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微小RNA在调控农艺植物生物和非生物胁迫中的功能作用

Functional role of microRNA in the regulation of biotic and abiotic stress in agronomic plants.

作者信息

Samynathan Ramkumar, Venkidasamy Baskar, Shanmugam Ashokraj, Ramalingam Sathishkumar, Thiruvengadam Muthu

机构信息

Department of Oral and Maxillofacial Surgery, Saveetha Dental College and Hospitals, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai, Tamil Nadu, India.

Plant Physiology and Biotechnology Division, UPASI Tea Research Foundation, Coimbatore, Tamil Nadu, India.

出版信息

Front Genet. 2023 Oct 10;14:1272446. doi: 10.3389/fgene.2023.1272446. eCollection 2023.


DOI:10.3389/fgene.2023.1272446
PMID:37886688
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10597799/
Abstract

The increasing demand for food is the result of an increasing population. It is crucial to enhance crop yield for sustainable production. Recently, microRNAs (miRNAs) have gained importance because of their involvement in crop productivity by regulating gene transcription in numerous biological processes, such as growth, development and abiotic and biotic stresses. miRNAs are small, non-coding RNA involved in numerous other biological functions in a plant that range from genomic integrity, metabolism, growth, and development to environmental stress response, which collectively influence the agronomic traits of the crop species. Additionally, miRNA families associated with various agronomic properties are conserved across diverse plant species. The miRNA adaptive responses enhance the plants to survive environmental stresses, such as drought, salinity, cold, and heat conditions, as well as biotic stresses, such as pathogens and insect pests. Thus, understanding the detailed mechanism of the potential response of miRNAs during stress response is necessary to promote the agronomic traits of crops. In this review, we updated the details of the functional aspects of miRNAs as potential regulators of various stress-related responses in agronomic plants.

摘要

对粮食需求的不断增加是人口增长的结果。提高作物产量对于可持续生产至关重要。最近,微小RNA(miRNA)因其通过在众多生物过程(如生长、发育以及非生物和生物胁迫)中调节基因转录而参与作物生产力,变得越来越重要。miRNA是小的非编码RNA,参与植物的许多其他生物学功能,从基因组完整性、代谢、生长和发育到环境应激反应,这些共同影响作物品种的农艺性状。此外,与各种农艺特性相关的miRNA家族在不同植物物种中是保守的。miRNA的适应性反应增强了植物在干旱、盐度、寒冷和高温等环境胁迫以及病原体和害虫等生物胁迫下的生存能力。因此,了解miRNA在胁迫反应期间潜在反应的详细机制对于提高作物的农艺性状是必要的。在这篇综述中,我们更新了miRNA作为农艺植物各种胁迫相关反应的潜在调节因子的功能方面的细节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b301/10597799/eb9ca1e77ec2/fgene-14-1272446-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b301/10597799/cc63a524f39f/fgene-14-1272446-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b301/10597799/eb9ca1e77ec2/fgene-14-1272446-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b301/10597799/cc63a524f39f/fgene-14-1272446-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b301/10597799/eb9ca1e77ec2/fgene-14-1272446-g002.jpg

相似文献

[1]
Functional role of microRNA in the regulation of biotic and abiotic stress in agronomic plants.

Front Genet. 2023-10-10

[2]
Functional Roles of microRNAs in Agronomically Important Plants-Potential as Targets for Crop Improvement and Protection.

Front Plant Sci. 2017-3-22

[3]
Enhancement of Plant Productivity in the Post-Genomics Era.

Curr Genomics. 2016-8

[4]
Tuning Beforehand: A Foresight on RNA Interference (RNAi) and In Vitro-Derived dsRNAs to Enhance Crop Resilience to Biotic and Abiotic Stresses.

Int J Mol Sci. 2021-7-19

[5]
Roles of microRNAs in abiotic stress response and characteristics regulation of plant.

Front Plant Sci. 2022-8-26

[6]
Role of microRNAs in biotic and abiotic stress responses in crop plants.

Appl Biochem Biotechnol. 2014-9

[7]
miRNAs: Major modulators for crop growth and development under abiotic stresses.

Biotechnol Lett. 2017-5

[8]
microRNAs: Key Regulators in Plant Responses to Abiotic and Biotic Stresses via Endogenous and Cross-Kingdom Mechanisms.

Int J Mol Sci. 2024-1-18

[9]
MicroRNAs: Potential Targets for Developing Stress-Tolerant Crops.

Life (Basel). 2021-3-28

[10]
Abiotic stress miRNomes in the Triticeae.

Funct Integr Genomics. 2017-5

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[4]
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[10]
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本文引用的文献

[1]
Hyperspectral machine-learning model for screening tea germplasm resources with drought tolerance.

Front Plant Sci. 2022-12-1

[2]
The early response of oil palm ( Jacq.) plants to water deprivation: Expression analysis of miRNAs and their putative target genes, and similarities with the response to salinity stress.

Front Plant Sci. 2022-9-23

[3]
Roles of microRNAs in abiotic stress response and characteristics regulation of plant.

Front Plant Sci. 2022-8-26

[4]
microRNA 166: an evolutionarily conserved stress biomarker in land plants targeting HD-ZIP family.

Physiol Mol Biol Plants. 2021-11

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Molecular mechanism of modulating miR482b level in tomato with botrytis cinerea infection.

BMC Plant Biol. 2021-10-28

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Crit Rev Food Sci Nutr. 2023

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Identification and expression analysis of miRNAs in germination and seedling growth of Tibetan hulless barley.

Genomics. 2021-11

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Genome-wide profiling of miRNAs during seed development reveals their functional relevance in seed size/weight determination in chickpea.

Plant Direct. 2021-3-12

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Suppression of rice miR168 improves yield, flowering time and immunity.

Nat Plants. 2021-2

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Structural and Functional Characteristics of miRNAs in Five Strategic Millet Species and Their Utility in Drought Tolerance.

Front Genet. 2020-12-8

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