Höfte Herman
INRA, Institut Jean-Pierre Bourgin, UMR 1318, ERL CNRS 3559, Saclay Plant Sciences, RD10, F-78026 Versailles, France AgroParisTech, Institut Jean-Pierre Bourgin, UMR 1318, ERL CNRS 3559, Saclay Plant Sciences, RD10, F-78026 Versailles, France
Plant Cell Physiol. 2015 Feb;56(2):224-31. doi: 10.1093/pcp/pcu182. Epub 2014 Dec 5.
Understanding how developmental and environmental signals control plant cell expansion requires an intimate knowledge of the architecture of the primary cell wall and the chemo-rheological processes that underlie cell wall relaxation. In this review I discuss recent findings that reveal a more prominent role than previously suspected for covalent bonds and pectin cross-links in primary cell wall architecture. In addition, genetic studies have uncovered a role for receptor kinases in the control of cell wall homeostasis in growing cells. The emerging view is that, upon cell wall disruption, compensatory changes are induced in the cell wall through the interplay between the brassinosteroid signaling module, which positively regulates wall extensibility and receptor kinases of the CrRLKL1 family, which may act as negative regulators of cell wall stiffness. These findings lift the tip of the veil of a complex signaling network allowing normal homeostasis in walls of growing cells but also crisis management under stress conditions.
要理解发育和环境信号如何控制植物细胞扩张,就需要深入了解初生细胞壁的结构以及细胞壁松弛背后的化学流变过程。在这篇综述中,我将讨论最近的研究发现,这些发现揭示了共价键和果胶交联在初生细胞壁结构中所起的作用比之前认为的更为显著。此外,遗传学研究还发现受体激酶在控制生长中细胞的细胞壁稳态方面发挥着作用。新出现的观点是,在细胞壁受到破坏时,通过油菜素内酯信号模块(正向调节细胞壁伸展性)与CrRLKL1家族受体激酶(可能作为细胞壁硬度的负调节因子)之间的相互作用,细胞壁会诱导产生补偿性变化。这些发现揭开了一个复杂信号网络的面纱一角,该网络既能维持生长中细胞的细胞壁正常稳态,又能在应激条件下进行危机管理。