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生长素作为环境线索的整合因子,参与发育生长调控。

Auxin production as an integrator of environmental cues for developmental growth regulation.

机构信息

CEITEC MU-Central European Institute of Technology, Masaryk University, Mendel Centre for Genomics and Proteomics of Plants Systems, Brno, Czech Republic.

出版信息

J Exp Bot. 2018 Jan 4;69(2):201-212. doi: 10.1093/jxb/erx259.

Abstract

Being sessile organisms, plants have evolved mechanisms allowing them to control their growth and development in response to environmental changes. This occurs by means of complex interacting signalling networks that integrate diverse environmental cues into co-ordinated and highly regulated responses. Auxin is an essential phytohormone that functions as a signalling molecule, driving both growth and developmental processes. It is involved in numerous biological processes ranging from control of cell expansion and cell division to tissue specification, embryogenesis, and organ development. All these processes require the formation of auxin gradients established and maintained through the combined processes of biosynthesis, metabolism, and inter- and intracellular directional transport. Environmental conditions can profoundly affect the plant developmental programme, and the co-ordinated shoot and root growth ought to be fine-tuned to environmental challenges such as temperature, light, and nutrient and water content. The key role of auxin as an integrator of environmental signals has become clear in recent years, and emerging evidence implicates auxin biosynthesis as an essential component of the overall mechanisms of plants tolerance to stress. In this review, we provide an account of auxin's role as an integrator of environmental signals and, in particular, we highlight the effect of these signals on the control of auxin production.

摘要

作为固着生物,植物已经进化出了一些机制,使它们能够根据环境变化来控制生长和发育。这是通过复杂的相互作用的信号网络来实现的,这些信号网络将各种环境线索整合到协调和高度调节的反应中。生长素是一种必需的植物激素,作为一种信号分子,它既能驱动生长过程,又能驱动发育过程。它参与了许多生物学过程,从控制细胞扩张和细胞分裂到组织特化、胚胎发生和器官发育。所有这些过程都需要通过生物合成、代谢以及细胞内外的定向运输的共同作用来形成和维持生长素梯度。环境条件可以深刻地影响植物的发育计划,而协调的地上部和根部生长应该根据环境挑战(如温度、光照、营养和水分含量)进行微调。近年来,生长素作为环境信号整合者的关键作用已经变得清晰,新出现的证据表明,生长素生物合成是植物对胁迫耐受的整体机制的重要组成部分。在这篇综述中,我们提供了生长素作为环境信号整合者的作用的说明,特别是我们强调了这些信号对生长素产生的控制作用。

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