TY - JOUR
T1 - Identification of human and animal fecal contamination in drinking water sources in the Kathmandu Valley, Nepal, using host-associated Bacteroidales Quantitative PCR Assays
AU - Malla, Bikash
AU - Shrestha, Rajani Ghaju
AU - Tandukar, Sarmila
AU - Bhandari, Dinesh
AU - Inoue, Daisuke
AU - Sei, Kazunari
AU - Tanaka, Yasuhiro
AU - Sherchand, Jeevan B.
AU - Haramoto, Eiji
N1 - Funding Information:
Funding: This research was funded by the Science and Technology Research Partnership for Sustainable Development (SATREPS) program of Japan International Cooperation Agency and Japan Science and Technology Agency, entitled ‘Hydro-microbiological Approach for Water Security in Kathmandu Valley, Nepal.’ Acknowledgments: The authors acknowledge Suresh Das Shrestha (Tribhuvan University, Nepal) Kei Nishida, Takashi Nakamura, Bijay Man Shakya, Ocean Thakali, Tomoki Iwashita, Ryota Sugaya, Hitoha Moriyama, and Rui Osada (University of Yamanashi, Japan) for their support in water sampling and Sadhana Shrestha (University of Yamanashi, Japan) for her support in the statistical analysis.
Publisher Copyright:
© 2018 by the authors.
PY - 2018/12
Y1 - 2018/12
N2 - This study identified the sources of fecal contamination in the groundwater of different land covers. A total of 300 groundwater samples were collected in the Kathmandu Valley, Nepal, in the dry (n = 152) and wet (n = 148) seasons of 2016. Fecal indicator bacteria were initially enumerated, and then fecal contamination sources were identified using human (BacHum), ruminant (BacR), and pig-associated (Pig2Bac) Bacteroidales quantitative polymerase chain reaction assays. Sixty-six percent (197/300) of the tested groundwater samples had Escherichia coli concentrations higher than the World Health Organization threshold for drinking ( < 1 most probable number/100 mL). The fecal contamination of the groundwater was of human (22%, 55/250), ruminant (11%, 28/250), and pig (3%, 8/250) origin. Deep tube wells were less likely to be positive for E. coli and fecal markers compared to shallow dug wells. The human fecal marker was more likely to be detected in sources from built-up as compared to agricultural areas (Adjusted odds ratio (AOR) = 3.60, p = 0.002). Likewise, the ruminant fecal marker was more likely to be detected in sources from agricultural as compared to built-up areas (AOR = 2.90, p = 0.018). These findings suggest the preparation of mitigation strategies for controlling fecal pollution based on land cover and well types.
AB - This study identified the sources of fecal contamination in the groundwater of different land covers. A total of 300 groundwater samples were collected in the Kathmandu Valley, Nepal, in the dry (n = 152) and wet (n = 148) seasons of 2016. Fecal indicator bacteria were initially enumerated, and then fecal contamination sources were identified using human (BacHum), ruminant (BacR), and pig-associated (Pig2Bac) Bacteroidales quantitative polymerase chain reaction assays. Sixty-six percent (197/300) of the tested groundwater samples had Escherichia coli concentrations higher than the World Health Organization threshold for drinking ( < 1 most probable number/100 mL). The fecal contamination of the groundwater was of human (22%, 55/250), ruminant (11%, 28/250), and pig (3%, 8/250) origin. Deep tube wells were less likely to be positive for E. coli and fecal markers compared to shallow dug wells. The human fecal marker was more likely to be detected in sources from built-up as compared to agricultural areas (Adjusted odds ratio (AOR) = 3.60, p = 0.002). Likewise, the ruminant fecal marker was more likely to be detected in sources from agricultural as compared to built-up areas (AOR = 2.90, p = 0.018). These findings suggest the preparation of mitigation strategies for controlling fecal pollution based on land cover and well types.
KW - Drinking water source
KW - Fecal contamination
KW - Land cover
KW - Microbial source tracking
KW - Water quality
UR - https://www.scopus.com/pages/publications/85058083922
U2 - 10.3390/w10121796
DO - 10.3390/w10121796
M3 - Article
AN - SCOPUS:85058083922
SN - 2073-4441
VL - 10
JO - Water
JF - Water
IS - 12
M1 - 1796
ER -