Wang Zhengpeng, Ye Xiaoming, Huang Luqi, Yuan Yuan
Experimental Research Center, China Academy of Chinese Medical Science, Beijing 100700, China.
State Key Laboratory for Quality Ensurance and Sustainable Use of Dao-di Herbs, China Academy of Chinese Medical Sciences (CACMS), Beijing 100700, China.
Hortic Res. 2025 Jan 16;12(4):uhaf011. doi: 10.1093/hr/uhaf011. eCollection 2025 Apr.
The quality of traditional herbs depends on organ morphogenesis and the accumulation of active pharmaceutical ingredients. While recent research highlights the significance of cell mechanobiology in model plant morphogenesis, our understanding of mechanical signal initiation and transduction in traditional herbs remains incomplete. Recent studies reveal a close correlation between cell wall (CW) biosynthesis and active ingredient production, yet the role of cell mechanics in balancing morphogenesis and secondary metabolism is often overlooked. This review explores how the cell wall, plasma membrane, cytoskeleton, and vacuole collaborate to regulate cell mechanics and respond to mechanical changes. We propose CW biosynthesis as a hub in connecting cell mechanics with secondary metabolism and emphasize that understanding the relationship between mechanical remodeling and secondary metabolism could provide new insights into plant cell mechanobiology and the breeding of high-quality herbs.
传统草药的品质取决于器官形态发生和活性药物成分的积累。虽然最近的研究突出了细胞力学生物学在模式植物形态发生中的重要性,但我们对传统草药中机械信号的启动和转导的理解仍不完整。最近的研究揭示了细胞壁(CW)生物合成与活性成分产生之间的密切关联,然而细胞力学在平衡形态发生和次生代谢中的作用常常被忽视。本综述探讨了细胞壁、质膜、细胞骨架和液泡如何协同调节细胞力学并响应机械变化。我们提出细胞壁生物合成是连接细胞力学与次生代谢的枢纽,并强调理解机械重塑与次生代谢之间的关系可为植物细胞力学生物学和高品质草药育种提供新的见解。