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Updated: Feb 16, 2026

Maintaining Aedes aegypti Mosquitoes Infected with Wolbachia
Published on: August 14, 2017
Family level variation in Wolbachia-mediated dengue virus blocking in Aedes aegypti
Gerard Terradas1, Scott L Allen2, Stephen F Chenoweth2
1School of Biological Sciences, Monash University, Clayton, Melbourne, VIC, Australia.
Background:
The mosquito vector Aedes aegypti is responsible for transmitting a range of arboviruses including dengue (DENV) and Zika (ZIKV). The global reach of these viruses is increasing due to an expansion of the mosquito's geographic range and increasing urbanization and human travel. Vector control remains the primary means for limiting these diseases. Wolbachia pipientis is an endosymbiotic bacterium of insects that has the ability to block the replication of pathogens, including flaviviruses such as DENV or ZIKV, inside the body of the vector. A strain of Wolbachia called wMel is currently being released into wild mosquito populations to test its potential to limit virus transmission to humans. The mechanism that underpins the virus blocking effect, however, remains elusive.
Methods:
We used a modified full-sib breeding design in conjunction with vector competence assays in wildtype and wMel-infected Aedes aegypti collected from the field. All individuals were injected with DENV-2 intrathoracically at 5-6 days of age. Tissues were dissected 7 days post-infection to allow quantification of DENV and Wolbachia loads.
Results:
We show the first evidence of family level variation in Wolbachia-mediated blocking in mosquitoes. This variation may stem from either genetic contributions from the mosquito and Wolbachia genomes or environmental influences on Wolbachia. In these families, we also tested for correlations between strength of blocking and expression level for several insect immunity genes with possible roles in blocking, identifying two genes of interest (AGO2 and SCP-2).
Conclusions:
In this study we show variation in Wolbachia-mediated DENV blocking in Aedes aegypti that may arise from genetic contributions and environmental influences on the mosquito-Wolbachia association. This suggests that Wolbachia-mediated blocking may have the ability to evolve through time or be expressed differentially across environments. The long-term efficacy of Wolbachia in the field will be dependent on the stability of blocking. Understanding the mechanism of blocking will be necessary for successful development of strategies that counter the emergence of evolved resistance or variation in its expression under diverse field conditions.
Insights
Variation in Wolbachia-mediated dengue virus blocking was observed in Aedes aegypti mosquitoes, influenced by genetic and environmental factors. This finding is crucial for understanding Wolbachia
Area of Science:
- Entomology
- Microbiology
- Genetics
Background:
- Aedes aegypti mosquitoes transmit arboviruses like dengue (DENV) and Zika (ZIKV), with increasing global spread.
- Wolbachia pipientis bacteria can block DENV/ZIKV replication in mosquitoes.
- The wMel Wolbachia strain is being deployed for vector control, but its blocking mechanism is unclear.
Purpose of the Study:
- Investigate variation in Wolbachia-mediated DENV blocking in Aedes aegypti.
- Explore potential genetic and environmental factors influencing this blocking effect.
- Identify insect immunity genes associated with Wolbachia's virus blocking capability.
Main Methods:
- Utilized a modified full-sib breeding design with Aedes aegypti mosquitoes from the field.
- Conducted vector competence assays using DENV-2 in wildtype and wMel-infected mosquitoes.
- Quantified DENV and Wolbachia loads in mosquito tissues 7 days post-infection.
Main Results:
- Demonstrated the first evidence of family-level variation in Wolbachia-mediated DENV blocking.
- Observed that variation may stem from mosquito/Wolbachia genetics or environmental influences.
- Identified potential roles for AGO2 and SCP-2 insect immunity genes in DENV blocking.
Conclusions:
- Wolbachia-mediated DENV blocking in Aedes aegypti exhibits variation due to genetic and environmental factors.
- This suggests the blocking effect could evolve or vary across different environments.
- Understanding the blocking mechanism is vital for long-term vector control efficacy and managing resistance.
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