Bhatt Pankaj, Huang Yaohua, Rene Eldon R, Kumar Alagarasan Jagadeesh, Chen Shaohua
State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, Guangdong Province Key Laboratory of Microbial Signals and Disease Control, Integrative Microbiology Research Centre, South China Agricultural University, Guangzhou 510642, China; Guangdong Laboratory for Lingnan Modern Agriculture, Guangzhou 510642, China.
Department of Environmental Engineering and Water Technology, IHE Delft Institute for Water Education, 2601DA Delft, the Netherlands.
Bioresour Technol. 2020 Jun;305:123074. doi: 10.1016/j.biortech.2020.123074. Epub 2020 Feb 24.
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) 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. 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.
本研究的主要目的是调查和鉴定具有降解丙烯菊酯潜力的细菌菌株。分离出的菌株真珀单胞菌CW3在分批实验中于7天内降解了丙烯菊酯(50毫克/升)。Box-Behnken设计优化了丙烯菊酯的降解,在pH 7.0、温度30°C和接种物浓度100毫克/升的条件下确认降解率为93%。气相色谱和质谱分析结果证实,菌株CW3降解丙烯菊酯产生了9种代谢产物。酯键断裂,随后五碳环降解,是丙烯菊酯的主要降解途径。菌株CW3还能降解其他广泛应用的合成拟除虫菊酯,如苯醚菊酯、联苯菊酯、氯菊酯、胺菊酯、高效氯氰菊酯和氯烯炔菊酯。此外,在无菌土壤实验中,基于菌株CW3的生物强化显著缩短了半衰期,有效去除了丙烯菊酯。