School of Environmental Sciences, University of Guelph, Guelph, ON, N1G 2W1, Canada.
Sci Total Environ. 2024 Dec 1;954:176534. doi: 10.1016/j.scitotenv.2024.176534. Epub 2024 Sep 25.
New evidence points to substantial impacts of exposure to pesticide residues in soil for a range of bee taxa that have close regular contact with this substrate. Among others, the risk of exposure is high for bumblebee (Bombus spp.) queens hibernating in agricultural soils. An important question is whether bumblebee queens can detect and avoid pesticide-contaminated soils, or whether they might be attracted to such agrochemical residues. To address this question, we performed a multiple-choice preference experiment in which newly emerged bumblebee (Bombus impatiens) queens were given access to arrays of 36 crates of soil treated with different pesticides in large mesh-covered enclosures. Five of the most commonly encountered pesticides in agricultural soils (boscalid, chlorantraniliprole, clothianidin, cyantraniliprole, difenoconazole) were selected for testing at two contamination levels (lower or higher), based on field-realistic exposure estimates. Bumblebee queens consistently avoided hibernating in pesticide-free soil at both contamination levels, while showing no avoidance for any pesticide-treated soil types. At the lower contamination level, queens selected the pesticide-free soil 1.3 to 2.4-fold less frequently on average than any of the spiked soils, while none of the queens from the higher contamination group selected pesticide-free soil. This apparent preference for pesticide-contaminated soils increases the likelihood of exposure to and potential hazard from pesticide residues in soil for bumblebee queens during hibernation, a critical and highly vulnerable period of their annual life cycle.
新的证据表明,对于与土壤密切接触的一系列蜜蜂类群,暴露于土壤中农药残留会产生实质性影响。其中,在农业土壤中冬眠的大黄蜂(Bombus spp.)蜂王面临着较高的暴露风险。一个重要的问题是,大黄蜂蜂王是否能够检测和避免受农药污染的土壤,或者它们是否可能被这些农用化学品残留所吸引。为了回答这个问题,我们进行了一项多项选择偏好实验,在这个实验中,新出现的大黄蜂(Bombus impatiens)蜂王被给予接触不同农药处理的 36 个箱子的机会,这些箱子被放置在大型网格覆盖的围栏中。根据实地暴露估计,选择了五种在农业土壤中最常见的农药(boscalid、chlorantraniliprole、clothianidin、cyantraniliprole、difenoconazole),在两个污染水平(低或高)下进行测试。大黄蜂蜂王在两个污染水平下都一致地避免在无农药的土壤中冬眠,而对任何农药处理的土壤类型都没有表现出回避。在低污染水平下,蜂王选择无农药土壤的频率比任何一种加标土壤都低 1.3 到 2.4 倍,而在高污染组的蜂王中没有一个选择无农药土壤。这种对农药污染土壤的明显偏好增加了大黄蜂蜂王在冬眠期间接触和潜在暴露于土壤中农药残留的可能性,这是它们年度生命周期中一个关键且高度脆弱的时期。