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在蓝莓授粉期间,管理蜂面临的农药风险主要是由场外暴露引起的。

Pesticide risk to managed bees during blueberry pollination is primarily driven by off-farm exposures.

机构信息

Department of Entomology, Michigan State University, 202 CIPS, 578 Wilson Road, East Lansing, MI, 48824, USA.

Pollinating Insect - Biology, Management, Systematics Research Unit, U.S. Department of Agriculture - Agricultural Research Service, 1410 N 800 E, Logan, UT, 84341, USA.

出版信息

Sci Rep. 2022 May 3;12(1):7189. doi: 10.1038/s41598-022-11156-1.

Abstract

When managed bee colonies are brought to farms for crop pollination, they can be exposed to pesticide residues. Quantifying the risk posed by these exposures can indicate which pesticides are of the greatest concern and helps focus efforts to reduce the most harmful exposures. To estimate the risk from pesticides to bees while they are pollinating blueberry fields, we sampled blueberry flowers, foraging bees, pollen collected by returning honey bee and bumble bee foragers at colonies, and wax from honey bee hives in blooming blueberry farms in southwest Michigan. We screened the samples for 261 active ingredients using a modified QuEChERS method. The most abundant pesticides were those applied by blueberry growers during blueberry bloom (e.g., fenbuconazole and methoxyfenozide). However, we also detected highly toxic pesticides not used in this crop during bloom (or other times of the season) including the insecticides chlorpyrifos, clothianidin, avermectin, thiamethoxam, and imidacloprid. Using LD values for contact and oral exposure to honey bees and bumble bees, we calculated the Risk Quotient (RQ) for each individual pesticide and the average sample RQ for each farm. RQ values were considered in relation to the U.S. Environmental Protection Agency acute contact level of concern (LOC, 0.4), the European Food Safety Authority (EFSA) acute contact LOC (0.2) and the EFSA chronic oral LOC (0.03). Pollen samples were most likely to exceed LOC values, with the percent of samples above EFSA's chronic oral LOC being 0% for flowers, 3.4% for whole honey bees, 0% for whole bumble bees, 72.4% for honey bee pollen in 2018, 45.4% of honey bee pollen in 2019, 46.7% of bumble bee pollen in 2019, and 3.5% of honey bee wax samples. Average pollen sample RQ values were above the EFSA chronic LOC in 92.9% of farms in 2018 and 42.9% of farms in 2019 for honey bee collected pollen, and 46.7% of farms for bumble bee collected pollen in 2019. Landscape analyses indicated that sample RQ was positively correlated with the abundance of apple and cherry orchards located within the flight range of the bees, though this varied between bee species and landscape scale. There was no correlation with abundance of blueberry production. Our results highlight the need to mitigate pesticide risk to bees across agricultural landscapes, in addition to focusing on the impact of applications on the farms where they are applied.

摘要

当管理良好的蜂群被带到农场进行作物授粉时,它们可能会接触到农药残留。量化这些暴露的风险可以表明哪些农药是最值得关注的,有助于集中精力减少最有害的暴露。为了估计蜜蜂在授粉蓝莓田时接触农药的风险,我们在密歇根州西南部的开花蓝莓农场中,从授粉蓝莓花、觅食蜜蜂、返回的蜜蜂和熊蜂采集的花粉以及蜜蜂蜂巢中的蜂蜡中取样,使用改良的 QuEChERS 方法对 261 种活性成分进行了筛选。最丰富的农药是蓝莓种植者在蓝莓开花期间施用的(例如,fenbuconazole 和 methoxyfenozide)。然而,我们还检测到在开花期间(或其他季节)未在该作物中使用的高毒性农药,包括杀虫剂氯吡硫磷、噻虫啉、阿维菌素、噻虫胺和吡虫啉。我们使用蜜蜂和熊蜂接触和口服接触的 LD 值,计算了每种单独农药的风险商数 (RQ) 和每个农场的平均样本 RQ。我们根据美国环境保护署的急性接触关注水平 (LOC,0.4)、欧洲食品安全局 (EFSA) 的急性接触 LOC (0.2) 和 EFSA 的慢性口服 LOC (0.03) 来考虑 RQ 值。花粉样本最有可能超过 LOC 值,2018 年,EFSA 慢性口服 LOC 的花粉样本百分比为 0%,2019 年,EFSA 慢性口服 LOC 的全蜂花粉样本百分比为 3.4%,2018 年,EFSA 慢性口服 LOC 的蜜蜂花粉样本百分比为 72.4%,2019 年,EFSA 慢性口服 LOC 的蜜蜂花粉样本百分比为 45.4%,2019 年,EFSA 慢性口服 LOC 的熊蜂花粉样本百分比为 46.7%,2019 年,EFSA 慢性口服 LOC 的蜜蜂蜂蜡样本百分比为 3.5%。2018 年,92.9%的农场采集的蜜蜂花粉样本平均花粉样本 RQ 值高于 EFSA 的慢性 LOC,2019 年,42.9%的农场采集的蜜蜂花粉样本平均花粉样本 RQ 值高于 EFSA 的慢性 LOC,2019 年,46.7%的农场采集的熊蜂花粉样本平均花粉样本 RQ 值高于 EFSA 的慢性 LOC。景观分析表明,样本 RQ 与位于蜜蜂飞行范围内的苹果和樱桃果园的丰度呈正相关,但在蜜蜂物种和景观尺度上存在差异。与蓝莓产量的丰度没有相关性。我们的结果强调了需要减轻蜜蜂在农业景观中的农药风险,除了关注在施药农场应用农药的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a1b/9065077/a3bea0fc41f6/41598_2022_11156_Fig1_HTML.jpg

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