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Published on: October 15, 2013
Sequence-based detection and typing procedures for Burkholderia mallei: Assessment and prospects
Hanka Brangsch1, Harisankar Singha2, Karine Laroucau3
1Institute of Bacterial Infections and Zoonoses, Friedrich-Loeffler-Institut - Federal Research Institute for Animal Health, Jena, Germany.
Abstract:
Although glanders has been eradicated in most of the developed world, the disease still persists in various countries such as Brazil, India, Pakistan, Bangladesh, Nepal, Iran, Bahrain, UAE and Turkey. It is one of the notifiable diseases listed by the World Organization for Animal Health. Occurrence of glanders imposes restriction on equestrian events and restricts equine movement, thus causing economic losses to equine industry. The genetic diversity and global distribution of the causing agent, Burkholderia (B.) mallei, have not been assessed in detail and are complicated by the high clonality of this organism. Among the identification and typing methods, PCR-based methods for distinguishing B. mallei from its close relative B. pseudomallei as well as genotyping using tandem repeat regions (MLVA) are established. The advent and continuous advancement of the sequencing techniques and the reconstruction of closed genomes enable the development of genome guided epidemiological tools. For achieving a higher genomic resolution, genotyping methods based on whole genome sequencing data can be employed, like genome-wide single nucleotide polymorphisms. One of the limitations in obtaining complete genomic sequences for further molecular characterization of B. mallei is its high GC content. In this review, we aim to provide an overview of the widely used detection and typing methods for B. mallei and illustrate gaps that still require development. The genomic features of Burkholderia, their high homology and clonality will be first described from a comparative genomics perspective. Then, the commonly used molecular detection (PCR systems) and typing systems (e.g., multilocus sequence typing, variable number of tandem repeat analysis) will be presented and put in perspective with recently developed genomic methods. Also, the increasing availability of B. mallei genomic sequences and evolution of the sequencing methods offers exciting prospects for further refinement of B. mallei typing, that could overcome the difficulties presently encountered with this particular bacterium.
Insights
Glanders, caused by Burkholderia mallei, persists globally, impacting the equine industry. This review details current and emerging genomic methods for detecting and typing B. mallei, addressing challenges like high GC content.
Area of Science:
- Veterinary Microbiology
- Genomics
- Epidemiology
Background:
- Glanders, a notifiable disease caused by Burkholderia (B.) mallei, remains endemic in several countries, causing significant economic losses in the equine industry.
- The genetic diversity and global distribution of B. mallei are poorly understood due to its high clonality.
- Current detection and typing methods face limitations in resolving the genetic relatedness of B. mallei strains.
Purpose of the Study:
- To provide a comprehensive overview of established and novel molecular detection and typing methods for B. mallei.
- To highlight the challenges associated with B. mallei genomic characterization, including high GC content.
- To identify research gaps and future directions for improved B. mallei epidemiological surveillance.
Main Methods:
- Review of existing literature on B. mallei detection and typing techniques.
- Comparative genomics analysis of Burkholderia species.
- Evaluation of PCR-based methods, multilocus sequence typing (MLST), and variable number of tandem repeat (VNTR) analysis.
- Discussion of whole-genome sequencing (WGS) based approaches like single nucleotide polymorphisms (SNPs).
Main Results:
- Established PCR systems effectively distinguish B. mallei from B. pseudomallei.
- MLVA and MLST provide valuable genotyping information but can be limited by B. mallei's clonality.
- Whole-genome sequencing offers higher resolution for epidemiological studies, despite challenges posed by high GC content.
Conclusions:
- Advancements in sequencing technologies and genome-guided tools are crucial for refining B. mallei typing.
- Overcoming genomic characterization challenges will enhance our ability to control glanders outbreaks.
- Further development of high-resolution typing methods is essential for global B. mallei surveillance and disease management.
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