Virulence of mixed fungal infections in honey bee brood

Svjetlana Vojvodic1, Jacobus J Boomsma, Jørgen Eilenberg

  • 1Center for Social Evolution, Department of Agriculture and Ecology Faculty of Life Sciences, University of Copenhagen, Thorvaldsensvej 40, DK 1871 Frederiksberg C, Denmark. vojvodic.sv@gmail.com.

Frontiers in Zoology
|March 27, 2012
PubMed
Abstract

Insights

Co-infecting honey bees with the fungus Ascosphaera atra and the chalkbrood pathogen Ascosphaera apis increased honey bee mortality. These findings highlight the impact of multiple fungal infections on honey bee health.

Area of Science:

  • Mycology
  • Apiculture
  • Insect Pathology

Background:

  • Honey bees (Apis mellifera) face diverse pathogens, with increasing attention on fungal brood diseases.
  • Co-infections with multiple pathogens may accelerate honey bee mortality, prompting investigation into fungal interactions.
  • Previous research has primarily focused on high-virulence bacterial brood diseases.

Purpose of the Study:

  • To determine if co-infection with closely related fungal brood-pathogen species, including specialists and non-specialists, increases honey bee mortality compared to single infections.
  • To assess the impact of specific Ascosphaera species (A. apis, A. proliperda, A. atra) on honey bee larval mortality in controlled laboratory conditions.

Main Methods:

  • A laboratory assay was designed to expose honey bee larvae to controlled infections.
  • Larvae were inoculated with spores of three Ascosphaera species: A. apis (honey bee chalkbrood specialist), A. proliperda (solitary bee chalkbrood specialist), and A. atra (saprophytic fungus).

Main Results:

  • Single infections with the pollen fungus A. atra induced some honey bee larval mortality.
  • Co-infection with A. atra and A. apis significantly increased honey bee mortality compared to single A. apis infections.
  • Infections involving A. proliperda, whether single or mixed, did not elevate brood mortality.

Conclusions:

  • Co-infection with related fungal species can differentially impact host mortality based on species identity.
  • The results underscore the importance of studying multi-pathogen interactions, even involving non-specialist fungi, in understanding honey bee declines.
  • These findings contribute to the broader understanding of factors influencing global honey bee health.

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