AbstractTo analyze the potential of the active oxygen-scavenging system of chloroplasts, we introduced Escherichia coli catalase into tobacco chloroplasts. Photosynthesis of transgenic plants was tolerant to high irradiance under drought conditions, while the wild plants suffered severe damage in photosynthesis under the same conditions. Irrespective of responses to the stress, ascorbate peroxidase was completely inactivated both in the transgenic and wild-type plants. These findings are contrary to the established idea that the ascorbate peroxidase-mediated antioxidative system protects chloroplasts from oxidative stress
A chimeric gene consisting of the coding sequence for chloroplastic Fe superoxide dismutase (FeSOD) ...
AbstractMethylviologen (MV) induces oxidative damages in leaves. In order to understand its mechanis...
Abstract: Hydrogen peroxide (H2O2), an important relatively stable non-radical reactive oxygen speci...
AbstractTo analyze the potential of the active oxygen-scavenging system of chloroplasts, we introduc...
In order to understand the role of cytosolic antioxidant enzymes in drought stress protection, trans...
Plants have to counteract unavoidable stress-caused anomalies such as oxidative stress to sustain th...
Hydrogen peroxide (H2O2) has been implicated in many stress conditions, Control of H2O2 levels is co...
Hydrogen peroxide (H2O2), an important relatively stable non-radical reactive oxygen species (ROS) i...
Premise of research. Reactive oxygen species (ROS) accumulate in plant tissues when the plant is exp...
An underlying mechanism for reductions in crop yield under stress conditions is excessive production...
Tolerance against oxidative stress generated by high light intensities or the catalase inhibitor ami...
AbstractThe effects of low ascorbic acid (Asc) on lipophilic antioxidant defences and lipid peroxida...
In chloroplasts, stromal and thylakoid-bound ascorbate peroxidases (tAPX) play a major role in the r...
Adequate responses to environmental changes are crucial for plant growth and survival. However, the ...
AbstractChloroplast glutathione reductase (GR) plays an important role in protecting photosynthesis ...
A chimeric gene consisting of the coding sequence for chloroplastic Fe superoxide dismutase (FeSOD) ...
AbstractMethylviologen (MV) induces oxidative damages in leaves. In order to understand its mechanis...
Abstract: Hydrogen peroxide (H2O2), an important relatively stable non-radical reactive oxygen speci...
AbstractTo analyze the potential of the active oxygen-scavenging system of chloroplasts, we introduc...
In order to understand the role of cytosolic antioxidant enzymes in drought stress protection, trans...
Plants have to counteract unavoidable stress-caused anomalies such as oxidative stress to sustain th...
Hydrogen peroxide (H2O2) has been implicated in many stress conditions, Control of H2O2 levels is co...
Hydrogen peroxide (H2O2), an important relatively stable non-radical reactive oxygen species (ROS) i...
Premise of research. Reactive oxygen species (ROS) accumulate in plant tissues when the plant is exp...
An underlying mechanism for reductions in crop yield under stress conditions is excessive production...
Tolerance against oxidative stress generated by high light intensities or the catalase inhibitor ami...
AbstractThe effects of low ascorbic acid (Asc) on lipophilic antioxidant defences and lipid peroxida...
In chloroplasts, stromal and thylakoid-bound ascorbate peroxidases (tAPX) play a major role in the r...
Adequate responses to environmental changes are crucial for plant growth and survival. However, the ...
AbstractChloroplast glutathione reductase (GR) plays an important role in protecting photosynthesis ...
A chimeric gene consisting of the coding sequence for chloroplastic Fe superoxide dismutase (FeSOD) ...
AbstractMethylviologen (MV) induces oxidative damages in leaves. In order to understand its mechanis...
Abstract: Hydrogen peroxide (H2O2), an important relatively stable non-radical reactive oxygen speci...