肌动蛋白细胞骨架在根细胞发育中的组织和功能。

Elison B Blancaflor, Yuh-Shuh Wang, Christy M Motes
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引用次数: 31

摘要

肌动蛋白细胞骨架是一种高度动态的结构,它在很大程度上通过辅助蛋白介导各种细胞功能,这些辅助蛋白倾斜单体g -肌动蛋白和丝状肌动蛋白(f -肌动蛋白)之间的平衡,或者通过促进肌动蛋白与质膜、微管和其他细胞器之间的相互作用。由于根的解剖结构简单,并且根毛等根细胞类型易于显微镜分析,因此成为研究植物发育过程中肌动蛋白的一个有吸引力的模型。根还表现出显著的发育可塑性,并拥有易于操纵的微妙感觉系统,因此人们可以设计实验来解决一系列重要的生物学问题。根发育的许多方面可以通过在不同根发育区域发现的不同的肌动蛋白网络来调节。不同的分子作用在肌动蛋白支架上,决定特定的根细胞类型如何生长或对特定的环境信号做出反应。尽管基因组学的进步正引领着阐明肌动蛋白在根中的功能,但当这些工具与精确描述肌动蛋白在植物细胞中如何组织的改进方法相结合时,将实现更重大的进步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Organization and function of the actin cytoskeleton in developing root cells.

The actin cytoskeleton is a highly dynamic structure, which mediates various cellular functions in large part through accessory proteins that tilt the balance between monomeric G-actin and filamentous actin (F-actin) or by facilitating interactions between actin and the plasma membrane, microtubules, and other organelles. Roots have become an attractive model to study actin in plant development because of their simple anatomy and accessibility of some root cell types such as root hairs for microscopic analyses. Roots also exhibit a remarkable developmental plasticity and possess a delicate sensory system that is easily manipulated, so that one can design experiments addressing a range of important biological questions. Many facets of root development can be regulated by the diverse actin network found in the various root developmental regions. Various molecules impinge on this actin scaffold to define how a particular root cell type grows or responds to a specific environmental signal. Although advances in genomics are leading the way toward elucidating actin function in roots, more significant strides will be realized when such tools are combined with improved methodologies for accurately depicting how actin is organized in plant cells.

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