TY - JOUR N1 - Copyright of this article belongs to Ingenta Connect. ID - open1522 UR - http://www.ingentaconnect.com/content/wef/wer/2014/00000086/00000005/art00008 IS - 5 A1 - Dhanjal, I A1 - Kaur, D A1 - Kaur, P A1 - Sud, Dhiraj A1 - Cameotra, Swaranjit Singh Y1 - 2014/05/05/ N2 - The present study reports the degradation of the persistent and toxic organophosphate, quinalphos, by employing microorganisms that were already members of the natural soil community for degradation. Bacillus and Pseudomonas spp., both of which are capable of degrading quinalphos from aqueous streams, were isolated from different contaminated soils. Batch experiments were performed to determine the natural and induced biodegradation of quinalphos in the aqueous medium. The rate of degradation was analyzed through determination of residual concentration using UV-Vis spectrophotometer and high-performance liquid chromatography. A single peak of a metabolite was observed on the 160th day, and identified as dihydroxy quinalphos oxon by mass spectrometry. The presence of quinalphos and its metabolite in water over an extended period prompted the authors to investigate its induced biodegradation using indigenous microbes extracted from soil. For biodegradation studies, the isolated microbes were inoculated into minimal media with quinalphos for 17 days. The results revealed that >80% of quinalphos was degraded in 17 days in the presence of isolated microbes, and no metabolite was observed during the biodegradation process. PB - Ingenta Connect JF - Water Environment Research VL - 86 KW - biodegradation; metabolite; microorganisms; persistence; quinalphos TI - Persistence and Biodegradation of Quinalphos Using Soil Microbes SP - 457 EP - 461 ER -