Chen Peilei, Jung Niklas Udo, Giarola Valentino, Bartels Dorothea
Faculty of Natural Sciences, Institute of Molecular Physiology and Biotechnology of Plants (IMBIO), University of Bonn, Bonn, Germany.
Front Plant Sci. 2020 Jan 21;10:1698. doi: 10.3389/fpls.2019.01698. eCollection 2019.
Plant cell walls define the shape of the cells and provide mechanical support. They function as osmoregulators by controlling the transport of molecules between cells and provide transport pathways within the plant. These diverse functions require a well-defined and flexible organization of cell wall components, i.e., water, polysaccharides, proteins, and other diverse substances. Cell walls of desiccation tolerant resurrection plants withstand extreme mechanical stress during complete dehydration and rehydration. Adaptation to the changing water status of the plant plays a crucial role during this process. This review summarizes the compositional and structural variations, signal transduction and changes of gene expression which occur in cell walls of resurrection plants during dehydration and rehydration.
植物细胞壁决定细胞形状并提供机械支撑。它们通过控制分子在细胞间的运输发挥渗透调节作用,并在植物体内提供运输途径。这些多样的功能需要细胞壁成分(即水、多糖、蛋白质和其他多种物质)有明确且灵活的组织架构。耐旱复苏植物的细胞壁在完全脱水和再水化过程中能承受极端机械应力。在此过程中,适应植物不断变化的水分状况起着关键作用。本综述总结了复苏植物细胞壁在脱水和再水化过程中发生的成分和结构变化、信号转导及基因表达变化。