Early larval exposure to flumethrin induces long-term impacts on survival and memory behaviors of adult worker bees Apis mellifera

Flumethrin has been supplied as an acaricide for Varroa mite control in world-wide apiculture due to its low lethal effects on honey bees. However, little is known about the effects of short-term flumethrin exposure in the larval stage on adult life stage of bees involving survival status, foraging...

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Veröffentlicht in:Pesticide biochemistry and physiology 2024-05, Vol.201, p.105909-105909, Article 105909
Hauptverfasser: Shi, Jingliang, Liu, Chen, Zhang, Yonghong, Wu, Xiaobo
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Sprache:eng
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Zusammenfassung:Flumethrin has been supplied as an acaricide for Varroa mite control in world-wide apiculture due to its low lethal effects on honey bees. However, little is known about the effects of short-term flumethrin exposure in the larval stage on adult life stage of bees involving survival status, foraging and memory-related behaviors. Here, we found that exposure to flumethrin at 1 mg/L during larval stage reduced survival and altered foraging activities including induced precocious foraging activity, decreased foraging trips and time, and altered rotating day-off status of adult worker bees using the radio frequency identification system. Furthermore, larval exposure at 1 mg/L flumethrin influenced the correct proboscis extension responses of 7-day-old worker bees and decreased homing rates of 20-day-old worker bees, suggesting that 1 mg/L flumethrin exposure at larval stage could affect memory-related behaviors of adult bees; meanwhile, three genes related to memory (GluRA, Nmdar1 and Tyr1) were certainly down-regulated varying different flumethrin concentrations (0.01, 0.1, and 1 mg/L). Combined with transcriptomic sequencing, differentially expressed genes involved in olfactory memory of adult bees were completely down-regulated under flumethrin exposure. Our findings highlight the unprecedented impact of short-term exposure of insecticides on honey bees in long-term health monitoring under field conditions. [Display omitted] •The larval flumethrin exposure at 1 mg/L reduced survival and disturbed foraging activity of adult worker bees.•Exposure to flumethrin at larval stage impaired memory behaviors and related gene expression of adult worker bees.•RNA-Seq analysis revealed comprehensive downregulation of DEGs involved in learning and memory.•Enrichment analysis showed disordered metabolic pathways.
ISSN:0048-3575
1095-9939
DOI:10.1016/j.pestbp.2024.105909