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生长与否:植物根系生长动态之谜。

To grow or not to grow: the enigma of plant root growth dynamism.

作者信息

Mandal Drishti, Datta Saptarshi, Mitra Sicon, Chakraborty Swarnavo, Nag Chaudhuri Ronita

机构信息

Department of Biotechnology, St. Xavier's College, 30, Mother Teresa Sarani, Kolkata, 700016, India.

出版信息

Plant Mol Biol. 2025 Jul 30;115(4):93. doi: 10.1007/s11103-025-01631-4.

Abstract

Root growth and modulation in plants is a highly dynamic yet strictly regulated process. Primary root development in Arabidopsis for example, is an intricate balance between cell division in the meristematic zone and cell elongation in the elongation zone, followed by subsequent differentiation. This process involves an orchestrated series of events that depend on environmental and developmental cues. Regulation is imparted by a complex network of hormone signaling primarily involving auxin, in crosstalk with cytokinin, abscisic acid, jasmonic acid, ethylene and others. In course of evolution, plants have developed an incredible array of mechanisms to address water scarcity, including modulation of root system architecture. During low to moderate water deficiency plants, adopt a "searching-for-water" strategy evoking growth-promoting responses. This is marked by elongation of the primary root for water exploration in deeper soil layers. However, during severe drought stress, plants resort to a "stop growth" strategy and restrict root growth, to conserve resources and energy for survival. The balance between these adaptive responses is critically regulated by key phytohormones which interact synergistically or antagonistically, to control root growth under varying levels of water shortage. Understanding these adaptation strategies as to how plants integrate environmental cues and associated hormone signaling to influence root growth generates a wide range of possibilities for agricultural innovation. This article aims to provide an overview of the mechanisms acquired by the root system at the morphological, physiological, and molecular levels, under optimum growth conditions and in response to varying degrees of water paucity.

摘要

植物根系的生长与调节是一个高度动态但又受到严格调控的过程。例如,拟南芥的主根发育是分生组织区细胞分裂与伸长区细胞伸长之间的一种复杂平衡,随后是细胞分化。这个过程涉及一系列协调有序的事件,这些事件取决于环境和发育线索。其调控由一个主要涉及生长素的复杂激素信号网络实现,该网络与细胞分裂素、脱落酸、茉莉酸、乙烯等存在相互作用。在进化过程中,植物已经发展出了一系列令人惊叹的机制来应对缺水问题,包括对根系结构的调节。在轻度至中度水分亏缺期间,植物采取“寻找水分”策略,引发促进生长的反应。这表现为初生根伸长,以便在更深的土壤层中探索水分。然而,在严重干旱胁迫期间,植物会采取“停止生长”策略并限制根系生长,以保存资源和能量用于生存。这些适应性反应之间的平衡受到关键植物激素的严格调控,这些激素协同或拮抗作用,以控制不同缺水水平下的根系生长。了解植物如何整合环境线索和相关激素信号以影响根系生长的这些适应策略,为农业创新带来了广泛的可能性。本文旨在概述在最佳生长条件下以及对不同程度缺水做出响应时,根系在形态、生理和分子水平上所获得的机制。

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