特定脂肪酸を多く含む餌がミツバチを農薬から保護(Diets high in a particular type of fat help protect bees against pesticides)

2026-07-28 ペンシルベニア州立大学(Penn State)

ペンシルベニア州立大学(Penn State)の研究チームは、オメガ3脂肪酸を多く含む餌が、ミツバチの農薬耐性を高め、生存率を向上させることを明らかにした。研究成果はProceedings of the Royal Society Bに掲載された。研究では、ミツバチに異なる脂肪酸組成の餌を与えた後、一般的な農薬に曝露して影響を比較した。その結果、オメガ3脂肪酸を豊富に含む餌を摂取した個体は、農薬による死亡率が低下し、酸化ストレスや細胞損傷も抑えられた。一方、オメガ6脂肪酸の比率が高い餌では同様の保護効果は限定的だった。研究チームは、オメガ3脂肪酸が抗酸化機能や細胞膜の安定性を高め、農薬による生理的ストレスを軽減している可能性があると考えている。本成果は、花粉や蜜源植物の種類がミツバチの健康に重要であることを示すとともに、農地や都市部でオメガ3脂肪酸を多く含む植物を増やすことで、受粉昆虫の保全や農業生産の持続性向上につながる可能性を示している。

<関連情報>

食事中の脂質はミツバチ(Apis mellifera)の摂食行動と農薬ストレスに対する耐性に影響を与える Dietary lipids shape honey bee (Apis mellifera) feeding and resilience to pesticide stress

Jaya Sravanthi Mokkapati, Christina M. Grozinger
Journal of Insect Physiology  Available online 26 June 2026
DOI:https://doi.org/10.1016/j.jinsphys.2026.105021

特定脂肪酸を多く含む餌がミツバチを農薬から保護(Diets high in a particular type of fat help protect bees against pesticides)

Highlights

  • Role of fatty acid types in pesticide resilience was studied in Apis mellifera.
  • Honey bees consumed more unsaturated fat diets than saturated fat-rich food.
  • Polyunsaturated fat-rich diets improved honey bee survival upon chlorpyrifos stress.
  • PUFA-diets preserved lipid stores and AChE activity in bees under chlorpyrifos stress.
  • Nutrition–pesticide link highlights the role of lipids in pollinator stress resilience.

Abstract

Pesticides are important for crop production but can have negative impacts on beneficial insects such as pollinators. In insects, physiological lipid stores may serve to sequester pesticides, while pesticide metabolism and detoxification often involve fatty acid pathways. Previous studies in Apis mellifera found that honey bees fed pollen with a specific protein-to-lipid ratio had improved survival when exposed to an insecticide. Here, we comprehensively investigate whether and how the type of dietary fat influences survival, energy reserves, and enzymatic biomarkers, following exposure to an organophosphate insecticide, chlorpyrifos. Newly emerged bees were fed protein-based diets enriched with either saturated (SFA), monounsaturated (MUFA), or polyunsaturated fatty acids (PUFA) for 5 days and then exposed orally to chlorpyrifos (at LC₅₀). Bees fed MUFA and PUFA diets consumed significantly more food than those fed SFA-supplemented diet, indicating a clear preference for unsaturated fats. However, under chlorpyrifos exposure, only PUFA-fed bees exhibited significantly higher survival rates, and also maintained greater lipid reserves and acetylcholine esterase activity compared to SFA- and MUFA-fed groups. These results suggest that PUFA-enriched diets may mitigate pesticide toxicity by preserving neural enzyme function and energy homeostasis. No significant changes in glutathione-S-transferase activity were observed across treatments, suggesting limited dietary modulation of this detoxification pathway. Collectively, our findings demonstrate that dietary fatty acid composition influences honey bee physiological resilience to chlorpyrifos and highlight the potential for PUFA-based nutritional interventions or the design of pollinator habitats, to improve resilience to pesticides.

1207植物保護
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