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水分胁迫对植物胁迫与适应过程中表观遗传机制的影响。

Impact of water stress to plant epigenetic mechanisms in stress and adaptation.

作者信息

Aanniz Tarik, El Baaboua Aicha, Aboulaghras Sara, Bouyahya Abdelhakim, Benali Taoufiq, Balahbib Abdelaali, El Omari Nasreddine, Butnariu Monica, Muzammil Khursheed, Yadav Krishna Kumar, Al Abdulmonem Waleed, Lee Learn-Han, Zengin Gokhan, Chamkhi Imane

机构信息

Laboratory of Medical Biotechnology Laboratory (Medbiotech), Rabat Medical & Pharmacy School, Mohammed V University in Rabat, Rabat, Morocco.

Biotechnology and Applied Microbiology Team, Department of Biology, Faculty of Science, Abdelmalek-Essaadi University, Tetouan, Morocco.

出版信息

Physiol Plant. 2025 Jan-Feb;177(1):e70058. doi: 10.1111/ppl.70058.

Abstract

Water is the basic molecule in living beings, and it has a major impact on vital processes. Plants are sessile organisms with a sophisticated regulatory network that regulates how resources are distributed between developmental and adaptation processes. Drought-stressed plants can change their survival strategies to adapt to this unfavorable situation. Indeed, plants modify, change, and modulate gene expression when grown in a low-water environment. This adaptation occurs through several mechanisms that affect the expression of genes, allowing these plants to resist in dry regions. Epigenetic modulation has emerged as a major factor in the transcription regulation of drought stress-related genes. Moreover, specific molecular and epigenetic modifications in the expression of certain genetic networks lead to adapted responses that aid a plant's acclimatization and survival during repeated stress. Indeed, understanding plant responses to severe environmental stresses, including drought, is critical for biotechnological applications. Here, we first focused on drought stress in plants and their general adaptation mechanisms to this stress. We also discussed plant epigenetic regulation when exposed to water stress and how this adaptation can be passed down through generations.

摘要

水是生物体内的基本分子,对生命过程有重大影响。植物是固着生物,具有复杂的调控网络,该网络调节资源在发育和适应过程之间的分配方式。遭受干旱胁迫的植物可以改变其生存策略以适应这种不利情况。实际上,植物在低水环境中生长时会修饰、改变和调节基因表达。这种适应通过几种影响基因表达的机制发生,使这些植物能够在干旱地区生存。表观遗传调控已成为干旱胁迫相关基因转录调控的主要因素。此外,某些基因网络表达中的特定分子和表观遗传修饰会导致适应性反应,有助于植物在反复胁迫期间的适应和存活。事实上,了解植物对包括干旱在内的严重环境胁迫的反应对于生物技术应用至关重要。在这里,我们首先关注植物中的干旱胁迫及其对这种胁迫的一般适应机制。我们还讨论了植物在遭受水分胁迫时的表观遗传调控以及这种适应如何代代相传。

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