Matthias Schleiden Institute of Genetics, Bioinformatics and Molecular Botany, Department of Plant Physiology, Friedrich-Schiller-University, 07743 Jena, Germany.
Int J Mol Sci. 2023 Apr 18;24(8):7417. doi: 10.3390/ijms24087417.
The integrity of the cell wall is important for plant cells. Mechanical or chemical distortions, tension, pH changes in the apoplast, disturbance of the ion homeostasis, leakage of cell compounds into the apoplastic space or breakdown of cell wall polysaccharides activate cellular responses which often occur via plasma membrane-localized receptors. Breakdown products of the cell wall polysaccharides function as damage-associated molecular patterns and derive from cellulose (cello-oligomers), hemicelluloses (mainly xyloglucans and mixed-linkage glucans as well as glucuronoarabinoglucans in Poaceae) and pectins (oligogalacturonides). In addition, several types of channels participate in mechanosensing and convert physical into chemical signals. To establish a proper response, the cell has to integrate information about apoplastic alterations and disturbance of its wall with cell-internal programs which require modifications in the wall architecture due to growth, differentiation or cell division. We summarize recent progress in pattern recognition receptors for plant-derived oligosaccharides, with a focus on malectin domain-containing receptor kinases and their crosstalk with other perception systems and intracellular signaling events.
细胞壁的完整性对植物细胞很重要。细胞壁的机械或化学变形、张力、质外体 pH 变化、离子动态平衡的干扰、细胞化合物漏入质外空间或细胞壁多糖的破坏会激活细胞反应,这些反应通常通过质膜定位的受体发生。细胞壁多糖的降解产物作为损伤相关分子模式发挥作用,来源于纤维素(纤维素寡聚物)、半纤维素(主要是木葡聚糖和混合连接的葡聚糖以及禾本科中的葡糖醛酸阿拉伯半乳聚糖)和果胶(寡半乳糖醛酸)。此外,几种类型的通道参与机械感觉,并将物理信号转化为化学信号。为了建立适当的反应,细胞必须将质外体改变和细胞壁破坏的信息与细胞内程序整合在一起,这些程序需要由于生长、分化或细胞分裂而对细胞壁结构进行修改。我们总结了植物来源的寡糖模式识别受体的最新进展,重点介绍了含有甘露糖结合结构域的受体激酶及其与其他感知系统和细胞内信号事件的相互作用。