4.7 Article

Transgenic expression of Nix converts genetic females into males and allows automated sex sorting in Aedes albopictus

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COMMUNICATIONS BIOLOGY
卷 5, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s42003-022-03165-7

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  1. EU ERC REVOLINC [CoG-682387]
  2. Agence Nationale de la Recherche [ANR-11-EQPX-0022]
  3. ANR [ANR-19-CE35-0007 GDaMO, 18-CE35-0003-02 BAKOUMBA]

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In this study, transgenic lines of Aedes albopictus expressing the Nix gene were established, and it was found that Nix is sufficient for full masculinization in these mosquitoes. Additionally, the transgenic strains with a fluorescence marker provide a valuable tool for automated sex sorting.
Aedes albopictus is a major vector of arboviruses. Better understanding of its sex determination is crucial for developing mosquito control tools, especially genetic sexing strains. In Aedes aegypti, Nix is the primary gene responsible for masculinization and Nix-expressing genetic females develop into fertile, albeit flightless, males. In Ae. albopictus, Nix has also been implicated in masculinization but its role remains to be further characterized. In this work, we establish Ae. albopictus transgenic lines ectopically expressing Nix. Several are composed exclusively of genetic females, with transgenic individuals being phenotypic and functional males due to the expression of the Nix transgene. Their reproductive fitness is marginally impaired, while their flight performance is similar to controls. Overall, our results show that Nix is sufficient for full masculinization in Ae. albopictus. Moreover, the transgene construct contains a fluorescence marker allowing efficient automated sex sorting. Consequently, such strains constitute valuable sexing strains for genetic control. Nix expression with a fluorescent marker in genetically female Ae. albopictus causes masculinization with minimal effects to reproductive fitness and flight performance.

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