Metabolic regulation of the plant epigenome

Archive ouverte

Lu, Yue | Bu, Qing | Chuan, Mingli | Cui, Xiaoyun | Zhao, Yu | D, Zhou

Edité par CCSD ; Wiley -

International audience. SUMMARY Chromatin modifications shape the epigenome and are essential for gene expression reprogramming during plant development and adaptation to the changing environment. Chromatin modification enzymes require primary metabolic intermediates such as S ‐adenosyl‐methionine, acetyl‐CoA, alpha‐ketoglutarate, and NAD + as substrates or cofactors. The availability of the metabolites depends on cellular nutrients, energy and reduction/oxidation (redox) states, and affects the activity of chromatin regulators and the epigenomic landscape. The changes in the plant epigenome and the activity of epigenetic regulators in turn control cellular metabolism through transcriptional and post‐translational regulation of metabolic enzymes. The interplay between metabolism and the epigenome constitutes a basis for metabolic control of plant growth and response to environmental changes. This review summarizes recent advances regarding the metabolic control of plant chromatin regulators and epigenomes, which are involved in plant adaption to environmental stresses.

Consulter en ligne

Suggestions

Du même auteur

Metabolic control of histone demethylase activity involved in plant response to high temperature

Archive ouverte | Cui, Xiaoyun | CCSD

International audience. Abstract Jumonji C (JmjC) domain proteins are histone lysine demethylases that require ferrous iron and alpha-ketoglutarate (or α-KG) as cofactors in the oxidative demethylation reaction. In ...

Histone deacetylase HDA710 controls salt tolerance by regulating ABA signaling in rice

Archive ouverte | Ullah, Farhan | CCSD

International audience. Abstract Plants have evolved numerous mechanisms that assist them in withstanding environmental stresses. Histone deacetylases (HDACs) play crucial roles in plant stress responses; however, t...

SnRK1 stimulates the histone H3K27me3 demethylase JMJ705 to regulate a transcriptional switch to control energy homeostasis

Archive ouverte | Wang, Wentao | CCSD

International audience. Abstract Plant SNF1-Related Kinase1 (SnRK1) is an evolutionarily conserved energy-sensing protein kinase that orchestrates transcriptional networks to maintain cellular energy homeostasis whe...

Chargement des enrichissements...