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.

Plos One
|March 27, 2015
PubMed

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.