<div><p>In this study, the generation of reactive oxygen species, the induction of oxidative stress, and the response of the antioxidative system in hydroponically grown tomato plants as the cause of arsenic-induced phytotoxicity are investigated. Reduction in plant growth was measured in terms of dry weight and length of roots and shoots, the latter accumulating more arsenic than the roots. The treatment resulted in increased formation of superoxide anion (O<sub>2</sub><sup>.−</sup>), H<sub>2</sub>O<sub>2</sub>, and thiobarbituric acid reactive substances, which indicate augmented lipid peroxidation. Superoxide dismutase, catalase (CAT), and ascorbate peroxidase activities were increased in arsenic-treated tomato plants while CAT activity ...
The metalloid arsenic (As) is highly phytotoxic, in part due to the similarity of the arsenates to p...
Antioxidant enzymes such as superoxide dismutase (SOD), catalase (CAT), ascorbate peroxidase (APX) a...
Phytoremediation has proven to be an efficient technology for removing arsenic (As) from water, but ...
Arsenic (As) toxicity and its biochemical effects have been mostly evaluated in ferns and a few high...
Arsenic-induced oxidative stress in chickpea was investigated under glasshouse conditions in respons...
Arsenic-induced oxidative stress in chickpea was investigated under glasshouse conditions in respons...
The current study was undertaken to determine the effects of arsenic on Colocasia esculentum. Rhizom...
Metalloid arsenic is considered as one of the most important environmental contaminant compounds. So...
Arsenic uptake by plants is species-specific and its level in terrestrial plants of uncontaminated s...
Plants often face combinatorial stresses in their natural environment. Here arsenic (As) toxicity wa...
The physiological, biochemical, and proteomic changes in germinating rice seedlings were investigate...
Environmental contamination with arsenic (As) is a global environmental, agricultural and health iss...
Kumar V, Vogelsang L, Seidel T, et al. Interference between arsenic-induced toxicity and hypoxia. PL...
Zantedeschia aethiopica (calla lily) and Anemopsis californica (yerba mansa) are plant species capab...
ABSTRACT Arsenate is reduced to As(III) and causes the formation of free radicals in plants. Arsenic...
The metalloid arsenic (As) is highly phytotoxic, in part due to the similarity of the arsenates to p...
Antioxidant enzymes such as superoxide dismutase (SOD), catalase (CAT), ascorbate peroxidase (APX) a...
Phytoremediation has proven to be an efficient technology for removing arsenic (As) from water, but ...
Arsenic (As) toxicity and its biochemical effects have been mostly evaluated in ferns and a few high...
Arsenic-induced oxidative stress in chickpea was investigated under glasshouse conditions in respons...
Arsenic-induced oxidative stress in chickpea was investigated under glasshouse conditions in respons...
The current study was undertaken to determine the effects of arsenic on Colocasia esculentum. Rhizom...
Metalloid arsenic is considered as one of the most important environmental contaminant compounds. So...
Arsenic uptake by plants is species-specific and its level in terrestrial plants of uncontaminated s...
Plants often face combinatorial stresses in their natural environment. Here arsenic (As) toxicity wa...
The physiological, biochemical, and proteomic changes in germinating rice seedlings were investigate...
Environmental contamination with arsenic (As) is a global environmental, agricultural and health iss...
Kumar V, Vogelsang L, Seidel T, et al. Interference between arsenic-induced toxicity and hypoxia. PL...
Zantedeschia aethiopica (calla lily) and Anemopsis californica (yerba mansa) are plant species capab...
ABSTRACT Arsenate is reduced to As(III) and causes the formation of free radicals in plants. Arsenic...
The metalloid arsenic (As) is highly phytotoxic, in part due to the similarity of the arsenates to p...
Antioxidant enzymes such as superoxide dismutase (SOD), catalase (CAT), ascorbate peroxidase (APX) a...
Phytoremediation has proven to be an efficient technology for removing arsenic (As) from water, but ...