Rhizospheric bacteria: the key to sustainable heavy metal detoxification strategies

Author:

Joshi Samiksha,Gangola Saurabh,Bhandari Geeta,Bhandari Narendra Singh,Nainwal Deepa,Rani Anju,Malik Sumira,Slama Petr

Abstract

The increasing rate of industrialization, anthropogenic, and geological activities have expedited the release of heavy metals (HMs) at higher concentration in environment. HM contamination resulting due to its persistent nature, injudicious use poses a potential threat by causing metal toxicities in humans and animals as well as severe damage to aquatic organisms. Bioremediation is an emerging and reliable solution for mitigation of these contaminants using rhizospheric microorganisms in an environmentally safe manner. The strategies are based on exploiting microbial metabolism and various approaches developed by plant growth promoting bacteria (PGPB) to minimize the toxicity concentration of HM at optimum levels for the environmental clean-up. Rhizospheric bacteria are employed for significant growth of plants in soil contaminated with HM. Exploitation of bacteria possessing plant-beneficial traits as well as metal detoxifying property is an economical and promising approach for bioremediation of HM. Microbial cells exhibit different mechanisms of HM resistance such as active transport, extra cellular barrier, extracellular and intracellular sequestration, and reduction of HM. Tolerance of HM in microorganisms may be chromosomal or plasmid originated. Proteins such as MerT and MerA of mer operon and czcCBA, ArsR, ArsA, ArsD, ArsB, and ArsC genes are responsible for metal detoxification in bacterial cell. This review gives insights about the potential of rhizospheric bacteria in HM removal from various polluted areas. In addition, it also gives deep insights about different mechanism of action expressed by microorganisms for HM detoxification. The dual-purpose use of biological agent as plant growth enhancement and remediation of HM contaminated site is the most significant future prospect of this article.

Publisher

Frontiers Media SA

Subject

Microbiology (medical),Microbiology

Reference244 articles.

1. Biosorption of lead, chromium and cadmium in tannery effluent using indigenous microorganisms.;Abioye;Braz. J. Biol. Sci.,2018

2. Rhizobacterial effects on nickel extraction from soil and uptake by Alyssum murale.;Abou-Shanab;New Phytol.,2003

3. Textile effluents and their contribution towards aquatic pollution in the Kabul River (Pakistan).;Abrar;J. Chem. Soc. Pak.,2011

4. The effect of excess copper on growth and physiology of important food crops: A review.;Adrees;Environ. Sci. Pollut. Res.,2015

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