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.

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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