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Titlebook: Approaches to the Remediation of Inorganic Pollutants; Mirza Hasanuzzaman Book 2021 The Editor(s) (if applicable) and The Author(s), under

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,Molecular Basis of Plant–Microbes Interaction in Remediating Metals and Inorganic Pollutants,ement of heavy metal impacted soils and inorganic pollutants. Bacterial assisted phytoremediation has a great potential for the restoration of metal contaminated environments. Resistance to multiple toxic heavy metals as well as production of plant growth promoting substances such as siderophores, A
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Dual Role of Nitrogen: Essential Plant Mineral Element and Source of Inorganic Pollution,nitrogen absorption, translocation, and assimilation together with environmental factors affecting nitrogen metabolism with a special focus on the possibilities to overcome problems caused by nitrogen fertilizer usage.
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Synthesis and Regulation of Secondary Metabolites in Plants in Conferring Tolerance Against Pollutae SMs also act as basic immune-protector in medicinal plants for traditional medicine in different cultures of the world. The chemical structure of these metabolites mainly corresponds to the antioxidant behavior. Depending upon chemical structure, these metabolites can be classified into various ty
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Bicarbonate Toxicity and Elevated pH in Plants: Metabolism, Regulation and Tolerance,eactions of hydration of CO.. Along with carbonic anhydrase, phosphoenolpyruvate carboxylase and concentration gradient of CO./HCO. would be a choice for a plant for stomatal regulation under drought stress. This review may cover the soil alkalinity through dissolved HCO. as well as induced osmotic
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Antioxidant Defense Systems and Remediation of Metal Toxicity in Plants,hanisms for metal tolerance. Plant and microorganisms possess various mechanisms for the bioremediation of contaminated environments, including soils. Different microorganisms have been favorably employed to decrease the toxic effects of heavy metals. Nevertheless, the critical action is to sectiona
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Physiological and Molecular Mechanism of Metalloid Tolerance in Plants,mplementing genetic engineering techniques, efforts have been made by various scientists to impede the uptake of toxic metalloids by plants by reducing the transporters activities and to upregulate metalloid binding peptides and proteins such as metallothioneins and phytochelatins, for sequestration
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Heavy Metals-Induced Morphophysiological and Biochemical Changes in , L.,ermanent stomatal closure takes place which may enhance ethylene production. Naturally, plants tolerate the stress having vital defensive mechanism against heavy metals. Mainly there are two main strategies used by plants to prevent accumulation of heavy metal in cytoplasm: tolerance and avoidance.
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Copper-Induced Responses in Different Plant Species,t effect of copper toxicity is associated with the blocking of photosynthetic electron transport, leading to the production of radicals which start peroxidative chain reactions. Copper induces oxidative stress that involves induction of lipid peroxidation in the plant which further cause a severe da
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