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Stanislaus F. D'Souza

Researcher at Bhabha Atomic Research Centre

Publications -  135
Citations -  7774

Stanislaus F. D'Souza is an academic researcher from Bhabha Atomic Research Centre. The author has contributed to research in topics: Adsorption & Biosorption. The author has an hindex of 47, co-authored 135 publications receiving 7038 citations.

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Extracellular biosynthesis of silver nanoparticles using the fungus Aspergillus fumigatus

TL;DR: The synthesis process was quite fast and silver nanoparticles were formed within minutes of silver ion coming in contact with the cell filtrate, and the process of reduction being extracellular and fast may lead to the development of an easy bioprocess for synthesis ofsilver nanoparticles.
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Prospects of genetic engineering of plants for phytoremediation of toxic metals.

TL;DR: In this paper, the use of genetic engineering to modify plants for metal uptake, transport and sequestration may open up new avenues for enhancing efficiency of phytoremediation, which may offer an effective, environmentally nondestructive and cheap remediation method.
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Cadmium accumulation and its influence on lipid peroxidation and antioxidative system in an aquatic plant, Bacopa monnieri L.

TL;DR: Results suggest that toxic concentrations of Cd caused oxidative damage as evidenced by increased lipid peroxidation and decreased chlorophyll and protein contents, however, B. monnieri is able to combat metal induced oxidative injury involving a mechanism of activation of various enzymatic and non-enzymatic antioxidants.
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Advances in development of transgenic plants for remediation of xenobiotic pollutants

TL;DR: Development of novel transgenic plants for efficient phytoremediation of xenobiotic pollutants, field testing and commercialization will soon become a reality.
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Identification and profiling of arsenic stress-induced microRNAs in Brassica juncea

TL;DR: The exogenous supply of JA and IAA improved growth of plants under As stress and altered expression of miR167, miR319, and miR854 are suggested, suggesting interplay of hormones and miRNAs in the regulation of As response.