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Cost-effective Method for Microbial Source Tracking Using Specific Human and Animal Viruses
Published on: December 3, 2011
Human Pathogenic Bacteria Detected in Rainwater: Risk Assessment and Correlation to Microbial Source Tracking Markers
Julia K Denissen1, Brandon Reyneke1, Monique Waso2
1Department of Microbiology, Faculty of Science, Stellenbosch University, Stellenbosch, South Africa.
Abstract:
Roof-harvested rainwater (RHRW) was investigated for the presence of the human pathogenic bacteria Mycobacterium tuberculosis (M. tuberculosis), Yersinia spp. and Listeria monocytogenes (L. monocytogenes). While Yersinia spp. were detected in 92% (n = 25) of the RHRW samples, and L. monocytogenes and M. tuberculosis were detected in 100% (n = 25) of the samples, a significantly higher mean concentration (1.4 × 103 cells/100 mL) was recorded for L. monocytogenes over the sampling period. As the identification of appropriate water quality indicators is crucial to ensure access to safe water sources, correlation of the pathogens to traditional indicator organisms [Escherichia coli (E. coli) and Enterococcus spp.] and microbial source tracking (MST) markers (Bacteroides HF183, adenovirus and Lachnospiraceae) was conducted. A significant positive correlation was then recorded for E. coli versus L. monocytogenes (r = 0.6738; p = 0.000), and Enterococcus spp. versus the Bacteroides HF183 marker (r = 0.4071; p = 0.043), while a significant negative correlation was observed for M. tuberculosis versus the Bacteroides HF183 marker (r = -0.4558; p = 0.022). Quantitative microbial risk assessment indicated that the mean annual risk of infection posed by L. monocytogenes in the RHRW samples exceeded the annual infection risk benchmark limit (1 × 10-4 infections per person per year) for intentional drinking (∼10-4). In comparison, the mean annual risk of infection posed by E. coli was exceeded for intentional drinking (∼10-1), accidental consumption (∼10-3) and cleaning of the home (∼10-3). However, while the risk posed by M. tuberculosis for the two relevant exposure scenarios [garden hosing (∼10-5) and washing laundry by hand (∼10-5)] was below the benchmark limit, the risk posed by adenovirus for garden hosing (∼10-3) and washing laundry by hand (∼10-3) exceeded the benchmark limit. Thus, while the correlation analysis confirms that traditional indicators and MST markers should be used in combination to accurately monitor the pathogen-associated risk linked to the utilisation of RHRW, the integration of QMRA offers a more site-specific approach to monitor and estimate the human health risks associated with the use of RHRW.
Insights
Roof-harvested rainwater frequently contains pathogens like Listeria monocytogenes and Mycobacterium tuberculosis. Combining traditional indicators with microbial source tracking and quantitative microbial risk assessment is crucial for monitoring health risks in RHRW.
Area of Science:
- Environmental microbiology
- Public health
- Water quality assessment
Background:
- Roof-harvested rainwater (RHRW) is a potential water source, but its microbial safety is a concern.
- Pathogenic bacteria such as Mycobacterium tuberculosis, Yersinia spp., and Listeria monocytogenes can contaminate RHRW.
Purpose of the Study:
- To investigate the presence and concentration of key human pathogens in RHRW.
- To correlate pathogen presence with traditional indicators (E. coli, Enterococcus spp.) and microbial source tracking (MST) markers.
- To assess the human health risks associated with RHRW consumption and use via quantitative microbial risk assessment (QMRA).
Main Methods:
- Detection and quantification of M. tuberculosis, Yersinia spp., and L. monocytogenes in RHRW samples.
- Correlation analysis between pathogens, E. coli, Enterococcus spp., and MST markers (Bacteroides HF183, adenovirus, Lachnospiraceae).
- Quantitative microbial risk assessment (QMRA) to estimate infection risks for various exposure scenarios.
Main Results:
- High prevalence of Yersinia spp. (92%), L. monocytogenes (100%), and M. tuberculosis (100%) was observed.
- L. monocytogenes showed a significantly higher mean concentration (1.4 × 10^3 cells/100 mL).
- Significant positive correlations were found between E. coli and L. monocytogenes, and Enterococcus spp. and Bacteroides HF183.
- QMRA indicated that L. monocytogenes, E. coli, and adenovirus risks exceeded benchmarks for drinking and domestic use.
Conclusions:
- Traditional indicators and MST markers are valuable for monitoring RHRW pathogen risks.
- QMRA provides a site-specific approach for estimating human health risks associated with RHRW.
- Combined monitoring strategies are essential for ensuring the safety of RHRW for various uses.
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