Ding Wenjing, Wang Chencan, Mei Man, Li Xiaoxu, Zhang Yuqian, Lin Hongxia, Li Yang, Ma Zhiqiang, Han Jianwei, Song Xiaoxia, Wu Minjie, Zheng Caixia, Lin Jinxing, Zhao Yuanyuan
College of Biological Sciences and Biotechnology, Beijing Forestry University, Beijing, China.
Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Forestry University, Beijing, China.
Front Plant Sci. 2024 Dec 17;15:1508242. doi: 10.3389/fpls.2024.1508242. eCollection 2024.
Vascular cambium is the continuation of meristem activity at the top of plants, which promotes lateral growth of plants. The vascular cambium evolved as an adaptation for secondary growth, initially in early seed plants, and became more refined in the evolution of gymnosperms and angiosperms. In angiosperms, it is crucial for plant growth and wood formation. The vascular cambium is regulated by a complex interplay of phytohormones, which are chemical messengers that coordinate various aspects of plant growth and development. This paper synthesizes the current knowledge on the regulatory effects of primary plant hormones and peptide signals on the development of the cambium in forest trees, and it outlines the current research status and future directions in this field. Understanding these regulatory mechanisms holds significant potential for enhancing our ability to manage and cultivate forest tree species in changing environmental conditions.
维管形成层是植物顶端分生组织活动的延续,它促进植物的侧向生长。维管形成层是作为对次生生长的一种适应而进化的,最初出现在早期种子植物中,并在裸子植物和被子植物的进化过程中变得更加完善。在被子植物中,它对植物生长和木材形成至关重要。维管形成层受植物激素复杂的相互作用调控,植物激素是协调植物生长和发育各个方面的化学信使。本文综合了目前关于主要植物激素和肽信号对林木形成层发育调控作用的知识,并概述了该领域的研究现状和未来方向。了解这些调控机制对于提高我们在不断变化的环境条件下管理和培育林木物种的能力具有巨大潜力。