration of cellular responses to extracellular and intracellular signals during both stress and development. In recent years much progress in our understanding of the components involved in PCD in plants has been made. Signalling to PCD results in major reorganisation of cellular components. The plant cytoskeleton is known to play a major role in cellular organisation, and reorganization and alterations in its dynamics is a well known consequence of signalling. There are considerable data that the plant cytoskeleton is reorganised in response to PCD, with remodelling of both microtubules and microfilaments taking place. In the majority of cases, the microtubule network depolymerises, whereas remodelling of microfilaments can follow two scenarios, either being depolymerised and then forming stable foci, or forming distinct bundles and then depolymerising. Evidence is accumulating that demonstrate that these cytoskeletal alterations are not just a consequence of signals mediating PCD, but that they also may have an active role in the initiation and regulation of PCD. Here we review key data from higher plant model systems on the roles of the actin filaments and microtubules during PCD and discuss proteins potentially implicated in regulating these alterations.
机译:程序性细胞死亡(PCD)涉及应激和发育过程中细胞对细胞外和细胞内信号的反应的精确整合。近年来,在我们对植物中PCD涉及的成分的理解上取得了很大进步。向PCD发出信号会导致细胞成分的重大重组。已知植物细胞骨架在细胞组织中起主要作用,其动力学的重组和改变是信号转导的众所周知的结果。有大量数据表明,随着微管和微丝的重塑,植物细胞骨架会响应PCD而重组。在大多数情况下,微管网络会解聚,而微丝的重塑可以遵循两种情况:解聚然后形成稳定的焦点,或形成不同的束然后解聚。越来越多的证据表明,这些细胞骨架的改变不仅是介导PCD的信号的结果,而且它们在PCD的启动和调节中也可能起积极作用。在这里,我们回顾了来自高等植物模型系统的关键数据,这些数据涉及肌动蛋白丝和微管在PCD期间的作用,并讨论了可能参与调节这些改变的蛋白质。

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