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Detecting Wolbachia Strain wAlbB in Aedes albopictus Cell Lines
Published on: June 1, 2022
Wolbachia density and cytoplasmic incompatibility in Aedes albopictus: concerns with using artificial Wolbachia
Maurizio Calvitti1, Francesca Marini2, Angiola Desiderio3
1Laboratory of Sustainable Management of the Agro-Ecosystem, ENEA - Italian National Agency for New Technologies, Energy and Sustainable Economic Development, Rome, Italy.
Abstract:
The mosquito Aedes albopictusi is a competent vector of harmful human pathogens, including viruses causing dengue and chikungunya. Cytoplasmic incompatibility (CI) induced by endosymbiotic Wolbachia can be used to produce functionally sterile males that can be released in the field as a suppression tool against this mosquito. Because the available sexing methods are not efficient enough to avoid unintentional release of a few transinfected females, we assessed the CI pattern in crosses between wPip Wolbachia-transinfected (ARwP) females and wild-type males of Ae. albopictus in this study. Quantitative polymerase chain reaction was used to monitor the titer of the Wolbachia strains that naturally infect Ae. albopictus, that is, wAlbA and wAlbB, in age-controlled males and females. Data were coupled with incompatibility level detected when the above-mentioned males were crossed with ARwP females. Wolbachia infection titer was also monitored in samples of wild caught males. Incompatibility level was positively correlated only with wAlbA density. Crosses between wild-type males having very low wAlbA density (<0.001 wAlbA/actin copy numbers) and ARwP females were partially fertile (CIcorr = 68.06 ± 6.20). Individuals with low wAlbA titer were frequently found among sampled wild males (30%-50% depending on the site and period). ARwP males can be as considered as a very promising tool for suppressing Ae. albopictus. However, crosses between wild males having low wAlbA density and ARwP females may be partially fertile. In the case of local establishment of the transinfected mosquito line, this occurrence may favor the replacement of the wild-type mosquitoes with the ARwP line, thus reducing the long-term efficacy of incompatible insect technique. Various alternative strategies have been discussed to prevent this risk and to exploit Wolbachia as a tool to control Ae. albopictus.
Insights
Wolbachia-infected males show promise for controlling Aedes mosquitoes. However, partial fertility in crosses with wild males carrying low Wolbachia levels could impact long-term effectiveness.
Area of Science:
- Medical Entomology
- Vector-Borne Disease Control
- Microbial Genetics
Background:
- Aedes albopictus mosquitoes transmit dengue and chikungunya.
- Cytoplasmic incompatibility (CI) using Wolbachia can create sterile males for mosquito suppression.
- Current sexing methods risk releasing fertile females, compromising control efforts.
Purpose of the Study:
- To assess the cytoplasmic incompatibility (CI) pattern in crosses between Wolbachia-transinfected (ARwP) females and wild-type Aedes albopictus males.
- To quantify Wolbachia titers in wild and transinfected mosquitoes.
- To evaluate the potential of ARwP males as a tool for Ae. albopictus population suppression.
Main Methods:
- Quantitative PCR to measure Wolbachia (wAlbA, wAlbB) titers in male and female Ae. albopictus.
- Assessing CI levels in crosses between ARwP females and wild-type males.
- Monitoring Wolbachia infection titers in wild-caught male mosquitoes.
Main Results:
- CI levels correlated positively with wAlbA density.
- Crosses between wild-type males with very low wAlbA density and ARwP females showed partial fertility (CIcorr = 68.06 ± 6.20).
- Low wAlbA titers were common (30-50%) in wild male populations, varying by site and season.
Conclusions:
- ARwP males are a promising tool for Ae. albopictus suppression.
- Partial fertility in specific crosses poses a risk of replacing wild-type mosquitoes with the ARwP line, potentially reducing long-term control efficacy.
- Strategies are needed to mitigate this risk and optimize Wolbachia-based control of Ae. albopictus.
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