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首页> 外文期刊>Integrated environmental assessment and management >Evaluating Exposure and Potential Effects on Honeybee Brood (Apis mellifera) Development Using Glyphosate as an Example
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Evaluating Exposure and Potential Effects on Honeybee Brood (Apis mellifera) Development Using Glyphosate as an Example

机译:以草甘膦为例评估暴露量及其对蜜蜂亲代发育的潜在影响

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摘要

This study aimed to develop an approach to evaluate potential effects of plant protection products on honeybee brood with colonies at realistic worst-case exposure rates. The approach comprised 2 stages. In the first stage, honeybee colonies were exposed to a commercial formulation of glyphosate applied to flowering Phacelia tanacetifolia with glyphosate residues quantified in relevant matrices (pollen and nectar) collected by foraging bees on days 1, 2, 3, 4, and 7 postapplication and glyphosate levels in larvae were measured on days 4 and 7. Glyphosate levels in pollen were approximately 10 times higher than in nectar and glyphosate demonstrated rapid decline in both matrices. Residue data along with foraging rates and food requirements of the colony were then used to set dose rates in the effects study. In the second stage, the toxicity of technical glyphosate to developing honeybee larvae and pupae, and residues in larvae, were then determined by feeding treated sucrose directly to honeybee colonies at dose rates that reflect worst-case exposure scenarios. There were no significant effects from glyphosate observed in brood survival, development, and mean pupal weight. Additionally, there were no biologically significant levels of adult mortality observed in any glyphosate treatment group. Significant effects were observed only in the fenoxycarb toxic reference group and included increased brood mortality and a decline in the numbers of bees and brood. Mean glyphosate residues in larvae were comparable at 4 days after spray application in the exposure study and also following dosing at a level calculated from the mean measured levels in pollen and nectar, showing the applicability and robustness of the approach for dose setting with honeybee brood studies. This study has developed a versatile and predictive approach for use in higher tier honeybee toxicity studies. It can be used to realistically quantify exposure of colonies to pesticides to allow the appropriate dose rates to be determined, based on realistic worst-case residues in pollen and nectar and estimated intake by the colony, as shown by the residue analysis. Previous studies have used the standard methodology developed primarily to identify pesticides with insect-growth disrupting properties of pesticide formulations, which are less reliant on identifying realistic exposure scenarios. However, this adaptation of the method can be used to determine dose-response effects of colony level exposure to pesticides with a wide range of properties. This approach would limit the number of replicated tunnel or field-scale studies that need to be undertaken to assess effects on honeybee brood and may be of particular benefit where residues in pollen and nectar are crop- and/or formulation-specific, such as systemic seed treatments and granular applications.
机译:这项研究旨在开发一种方法,以评估在实际最坏情况下的暴露率下,植物保护产品对带有集落的蜜蜂育雏的潜在影响。该方法包括两个阶段。在第一阶段,将蜜蜂的菌落暴露于商业化的草甘膦制剂中,该制剂被施用于开花的菊科植物草甘膦,其中草甘膦残留量在觅食后1、2、3、4、7天通过觅食蜜蜂在相关基质(花粉和花蜜)中进行定量,在第4天和第7天测量了幼虫中的草甘膦水平。花粉中的草甘膦水平大约是花蜜中的10倍,草甘膦在两种基质中均迅速下降。然后在效果研究中使用残留数据以及觅食率和菌落的食物需求来设定剂量率。在第二阶段,通过将处理过的蔗糖以反映最坏情况下暴露情况的剂量率直接喂入蜜蜂菌落,来确定草甘膦对正在发育的蜜蜂幼虫和p的毒性以及幼虫中的残留物。没有观察到草甘膦对母体存活,发育和平均p重的影响。此外,在任何草甘膦治疗组中均未观察到生物学上显着的成人死亡率水平。仅在苯氧威有毒的参考组中观察到了显着的影响,包括育雏死亡率增加以及蜜蜂和育雏数量下降。在暴露研究中,喷洒后第4天,以及在根据从花粉和花蜜中的平均测得水平计算出的剂量给药后,幼虫中的平均草甘膦残留量是可比的,这表明该方法可用于蜜蜂育雏研究。这项研究开发了一种通用且可预测的方法,可用于更高级别的蜜蜂毒性研究。它可用于实际量化菌落对农药的暴露,从而根据花粉和花蜜中的实际最坏情况残留物和估计的菌落摄入量来确定适当的剂量率,如残留物分析所示。先前的研究已经使用了主要开发的标准方法来鉴定具有破坏农药制剂昆虫生长特性的农药,而这种方法不那么依赖于确定实际的暴露场景。然而,该方法的这种适应性可以用于确定菌落水平暴露于具有广泛特性的农药的剂量响应效应。这种方法将限制需要进行的重复隧道或田间规模研究的数量,以评估对蜜蜂育雏的影响,并且在花粉和花蜜中的残留物特定于作物和/或配方的情况下(例如系统性的)特别有用种子处理和颗粒应用。

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