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- W2182279507 abstract "The robust metabolic and biocatalytic repertoire of extremophilic microorganisms are of great industrial significance in biocatalysis, bioremediation, and other bioprocesses (Nicolaou et al., 2010; Pandey et al., 2014). Consequently, several previous studies have reported isolation and characterization of extremophilic microorganisms from ecological niches marked by extreme conditions of pressure, temperatures, pH, salinity and elevated concentrations of toxic contaminants (Pandey et al., 2014). However, studies on tolerance, growth and degradation of nitroaromatic compounds by organic solvent tolerant microorganisms from anthropogenic pollutant(s) impacted sites are relatively scarce. Amongst these, the majority is further limited to the genus Pseudomonas (Anokhina et al., 2006), Arthrobacter (Pandey et al., 2014), Paracoccus (Kirankumar et al., 2013) etc. The distinctive homeoviscous adaptations of these microorganisms to withstand the high concentration of toxic environmental toxicants are manifested via increased cell membrane rigidity (imparted by altered membrane fatty acid composition and alternation of cell morphology), changes in cell surface structure, active efflux of the toxic compounds (via energy-dependent ISSN: 2319-7706 Volume 4 Number 1 (2015) pp. 564-574 http://www.ijcmas.com" @default.
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- W2182279507 date "2015-01-01" @default.
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- W2182279507 title "Isolation, screening and assessment of microbial isolates for biodegradation of 2,4- and 2,6-dinitrotoluene" @default.
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