Presence of Enteric Viruses in Source Waters for Drinking Water Production in the Netherlands

Author:

Lodder W. J.1,van den Berg H. H. J. L.1,Rutjes S. A.1,de Roda Husman A. M.1

Affiliation:

1. Laboratory for Zoonoses and Environmental Microbiology, Centre for Infectious Disease Control Netherlands, National Institute for Public Health and the Environment, P.O. Box 1, NL-3720 BA Bilthoven, Netherlands

Abstract

ABSTRACT The quality of drinking water in the Netherlands has to comply with the Dutch Drinking Water Directive: less than one infection in 10,000 persons per year may occur due to consumption of unboiled drinking water. Since virus concentrations in drinking waters may be below the detection limit but entail a public health risk, the infection risk from drinking water consumption requires the assessment of the virus concentrations in source waters and of the removal efficiency of treatment processes. In this study, samples of source waters were taken during 4 years of regular sampling (1999 to 2002), and enteroviruses, reoviruses, somatic phages, and F-specific phages were detected in 75% (range, 0.0033 to 5.2 PFU/liter), 83% (0.0030 to 5.9 PFU/liter), 100% (1.1 to 114,156 PFU/liter), and 97% (0.12 to 14,403 PFU/liter), respectively, of 75 tested source water samples originating from 10 locations for drinking water production. By endpoint dilution reverse transcription-PCR (RT-PCR), 45% of the tested source water samples were positive for norovirus RNA (0.22 to 177 PCR-detectable units [PDU]/liter), and 48% were positive for rotavirus RNA (0.65 to 2,249 PDU/liter). Multiple viruses were regularly detected in the source water samples. A significant correlation between the concentrations of the two phages and those of the enteroviruses could be demonstrated. The virus concentrations varied greatly between 10 tested locations, and a seasonal effect was observed. Peak concentrations of pathogenic viruses occur in source waters used for drinking water production. If seasonal and short-term fluctuations coincide with less efficient or failing treatment, an unacceptable public health risk from exposure to this drinking water may occur.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference50 articles.

1. Anderson, E. J., and S. G. Weber. 2004. Rotavirus infection in adults. Lancet Infect. Dis.4:91-99.

2. VROM-Inspectie 2005

3. Arraj, A., J. Bohatier, C. Aumeran, J. L. Bailly, H. Laveran, and O. Traore. 2008. An epidemiological study of enteric viruses in sewage with molecular characterization by RT-PCR and sequence analysis. J. Water Health6:351-358.

4. Water safety plan manual: step-by-step risk management for drinking-water suppliers. 2009

5. Bickley, J., and D. Hopkins. 1999. Inhibitors and enhancers of PCR, p. 81-102. In G. C. Saunders and H. C. Parkes (ed.), Analytical molecular biology. Quality and validation, vol. 6. Royal Society of Chemistry, Cambridge, United Kingdom.

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