lants are continuously exposed to a vast multiplicity of stressful factors, both of biotic or abiotic nature, that negatively affect their development, yield, and reproductive success. To withstand environmental changes plants have developed complex and sophisticated strategies, among which sensitive detection systems and complex signal transduction pathways. These intricate mechanisms ultimately lead to transcriptional induction of genes encoding proteins enabling adaptation to environmental challenge. Epigenetic modifications, among these DNA methylation, represent potentially robust mechanisms contributing to gene expression regulation during periods of environmental stress. The presence of enzymes involved in DNA demethylation,...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Environmental conditions can change the activity of plant genes via epigenetic effects that alter th...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
DNA methylation is an epigenetic modification required for transposable element (TE) silencing, geno...
Plants are sessile organisms that need to adapt to constantly changing environmental conditions. Unp...
Due to their sessile state, plants are inevitably affected by and respond to the external environmen...
Alterations in gene expression are essential during growth and development phases and when plants ar...
Plants are continuously exposed to various environmental stresses and they respond to them in differ...
Genome-wide epigenetic changes in plants are being reported during development and environmental str...
Genome-wide epigenetic changes in plants are being reported during development and environmental str...
International audienceSummary Environmental stresses can result in a wide range of physiological and...
6siFor sessile organisms such as plants, regulatory mechanisms of gene expression are vital, since t...
DNA methylation is sensitive and responsive to stressful environmental conditions. Nonetheless, the ...
DNA methylation is sensitive and responsive to stressful environmental conditions. Nonetheless, the ...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Environmental conditions can change the activity of plant genes via epigenetic effects that alter th...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
DNA methylation is an epigenetic modification required for transposable element (TE) silencing, geno...
Plants are sessile organisms that need to adapt to constantly changing environmental conditions. Unp...
Due to their sessile state, plants are inevitably affected by and respond to the external environmen...
Alterations in gene expression are essential during growth and development phases and when plants ar...
Plants are continuously exposed to various environmental stresses and they respond to them in differ...
Genome-wide epigenetic changes in plants are being reported during development and environmental str...
Genome-wide epigenetic changes in plants are being reported during development and environmental str...
International audienceSummary Environmental stresses can result in a wide range of physiological and...
6siFor sessile organisms such as plants, regulatory mechanisms of gene expression are vital, since t...
DNA methylation is sensitive and responsive to stressful environmental conditions. Nonetheless, the ...
DNA methylation is sensitive and responsive to stressful environmental conditions. Nonetheless, the ...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...
Environmental conditions can change the activity of plant genes via epigenetic effects that alter th...
Plant development processes are regulated by epigenetic alterations that shape nuclear structure, ge...