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Titlebook: Approaches to Heavy Metal Tolerance in Plants; Sumira Jan,Javid Ahmad Parray Book 2016 Springer Science+Business Media Singapore 2016 Biod

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,Ernährungs-, Genuss- und Gefühlstagebuch,with a great anticipation for commercial. The flourishing monitoring methods for toxic metals in the environment are based on biosensors (microbe–metal interaction), i.e., gene- and protein-based biosensors. The fundamental aspects of microbe–plant stress responses to different doses of toxic metals
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,Ernährungs-, Genuss- und Gefühlstagebuch, together with breakthrough in biotechnology-based research innovations would successfully provide answers for application of biodiversity in advancement of phytoremediation technology. The appropriate plant selection vis-à-vis the phytoextraction is the key for bioprospecting.
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detoxification like genetic engineering and ameliorating the.This book summarizes the development of highly tolerant cultivars via plant breeding, genomics, and proteomic approaches. This book could supplement data for budding researchers by providing extensive ongoing measures to improve the detoxi
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Heavy Metal Uptake in Plants,contents from the soil. Plants can make metal ions more available for uptake by acidifying the rhizosphere and pumping protons via plasma membrane-localized proton pumps and also by exuding low-molecular-weight (LMW) compounds that act as metal chelators.
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Book 2016ents to understand fundamentals of heavy metal pollution in the environment. The book closes with a prelude to an inclusive study of biodiversity that could provide new biofilters for metal detoxification..
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Use of Mycorrhiza as Metal Tolerance Strategy in Plants,heir hosts by obtaining phosphates, micronutrients, and water from soil. The main characteristic feature of AMF is uptake of toxic metals via the fungal hyphae and their accumulation in plant tissues, and mostly heat shock proteins (HSPs) showed increased expression in response to the abiotic stress.
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Book 2016data for budding researchers by providing extensive ongoing measures to improve the detoxification competence of appropriate species via wide range of plant improvement approaches. It also offers insights into heavy metal signalling,metal chelation by organic acids, amino acids, and phosphate deriva
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Biodiversity Prospecting for Phytoremediation of Metals in the Environment, together with breakthrough in biotechnology-based research innovations would successfully provide answers for application of biodiversity in advancement of phytoremediation technology. The appropriate plant selection vis-à-vis the phytoextraction is the key for bioprospecting.
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