Anderson Charles T, Pelloux Jérôme
Department of Biology, The Pennsylvania State University, University Park, Pennsylvania, USA; email:
UMRT INRAE 1158 BioEcoAgro, Biologie des Plantes et Innovation, Université de Picardie Jules Verne, Amiens, France; email:
Annu Rev Plant Biol. 2025 May;76(1):85-113. doi: 10.1146/annurev-arplant-083023-034055. Epub 2025 Jan 22.
Pectins underpin the assembly, molecular architecture, and physical properties of plant cell walls and through their effects on cell growth and adhesion influence many aspects of plant development. They are some of the most dynamic components of plant cell walls, and pectin remodeling and degradation by pectin-modifying enzymes can drive developmental programming via physical effects on the cell wall and the generation of oligosaccharides that can act as signaling ligands. Here, we introduce pectin structure and synthesis and discuss pectin functions in plants. We highlight recent advances in understanding the structure-function relationships of pectin-modifying enzymes and their products and how these advances point toward new approaches to bridging key knowledge gaps and manipulating pectin dynamics to control plant development. Finally, we discuss how a deeper understanding of pectin dynamics might enable innovations in agronomy and biotechnology, unlocking new benefits from these ubiquitous but complex polysaccharides.
果胶是植物细胞壁组装、分子结构和物理特性的基础,通过对细胞生长和黏附的影响,它在植物发育的许多方面发挥作用。它们是植物细胞壁中最具动态变化的成分之一,果胶修饰酶对果胶的重塑和降解可通过对细胞壁的物理作用以及生成可作为信号配体的寡糖来驱动发育程序。在这里,我们介绍果胶的结构与合成,并讨论果胶在植物中的功能。我们重点介绍了在理解果胶修饰酶及其产物的结构-功能关系方面的最新进展,以及这些进展如何为弥合关键知识差距和操纵果胶动态以控制植物发育指明新方法。最后,我们讨论了对果胶动态更深入的理解如何推动农学和生物技术的创新,从这些普遍存在但复杂的多糖中挖掘新的益处。