A decade of stability for wMel Wolbachia in natural Aedes aegypti populations

Perran A Ross1, Katie L Robinson1, Qiong Yang1

  • 1Pest and Environmental Adaptation Research Group, Bio21 Institute and the School of BioSciences, The University of Melbourne, Parkville, Victoria, Australia.

Plos Pathogens
|February 23, 2022
PubMed

Insights

Releases of mosquitoes with the wMel Wolbachia strain have successfully controlled dengue for a decade. This study confirms wMel remains stable in effect and genome, ensuring long-term arbovirus control.

Area of Science:

  • Medical entomology
  • Microbial genetics
  • Disease vector control

Background:

  • Wolbachia endosymbionts are used to control arboviruses by blocking transmission in mosquitoes.
  • The wMel strain of Wolbachia induces cytoplasmic incompatibility, aiding its spread in mosquito populations.
  • Releases of wMel-infected Aedes aegypti in Australia have significantly reduced dengue transmission.

Purpose of the Study:

  • To assess the long-term stability of wMel Wolbachia effects in Aedes aegypti populations.
  • To track phenotypic and genomic changes in wMel infections over a decade post-release.
  • To evaluate the impact of antibiotic treatment on wMel clearance and mosquito fitness.

Main Methods:

  • Field surveys and phenotypic assessments of wMel-infected and uninfected mosquitoes.
  • Wolbachia genome sequencing from pre-release and post-release populations.
  • Comparative analysis of mosquito fitness and wMel density after antibiotic treatment.

Main Results:

  • wMel has remained stable in its effects and within-host density for up to ten years.
  • Limited changes in mosquito fitness were observed between wMel-infected and uninfected populations.
  • Genomic comparison revealed minimal differences in wMel over nine years and across release sites.
  • Antibiotic treatment for wMel clearance showed no significant off-target effects on next-generation fitness.

Conclusions:

  • wMel Wolbachia infections are stable in Australian Ae. aegypti populations, supporting long-term arbovirus control.
  • The findings suggest Wolbachia-based population replacement strategies are effective for sustained disease suppression.
  • Ongoing monitoring is recommended to detect any potential evolutionary changes in wMel or mosquito populations.

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