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Stability of the wMel Wolbachia Infection following Invasion into Aedes aegypti Populations

PLoS neglected tropical diseases · 2014 · Vol. 8(9) · pp. e3115–e3115
Ary A. HoffmannIñaki Iturbe‐OrmaetxeAshley G. CallahanBen L. PhillipsKatrina BillingtonJason K. AxfordBrian L. MontgomeryAndrew P. TurleyScott L. O’Neill

Abstract

The wMel infection of Drosophila melanogaster was successfully transferred into Aedes aegypti mosquitoes where it has the potential to suppress dengue and other arboviruses. The infection was subsequently spread into two natural populations at Yorkeys Knob and Gordonvale near Cairns, Queensland in 2011. Here we report on the stability of the infection following introduction and we characterize factors influencing the ongoing dynamics of the infection in these two populations. While the Wolbachia infection always remained high and near fixation in both locations, there was a persistent low frequency of uninfected mosquitoes. These uninfected mosquitoes showed weak spatial structure at both release sites although there was some clustering around two areas in Gordonvale. Infected females from both locations showed perfect maternal transmission consistent with patterns previously established pre-release in laboratory tests. After >2 years under field conditions, the infection continued to show complete cytoplasmic incompatibility across multiple gonotrophic cycles but persistent deleterious fitness effects, suggesting that host effects were stable over time. These results point to the stability of Wolbachia infections and their impact on hosts following local invasion, and also highlight the continued persistence of uninfected individuals at a low frequency most likely due to immigration.

Insect symbiosis and bacterial influencesMosquito-borne diseases and controlInsect and Pesticide ResearchWolbachiaBiologyAedes aegyptiCytoplasmic incompatibilityAedesVector (molecular biology)Host (biology)Dengue feverDengue virusVirology

MeSH terms

AedesAnimalsFemaleHumansQueenslandWolbachiaHost-Pathogen Interactions

Funding

  • Foundation for the National Institutes of Health
  • Bill and Melinda Gates Foundation
  • National Institutes of Health
  • Medical Research Council
  • Australian Research Council
  • National Health and Medical Research Council
Citations
328
FWCI
33.27
field-weighted impact
References
27
Percentile
100%
vs. same field & year
Citations per year
Cited by
Alternative strategies for mosquito-borne arbovirus control
PLoS neglected tropical diseases · 2019 · 362 citations
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Stability of the wMel Wolbachia Infection following Invasion into Aedes aegypti Populations · Scinovex