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瓜类作物花蜜和花粉中的农药残留:对传粉者的风险以及特定农药混合物对熊蜂(膜翅目:蜜蜂科)微型蜂群的影响。

Pesticide residues in nectar and pollen of melon crops: Risk to pollinators and effects of a specific pesticide mixture on Bombus terrestris (Hymenoptera: Apidae) micro-colonies.

作者信息

Azpiazu Celeste, Medina Pilar, Sgolastra Fabio, Moreno-Delafuente Ana, Viñuela Elisa

机构信息

Unidad de Protección de Cultivos, Escuela Técnica Superior de Ingeniería Agronómica, Alimentaria y de Biosistemas, Universidad Politécnica de Madrid (ETSIAAB-UPM), Madrid, Spain; Institute of Evolutionary Biology (CSIC- Universitat Pompeu Fabra), Barcelona, Spain; CREAF-Universitat Autònoma de Barcelona, Bellaterra (Cerdanyola Del Vallès), Catalonia, Spain.

Unidad de Protección de Cultivos, Escuela Técnica Superior de Ingeniería Agronómica, Alimentaria y de Biosistemas, Universidad Politécnica de Madrid (ETSIAAB-UPM), Madrid, Spain.

出版信息

Environ Pollut. 2023 Jun 1;326:121451. doi: 10.1016/j.envpol.2023.121451. Epub 2023 Mar 16.

Abstract

Residues detected in pollen collected by honey bees are often used to estimate pesticide exposure in ecotoxicological studies. However, for a more accurate assessment of pesticides effect on foraging pollinators, residues found directly on flowers are a more realistic exposure approximation. We conducted a multi-residue analysis of pesticides on pollen and nectar of melon flowers collected from five fields. The cumulative chronic oral exposure Risk Index (RI) was calculated for Apis mellifera, Bombus terrestris and Osmia bicornis to multiple pesticides. However, this index could underestimate the risk since sublethal or synergistic effects are not considered. Therefore, a mixture containing three of the most frequently detected pesticides in our study was tested for synergistic impact on B. terrestris micro-colonies through a chronic oral toxicity test. According to the result, pollen and nectar samples contained numerous pesticide residues, including nine insecticides, nine fungicides, and one herbicide. Eleven of those were not applied by farmers during the crop season, revealing that melon agroecosystems may be pesticide contaminated environments. The primary contributor to the chronic RI was imidacloprid and O. bircornis is at greatest risk for lethality resulting from chronic oral exposure at these sites. In the bumblebee micro-colony bioassay, dietary exposure to acetamiprid, chlorpyrifos and oxamyl at residue level concentration, showed no effects on worker mortality, drone production or drone size and no synergies were detected when pesticide mixtures were evaluated. In conclusion, our findings have significant implications for improving pesticide risk assessment schemes to guarantee pollinator conservation. In particular, bee pesticide risk assessment should not be limited to acute exposure effects to isolated active ingredients in honey bees. Instead, risk assessments should consider the long-term pesticide exposure effects in both pollen and nectar on a range of bees that reflect the diversity of natural ecosystems and the synergistic potential among pesticide formulations.

摘要

在生态毒理学研究中,蜜蜂采集的花粉中检测到的残留物常被用于估计农药暴露情况。然而,为了更准确地评估农药对觅食传粉者的影响,直接在花朵上发现的残留物是更实际的暴露近似值。我们对从五个田地采集的甜瓜花的花粉和花蜜进行了农药多残留分析。计算了意大利蜜蜂、地熊蜂和双角壁蜂对多种农药的累积慢性口服暴露风险指数(RI)。然而,由于未考虑亚致死或协同效应,该指数可能会低估风险。因此,通过慢性口服毒性试验,测试了一种含有我们研究中最常检测到的三种农药的混合物对小群地熊蜂的协同影响。结果显示,花粉和花蜜样本含有大量农药残留,包括9种杀虫剂、9种杀菌剂和1种除草剂。其中有11种在作物生长季节农民并未施用,这表明甜瓜农业生态系统可能是受农药污染的环境。慢性RI的主要贡献者是吡虫啉,在这些地点,双角壁蜂因慢性口服暴露而致死的风险最大。在熊蜂小群落生物测定中,以残留水平浓度经口接触啶虫脒、毒死蜱和杀螟威,对工蜂死亡率、雄蜂产生或雄蜂大小均无影响,评估农药混合物时未检测到协同作用。总之,我们的研究结果对改进农药风险评估方案以确保传粉者保护具有重要意义。特别是,蜜蜂农药风险评估不应局限于对蜜蜂中分离活性成分的急性暴露影响。相反,风险评估应考虑花粉和花蜜中农药对一系列蜜蜂的长期暴露影响,这些蜜蜂反映了自然生态系统的多样性以及农药制剂之间的协同潜力。

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