Genomic epidemiology of erythromycin-resistant Bordetella pertussis in China

Zheng Xu1, Zengguo Wang2,3, Yang Luan2

  • 1a School of Biotechnology and Biomolecular Sciences , University of New South Wales , Sydney , Australia.

Insights

Erythromycin-resistant Bordetella pertussis strains are increasing in China. Genomic analysis revealed independent resistant lineages, driven by antibiotic and vaccine pressures, with a novel fhaB3 allele emerging.

Area of Science:

  • Microbiology
  • Genomics
  • Evolutionary Biology

Background:

  • Macrolides like erythromycin are standard treatment for Bordetella pertussis.
  • China has seen a rise in erythromycin-resistant B. pertussis since 2013.

Purpose of the Study:

  • To investigate the origins and evolutionary relationships of erythromycin-resistant B. pertussis in China.
  • To understand the genetic basis and phylogenetic spread of resistance.

Main Methods:

  • Antibiotic sensitivity testing and Multiple Locus Variable-number tandem repeat Analysis (MLVA) on 167 isolates.
  • Whole genome sequencing and phylogenetic analysis on 50 selected isolates.

Main Results:

  • 163 of 167 isolates were erythromycin-resistant.
  • Three independent erythromycin-resistant lineages were identified, all with 23S rRNA gene mutations.
  • A novel fhaB3 allele was found in Chinese ptxP1 isolates, exhibiting a higher mutation rate.

Conclusions:

  • Antibiotic and vaccine pressures likely drive B. pertussis evolution in China.
  • The new fhaB3 allele may result from vaccine selection, while resistant lineages are linked to antibiotic pressure.
  • Continued monitoring of B. pertussis in China is crucial for understanding pathogen evolution.

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