Guerriero Gea, Hausman Jean-Francois, Cai Giampiero
Department Environment and Agro-biotechnologies (EVA), Centre de Recherche Public-Gabriel Lippmann, 41 Rue du Brill, L-4422 Belvaux, Luxembourg.
Dipartimento Scienzedella Vita, Università di Siena, via Mattioli 4, I-53100 Siena, Italy.
Int J Mol Sci. 2014 Mar 21;15(3):5094-114. doi: 10.3390/ijms15035094.
The mechanisms through which plant cells control growth and shape are the result of the coordinated action of many events, notably cell wall stress relaxation and turgor-driven expansion. The scalar nature of turgor pressure would drive plant cells to assume spherical shapes; however, this is not the case, as plant cells show an amazing variety of morphologies. Plant cell walls are dynamic structures that can display alterations in matrix polysaccharide composition and concentration, which ultimately affect the wall deformation rate. The wide varieties of plant cell shapes, spanning from elongated cylinders (as pollen tubes) and jigsaw puzzle-like epidermal cells, to very long fibres and branched stellate leaf trichomes, can be understood if the underlying mechanisms regulating wall biosynthesis and cytoskeletal dynamics are addressed. This review aims at gathering the available knowledge on the fundamental mechanisms regulating expansion, growth and shape in plant cells by putting a special emphasis on the cell wall-cytoskeleton system continuum. In particular, we discuss from a molecular point of view the growth mechanisms characterizing cell types with strikingly different geometries and describe their relationship with primary walls. The purpose, here, is to provide the reader with a comprehensive overview of the multitude of events through which plant cells manage to expand and control their final shapes.
植物细胞控制生长和形态的机制是许多事件协同作用的结果,尤其是细胞壁应力松弛和膨压驱动的扩张。膨压的标量性质会使植物细胞呈球形;然而,实际并非如此,因为植物细胞呈现出惊人的多样形态。植物细胞壁是动态结构,能够在基质多糖组成和浓度上表现出变化,这最终会影响细胞壁的变形速率。如果能够阐明调节细胞壁生物合成和细胞骨架动力学的潜在机制,那么就能理解从细长圆柱体(如花粉管)和拼图状表皮细胞到非常长的纤维和分支星状叶毛状体等各种各样的植物细胞形状。本综述旨在通过特别强调细胞壁 - 细胞骨架系统的连续性,收集有关调节植物细胞扩张、生长和形态的基本机制的现有知识。特别是,我们从分子角度讨论了具有显著不同几何形状的细胞类型的生长机制,并描述了它们与初生壁的关系。这里的目的是为读者提供一个全面的概述,介绍植物细胞通过多种事件实现扩张并控制其最终形态的过程。