Environmental stress significantly affects plant growth, development, and survival. Plants respond to stressors such as temperature fluctuations, water scarcity, nutrient deficiencies, and pathogen attacks through intricate molecular and physiological adaptations. Epigenetic mechanisms are crucial in regulating gene expression in response to environmental stress. This review explores the current understanding of epigenetic modifications, including DNA methylation, and their roles in modulating gene expression patterns under environmental stress conditions. The dynamic nature of epigenetic modifications, their crosstalk with stress-responsive pathways, and their potential implications for plant adaptation and crop improvement are highlighted in the face of changing environmental conditions.

Unravelling the Epigenetic Code: DNA Methylation in Plants and Its Role in Stress Response / E. Talarico, A. Zambelli, F. Araniti, E. Greco, A. Chiappetta, L. Bruno. - In: EPIGENOMES. - ISSN 2075-4655. - 8:3(2024), pp. 30.1-30.20. [10.3390/epigenomes8030030]

Unravelling the Epigenetic Code: DNA Methylation in Plants and Its Role in Stress Response

A. Zambelli
Co-primo
;
F. Araniti
Secondo
;
2024

Abstract

Environmental stress significantly affects plant growth, development, and survival. Plants respond to stressors such as temperature fluctuations, water scarcity, nutrient deficiencies, and pathogen attacks through intricate molecular and physiological adaptations. Epigenetic mechanisms are crucial in regulating gene expression in response to environmental stress. This review explores the current understanding of epigenetic modifications, including DNA methylation, and their roles in modulating gene expression patterns under environmental stress conditions. The dynamic nature of epigenetic modifications, their crosstalk with stress-responsive pathways, and their potential implications for plant adaptation and crop improvement are highlighted in the face of changing environmental conditions.
abiotic stress; DNA methylation; epigenetic; grow plasticity
Settore AGRI-06/B - Chimica agraria
2024
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1108948
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