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Integrated site-specific quantification of faecal bacteria and detection of DNA markers in faecal contamination source tracking as a microbial risk tracking tool in urban Lake ecosystems

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【作者】 Oscar Omondi DONDE田翠翠肖邦定

【Author】 Oscar Omondi DONDE;TIAN Cuicui;XIAO Bangding;Key Laboratory of Algal Biology of Chinese Academy of Sciences-Lake Restoration Research Group,Institute of Hydrobiology,Chinese Academy of Sciences;International College,University of Chinese Academy of Sciences;Egerton University,Department of Environmental Science;

【通讯作者】 肖邦定;

【机构】 Key Laboratory of Algal Biology of Chinese Academy of Sciences-Lake Restoration Research Group,Institute of Hydrobiology,Chinese Academy of SciencesInternational College,University of Chinese Academy of SciencesEgerton University,Department of Environmental Science

【摘要】 The presence of feacal-derived pathogens in water is responsible for several infectious diseases and deaths worldwide. As a solution, sources of fecal pollution in waters must be accurately assessed, properly determined and strictly controlled. However, the exercise has remained challenging due to the existing overlapping characteristics by different members of faecal coliform bacteria and the inadequacy of information pertaining to the contribution of seasonality and weather condition on tracking the possible sources of pollution. There are continued ef forts to improve the Faecal Contamination Source Tracking(FCST) techniques such as Microbial Source Tracking(MST). This study aimed to make contribution to MST by evaluating the efficacy of combining site specific quantification of faecal contamination indicator bacteria and detection of DNA markers while accounting for seasonality and weather conditions’ eff ects in tracking the major sources of faecal contamination in a freshwater system(Donghu Lake, China). The results showed that the use of cyd gene in addition to lacZ and uidA genes differentiates E. coli from other closely related faecal bacteria. The use of selective media increases the pollution source tracking accuracy. BSA addition boosts PCR detection and increases FCST efficiency. Seasonality and weather variability also influence the detection limit for DNA markers.

【Abstract】 The presence of feacal-derived pathogens in water is responsible for several infectious diseases and deaths worldwide. As a solution, sources of fecal pollution in waters must be accurately assessed, properly determined and strictly controlled. However, the exercise has remained challenging due to the existing overlapping characteristics by different members of faecal coliform bacteria and the inadequacy of information pertaining to the contribution of seasonality and weather condition on tracking the possible sources of pollution. There are continued ef forts to improve the Faecal Contamination Source Tracking(FCST) techniques such as Microbial Source Tracking(MST). This study aimed to make contribution to MST by evaluating the efficacy of combining site specific quantification of faecal contamination indicator bacteria and detection of DNA markers while accounting for seasonality and weather conditions’ eff ects in tracking the major sources of faecal contamination in a freshwater system(Donghu Lake, China). The results showed that the use of cyd gene in addition to lacZ and uidA genes differentiates E. coli from other closely related faecal bacteria. The use of selective media increases the pollution source tracking accuracy. BSA addition boosts PCR detection and increases FCST efficiency. Seasonality and weather variability also influence the detection limit for DNA markers.

【基金】 Supported by the National Natural Science Foundation of China(Nos.31670465,31370504)
  • 【文献出处】 Journal of Oceanology and Limnology ,海洋湖沼学报(英文) , 编辑部邮箱 ,2018年05期
  • 【分类号】X832
  • 【下载频次】21
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