Reduction of hexavalent chromium by Bacillus spp. isolated from heavy metals-polluted soil

Author:

Ilic Dora1,Dimkic Ivica2ORCID,Waisi Hadi3,Gkorezis Panagiotis4,Hamidovic Saud5,Raicevic Vera1,Lalevic Blazo1

Affiliation:

1. Faculty of agriculture, Belgrade

2. Faculty of biology, Belgrade

3. University Union - Nikola Tesla, Faculty for ecology and environmental protection, Belgrade

4. Hasselt University, Centre for Environmental Sciences Agoralaan, Diepenbeek, Belgium

5. University of Sarajevo, Faculty of agricultural and food sciences, Sarajevo, Bosnia and Herzegovina

Abstract

Hexavalent chromium, Cr(VI), one of the major pollutants from industrial facilities, is very toxic and harmful for human health and environmental quality. Due to the lack of conventional methods, bioremediation was recommended as an environmentally friendly and effective technique. The aim of this paper was the isolation, identification and selection of the microorganisms which are capable of Cr(VI) reduction in vitro. Heavy metal concentration, detected in four soil samples, within and around the former bicycle factory ?Rog? (Republic of Slovenia), was measured using the ICP-OES method. Bacteria were isolated and tested for chromium tolerance using LB agar supplemented with various Cr(VI) concentrations, whilst Cr(VI) reduction and bacterial growth was determined using the LB liquid medium. From 53 bacterial isolates, five of them showed a tolerance of 1000 mg/L of Cr(VI). Those five isolates showed the capability of growth under various Cr(VI) concentrations (50-1000 mg/L). Initial Cr(VI) concentrations ranging from 50 to 100 mg/L were completely reduced by four bacterial isolates, whilst 500 to 1000 mg/L by Bacillus safensis 342-9. Using 16S rDNA and tuf gene sequence analyses, isolates 270-9R and 342-9 were identified as Bacillus safensis, isolates 351-9 and 270-9C as Bacillus subtilis subsp. subtilis, and 212-9 as Bacillus thuringiensis. These results indicated that these bacteria may be promising tools for remediation of metal-polluted sites.

Funder

Ministry of Education, Science and Technological Development of the Republic of Serbia

Publisher

National Library of Serbia

Subject

General Chemical Engineering

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