4.7 Article

Removal of toxic heavy metals using genetically engineered microbes: Molecular tools, risk assessment and management strategies

Journal

CHEMOSPHERE
Volume 298, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2022.134341

Keywords

Heavy metals; Genetic engineering; Micro-organisms; Modification; Wastewater

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Water pollution is caused by direct release of industrial effluent and other human activities. Genetically modified micro-organisms (GMMs) have emerged as an economically feasible and environmentally safe technique for removing toxic heavy metals. This review discusses the potential of GMMs such as bacteria, algae, and fungi for the removal of toxic heavy metals, as well as the advanced molecular tools used for manipulating micro-organisms through genetic expression.
The direct release of industrial effluent into the water and other anthropogenic activities causes water pollution. Heavy metal ions are the primary contaminant in the industrial effluents which are exceptionally toxic at low concentrations, terribly disturb the endurance equilibrium of activities in the eco-system and be remarkably hazardous to human health. Different conventional treatment methodologies were utilized for the removal of toxic pollutants from the contaminated water which has several drawbacks such as cost-ineffective and lower efficiency. Recently, genetically modified micro-organisms (GMMs) stand-out for the removal of toxic heavy metals are viewed as an economically plausible and environmentally safe technique. GMMs are microorganisms whose genetic material has been changed utilizing genetic engineering techniques that exhibit enhanced removal efficiency in comparison with the other treatment methodologies. The present review comments the GMMs such as bacteria, algae and fungi and their potential for the removal of toxic heavy metals. This review provides current aspects of different advanced molecular tools which have been used to manipulate micro-organisms through genetic expression for the breakdown of metal compounds in polluted areas. The strategies, major limitations and challenges for genetic engineering of micro-organisms have been reviewed. The current review investigates the approaches working on utilizing genetically modified micro-organisms and effective removal techniques.

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