殺虫剤の暴露がマルハナバチの健康に及ぼす複雑な影響 (The complex effects of pesticide exposure on bumble bee health)

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2025-02-25 ペンシルベニア州立大学(PennState)

ペンシルベニア州立大学の研究チームは、一般的なネオニコチノイド系殺虫剤であるイミダクロプリドがマルハナバチに与える影響を調査しました。その結果、高濃度のイミダクロプリドへの曝露は寿命の短縮や繁殖力の低下と関連している一方で、低濃度の曝露は新たな女王バチの休眠期間中の生存率を向上させることが明らかになりました。この現象はホルメシスと呼ばれ、通常は有害な物質が低濃度では有益な効果をもたらすことを指します。しかし、これらの短期的な利益は長期的な適応度の低下と引き換えになる可能性があり、研究者たちは、ホルメシス効果を考慮しないと、特定の農薬がマルハナバチに有益であるという誤解を招く恐れがあると警告しています。この研究は、農薬のリスク評価やマルハナバチの保全管理戦略において、ホルメシス効果を考慮する必要性を示唆しています。

<関連情報>

ミツバチにおける農薬に対するホルモン反応 Hormetic response to pesticides in diapausing bees

Etya Amsalem,Nathan Derstine and Cameron Murray
Biology Letters  Published:22 January 2025
DOI:https://doi.org/10.1098/rsbl.2024.0612

殺虫剤の暴露がマルハナバチの健康に及ぼす複雑な影響 (The complex effects of pesticide exposure on bumble bee health)

Abstract

Pollinators face declines and diversity loss associated with multiple stressors, particularly pesticides. Most pollination services are provided by annual bees that undergo winter diapause, and many common pesticides are highly soluble in water and move through soil and plants where bees hibernate and feed, yet the effects of pesticides on pollinators’ diapause survival and performance are poorly understood. Pesticides may have complex effects in bees, and some were shown to induce hormetic effects on various traits characterized by high-dose inhibition coupled with low-dose stimulation. Here, we examined the occurrence of hormesis in the responses of bees to imidacloprid. We found that while longevity and reproduction were reduced following exposure to imidacloprid, the survival length of new queens (gynes) was greater. Diapause is a critical period in the life cycle of most bees with profound effects on their health. Exposure to sublethal doses of pesticides may increase bees’ resistance to stress/cold during diapause but may also trade off with reduced reproductive performance later in life. Identifying these trade-offs is crucial to understanding how stressors affect pollinator health and should be accounted for when assessing pesticide risk, designing studies and facilitating conservation and management tools for supporting annual bees during diapause.

有機化学・薬学
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