Barros Jaime, Serk Henrik, Granlund Irene, Pesquet Edouard
Umeå Plant Science Centre (UPSC), Department of Plant Physiology, Umeå University, 901 87 Umeå, Sweden.
Umeå Plant Science Centre (UPSC), Department of Plant Physiology, Umeå University, 901 87 Umeå, Sweden
Ann Bot. 2015 Jun;115(7):1053-74. doi: 10.1093/aob/mcv046. Epub 2015 Apr 15.
Lignin is a polyphenolic polymer that strengthens and waterproofs the cell wall of specialized plant cell types. Lignification is part of the normal differentiation programme and functioning of specific cell types, but can also be triggered as a response to various biotic and abiotic stresses in cells that would not otherwise be lignifying.
Cell wall lignification exhibits specific characteristics depending on the cell type being considered. These characteristics include the timing of lignification during cell differentiation, the palette of associated enzymes and substrates, the sub-cellular deposition sites, the monomeric composition and the cellular autonomy for lignin monomer production. This review provides an overview of the current understanding of lignin biosynthesis and polymerization at the cell biology level.
The lignification process ranges from full autonomy to complete co-operation depending on the cell type. The different roles of lignin for the function of each specific plant cell type are clearly illustrated by the multiple phenotypic defects exhibited by knock-out mutants in lignin synthesis, which may explain why no general mechanism for lignification has yet been defined. The range of phenotypic effects observed include altered xylem sap transport, loss of mechanical support, reduced seed protection and dispersion, and/or increased pest and disease susceptibility.
木质素是一种多酚聚合物,可强化特定植物细胞类型的细胞壁并使其具有防水性。木质化是特定细胞类型正常分化程序和功能的一部分,但在原本不会发生木质化的细胞中,它也可作为对各种生物和非生物胁迫的一种反应而被触发。
细胞壁木质化根据所考虑的细胞类型呈现出特定特征。这些特征包括细胞分化过程中木质化的时间、相关酶和底物的种类、亚细胞沉积位点、单体组成以及木质素单体产生的细胞自主性。本综述概述了目前在细胞生物学水平上对木质素生物合成和聚合的理解。
根据细胞类型,木质化过程从完全自主到完全协作不等。木质素合成基因敲除突变体所表现出的多种表型缺陷清楚地说明了木质素在每种特定植物细胞类型功能中的不同作用,这或许可以解释为何尚未确定木质化的通用机制。观察到的一系列表型效应包括木质部汁液运输改变、机械支撑丧失、种子保护和传播能力降低,以及/或者病虫害易感性增加。