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Maintaining Aedes aegypti Mosquitoes Infected with Wolbachia
Published on: August 14, 2017
Using Wolbachia Releases to Estimate Aedes aegypti (Diptera: Culicidae) Population Size and Survival
Gabriela de Azambuja Garcia1, Lilha Maria Barbosa Dos Santos1, Daniel Antunes Maciel Villela2
1Laboratório de Transmissão de Hematozoários, Instituto Oswaldo Cruz, Fundação Oswaldo Cruz (IOC/FIOCRUZ), Rio de Janeiro, Brazil.
Abstract:
Mosquitoes carrying the endosymbiont bacterium Wolbachia have been deployed in field trials as a biological control intervention due to Wolbachia effects on reducing transmission of arboviruses. We performed mark, release and recapture (MRR) experiments using Wolbachia as an internal marker with daily collections with BG-Traps during the first two weeks of releases in Rio de Janeiro, Brazil. The MRR design allowed us to investigate two critical parameters that determine whether Wolbachia would successful invade a field population: the probability of daily survival (PDS) of Wolbachia-infected Aedes aegypti females, and the wild population density during releases. Released females had a PDS of 0.82 and 0.89 in the first and second weeks, respectively, immediately after releases, which is well within the range of previous estimates of survivorship of wild mosquitoes in Rio de Janeiro. Abundance estimation of wild population varied up to 10-fold higher depending on the estimation method used (634-3565 females on the average-difference model to 6365-16188 females according to Lincoln-Petersen). Wolbachia-released mosquitoes were lower than the density estimation of their wild counterparts, irrespectively of the model used. Individually screening mosquitoes for the presence of Wolbachia reduced uncertainty on abundance estimations due to fluctuation in capturing per week. A successful invasion into local population requires Ae. aegypti fitness is unaffected by Wolbachia presence, but also reliable estimates on the population size of wild mosquitoes.
Insights
Field trials using Wolbachia-infected mosquitoes to control arboviruses showed released mosquitoes had good survival rates. However, their numbers were lower than estimated wild mosquito populations, impacting invasion success.
Area of Science:
- Vector-borne disease control
- Arthropod-borne viral diseases
- Microbial control agents
Background:
- Mosquitoes infected with Wolbachia bacteria are used for biological control of arboviruses.
- Wolbachia reduces the transmission of diseases like dengue and Zika.
- Field trials are crucial to assess the effectiveness of Wolbachia interventions.
Purpose of the Study:
- To evaluate the invasion potential of Wolbachia-infected Aedes aegypti in Rio de Janeiro.
- To estimate the daily survival probability (PDS) of released mosquitoes.
- To determine wild mosquito population density during releases.
Main Methods:
- Mark, Release, and Recapture (MRR) experiments were conducted.
- BG-Traps were used for daily mosquito collections over two weeks.
- Wolbachia presence served as an internal marker for released mosquitoes.
Main Results:
- Released Wolbachia-infected Aedes aegypti females exhibited a PDS of 0.82 (week 1) and 0.89 (week 2).
- Estimates of wild Aedes aegypti population density varied significantly (up to 10-fold) between models.
- Released mosquito numbers were consistently lower than estimated wild population densities.
Conclusions:
- High PDS suggests released mosquitoes can survive in the field.
- Accurate wild mosquito population density estimation is critical for invasion assessment.
- Successful Wolbachia invasion requires unaffected Ae. aegypti fitness and reliable population data.

