Role of Epigenetics in Modulating Phenotypic Plasticity against Abiotic Stresses in Plants.

IF 2.6 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY International Journal of Genomics Pub Date : 2022-06-14 eCollection Date: 2022-01-01 DOI:10.1155/2022/1092894
Fayaz Ahmad Dar, Naveed Ul Mushtaq, Seerat Saleem, Reiaz Ul Rehman, Tanvir Ul Hassan Dar, Khalid Rehman Hakeem
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引用次数: 10

Abstract

Plants being sessile are always exposed to various environmental stresses, and to overcome these stresses, modifications at the epigenetic level can prove vital for their long-term survival. Epigenomics refers to the large-scale study of epigenetic marks on the genome, which include covalent modifications of histone tails (acetylation, methylation, phosphorylation, ubiquitination, and the small RNA machinery). Studies based on epigenetics have evolved over the years especially in understanding the mechanisms at transcriptional and posttranscriptional levels in plants against various environmental stimuli. Epigenomic changes in plants through induced methylation of specific genes that lead to changes in their expression can help to overcome various stress conditions. Recent studies suggested that epigenomics has a significant potential for crop improvement in plants. By the induction and modulation of various cellular processes like DNA methylation, histone modification, and biogenesis of noncoding RNAs, the plant genome can be activated which can help in achieving a quicker response against various plant stresses. Epigenetic modifications in plants allow them to adjust under varied environmental stresses by modulating their phenotypic plasticity and at the same time ensure the quality and yield of crops. The plasticity of the epigenome helps to adapt the plants during pre- and postdevelopmental processes. The variation in DNA methylation in different organisms exhibits variable phenotypic responses. The epigenetic changes also occur sequentially in the genome. Various studies indicated that environmentally stimulated epimutations produce variable responses especially in differentially methylated regions (DMR) that play a major role in the management of stress conditions in plants. Besides, it has been observed that environmental stresses cause specific changes in the epigenome that are closely associated with phenotypic modifications. However, the relationship between epigenetic modifications and phenotypic plasticity is still debatable. In this review, we will be discussing the role of various factors that allow epigenetic changes to modulate phenotypic plasticity against various abiotic stress in plants.

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表观遗传学在植物抗非生物胁迫的表型可塑性调控中的作用。
无梗植物总是暴露在各种环境胁迫下,为了克服这些胁迫,表观遗传水平上的修饰对它们的长期生存至关重要。表观基因组学是指对基因组上的表观遗传标记的大规模研究,包括组蛋白尾部的共价修饰(乙酰化、甲基化、磷酸化、泛素化和小RNA机制)。近年来,基于表观遗传学的研究不断发展,特别是在了解植物对各种环境刺激的转录和转录后水平机制方面。通过诱导特定基因的甲基化导致其表达的变化,植物的表观基因组变化有助于克服各种胁迫条件。近年来的研究表明,表观基因组学在植物作物改良方面具有重要的潜力。通过诱导和调节各种细胞过程,如DNA甲基化、组蛋白修饰和非编码rna的生物发生,植物基因组可以被激活,从而有助于实现对各种植物胁迫的快速反应。植物的表观遗传修饰使植物能够通过调节其表型可塑性来适应不同的环境胁迫,同时保证作物的质量和产量。表观基因组的可塑性有助于植物在发育前和发育后的适应过程。不同生物体中DNA甲基化的变化表现出不同的表型反应。表观遗传变化也依次发生在基因组中。各种研究表明,环境刺激的增殖产生不同的反应,特别是在差异甲基化区域(DMR),在植物的胁迫条件管理中起着重要作用。此外,已经观察到环境胁迫引起与表型修饰密切相关的表观基因组的特异性变化。然而,表观遗传修饰与表型可塑性之间的关系仍存在争议。在这篇综述中,我们将讨论各种因素的作用,允许表观遗传变化调节表型可塑性在植物中对抗各种非生物胁迫。
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来源期刊
International Journal of Genomics
International Journal of Genomics BIOCHEMISTRY & MOLECULAR BIOLOGY-BIOTECHNOLOGY & APPLIED MICROBIOLOGY
CiteScore
5.40
自引率
0.00%
发文量
33
审稿时长
17 weeks
期刊介绍: International Journal of Genomics is a peer-reviewed, Open Access journal that publishes research articles as well as review articles in all areas of genome-scale analysis. Topics covered by the journal include, but are not limited to: bioinformatics, clinical genomics, disease genomics, epigenomics, evolutionary genomics, functional genomics, genome engineering, and synthetic genomics.
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