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Maintaining Aedes aegypti Mosquitoes Infected with Wolbachia
Published on: August 14, 2017
Heat Sensitivity of wMel Wolbachia during Aedes aegypti Development
Jill N Ulrich1,2, John C Beier3, Gregor J Devine1
1QIMR Berghofer Medical Research Institute, Royal Brisbane Hospital, Brisbane, Australia.
Abstract:
The wMel strain of Wolbachia bacteria is known to prevent dengue and Zika virus transmission in the mosquito vector Aedes aegypti. Accordingly, the release of wMel-infected A. aegypti in endemic regions has been recommended by the World Health Organization as a potential strategy for controlling dengue and Zika outbreaks. However, the utility of this approach could be limited if high temperatures in the aquatic habitats where A. aegypti develop are detrimental to Wolbachia. We exposed wMel-infected A. aegypti eggs and larvae to fluctuating daily temperatures of 30-40°C for three, five, or seven days during their development. We found that Wolbachia levels in females emerging from heat treatments were significantly lower than in the controls that had developed at 20-30°C. Notably, seven days of high temperatures starting at the egg stage reduced Wolbachia levels in emerging females to less than 0.1% of the wMel control levels. However, after adult females returned to 20-30°C for 4-7 days, they experienced differing degrees of Wolbachia recovery. Our findings suggest that the spread of Wolbachia in wild A. aegypti populations and any consequent protection from dengue and Zika viruses might be limited in ecosystems that experience periods of extreme heat, but Wolbachia levels recover partially after temperatures return to normal.
Insights
High temperatures can reduce Wolbachia bacteria levels in Aedes aegypti mosquitoes, potentially limiting dengue and Zika control. However, Wolbachia levels partially recover in adult mosquitoes once temperatures return to normal.
Area of Science:
- Vector-borne disease control
- Microbiology
- Environmental science
Background:
- The wMel strain of Wolbachia bacteria reduces dengue and Zika transmission in Aedes aegypti mosquitoes.
- WHO recommends releasing wMel-infected A. aegypti for disease control.
- High temperatures may negatively impact Wolbachia efficacy.
Purpose of the Study:
- To investigate the effect of high temperatures on Wolbachia levels in A. aegypti.
- To determine if Wolbachia levels recover after heat exposure.
Main Methods:
- Aedes aegypti eggs and larvae infected with wMel were exposed to 30-40°C for 3, 5, or 7 days.
- Wolbachia levels were measured in emerging adult females.
- Recovery of Wolbachia levels was assessed after returning adults to 20-30°C.
Main Results:
- High temperatures significantly reduced Wolbachia levels in adult females.
- Seven days of heat exposure, starting at the egg stage, reduced Wolbachia to <0.1% of control levels.
- Adult females showed partial Wolbachia recovery after returning to normal temperatures.
Conclusions:
- Extreme heat events may limit the effectiveness of Wolbachia-based mosquito control strategies.
- Partial Wolbachia recovery in adult mosquitoes offers some resilience.
- Further research is needed to understand long-term impacts in natural environments.

