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首页> 外文期刊>The Journal of Applied Ecology >Influence of combined pesticide and parasite exposure on bumblebee colony traits in the laboratory
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Influence of combined pesticide and parasite exposure on bumblebee colony traits in the laboratory

机译:农药和寄生虫的影响暴露在大黄蜂的菌落特征实验室

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1. Pollinating insects provide vital ecosystem services of enormous importance for economies and biodiversity. Yet, there is a concerning global trend of pollinator declines. Parasites and pesticides are among the suspected principle drivers of these declines. However, especially in the case of key wild pollinators, there are insufficient data on the relative impact of these individual environmental stressors and whether they interact to increase detrimental effects. 2. Using a fully crossed factorial design, we investigated how laboratory exposure to neonicotinoid insecticides, thiamethoxam and clothianidin, over a 9-week period and a prevalent trypanosome gut parasite Crithidia bombi affects various crucial colony traits of the bumblebee Bombus terrestris. 3. We show that chronic dietary exposure from an early stage of colony development to doses of thiamethoxam and clothianidin that could be encountered in the field truncated worker production, reduced worker longevity and decreased overall colony reproductive success. Further, we demonstrate a significant interaction between neonicotinoid exposure and parasite infection on mother queen survival. The fate of the mother queen is intrinsically linked to colony success, and under combined pressure of parasite infection and neonicotinoid exposure, mother queen survival was lowest. This indicates increased detrimental effects of combined exposure on this crucial colony trait. Combined effects may be exacerbated in stressful natural environments where more pronounced parasite virulence is expected. 4. Synthesis and applications. Our findings reiterate that dietary exposure to neonicotinoids can impact on bumblebee colony performance and fitness. The indication of combined negative effects of ecologically relevant pressures suggests additional adverse consequences for long-term population dynamics under complex field conditions. To help safeguard pollinator health, whole life-cycle fitness assessments, particularly for non-Apis bees, stringently incorporating chronic and sublethal side effects of pesticides, as well as interactions with common natural stressors, such as prevalent parasites, should be considered in the corresponding test guidelines.
机译:1. 服务巨大的经济体和重要性生物多样性。传粉者下降的趋势。农药是怀疑原则司机的下降。主要野生传粉者的情况下,这些数据相对不足的影响个人环境压力和是否相互作用的增加产生不利影响。使用一个完全交叉因子设计,我们调查实验室接触烟碱类杀虫剂杀虫剂,thiamethoxam和clothianidin, 9周时间普遍的锥体虫肠道寄生虫短膜虫属bombi影响各种重要的菌落特征的大黄蜂Bombus terrestris。慢性膳食暴露的早期阶段殖民地发展thiamethoxam和剂量clothianidin可以遇到的场截断工人生产,减少了工人寿命和降低整体的殖民地繁殖成功。重要的烟碱类杀虫剂之间的相互作用接触和寄生虫感染的母亲女王生存。本质上与殖民地成功,寄生虫感染和压力烟碱类杀虫剂暴露,母亲女王生存最低。联合暴露的影响至关重要菌落特征。在自然环境中更多的压力明显的寄生虫毒性预计。合成和应用程序。重申,膳食暴露于烟碱类会影响性能和大黄蜂殖民地健康。生态相关的压力的影响显示额外的不良后果长期复杂的字段下的种群动态条件。全生命周期健康评估,特别是对于非api蜜蜂,严格合并慢性和亚致死的副作用的杀虫剂,以及相互作用常见的自然压力,比如普遍寄生虫,应该考虑的相应的测试指南。

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