Antioxidant enzymes such as superoxide dismutase (SOD), catalase (CAT), ascorbate peroxidase (APX) and glutathione peroxidase (GPX) reportedly allow plants to combat toxic metal stress. Hydroponic experi- ment was conducted to study the response of antioxidant enzymes under arsenic (As) stress in the fronds and roots of an Indian ecotype of Pteris vittata (As hyperaccumulator) and Vetiveria zizanioides (As non hyperaccumulator). These plants were exposed to different As levels (0, 10, 20, 30 & 50mg As L−1) for 10 days in green house. In P. vittata and V. zizanioides, total As accumulation in biomass increases with increase in As concentrations. Arsenic accumulation was more in the fronds than in the roots of P. vittata, though not in case o...
Kumar V, Dietz K-J, Sharma SS. Differential Arsenic-Induced Membrane Damage and Antioxidant Defence ...
a b s t r a c t This study determined the role of plant and microbes in arsenite (AsIII) oxidation i...
The discovery of the arsenic hyperaccumulator, Pteris vittata (Chinese brake fern), has contributed ...
Arsenic pollution is a growing menace in major parts of West Bengal, India and Bangladesh. Arsenic p...
Plant species capable of hyper-accumulating heavy metals are of considerable interest for phytoremed...
Arsenic uptake by plants is species-specific and its level in terrestrial plants of uncontaminated s...
It has been suggested that thiol compounds such as glutathione (GSH) and phytochelatin (PC) contribu...
Arsenic (As) hyperaccumulation trait has been described in a limited number of fern species. The phy...
Plants are widely considered the most cost effective and environmentally friendly way to clean soils...
Pteris vittata, the first reported arsenic hyperaccumulating plant, is potentially used in phytoreme...
Zantedeschia aethiopica (calla lily) and Anemopsis californica (yerba mansa) are plant species capab...
The current study was undertaken to determine the effects of arsenic on Colocasia esculentum. Rhizom...
Pteris vittata can tolerate very high soil arsenic concentration and rapidly accumulates the metall...
4Pteris vittata may effectively reduce arsenite in its fronds. This study examined the roles of arse...
Arsenic (As) contamination poses a high risk to human health. Phytoremediation based on As hyperaccu...
Kumar V, Dietz K-J, Sharma SS. Differential Arsenic-Induced Membrane Damage and Antioxidant Defence ...
a b s t r a c t This study determined the role of plant and microbes in arsenite (AsIII) oxidation i...
The discovery of the arsenic hyperaccumulator, Pteris vittata (Chinese brake fern), has contributed ...
Arsenic pollution is a growing menace in major parts of West Bengal, India and Bangladesh. Arsenic p...
Plant species capable of hyper-accumulating heavy metals are of considerable interest for phytoremed...
Arsenic uptake by plants is species-specific and its level in terrestrial plants of uncontaminated s...
It has been suggested that thiol compounds such as glutathione (GSH) and phytochelatin (PC) contribu...
Arsenic (As) hyperaccumulation trait has been described in a limited number of fern species. The phy...
Plants are widely considered the most cost effective and environmentally friendly way to clean soils...
Pteris vittata, the first reported arsenic hyperaccumulating plant, is potentially used in phytoreme...
Zantedeschia aethiopica (calla lily) and Anemopsis californica (yerba mansa) are plant species capab...
The current study was undertaken to determine the effects of arsenic on Colocasia esculentum. Rhizom...
Pteris vittata can tolerate very high soil arsenic concentration and rapidly accumulates the metall...
4Pteris vittata may effectively reduce arsenite in its fronds. This study examined the roles of arse...
Arsenic (As) contamination poses a high risk to human health. Phytoremediation based on As hyperaccu...
Kumar V, Dietz K-J, Sharma SS. Differential Arsenic-Induced Membrane Damage and Antioxidant Defence ...
a b s t r a c t This study determined the role of plant and microbes in arsenite (AsIII) oxidation i...
The discovery of the arsenic hyperaccumulator, Pteris vittata (Chinese brake fern), has contributed ...