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热激胁迫下拟南芥根表皮细胞中细胞骨架的细胞类型特异性破坏与恢复

Cell-type-specific disruption and recovery of the cytoskeleton in Arabidopsis thaliana epidermal root cells upon heat shock stress.

作者信息

Müller J, Menzel D, Samaj J

机构信息

Institute of Cellular and Molecular Botany, University of Bonn, Bonn, Federal Republic of Germany.

出版信息

Protoplasma. 2007;230(3-4):231-42. doi: 10.1007/s00709-006-0239-2. Epub 2007 Apr 24.

Abstract

The cytoskeleton in plant cells plays an important role in controlling cell shape and mediating intracellular signalling. However, almost nothing is known about the reactions of cytoskeletal elements to heat stress, which represents one of the major environmental challenges for plants. Here we show that living epidermal root cells of Arabidopsis thaliana could cope with short-term heat shock stress showing disruption and subsequent recovery of microtubules and actin microfilaments in a time-dependent manner. Time-lapse imaging revealed a very dynamic behavior of both cytoskeletal elements including transient depolymerization and disassembly upon heat shock (40-41 degrees C) followed by full recovery at room temperature (20 degrees C) within 1-3 h. Reaction of microtubules, but not actin filaments, to heat shock was dependent on cell type and developmental stage. On the other hand, recovery of actin filaments, but not microtubules, from heat shock stress was dependent on the same parameters. The relevance of this adaptive cytoskeletal behavior to intracellular signalling is discussed.

摘要

植物细胞中的细胞骨架在控制细胞形状和介导细胞内信号传导方面发挥着重要作用。然而,对于细胞骨架成分对热胁迫的反应,人们几乎一无所知,而热胁迫是植物面临的主要环境挑战之一。在这里,我们表明拟南芥的活表皮根细胞能够应对短期热休克胁迫,微管和肌动蛋白微丝会以时间依赖的方式出现破坏并随后恢复。延时成像揭示了两种细胞骨架成分的非常动态的行为,包括热休克(40-41摄氏度)时的瞬时解聚和拆卸,随后在室温(20摄氏度)下1-3小时内完全恢复。微管而非肌动蛋白丝对热休克的反应取决于细胞类型和发育阶段。另一方面,肌动蛋白丝而非微管从热休克胁迫中的恢复取决于相同的参数。本文讨论了这种适应性细胞骨架行为与细胞内信号传导的相关性。

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