Local-scale diversity of Yersinia pestis: A case study from Ambohitromby, Ankazobe District, Madagascar

Beza Ramasindrazana1,2, Mamionah N J Parany1,2, Fanohinjanaharinirina Rasoamalala1,2

  • 1Institut Pasteur de Madagascar, Antananarivo, Madagascar.

Zoonoses and Public Health
|September 4, 2021
PubMed

Insights

Plague, a re-emerging zoonotic disease, shows multiple Yersinia pestis subtypes co-occurring in Madagascar. High seroprevalence in rats suggests potential resistance, warranting further genomic study of plague strains.

Area of Science:

  • Microbiology
  • Epidemiology
  • Genomics

Background:

  • Plague is a significant re-emerging zoonotic disease and public health concern globally, particularly in Madagascar.
  • The co-occurrence of different Yersinia pestis subtypes in the same locality presents a complex epidemiological challenge.

Purpose of the Study:

  • To investigate the circulation of Yersinia pestis among rodents following a human plague case in Ambohitromby Commune, Madagascar.
  • To identify and characterize the subtypes of Yersinia pestis present in the affected area using molecular and serological methods.

Main Methods:

  • Isolation of Yersinia pestis from human and rodent samples.
  • Detection of Y. pestis F1 antigen using rapid diagnostic tests.
  • Polymerase chain reaction (PCR) targeting caf1 and pla genes.
  • Seroprevalence analysis of Y. pestis in Rattus rattus.
  • Whole-genome single-nucleotide polymorphism (SNP) analyses to determine Y. pestis subtype phylogeography.

Main Results:

  • Yersinia pestis was isolated from a human case and one Rattus rattus.
  • Multiple Y. pestis subtypes (s03, s05, and s13) were identified in Ambohitromby, with s05 persisting for over a decade.
  • Whole-genome analysis revealed concurrent circulation of two distinct Y. pestis subtypes (s05 and s13) in 2016.
  • A high seroprevalence (46.7%) of Y. pestis was observed in Rattus rattus, indicating potential acquired resistance.

Conclusions:

  • The concurrent circulation of distinct Yersinia pestis subtypes in Madagascar highlights the complex epidemiology of plague.
  • High seroprevalence in the local rat population suggests possible adaptation or resistance mechanisms.
  • Genomic characterization of Y. pestis strains is crucial for understanding plague phylogeography and informing public health strategies in endemic regions.