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miRNA 介导的植物养分胁迫响应

MicroRNA Mediated Plant Responses to Nutrient Stress.

机构信息

Xinjiang Key Laboratory of Desert Plant Roots Ecology and Vegetation Restoration, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi 830011, China.

State Key Laboratory of Desert and Oasis Ecology, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi 830011, China.

出版信息

Int J Mol Sci. 2022 Feb 25;23(5):2562. doi: 10.3390/ijms23052562.

Abstract

To complete their life cycles, plants require several minerals that are found in soil. Plant growth and development can be affected by nutrient shortages or high nutrient availability. Several adaptations and evolutionary changes have enabled plants to cope with inappropriate growth conditions and low or high nutrient levels. MicroRNAs (miRNAs) have been recognized for transcript cleavage and translational reduction, and can be used for post-transcriptional regulation. Aside from regulating plant growth and development, miRNAs play a crucial role in regulating plant's adaptations to adverse environmental conditions. Additionally, miRNAs are involved in plants' sensory functions, nutrient uptake, long-distance root transport, and physiological functions related to nutrients. It may be possible to develop crops that can be cultivated in soils that are either deficient in nutrients or have extreme nutrient supplies by understanding how plant miRNAs are associated with nutrient stress. In this review, an overview is presented regarding recent advances in the understanding of plants' responses to nitrogen, phosphorus, potassium, sulfur, copper, iron, boron, magnesium, manganese, zinc, and calcium deficiencies via miRNA regulation. We conclude with future research directions emphasizing the modification of crops for improving future food security.

摘要

为了完成它们的生命周期,植物需要几种在土壤中发现的矿物质。营养物质的缺乏或高可用性可能会影响植物的生长和发育。几种适应和进化变化使植物能够应对不合适的生长条件以及低或高的营养水平。微小 RNA(miRNAs)已被证实具有转录切割和翻译减少的作用,可用于转录后调控。miRNAs 除了调节植物的生长和发育外,还在调节植物对不利环境条件的适应中起着关键作用。此外,miRNAs 还参与植物的感应功能、养分吸收、远距离根系运输以及与养分相关的生理功能。通过了解植物 miRNA 与养分胁迫的关系,有可能开发出可以在养分缺乏或养分供应极端的土壤中种植的作物。在这篇综述中,概述了最近在理解植物通过 miRNA 调节对氮、磷、钾、硫、铜、铁、硼、镁、锰、锌和钙缺乏的反应方面的进展。我们以强调通过改良作物来提高未来粮食安全的未来研究方向作为结论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2ad/8910084/e569a8c67049/ijms-23-02562-g001.jpg

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