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Titlebook: Heavy Metal Stress in Plants; Dharmendra K. Gupta,Francisco J. Corpas,José M. Pa Book 2013 Springer-Verlag Berlin Heidelberg 2013 abiotic

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Evaluation of the Potential of Salt Marsh Plants for Metal Phytoremediation in Estuarine Environmenial not only for their conservation, but also to prevent the propagation of pollutants into the food web. Salt marsh plants have been suggested as suitable alternatives for soil/sediment remediation, having shown potential for the phytoremediation of metal-polluted media. However, more studies in co
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Metal Transporters in Plants,ed. The main aim of this chapter is to discuss the effects of metal ions on a plant cell, to summarize the current state of the art in the field of thiol-rich compounds like phytochelatins to detoxify metal ions.
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Role of Phytochelatins in Heavy Metal Stress and Detoxification Mechanisms in Plants, As Cu, or Zn via sulfhydryl and carboxyl residues, but the biosyntheses are preferentially controlled by the metal Cd or metalloid As. The fundamental roles of PCs in metal detoxification by plant cells are now well known and tolerance of Cd increases in yeast and bacteria with the overexpression o
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,Biogeochemical Cycling of Arsenic in Soil–Plant Continuum: Perspectives for Phytoremediation,nt As forms in plant tissue are the inorganic As species (arsenate As(V) and arsenite As(III)), although there is a small portion (<1 %) of organic As species detected in the shoots. The formation of As–PCs, As–glutathione, and As–MTs complexation is a mechanism of detoxification and sequestration o
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Evaluation of the Potential of Salt Marsh Plants for Metal Phytoremediation in Estuarine Environmenate that both . and . have the capacity to be Cd phytostabilizers indicating that these plants can contribute to the recovery of impacted estuarine areas. More experiments should now be carried out to confirm the phytoremediation applicability in the estuarine environment and to assess ways to impro
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