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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.
Abstract:
Plague is a re-emerging zoonotic disease and a major public health concern in several portions of the world, especially in Madagascar. We report on the presence of different subtypes of Yersinia pestis co-occurring in the same locality. After confirmation of a human plague case in Ambohitromby Commune (Ankazobe District) via isolation of Y. pestis, we undertook small mammal trapping to identify the circulation of Y. pestis amongst rodents in this locality; blood samples were collected from rodents for seroprevalence analysis. Of the 60 individuals of Rattus rattus captured, one yielded an isolate of Y. pestis, 13 others were positive for F1 antigen of Y. pestis using a rapid diagnostic test, and 4 were PCR positive targeting the caf1 and pla genes; 28/60 (46.7%) of the captured R. rattus were seropositive for Y. pestis. Whole-genome SNP analyses revealed that the two isolates obtained from the human case, and the R. rattus belonged to two different subtypes of Y. pestis (s05 and s13, respectively) that were circulating concurrently in Ambohitromby in 2016. Three Y. pestis subtypes (s03, s05 and s13) have now been isolated from Ambohitromby. Subtype s05 had been persisting there for >10 years but one or both of the other subtypes may have been introduced from the Central Highlands region as they were not observed in previous years (s13) or only observed once previously (s03). High seroprevalence against Y. pestis in R. rattus suggests that a portion of the local murine population may have acquired resistance to Y. pestis. Future research should focus on genomically characterizing Y. pestis strains circulating in Ankazobe District and other plague-endemic regions of Madagascar to better understand the overall phylogeography of Y. pestis.
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.
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