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Maintaining Aedes aegypti Mosquitoes Infected with Wolbachia
Published on: August 14, 2017
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.
Abstract:
Mosquitoes carrying Wolbachia endosymbionts are being released in many countries for arbovirus control. The wMel strain of Wolbachia blocks Aedes-borne virus transmission and can spread throughout mosquito populations by inducing cytoplasmic incompatibility. Aedes aegypti mosquitoes carrying wMel were first released into the field in Cairns, Australia, over a decade ago, and with wider releases have resulted in the near elimination of local dengue transmission. The long-term stability of Wolbachia effects is critical for ongoing disease suppression, requiring tracking of phenotypic and genomic changes in Wolbachia infections following releases. We used a combination of field surveys, phenotypic assessments, and Wolbachia genome sequencing to show that wMel has remained stable in its effects for up to a decade in Australian Ae. aegypti populations. Phenotypic comparisons of wMel-infected and uninfected mosquitoes from near-field and long-term laboratory populations suggest limited changes in the effects of wMel on mosquito fitness. Treating mosquitoes with antibiotics used to cure the wMel infection had limited effects on fitness in the next generation, supporting the use of tetracycline for generating uninfected mosquitoes without off-target effects. wMel has a temporally stable within-host density and continues to induce complete cytoplasmic incompatibility. A comparison of wMel genomes from pre-release (2010) and nine years post-release (2020) populations show few genomic differences and little divergence between release locations, consistent with the lack of phenotypic changes. These results indicate that releases of Wolbachia-infected mosquitoes for population replacement are likely to be effective for many years, but ongoing monitoring remains important to track potential evolutionary changes.
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.

