Abstract
Mosquitoes of the Culex genus are critical vectors for numerous diseases, causing significant public health concerns. The intracellular bacterium Wolbachia has emerged as a promising vector control solution due to its ability to interfere with pathogen transmission and manipulate mosquito reproduction. However, unlike the extensively studied WO phage, the biological significance and function of Wolbachia’s pWCP plasmid, a recently discovered and strikingly conserved mobile genetic element in Culex species, remain unknown. This study investigates the developmental dynamics of pWCP and Wolbachia in two Culex mosquito species, Culex pipiens molestus and Culex quinquefasciatus across their life cycle. In general, the abundance levels of Wolbachia and the plasmid were found to vary across life stages and differ between the two species. However, a relatively small number of pWCP copies were observed per Wolbachia cell, together with a co-replication of the plasmid with the bacterium for most developmental stages. Altogether, these findings suggest a likely beneficial and non-parasitic role for pWCP in Wolbachia ’s biology, which may contribute to the intricate interactions between the bacterium and its mosquito hosts.
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CITATION STYLE
Brunner, A., Gauliard, C., Tutagata, J., Bordenstein, S. R., Bordenstein, S. R., Trouche, B., & Reveillaud, J. (2025). Wolbachia and its pWCP plasmid show differential dynamics during the development of Culex mosquitoes. Microbiology Spectrum, 13(5). https://doi.org/10.1128/spectrum.00046-25
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