4.2 Article

Bioremediation of hexavalent chromium (VI) by a soil-borne bacterium, Enterobacter cloacae B2-DHA

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/10934529.2015.1047670

关键词

Bioremediation; chromium; Enterobacter cloacae; human health; soil borne bacterium; tannery effluents

资金

  1. Swedish International Development Cooperation Agency (SIDA) [AKT-2010-018]
  2. Swedish Research Council for Environment, Agricultural Sciences and Spatial Planning (FORMAS) [229-2007-217]
  3. Nilsson-Ehle (The Royal Physiographic Society in Lund) Foundation in Sweden

向作者/读者索取更多资源

Chromium and chromium containing compounds are discharged into the nature as waste from anthropogenic activities, such as industries, agriculture, forest farming, mining and metallurgy. Continued disposal of these compounds to the environment leads to development of various lethal diseases in both humans and animals. In this paper, we report a soil borne bacterium, B2-DHA that can be used as a vehicle to effectively remove chromium from the contaminated sources. B2-DHA is resistant to chromium with a MIC value of 1000 mu g mL(-1) potassium chromate. The bacterium has been identified as a Gram negative, Enterobacter cloacae based on biochemical characteristics and 16S rRNA gene analysis. TOF-SIMS and ICP-MS analyses confirmed intracellular accumulation of chromium and thus its removal from the contaminated liquid medium. Chromium accumulation in cells was 320 mu g/g of cells dry biomass after 120-h exposure, and thus it reduced the chromium concentration in the liquid medium by as much as 81%. Environmental scanning electron micrograph revealed the effect of metals on cellular morphology of the isolates. Altogether, our results indicate that B2-DHA has the potential to reduce chromium significantly to safe levels from the contaminated environments and suggest the potential use of this bacterium in reducing human exposure to chromium, hence avoiding poisoning.

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