Plants are exposed to abiotic and biotic stress conditions throughout their lifespans that activates various defense programs. Programmed cell death (PCD) is an extreme defense strategy the plant uses to manage unfavorable environments as well as during developmentally induced senescence. Here we investigated the role of leaf age on the regulation of defense gene expression in Arabidopsis thaliana. Two lesion mimic mutants with misregulated cell death, catalase2 (cat2) and defense no death1 (dnd1) were used together with several double mutants to dissect signaling pathways regulating defense gene expression associated with cell death and leaf age. PCD marker genes showed leaf age dependent expression, with the highest expression in old leav...
To determine the range of gene activities associated with leaf senescence, we have identified genes ...
A plethora of diverse programmed cell death (PCD) processes has been described in living organisms. ...
In a previous publication, we performed a phenotypic characterization of Arabidopsis auxin receptor ...
Plants are exposed to abiotic and biotic stress conditions throughout their lifespans that activates...
Leaf senescence is the final stage of leaf development and is induced by the gradual occurrence of a...
Plant defence and senescence share many similarities as evidenced by extensive co-regulation of many...
Age-dependent leaf senescence and cell death in Arabidopsis (Arabidopsis thaliana) requires activati...
Reactive oxygen species (ROS) are the inevitable by-products of essential cellular metabolic and phy...
Reactive oxygen species (ROS) are the inevitable by-products of essential cellular metabolic and phy...
Some Arabidopsis lesion mimic mutants (LMM) show alterations in abiotic stress responses as well as ...
Background: To survive in a changing environment plants constantly monitor their surroundings. In re...
The phytohormone auxin regulates almost every aspect of plant development. At the molecular level, a...
The onset of leaf senescence is controlled by leaf age and ethylene can promote leaf senescence with...
In the present work the regulation of environmentally induced cell death and signaling of systemic a...
The plant hormone salicylic acid (SA) plays critical roles in plant defense, stress responses, and s...
To determine the range of gene activities associated with leaf senescence, we have identified genes ...
A plethora of diverse programmed cell death (PCD) processes has been described in living organisms. ...
In a previous publication, we performed a phenotypic characterization of Arabidopsis auxin receptor ...
Plants are exposed to abiotic and biotic stress conditions throughout their lifespans that activates...
Leaf senescence is the final stage of leaf development and is induced by the gradual occurrence of a...
Plant defence and senescence share many similarities as evidenced by extensive co-regulation of many...
Age-dependent leaf senescence and cell death in Arabidopsis (Arabidopsis thaliana) requires activati...
Reactive oxygen species (ROS) are the inevitable by-products of essential cellular metabolic and phy...
Reactive oxygen species (ROS) are the inevitable by-products of essential cellular metabolic and phy...
Some Arabidopsis lesion mimic mutants (LMM) show alterations in abiotic stress responses as well as ...
Background: To survive in a changing environment plants constantly monitor their surroundings. In re...
The phytohormone auxin regulates almost every aspect of plant development. At the molecular level, a...
The onset of leaf senescence is controlled by leaf age and ethylene can promote leaf senescence with...
In the present work the regulation of environmentally induced cell death and signaling of systemic a...
The plant hormone salicylic acid (SA) plays critical roles in plant defense, stress responses, and s...
To determine the range of gene activities associated with leaf senescence, we have identified genes ...
A plethora of diverse programmed cell death (PCD) processes has been described in living organisms. ...
In a previous publication, we performed a phenotypic characterization of Arabidopsis auxin receptor ...