Biparental vertical transmission of Aedes anphevirus, Guadeloupe mosquito virus, and verdadero virus in colonized Aedes aegypti
Dunham, T. J.; Saavedra-Rodriguez, K.; Foy, B. D.; Mayo, C. E.; Stenglein, M. D.
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Aedes aegypti mosquitoes can be infected by arboviruses that can be transmitted to and cause disease in vertebrates. Ae. aegypti can also be infected by insect-specific viruses, which do not infect vertebrates, but may impact mosquito biology and vector competence. In this study we characterized the viromes of Ae. aegypti populations that had been maintained in laboratory colonies for 4 to 18 years. Mosquitoes were originally collected in Tapachula, Poza Rica and Merida, Mexico and New Orleans, USA. We used metagenomics to characterize the viruses present in the colonies, then quantified the vertical transmission efficiencies of the viruses by performing crosses between populations. The viruses infecting these colonies included Aedes anphevirus, Guadeloupe mosquito virus, and verdadero virus. These viruses were at high prevalence in infected populations, with over 75% of individual adult mosquitoes infected. All three viruses exhibited biparental vertical transmission: both infected mothers and infected fathers transmitted infection to their offspring, but in all cases maternal transmission was more efficient than paternal. We also identified evidence of possible horizontal transmission between adult mosquitoes that had cohabited during crosses. Efficient transgenerational transmission likely contributes to the ability of these viruses to persist in laboratory populations and nature. Because of their efficient vertical transmission and minimal apparent fitness costs, these viruses could be good candidates for gene delivery to mosquito populations, including for vector control. Author summaryAedes aegypti mosquitoes are responsible for transmission of many dangerous pathogens, including dengue virus, Zika virus, and yellow fever virus. These mosquitoes also carry viruses that do not pose a threat to public health, but might influence mosquito biology. In this study, we identified viruses that persistently infected 4 long-established Ae. aegypti colonies in our insectary. These viruses were at high prevalence in these laboratory populations, and did not appear to harm infected mosquitoes. The viruses exhibited an ability to efficiently transmit from parents to offspring, both from infected mothers and infected fathers. This provided an explanation for how these mosquitoes were able to persist so successfully in laboratory populations, and by extension in nature. Given their ability to efficiently spread and minimal apparent fitness costs, these viruses represent promising candidates for use in mosquito control or other practical applications.
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