This article systematically elucidates the molecular mechanisms by which core epigenetic processes coordinate plant growth and development with environmental adaptation, with particular emphasis on the transgenerational transmission of epigenetic information.
Abstract
Abstract Plants face the challenge of balancing dynamic environmental stresses with internal developmental demands during growth, necessitating the precise regulation of gene expression networks to optimize resource allocation. Recent studies have shown that epigenetic regulatory systems, which serve as bridges between genotype and phenotype, enable plants to respond rapidly to environmental changes and facilitate adaptive evolution by establishing heritable epigenetic memory. This article systematically elucidates the molecular mechanisms by which core epigenetic processes coordinate plant growth and development with environmental adaptation, with particular emphasis on the transgenerational transmission of epigenetic information, such as DNA modification, RNA modification, histone modification, histone chaperones, chromatin remodeling, and non-coding RNA regulation. It further examines the interrelationships between these mechanisms and how they work in concert to achieve such coordination. It also explores key unresolved scientific questions in this field and proposes future perspectives for further research.
This review examines the bidirectional interactions between epigenetic mechanisms and ROS homeostasis in plant stress adaptation, with a particular emphasis on drought resistance, and proposes that these interactions take the form of dynamic regulatory networks rather than one-way pathways.
N. Bhanbhro, Q. Bakhsh, Shengdixin Shi et al.· Theoretical and Applied Gene...· 1 citation
This review proposes epigenetic editing as a versatile and sustainable tool for unlocking the plant immune repertoire and developing disease‐resistant plants, offering a promising alternative that addresses several limitations of conventional genetic modification.
Xue-Xia Liu, Zhen-Hui Zhong· New Plant Protection· 0 citations
Epigenetic regulation governs plant growth, development, and environmental adaptation through dynamic control and stress memory mechanisms. However, research and application of plant epigenetics face several limitations. Functional redundancy within epigenetic gene families obscures phenotypic changes resulting from si...
As sessile organisms, plants have evolved elaborate epigenetic regulatory networks to adapt to a wide range of abiotic stress. Chromatin remodelling is a core epigenetic regulatory mechanism that refers to the process by which chromatin remodelling complexes mediate dynamic changes in chromatin spatial conformation and...