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Updated: Jun 15, 2025

Functional Characterization of Carboxylesterases in Insecticide Resistant House Flies, Musca Domestica
Published on: August 23, 2018
Examining imidacloprid behaviorally resistant house flies (Musca domestica L.) (Diptera: Muscidae) for neonicotinoid
Jaqueline N Torres1, Caleb B Hubbard1, Amy C Murillo1
1Department of Entomology, University of California, Riverside, CA, USA.
Abstract:
The house fly (Musca domestica L.) is a ubiquitous fly species commonly associated with confined animal and urban waste storage facilities. It is known for its pestiferous nature and ability to mechanically vector numerous disease-causing pathogens. Effective control of adult house fly populations has traditionally relied upon insecticidal food baits; however, due to the overuse of insecticides, resistance has proven to yield many insecticidal baits and chemical classes less effective. Imidacloprid, the most widely used neonicotinoid, has been formulated and commonly used in house fly baits for over 2 decades. However, widespread evidence of physiological and behavioral resistance to imidacloprid has been documented. While previous studies have investigated the mechanisms of behavioral resistance to imidacloprid in the house fly, it remains unclear whether behavioral resistance is specific to imidacloprid or if behavioral cross-resistance exists to other compounds within the neonicotinoid class of insecticides. The current study used no-choice and choice-feeding bioassays to examine a lab-selected imidacloprid behaviorally resistant house fly colony for cross-resistance to other insecticides in the neonicotinoid chemical class. All flies exhibited high mortality (97-100%) in no-choice assays, even when exposed to imidacloprid, indicating physiological susceptibility to all tested neonicotinoids. House flies exhibited high mortality (98-100%) in choice assays when exposed to all neonicotinoid insecticides tested besides imidacloprid. These results confirm that imidacloprid behavioral resistance is specific to the compound imidacloprid and that alternative neonicotinoids remain viable options for control. Our study showed no evidence of behavioral cross-resistance to other compounds in the neonicotinoid class.
Insights
House flies resistant to imidacloprid insecticide show no cross-resistance to other neonicotinoids. This specificity means alternative neonicotinoids remain effective for controlling these disease-carrying pests.
Area of Science:
- Entomology
- Pest Management
- Insecticide Resistance
Background:
- House flies (Musca domestica L.) are significant pests and vectors of pathogens.
- Insecticidal baits are common control methods, but resistance is increasing.
- Imidacloprid resistance in house flies is well-documented, but cross-resistance is unclear.
Purpose of the Study:
- To investigate behavioral cross-resistance to other neonicotinoids in imidacloprid-resistant house flies.
- To determine if behavioral resistance to imidacloprid is specific or extends to other neonicotinoids.
Main Methods:
- Laboratory-selected imidacloprid-resistant house fly colony.
- No-choice and choice-feeding bioassays.
- Testing mortality rates against imidacloprid and other neonicotinoids.
Main Results:
- High mortality (97-100%) in no-choice assays for all tested neonicotinoids, indicating no physiological resistance.
- High mortality (98-100%) in choice assays for all neonicotinoids except imidacloprid.
- Confirmed imidacloprid behavioral resistance is specific to the compound.
Conclusions:
- Behavioral resistance to imidacloprid in house flies is specific.
- Alternative neonicotinoids remain viable for house fly control.
- No evidence of behavioral cross-resistance to other neonicotinoids was found.

