Centre for Ecology, Evolution & Behaviour, Department of Biological Sciences, School for Life Sciences and the Environment, Royal Holloway University of London, Egham, UK.
Pesticide Peer Review Unit, European Food Safety Authority (EFSA), via Carlo Magno 1A, 43126, Parma, Italy.
Sci Rep. 2022 Oct 15;12(1):17311. doi: 10.1038/s41598-022-22239-4.
There is growing evidence that pesticides may be among the causes of worldwide bee declines, which has resulted in repeated calls for their increased scrutiny in regulatory assessments. One recurring concern is that the current frameworks may be biased towards assessing risks to the honey bee. This paradigm requires extrapolating toxicity information across bee species. Most research effort has therefore focused on quantifying differences in sensitivity across species. However, our understanding of how responses to pesticides may vary within a species is still very poor. Here we take the first steps towards filling this knowledge gap by comparing acute, lethal hazards in sexes and castes of the eusocial bee Bombus terrestris and in sexes of the solitary bee Osmia bicornis after oral and contact exposure to the pesticides sulfoxaflor, Amistar (azoxystrobin) and glyphosate. We show that sensitivity towards pesticides varies significantly both within and across species. Bee weight was a meaningful predictor of pesticide susceptibility. However, weight could not fully explain the observed differences, which suggests the existence of unexplored mechanisms regulating pesticide sensitivity across bee sexes and castes. Our data show that intra-specific responses are an overlooked yet important aspect of the risk assessment of pesticides in bees.
越来越多的证据表明,杀虫剂可能是全球蜜蜂数量减少的原因之一,这导致人们一再呼吁在监管评估中加强对杀虫剂的审查。一个反复出现的问题是,当前的框架可能偏向于评估对蜜蜂的风险。这种模式需要在蜜蜂物种之间推断出毒性信息。因此,大多数研究工作都集中在量化不同物种之间的敏感性差异上。然而,我们对物种内对杀虫剂的反应可能会如何变化的理解仍然非常有限。在这里,我们通过比较接触和口服接触杀虫剂磺酰氟、阿米斯达(唑菌胺酯)和草甘膦后,社会性蜜蜂熊蜂(Bombus terrestris)的雌雄和职蜂,以及独居蜜蜂壁蜂(Osmia bicornis)的雌雄,首次着手填补这一知识空白。我们表明,敏感性在物种内和物种间都有显著差异。蜜蜂体重是衡量对杀虫剂敏感性的一个有意义的预测因子。然而,体重并不能完全解释观察到的差异,这表明存在着尚未探索的机制,可以调节蜜蜂雌雄和职蜂对杀虫剂的敏感性。我们的数据表明,种内反应是评估蜜蜂中杀虫剂风险的一个被忽视但很重要的方面。