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Olfactory-mediated behavior and host selection in Galleria mellonella
Kaya Makino1, Takaki Hinata1, Sho Miyazaki1,2
1Department of Agriculture, Tokyo University of Agriculture and Technology, Tokyo, Japan.
Pest Management Science
|October 28, 2025
Summary
The greater wax moth, Galleria mellonella, can infest bumblebee hives, potentially spreading pathogens between bee species. Chemical cues from hives are crucial for host location and mating, offering targets for pest control.
Area of Science:
- Entomology
- Chemical Ecology
- Pest Management
Background:
- The greater wax moth (Galleria mellonella) is a significant pest of honeybee colonies.
- It has also been observed in bumblebee and stingless bee colonies, posing a threat to diverse bee populations.
- Adult female wax moths may transmit bee pathogens between colonies during dispersal.
Purpose of the Study:
- To investigate the host utilization of Galleria mellonella on different bee hive materials.
- To identify the olfactory cues that guide host-seeking and mating behaviors in adult wax moths.
- To assess the potential for host expansion and pathogen transmission to new bee species.
Main Methods:
- Larval development and reproduction were assessed on honeybee and bumblebee hive materials.
- Y-tube olfactometry assays were used to evaluate adult female and male olfactory preferences for hive volatiles and pheromones.
- Behavioral responses were analyzed in relation to mating status.
Main Results:
- Greater wax moth larvae successfully developed on both honeybee and bumblebee hive materials, with slower growth on bumblebee materials.
- Adult females were attracted to volatiles from both hive types, showing a preference for honeybee hive volatiles.
- Females exhibited a weak attraction to male pheromones, with no observed shift in preference post-mating; hive odors were more attractive than male extracts.
- Adult males were attracted to beehive volatiles but showed no preference for male or female extracts.
Conclusions:
- Galleria mellonella can develop in bumblebee hives, indicating potential host expansion and pathogen transmission risks.
- Volatile organic compounds from bee hives are key chemical cues for host location and reproductive success in wax moths.
- These findings suggest chemical cues as targets for developing attractant-based monitoring and control strategies for bee pests.

