| Literature DB >> 32146283 |
Pankaj Bhatt1, Yaohua Huang1, Eldon R Rene2, Alagarasan Jagadeesh Kumar3, Shaohua Chen4.
Abstract
The main aim of this study was to investigate and characterize the bacterial strain that has the potential to degrade allethrin. The isolated strain, Sphingomonas trueperi CW3, degraded allethrin (50 mg L-1) in batch experiments within seven days. The Box-Behnken design optimized allethrin degradation and had a confirmation of 93% degradation at pH 7.0, at a temperature of 30 °C and an inocula concentration of 100 mg L-1. The results from gas chromatography and mass spectrometry analysis confirmed the existence of nine metabolites from the degradation of allethrin with strain CW3. The cleavage of the ester bond, followed by the degradation of the five-carbon rings, was allethrin's primary degradation pathway. The strain CW3 also degraded other widely applied synthetic pyrethroids such as cyphenothrin, bifenthrin, permethrin, tetramethrin, β-cypermethrin and chlorempenthrin. Furthermore, in experiments performed with sterilized soil, strain CW3 based bioaugmentation effectively removed allethrin at a significantly reduced half-life.Entities:
Keywords: Allethrin; Bioaugmentation; Degradation pathway; Sphingomonas trueperi strain CW3
Year: 2020 PMID: 32146283 DOI: 10.1016/j.biortech.2020.123074
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642