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Biodegradation of organochlorine pesticide endosulfan by bacterial strain Alcaligenes faecalis JBW4
Authors:Lingfen Kong  Shaoyuan Zhu  Lusheng Zhu  Hui Xie  Kunchang Su  Tongxiang Yan  Jun Wang  Jinhua Wang  Fenghua Wang and Fengxia Sun
Institution:Lingfen Kong;Shaoyuan Zhu;Lusheng Zhu;Hui Xie;Kunchang Su;Tongxiang Yan;Jun Wang;Jinhua Wang;Fenghua Wang;Fengxia Sun;Key Laboratory of Agricultural Environment in Universities of Shandong, National Engineering Laboratory for Efcient Utilization of Soil and Fertilizer Resources, College of Resources and Environment, Shandong Agriculture University;College of Marine Life Sciences, Ocean University of China;
Abstract:The recently discovered endosulfan-degrading bacterial strain Alcaligenes faecalis JBW4 was isolated from activated sludge. This strain is able to use endosulfan as a carbon and energy source. The optimal conditions for the growth of strain JBW4 and for biodegradation by this strain were identified, and the metabolic products of endosulfan degradation were studied in detail. The maximum level of endosulfan biodegradation by strain JBW4 was obtained using broth at an initial pH of 7.0, an incubation temperature of 40°C and an endosulfan concentration of 100 mg/L. The concentration of endosulfan was determined by gas chromatography. Strain JBW4 was able to degrade 87.5% of α-endosulfan and 83.9% of β-endosulfan within 5 days. These degradation rates are much higher than the previously reported bacterial strains. Endosulfan diol and endosulfan lactone were the major metabolites detected by gas chromatography-mass spectrometry; endosulfan sulfate, which is a persistent and toxic metabolite, was not detected. These results suggested that A. faecalis JBW4 degrades endosulfan via a non-oxidative pathway. The biodegradation of endosulfan by A. faecalis is reported for the first time. Additionally, the present study indicates that strain JBW4 may have potential for the biodegradation of endosulfan residues.
Keywords:bacterial biodegradation  endosulfan  Alcaligenesfaecalis  optimal conditions  endosulfan diol  non-oxidative pathway
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