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High pesticide risk to honey bees despite low focal crop pollen collection during pollination of a mass blooming crop

机译:蜂蜜蜜蜂的高杀虫剂风险尽管在群众盛开的作物授粉期间焦点作物花粉收集

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摘要

Honey bees provide critical pollination services for many agricultural crops. While the contribution of pesticides to current hive loss rates is debated, remarkably little is known regarding the magnitude of risk to bees and mechanisms of exposure during pollination. Here, we show that pesticide risk in recently accumulated beebread was above regulatory agency levels of concern for acute or chronic exposure at 5 and 22 of the 30 apple orchards, respectively, where we placed 120 experimental hives. Landscape context strongly predicted focal crop pollen foraging and total pesticide residues, which were dominated by fungicides. Yet focal crop pollen foraging was a poor predictor of pesticide risk, which was driven primarily by insecticides. Instead, risk was positively related to diversity of non-focal crop pollen sources. Furthermore, over 60% of pesticide risk was attributed to pesticides that were not sprayed during the apple bloom period. These results suggest the majority of pesticide risk to honey bees providing pollination services came from residues in non-focal crop pollen, likely contaminated wildflowers or other sources. We suggest a greater understanding of the specific mechanisms of non-focal crop pesticide exposure is essential for minimizing risk to bees and improving the sustainability of grower pest management programs.
机译:蜜蜂为许多农业作物提供关键授粉服务。虽然杀虫剂对当前蜂巢损失率的贡献是讨论的,但对授粉期间养蜂风险的程度和接触机制的风险程度非常几乎是很少的。在这里,我们表明最近积累的蜂拥而至的农药风险分别高于30个苹果园5和22日的急性或慢性暴露的监管机构,其中我们放置了120个实验性荨麻疹。景观背景强烈预测的焦点作物花粉觅食和总杀虫剂残留物,其由杀菌剂主导。然而,焦点作物花粉觅食是杀虫剂风险的可怜预测因素,其主要由杀虫剂驱动。相反,风险与非局灶性作物花粉来源的多样性呈正相关。此外,超过60%的农药风险归因于苹果绽放期间未喷涂的农药。这些结果表明,提供授粉服务的蜜蜂的大多数农药风险来自非局灶性作物花粉中的残留物,可能是污染的野花或其他来源。我们建议更了解非局灶性作物农药暴露的具体机制对于使蜜蜂的风险降低,提高种植者害虫管理计划的可持续性至关重要。

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