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全氟辛烷磺酸(PFOS)对陆地传粉者熊蜂(昆虫纲,膜翅目)的影响。

Impact of a perfluorinated organic compound PFOS on the terrestrial pollinator Bombus terrestris (Insecta, Hymenoptera).

机构信息

Department of Biology, Faculty of Sciences, Free University of Brussels, Brussels, Belgium.

出版信息

Ecotoxicology. 2011 Mar;20(2):447-56. doi: 10.1007/s10646-011-0596-2. Epub 2011 Jan 21.

Abstract

Perfluorinated organic chemicals like perfluorooctane sulfonic acid (PFOS) are persistent environmental pollutants that have been measured in a great diversity of wildlife worldwide, especially in the aquatic compartment. However, little information is available on the presence and effects of PFOS in the terrestrial compartment. Therefore, we investigated in this project the risks for effects, bioaccumulation and potential mechanisms of activity of PFOS in the bumblebee Bombus terrestris L. (Hymenoptera: Apidae) that is an important worldwide pollinator in the terrestrial compartment of wildflowers and cultivated crops. The exposure to PFOS occurred orally via the drinking of treated sugar water in a wide range from 1 μg/l up to 10 mg/l, containing environmentally relevant as well as high concentrations, and this was done with use of microcolonies of B. terrestris in the laboratory. A chronic toxicity assay demonstrated high bumblebee worker mortality (up to 100%) with an LC(50) of 1.01 mg/l (R(2) = 0.98). In addition, PFOS posed strong detrimental reproductive effects, and these concerted with a dramatic reduction in ovarian size. HPLC-MS demonstrated a bioaccumulation factor of 27.9 for PFOS in bumblebee workers fed with sugar water containing 100 μg/l PFOS during 5 weeks (2184 ± 365 ng/g BW). Finally, potential mechanisms of activity were investigated to explain the significant impact of PFOS on survival and reproduction capacity of B. terrestris. Exposure of bumblebee workers to PFOS resulted in a significant decrease in mitochondrial electron transport activity (p = 0.035) and lipid amounts (p = 0.019), while the respective p-values were 0.58 and 0.12 for protein and glucose amounts. Hence, addition of PFOS to ecdysteroid responsive Drosophila melanogaster S2 cells resulted in a strong antagonistic action on the EcR-b.act.luc reporter construct, demonstrating that PFOS may exert its effects partially through an endocrine disrupting action via the insect molting hormone or ecdysteroid receptor.

摘要

全氟有机化学品,如全氟辛烷磺酸 (PFOS),是持久性的环境污染物,已在全球范围内的各种野生动物中检测到,尤其是在水生环境中。然而,关于 PFOS 在陆地环境中的存在和影响的信息却很少。因此,我们在本项目中研究了全氟辛烷磺酸对陆地环境中的熊蜂 Bombus terrestris L.(膜翅目:蜜蜂科)的影响、生物蓄积和潜在作用机制的风险,因为它是野生花卉和栽培作物陆地环境中一种重要的世界性传粉媒介。熊蜂通过饮用处理过的糖水进行 PFOS 暴露,糖水的浓度范围很广,从 1μg/l 到 10mg/l,包含了环境相关浓度和高浓度,这是在实验室中使用熊蜂的微型群体来完成的。慢性毒性试验表明,熊蜂工蜂死亡率很高(高达 100%),半数致死浓度 (LC50) 为 1.01mg/l(R2=0.98)。此外,PFOS 对生殖能力产生了强烈的不利影响,同时卵巢体积也大幅减小。HPLC-MS 表明,在 5 周内用含有 100μg/l PFOS 的糖水喂养的熊蜂工蜂体内的 PFOS 生物积累系数为 27.9(2184±365ng/g BW)。最后,为了解释 PFOS 对熊蜂生存和生殖能力的显著影响,研究了潜在的作用机制。暴露于 PFOS 的熊蜂工蜂的线粒体电子传递活性显著下降(p=0.035),脂质含量也显著下降(p=0.019),而蛋白质和葡萄糖含量的相应 p 值分别为 0.58 和 0.12。因此,将 PFOS 添加到对蜕皮激素有反应的黑腹果蝇 S2 细胞中,导致 EcR-b.act.luc 报告构建体的强烈拮抗作用,表明 PFOS 可能部分通过干扰昆虫蜕皮激素或蜕皮激素受体的内分泌作用来发挥其作用。

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