Plants respond to drought stress by producing abscisic acid, a chemical messenger that regulates gene expression and thereby expedites various physiological and cellular processes including the stomatal operation to mitigate stress and promote tolerance. To trigger or suppress gene transcription under drought stress conditions, the surrounding chromatin architecture must be converted between a repressive and active state by epigenetic remodeling, which is achieved by the dynamic interplay among DNA methylation, histone modifications, loop formation, and non-coding RNA generation. Plants can memorize chromatin status under drought conditions to enable them to deal with recurrent stress. Furthermore, drought tolerance acquired during plant gr...
Plants are sessile organisms that need to adapt to constantly changing environmental conditions. Unp...
The ability of plants to cope with abiotic environmental stresses such as drought, salinity, heat, c...
International audienceWhether environmentally-induced changes in phenotypes can be heritable is a to...
Improving the responsiveness, acclimation, and memory of plants to abiotic stress holds substantive ...
During their lifespan, plants respond to a multitude of stressful factors. Dynamic changes in chroma...
Abstract Plants frequently have to weather both biotic and abiotic stressors, and have evolved sophi...
Examples of transgenerational transmission of environmentally induced epigenetic traits remain rare ...
Epigenetic states and certain environmental responses in mammals and seed plants can persist in the ...
Plants are constantly exposed to various stressors which usually leads to changes in the expression ...
Epigenetic states and certain environmental responses in mammals and seed plants can persist in the ...
Examples of transgenerational transmission of environmentally induced epigenetic traits remain rare ...
AbstractThe ability of plants to cope with abiotic environmental stresses such as drought, salinity,...
Due to their sessile state, plants are inevitably affected by and respond to the external environmen...
Plants are sessile organisms; they cannot move like animals when the environment is not favorable. T...
Plants are sessile organisms and as such are frequently exposed to a wide range of environmental str...
Plants are sessile organisms that need to adapt to constantly changing environmental conditions. Unp...
The ability of plants to cope with abiotic environmental stresses such as drought, salinity, heat, c...
International audienceWhether environmentally-induced changes in phenotypes can be heritable is a to...
Improving the responsiveness, acclimation, and memory of plants to abiotic stress holds substantive ...
During their lifespan, plants respond to a multitude of stressful factors. Dynamic changes in chroma...
Abstract Plants frequently have to weather both biotic and abiotic stressors, and have evolved sophi...
Examples of transgenerational transmission of environmentally induced epigenetic traits remain rare ...
Epigenetic states and certain environmental responses in mammals and seed plants can persist in the ...
Plants are constantly exposed to various stressors which usually leads to changes in the expression ...
Epigenetic states and certain environmental responses in mammals and seed plants can persist in the ...
Examples of transgenerational transmission of environmentally induced epigenetic traits remain rare ...
AbstractThe ability of plants to cope with abiotic environmental stresses such as drought, salinity,...
Due to their sessile state, plants are inevitably affected by and respond to the external environmen...
Plants are sessile organisms; they cannot move like animals when the environment is not favorable. T...
Plants are sessile organisms and as such are frequently exposed to a wide range of environmental str...
Plants are sessile organisms that need to adapt to constantly changing environmental conditions. Unp...
The ability of plants to cope with abiotic environmental stresses such as drought, salinity, heat, c...
International audienceWhether environmentally-induced changes in phenotypes can be heritable is a to...