Minic Z, Jouanin L
Laboratoire de biologie cellulaire, Institut national de la recherche agronomique, route de Saint-Cyr, 78026 Versailles cedex, France.
Plant Physiol Biochem. 2006 Jul-Sep;44(7-9):435-49. doi: 10.1016/j.plaphy.2006.08.001. Epub 2006 Sep 7.
The cell wall plays a key role in controlling the size and shape of the plant cell during plant development and in the interactions of the plant with its environment. The cell wall structure is complex and contains various components such as polysaccharides, lignin and proteins whose composition and concentration change during plant development and growth. Many studies have revealed changes in cell walls which occur during cell division, expansion, and differentiation and in response to environmental stresses; i.e. pathogens or mechanical stress. Although many proteins and enzymes are necessary for the control of cell wall organization, little information is available concerning them. An important advance was made recently concerning cell wall organization as plant enzymes that belong to the superfamily of glycoside hydrolases and transglycosidases were identified and characterized; these enzymes are involved in the degradation of cell wall polysaccharides. Glycoside hydrolases have been characterized using molecular, genetic and biochemical approaches. Many genes encoding these enzymes have been identified and functional analysis of some of them has been performed. This review summarizes our current knowledge about plant glycoside hydrolases that participate in the degradation and reorganisation of cell wall polysaccharides in plants focussing particularly on those from Arabidopsis thaliana.
在植物发育过程中以及植物与环境的相互作用中,细胞壁在控制植物细胞的大小和形状方面起着关键作用。细胞壁结构复杂,包含多糖、木质素和蛋白质等多种成分,其组成和浓度在植物发育和生长过程中会发生变化。许多研究揭示了细胞壁在细胞分裂、扩张、分化过程中以及对环境胁迫(如病原体或机械应力)的响应中所发生的变化。尽管控制细胞壁组织需要许多蛋白质和酶,但关于它们的信息却很少。最近,随着属于糖苷水解酶和转糖苷酶超家族的植物酶被鉴定和表征,细胞壁组织研究取得了重要进展;这些酶参与细胞壁多糖的降解。糖苷水解酶已通过分子、遗传和生化方法进行了表征。许多编码这些酶的基因已被鉴定,并且对其中一些基因进行了功能分析。本综述总结了我们目前对参与植物细胞壁多糖降解和重组的植物糖苷水解酶的认识,特别关注来自拟南芥的那些酶。