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Parasite-insecticide interactions: a case study of Nosema ceranae and fipronil synergy on honeybee

机译:寄生虫-杀虫剂的相互作用:蜜蜂Nosema ceranae和氟虫腈协同作用的案例研究

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摘要

In ecosystems, a variety of biological, chemical and physical stressors may act in combination to induce illness in populations of living organisms. While recent surveys reported that parasite-insecticide interactions can synergistically and negatively affect honeybee survival, the importance of sequence in exposure to stressors has hardly received any attention. In this work, Western honeybees (Apis mellifera) were sequentially or simultaneously infected by the microsporidian parasite Nosema ceranae and chronically exposed to a sublethal dose of the insecticide fipronil, respectively chosen as biological and chemical stressors. Interestingly, every combination tested led to a synergistic effect on honeybee survival, with the most significant impacts when stressors were applied at the emergence of honeybees. Our study presents significant outcomes on beekeeping management but also points out the potential risks incurred by any living organism frequently exposed to both pathogens and insecticides in their habitat.
机译:在生态系统中,多种生物,化学和物理应激源可能共同作用,从而在生物体种群中诱发疾病。虽然最近的调查报告说,寄生虫-杀虫剂的相互作用可以协同作用并负面影响蜜蜂的存活,但是暴露于应激源中序列的重要性几乎没有受到关注。在这项工作中,西方蜜蜂(Apis mellifera)依次或同时被微孢子虫寄生虫Nosema ceranae感染,并长期暴露于亚致死剂量杀虫剂氟虫腈中,分别被选作生物和化学应激源。有趣的是,所测试的每种组合都对蜜蜂的存活产生协同作用,当在蜜蜂的出现过程中施加压力时,其影响最为显着。我们的研究在养蜂管理方面取得了重要成果,但同时也指出了任何经常暴露于其栖息地中的病原体和杀虫剂的生物体所带来的潜在风险。

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