Plants that have experienced several exposures to dehydration stress show increased resistance to future exposures by producing faster and/or stronger reactions, while many dehydration stress responding genes in Arabidopsis thaliana super-induce their transcription as a ‘memory’ from the previous encounter. A previously unknown, rather unusual, memory response pattern is displayed by a subset of the dehydration stress response genes. Despite robustly responding to a first stress, these genes return to their initial, pre-stressed, transcript levels during the watered recovery; surprisingly, they do not respond further to subsequent stresses of similar magnitude and duration. This transcriptional behavior defines the ‘revised-response’ memory...
In plants, priming allows a more rapid and robust response to recurring stresses. However, while the...
Inducible epigenetic changes in eukaryotes are believed to enable rapid adaptation to environmental ...
AbstractThe ability of plants to cope with abiotic environmental stresses such as drought, salinity,...
Background: Pre-exposing plants to diverse abiotic stresses may alter their physiological and transc...
Pre-exposure to stress may alter plants’ subsequent responses by producing faster and/or stronger re...
Background: How plants respond to dehydration stress has been extensively researched. However, how p...
Pre-exposure to a stress may alter the plant’s cellular, biochemical, and/or transcriptional respons...
Drought, salinity, extreme temperature variations, pathogen and herbivory attacks are recurring envi...
Stress memory refers to the observation that an initial, sub-lethal stress alters plants’ responses ...
Arabidopsis plants subjected to a daily dehydration stress and watered recovery cycle display physio...
Plants subjected to a prior dehydration stress were seen to have altered transcriptional responses d...
<p>Stress memory refers to the observation that an initial, sub-lethal stress alters plants’ respons...
<p>Stress memory refers to the observation that an initial, sub-lethal stress alters plants’ respons...
Background: The molecular mechanisms of genome reprogramming during transcriptional responses to str...
<p>Stress memory refers to the observation that an initial, sub-lethal stress alters plants’ respons...
In plants, priming allows a more rapid and robust response to recurring stresses. However, while the...
Inducible epigenetic changes in eukaryotes are believed to enable rapid adaptation to environmental ...
AbstractThe ability of plants to cope with abiotic environmental stresses such as drought, salinity,...
Background: Pre-exposing plants to diverse abiotic stresses may alter their physiological and transc...
Pre-exposure to stress may alter plants’ subsequent responses by producing faster and/or stronger re...
Background: How plants respond to dehydration stress has been extensively researched. However, how p...
Pre-exposure to a stress may alter the plant’s cellular, biochemical, and/or transcriptional respons...
Drought, salinity, extreme temperature variations, pathogen and herbivory attacks are recurring envi...
Stress memory refers to the observation that an initial, sub-lethal stress alters plants’ responses ...
Arabidopsis plants subjected to a daily dehydration stress and watered recovery cycle display physio...
Plants subjected to a prior dehydration stress were seen to have altered transcriptional responses d...
<p>Stress memory refers to the observation that an initial, sub-lethal stress alters plants’ respons...
<p>Stress memory refers to the observation that an initial, sub-lethal stress alters plants’ respons...
Background: The molecular mechanisms of genome reprogramming during transcriptional responses to str...
<p>Stress memory refers to the observation that an initial, sub-lethal stress alters plants’ respons...
In plants, priming allows a more rapid and robust response to recurring stresses. However, while the...
Inducible epigenetic changes in eukaryotes are believed to enable rapid adaptation to environmental ...
AbstractThe ability of plants to cope with abiotic environmental stresses such as drought, salinity,...