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作物根系对干旱胁迫的响应:根际微生物作用下的分子机制、养分调控及其相互关系。

Crop Root Responses to Drought Stress: Molecular Mechanisms, Nutrient Regulations, and Interactions with Microorganisms in the Rhizosphere.

机构信息

Division of Plant Science and Technology, University of Missouri, Columbia, MO 65211, USA.

Interdisciplinary Plant Group, University of Missouri, Columbia, MO 65211, USA.

出版信息

Int J Mol Sci. 2022 Aug 18;23(16):9310. doi: 10.3390/ijms23169310.

Abstract

Roots play important roles in determining crop development under drought. Under such conditions, the molecular mechanisms underlying key responses and interactions with the rhizosphere in crop roots remain limited compared with model species such as . This article reviews the molecular mechanisms of the morphological, physiological, and metabolic responses to drought stress in typical crop roots, along with the regulation of soil nutrients and microorganisms to these responses. Firstly, we summarize how root growth and architecture are regulated by essential genes and metabolic processes under water-deficit conditions. Secondly, the functions of the fundamental plant hormone, abscisic acid, on regulating crop root growth under drought are highlighted. Moreover, we discuss how the responses of crop roots to altered water status are impacted by nutrients, and vice versa. Finally, this article explores current knowledge of the feedback between plant and soil microbial responses to drought and the manipulation of rhizosphere microbes for improving the resilience of crop production to water stress. Through these insights, we conclude that to gain a more comprehensive understanding of drought adaption mechanisms in crop roots, future studies should have a network view, linking key responses of roots with environmental factors.

摘要

根在作物抗旱发育中起着重要作用。与拟南芥等模式物种相比,在作物根中,关键响应及其与根际相互作用的分子机制仍十分有限。本文综述了典型作物根对干旱胁迫的形态、生理和代谢响应的分子机制,以及土壤养分和微生物对这些响应的调控。首先,我们总结了在缺水条件下,必需基因和代谢过程如何调控根的生长和结构。其次,强调了基本植物激素脱落酸在调控作物根生长方面的作用。此外,我们讨论了作物根对改变的水分状况的响应如何受到养分的影响,反之亦然。最后,本文探讨了植物和土壤微生物对干旱响应的反馈以及对根际微生物的操纵,以提高作物生产对水分胁迫的恢复力。通过这些见解,我们得出结论,为了更全面地了解作物根的抗旱适应机制,未来的研究应该具有网络视角,将根的关键响应与环境因素联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8983/9409098/8e70c8d6d401/ijms-23-09310-g001.jpg

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