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May 9, 2026Trends in Parasitology1 citationsOpen Access

Coevolution stabilizes the honey bee–Varroa destructor–virus system on islands

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LBLaura E. BrettellUniversity of SalfordCFClarissa P. FerreiraUniversity of MinnesotaEVEthel M. VillalobosUniversity of Hawaiʻi at Mānoa

Key Points

  • To examine the coevolution of honey bees, Varroa destructor mites, and viruses on islands over 17 years.
  • Studied honey bee resistance to Varroa destructor in Oahu and Big Island over a 17-year period.
  • Measured DWV prevalence and virulent recombinant form across both islands.
  • Monitored intervention strategies including natural resistance and miticide use.
  • On Oahu, honey bees evolved resistance by detecting and removing 71% of mite-infested brood cells.
  • DWV prevalence decreased on both islands; however, a more virulent recombinant form emerged.
  • Co-evolution on Oahu led to a stable new 'bee-mite-virus' state benefiting beekeepers.

Abstract

For 65 years, the ectoparasitic mite Varroa destructor, along with the deformed wing virus (DWV) it vectors, has killed millions of Apis mellifera honey bee colonies globally. The coevolution of the 'bee-mite-virus' system in Hawaii over 17 years has been closely followed. Resistance to V. destructor evolved in the free-living honey bees on Oahu by detecting and removing a high proportion of mite-infested brood cells, as seen in other mite-resistant honey bees. On Big Island, miticides remain widely used, so on both islands, DWV prevalence decreased, but a more virulent recombinant form evolved. Thus, coevolution on Oahu has produced a new stable 'bee-mite-virus' state that has been exploited by beekeepers and provides a global solution to the V. destructor problem.

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Cite This Study

Brettell et al. (2026) studied this question.

synapsesocial.com/papers/69fecf16b9154b0b828762f6https://doi.org/10.1016/j.pt.2026.04.001
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