Stress factors provoke enhanced production of reactive oxygen species (ROS) in plants. ROS that escape antioxidant-mediated scavenging/detoxification react with biomolecules such as cellular lipids and proteins and cause irreversible damage to the structure of these molecules, initiate their oxidation, and subsequently inactivate key cellular functions. The lipid- and protein-oxidation products are considered as the significant oxidative stress biomarkers in stressed plants. Also, there exists an abundance of information on the abiotic stress-mediated elevations in the generation of ROS, and the modulation of lipid and protein oxidation in abiotic stressed plants. However, the available literature reflects a wide information gap on the mech...
Plants depend on physiological mechanisms to combat adverse environmental conditions, such as pathog...
Doctor of PhilosophyDepartment of BiologyRuth WeltiThe molecular mechanisms by which plants respond ...
Plants suffering from abiotic stress are commonly facing an enhanced accumulation of reactive oxygen...
Stress factors provoke enhanced production of reactive oxygen species (ROS) in plants. ROS that esc...
Stress factors provoke enhanced production of reactive oxygen species (ROS) in plants. ROS that esca...
Polyunsaturated fatty acids present in plant membranes react with reactive oxygen species through so...
Exposure to a variety of environmental factors such as salinity, drought, metal toxicity, extreme te...
Various abiotic stresses lead to the overproduction of reactive oxygen species (ROS) in plants which...
Based on the origin, we can classify different types of stress. Environmental factors, such as high ...
With the advent of human civilization and anthropogenic activities in the shade of urbanization and ...
Plants exposed to hostile environmental conditions such as drought or extreme temperatures usually u...
AbstractIn higher plants, biotic stress (e.g., herbivore or pathogen attack) as well as abiotic stre...
Reactive oxygen species (ROS, partial reduction or derivatives of free radicals) are highly reactive...
International audienceOxidative stress and reactive oxygen species (ROS) are common to many fundamen...
Knieper M, Viehhauser A, Dietz K-J. Oxylipins and Reactive Carbonyls as Regulators of the Plant Redo...
Plants depend on physiological mechanisms to combat adverse environmental conditions, such as pathog...
Doctor of PhilosophyDepartment of BiologyRuth WeltiThe molecular mechanisms by which plants respond ...
Plants suffering from abiotic stress are commonly facing an enhanced accumulation of reactive oxygen...
Stress factors provoke enhanced production of reactive oxygen species (ROS) in plants. ROS that esc...
Stress factors provoke enhanced production of reactive oxygen species (ROS) in plants. ROS that esca...
Polyunsaturated fatty acids present in plant membranes react with reactive oxygen species through so...
Exposure to a variety of environmental factors such as salinity, drought, metal toxicity, extreme te...
Various abiotic stresses lead to the overproduction of reactive oxygen species (ROS) in plants which...
Based on the origin, we can classify different types of stress. Environmental factors, such as high ...
With the advent of human civilization and anthropogenic activities in the shade of urbanization and ...
Plants exposed to hostile environmental conditions such as drought or extreme temperatures usually u...
AbstractIn higher plants, biotic stress (e.g., herbivore or pathogen attack) as well as abiotic stre...
Reactive oxygen species (ROS, partial reduction or derivatives of free radicals) are highly reactive...
International audienceOxidative stress and reactive oxygen species (ROS) are common to many fundamen...
Knieper M, Viehhauser A, Dietz K-J. Oxylipins and Reactive Carbonyls as Regulators of the Plant Redo...
Plants depend on physiological mechanisms to combat adverse environmental conditions, such as pathog...
Doctor of PhilosophyDepartment of BiologyRuth WeltiThe molecular mechanisms by which plants respond ...
Plants suffering from abiotic stress are commonly facing an enhanced accumulation of reactive oxygen...