Reoccurring, Emerging, and Persisting (REP) Strains: A Framework for Surveillance and Investigation of Pathogens of

Matthew E Wise1, Michael Vasser1, Jennifer Adams2

  • 1U.S. Centers for Disease Control and Prevention, United States.

Journal of Food Protection
|February 27, 2026
PubMed

Insights

A new framework for reoccurring, emerging, and persisting (REP) bacterial strains is proposed to better understand foodborne illnesses beyond acute outbreaks. This approach enhances pathogen surveillance and informs prevention strategies by analyzing genetic links and epidemiological patterns.

Area of Science:

  • Foodborne illness epidemiology
  • Molecular subtyping of bacterial pathogens
  • Public health surveillance

Background:

  • Acute outbreaks are a small part of foodborne illness; many illnesses are linked to genetically related bacterial strains over longer periods.
  • Traditional outbreak investigations are insufficient for understanding reoccurring, emerging, and persisting (REP) strains.
  • Advancements in bacterial subtyping, including whole genome sequencing, improve the ability to link illnesses to common sources.

Purpose of the Study:

  • To introduce a novel framework for categorizing and investigating reoccurring, emerging, and persisting (REP) bacterial strains.
  • To enhance the understanding of how pathogens move between humans, foods, animals, and the environment.
  • To inform broader prevention strategies for reducing foodborne illness burden.

Main Methods:

  • Describing the evolution of bacterial subtyping methods from serotyping to whole genome sequencing.
  • Proposing the REP strain framework based on epidemiological patterns: reoccurring, emerging, and persisting.
  • Presenting case studies of six REP strains tracked by US health and regulatory agencies, including PulseNet.

Main Results:

  • The REP strain framework categorizes strains based on their distinct epidemiological patterns.
  • Case studies illustrate the diverse characteristics of REP strains and their transmission pathways.
  • Genomic and epidemiological data reveal insights into pathogen movement and persistence.

Conclusions:

  • Effective monitoring and control of REP strains require interdisciplinary collaboration.
  • Investigating REP strains offers a better understanding of non-outbreak illnesses and pathogen transmission.
  • This framework has the potential to inform prevention strategies and reduce the overall burden of foodborne infections.

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