Production optimization, stability and oil emulsifying potential of biosurfactants from selected bacteria isolated from oil-contaminated sites

Author:

Ali Ferdausi1,Das Sharup1ORCID,Hossain Tanim Jabid2ORCID,Chowdhury Sumaiya Islam2ORCID,Zedny Subrina Akter12ORCID,Das Tuhin1ORCID,Ahmed Chowdhury Mohammad Nazmul2ORCID,Uddin Mohammad Seraj1ORCID

Affiliation:

1. Department of Microbiology, University of Chittagong, Chattogram 4331, Bangladesh

2. Department of Biochemistry and Molecular Biology, University of Chittagong, Chattogram 4331, Bangladesh

Abstract

Oil pollution is of increasing concern for environmental safety and the use of microbial surfactants in oil remediation has become inevitable for their efficacy and ecofriendly nature. In this work, biosurfactants of bacteria isolated from oil-contaminated soil have been characterized. Four potent biosurfactant-producing strains (SD4, SD11, SD12 and SD13) were selected from 27 isolates based on drop collapse assay and emulsification index, and identified as species belonging to Bacillus , Burkholderia , Providencia and Klebsiella , revealed from their 16S rRNA gene-based analysis. Detailed morphological and biochemical characteristics of each selected isolate were determined. Their growth conditions for maximum biosurfactant production were optimized and found quite similar among the four isolates with a pH of 3.0 and temperature 37°C after 6 or 7 days of growth on kerosene. The biosurfactants of SD4, SD11 and SD12 appeared to be glycolipids and that of SD13 a lipopeptide. Emulsification activity of most of the biosurfactants was stable at low and high temperatures (4–100°C), a wide range of pH (2–10) and salt concentrations (2–7% NaCl). Each biosurfactant showed antimicrobial activity against two or more pathogenic bacteria. The biosurfactants were well-capable of emulsifying kerosene, diesel and soya bean, and could efficiently degrade diesel.

Funder

University of Chittagong

Publisher

The Royal Society

Subject

Multidisciplinary

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