Soil Bioremediation 2021
DOI: 10.1002/9781119547976.ch12
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Bioremediation of Heavy Metals and Other Toxic Substances by Microorganisms

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Cited by 27 publications
(15 citation statements)
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“…The uptake of metal by host was several folds. Cocultivation of seedlings with C18 interfere with the uptake capability of the host by reducing metal uptake by almost 50% (Padhan et al 2021). This is possibly due to the reason that C18 might downregulate heavy metal ATPase genes (GmHMA13, GmHMA14, GmHMA19) and GmMATE1 compared to non-inoculated plants (Bilal et al 2019).…”
Section: Discussionmentioning
confidence: 99%
“…The uptake of metal by host was several folds. Cocultivation of seedlings with C18 interfere with the uptake capability of the host by reducing metal uptake by almost 50% (Padhan et al 2021). This is possibly due to the reason that C18 might downregulate heavy metal ATPase genes (GmHMA13, GmHMA14, GmHMA19) and GmMATE1 compared to non-inoculated plants (Bilal et al 2019).…”
Section: Discussionmentioning
confidence: 99%
“…So, it is necessary to maintain the microbes to get efficient removal of contaminants. Recent research optimizes and develops genetically engineered microbes for safeguarding the environmental sources from toxic chemicals and metals [ 62 , 63 ]. The following section gives in detail the role of these biological creatures in the biofiltration techniques.…”
Section: Biofiltrationmentioning
confidence: 99%
“…The three basic mechanisms for bacterial resistance to toxic metals include—(a) detoxification or biotransformation into a non‐toxic or less toxic form, (b) extrusion of the metals from the cell via efflux pumps and (c) compartmentalization of the metals within or outside the cells (Hao et al, 2021; Rahman & Singh, 2020). Genes encoding these resistance mechanisms are diverse and are essential in bioremediation strains including those that might be designed by synthetic biology techniques (Mahbub et al, 2017; Padhan et al, 2021).…”
Section: Introductionmentioning
confidence: 99%