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Updated: Aug 3, 2026

Cost-effective Method for Microbial Source Tracking Using Specific Human and Animal Viruses
Published on: December 3, 2011
Evaluation of Low-Cost Phage-Based Microbial Source Tracking Tools for Elucidating Human Fecal Contamination Pathways
Renuka Kapoor1, James Ebdon2, Ashutosh Wadhwa1
1Center for Global Safe Water, Sanitation and Hygiene, Rollins School of Public Health, Emory University, Atlanta, GA, United States.
Abstract:
Phages, such as those infecting Bacteroides spp., have been proven to be reliable indicators of human fecal contamination in microbial source tracking (MST) studies, and the efficacy of these MST markers found to vary geographically. This study reports the application and evaluation of candidate MST methods (phages infecting previously isolated B. fragilis strain GB-124, newly isolated Bacteroides strains (K10, K29, and K33) and recently isolated Kluyvera intermedia strain ASH-08), along with non-source specific somatic coliphages (SOMCPH infecting strain WG-5) and indicator bacteria (Escherichia coli) for identifying fecal contamination pathways in Kolkata, India. Source specificity of the phage-based methods was first tested using 60 known non-human fecal samples from common animals, before being evaluated with 56 known human samples (municipal sewage) collected during both the rainy and dry season. SOMCPH were present in 40-90% of samples from different animal species and in 100% of sewage samples. Phages infecting Bacteroides strain GB-124 were not detected from the majority (95%) of animal samples (except in three porcine samples) and were present in 93 and 71% of the sewage samples in the rainy and dry season (Mean = 1.42 and 1.83 log10PFU/100mL, respectively), though at lower levels than SOMCPH (Mean = 3.27 and 3.02 log10PFU/100mL, respectively). Phages infecting strain ASH-08 were detected in 89 and 96% of the sewage samples in the rainy and dry season, respectively, but were also present in all animal samples tested (except goats). Strains K10, K29, and K30 were not found to be useful MST markers due to low levels of phages and/or co-presence in non-human sources. GB-124 and SOMCPH were subsequently deployed within two low-income neighborhoods to determine the levels and origin of fecal contamination in 110 environmental samples. E. coli, SOMCPH, and phages of GB-124 were detected in 68, 42, and 28% of the samples, respectively. Analyses of 166 wastewater samples from shared community toilets and 21 samples from sewage pumping stations from the same districts showed that SOMCPH were present in 100% and GB-124 phages in 31% of shared toilet samples (Median = 5.59 and <1 log10 PFU/100 mL, respectively), and both SOMCPH and GB-124 phages were detected in 95% of pumping station samples (Median = 5.82 and 4.04 log10 PFU/100 mL, respectively). Our findings suggest that GB-124 and SOMCPH have utility as low-cost fecal indicator tools which can facilitate environmental surveillance of enteric organisms, elucidate human and non-human fecal exposure pathways, and inform interventions to mitigate exposure to fecal contamination in the residential environment of Kolkata, India.
Insights
Bacteriophage markers, including GB-124 and somatic coliphages (SOMCPH), effectively track fecal contamination in Kolkata, India. These low-cost tools help identify pollution sources and inform public health interventions.
Area of Science:
- Environmental microbiology
- Water quality monitoring
- Microbial source tracking
Background:
- Bacteriophages are reliable indicators of human fecal contamination.
- Their effectiveness in microbial source tracking (MST) can vary geographically.
- Identifying fecal contamination pathways is crucial for public health.
Purpose of the Study:
- To evaluate candidate phage-based MST methods for identifying fecal contamination pathways in Kolkata, India.
- To assess the source specificity and efficacy of phages infecting Bacteroides strain GB-124 and somatic coliphages (SOMCPH).
- To compare phage-based methods with indicator bacteria like Escherichia coli.
Main Methods:
- Tested phages infecting B. fragilis GB-124, newly isolated Bacteroides strains (K10, K29, K33), and Kluyvera intermedia ASH-08.
- Evaluated somatic coliphages (SOMCPH) and E. coli.
- Assessed source specificity using 60 animal fecal samples and 56 human sewage samples from Kolkata.
Main Results:
- Phages infecting GB-124 showed high specificity to human sources, unlike SOMCPH and ASH-08 phages.
- GB-124 and SOMCPH phages were detected in environmental samples, shared toilets, and sewage pumping stations.
- E. coli, SOMCPH, and GB-124 phages were detected in 68%, 42%, and 28% of environmental samples, respectively.
Conclusions:
- GB-124 and SOMCPH are effective, low-cost fecal indicators for environmental surveillance in Kolkata.
- These phage markers can differentiate human from non-human fecal sources.
- Findings support interventions to mitigate fecal contamination in residential areas.
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