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Published on: October 9, 2017
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.
Introduction:
Honey bees, Apis mellifera, have a diverse community of pathogens. Previous research has mostly focused on bacterial brood diseases of high virulence, but milder diseases caused by fungal pathogens have recently attracted more attention. This interest has been triggered by partial evidence that co-infection with multiple pathogens has the potential to accelerate honey bee mortality. In the present study we tested whether co-infection with closely related fungal brood-pathogen species that are either specialists or non-specialist results in higher host mortality than infections with a single specialist. We used a specially designed laboratory assay to expose honey bee larvae to controlled infections with spores of three Ascosphaera species: A. apis, the specialist pathogen that causes chalkbrood disease in honey bees, A. proliperda, a specialist pathogen that causes chalkbrood disease in solitary bees, and A. atra, a saprophytic fungus growing typically on pollen brood-provision masses of solitary bees.
Results:
We show for the first time that single infection with a pollen fungus A. atra may induce some mortality and that co-infection with A. atra and A. apis resulted in higher mortality of honey bees compared to single infections with A. apis. However, similar single and mixed infections with A. proliperda did not increase brood mortality.
Conclusion:
Our results show that co-infection with a closely related fungal species can either increase or have no effect on host mortality, depending on the identity of the second species. Together with other studies suggesting that multiple interacting pathogens may be contributing to worldwide honey bee health declines, our results highlight the importance of studying effects of multiple infections, even when all interacting species are not known to be specialist pathogens.
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.

