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Published on: October 15, 2013
Sequencing-Based Genotyping of Pakistani Burkholderia mallei Strains: A Useful Way for Investigating Glanders
Hanka Brangsch1, Muhammad Saqib2, Awais Ur Rehman Sial3
1Institute for Bacterial Infections and Zoonoses, Friedrich-Loeffler-Institute, Naumburger Str. 96a, 07743 Jena, Thuringia, Germany.
Abstract:
Burkholderia (B.) mallei is a host-adapted equine pathogen that causes glanders, a re-emerging zoonotic disease, which is endemic in Pakistan and other developing countries and seriously impacts the global equine movement. Due to globalization, the geographical restriction of diseases vanishes and the lack of awareness of and experience with eradicated diseases in industrialized countries also promotes the re-introduction of infections in these regions. Owing to the high equine population, the Pakistani province Punjab is a potential hotspot where several glanders outbreaks have been seen over last two decades. For determining the genomic diversity of B. mallei in this and other equine-populated prefectures, the genomes of 19 B. mallei strains isolated between 1999 and 2020 in different locations were sequenced and their genotypes were determined. Particularly, for genetically highly homogenous pathogens like B. mallei genotyping techniques require a high discriminatory power for enabling differentiation on the strain level. Thus, core-genome single nucleotide polymorphism (cgSNP) analysis was applied for distinguishing the highly similar strains. Furthermore, a whole-genome sequence-based core genome multi locus sequence typing (cgMLST) scheme, specific to B. mallei, was developed and additionally applied to the data. It was found that B. mallei genotypes in Pakistan persisted over time and space and genotype clusters preferred connection with a time point rather than the place of isolation, probably due to frequent equine movement, which promotes the spread of glanders. The cgMLST approach proved to work in accord with SNP typing and may help to investigate future glanders outbreaks.
Insights
Genomic analysis reveals that Burkholderia mallei genotypes persist over time and space in Pakistan, likely driven by equine movement. Core genome multi-locus sequence typing (cgMLST) aids in tracking glanders outbreaks.
Area of Science:
- Veterinary Microbiology
- Genomics
- Zoonotic Disease Epidemiology
Background:
- * Burkholderia mallei causes glanders, a re-emerging zoonotic disease affecting equines, particularly in Pakistan.
- * Globalization and lack of awareness facilitate disease re-introduction in previously unaffected regions.
- * Punjab province, Pakistan, is a hotspot for glanders outbreaks due to its large equine population.
Purpose of the Study:
- * To determine the genomic diversity of Burkholderia mallei strains in Pakistan.
- * To investigate the spatial and temporal persistence of B. mallei genotypes.
- * To evaluate advanced genotyping techniques for B. mallei strain differentiation.
Main Methods:
- * Sequencing of 19 B. mallei strains isolated between 1999 and 2020.
- * Core-genome single nucleotide polymorphism (cgSNP) analysis for strain differentiation.
- * Development and application of a whole-genome sequence-based core genome multi-locus sequence typing (cgMLST) scheme.
Main Results:
- * B. mallei genotypes in Pakistan demonstrated persistence over time and geographical locations.
- * Genotype clusters were more strongly associated with isolation time than place, suggesting frequent equine movement.
- * The developed cgMLST scheme showed high discriminatory power, comparable to cgSNP analysis.
Conclusions:
- * Equine movement plays a significant role in the dissemination of B. mallei and glanders.
- * The cgMLST approach is a valuable tool for investigating B. mallei epidemiology and future glanders outbreaks.
- * Understanding genomic diversity is crucial for controlling re-emerging zoonotic diseases like glanders.

