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植物形态形成中的 Rho 蛋白:连接数学模型和分子多样性。

Rho of Plants patterning: linking mathematical models and molecular diversity.

机构信息

Mathematical and Statistical Methods (Biometris), Plant Science Group, Wageningen University, 6708 PB Wageningen, The Netherlands.

出版信息

J Exp Bot. 2024 Feb 28;75(5):1274-1288. doi: 10.1093/jxb/erad447.

Abstract

ROPs (Rho of Plants) are plant specific small GTPases involved in many membrane patterning processes and play important roles in the establishment and communication of cell polarity. These small GTPases can produce a wide variety of patterns, ranging from a single cluster in tip-growing root hairs and pollen tubes to an oriented stripe pattern controlling protoxylem cell wall deposition. For an understanding of what controls these various patterns, models are indispensable. Consequently, many modelling studies on small GTPase patterning exist, often focusing on yeast or animal cells. Multiple patterns occurring in plants, however, require the stable co-existence of multiple active ROP clusters, which does not occur with the most common yeast/animal models. The possibility of such patterns critically depends on the precise model formulation. Additionally, different small GTPases are usually treated interchangeably in models, even though plants possess two types of ROPs with distinct molecular properties, one of which is unique to plants. Furthermore, the shape and even the type of ROP patterns may be affected by the cortical cytoskeleton, and cortex composition and anisotropy differ dramatically between plants and animals. Here, we review insights into ROP patterning from modelling efforts across kingdoms, as well as some outstanding questions arising from these models and recent experimental findings.

摘要

ROPs(植物中的 Rho)是参与许多膜图案形成过程的植物特异性小 GTPases,并在细胞极性的建立和通讯中发挥重要作用。这些小 GTPases 可以产生各种各样的图案,从顶端生长的根毛和花粉管中的单个簇到控制原生木质部细胞壁沉积的定向条纹图案。为了理解是什么控制了这些不同的模式,模型是必不可少的。因此,存在许多关于小 GTPase 图案形成的建模研究,这些研究通常集中在酵母或动物细胞上。然而,植物中出现的多种模式需要多个活跃的 ROP 簇的稳定共存,这与最常见的酵母/动物模型不同。这种模式的可能性严重依赖于精确的模型公式。此外,尽管植物具有两种具有不同分子特性的 ROP 类型,其中一种是植物所特有的,但在模型中通常可互换使用不同的小 GTPases。此外,ROP 图案的形状甚至类型可能受到皮质细胞骨架的影响,并且植物和动物之间的皮质组成和各向异性差异很大。在这里,我们综述了跨领域的建模研究对 ROP 图案形成的见解,以及这些模型和最近的实验发现所提出的一些悬而未决的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee53/10901209/23d5ff2ea35f/erad447_fig1.jpg

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