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Caste‐ and pesticide‐specific effects of neonicotinoid pesticide exposure on gene expression in bumblebees

机译:新烟碱类农药暴露对大黄蜂基因表达的种姓和农药特异性影响

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摘要

Social bees are important insect pollinators of wildflowers and agricultural crops, making their reported declines a global concern. A major factor implicated in these declines is the widespread use of neonicotinoid pesticides. Indeed, recent research has demonstrated that exposure to low doses of these neurotoxic pesticides impairs bee behaviours important for colony function and survival. However, our understanding of the molecular‐genetic pathways that lead to such effects is limited, as is our knowledge of how effects may differ between colony members. To understand what genes and pathways are affected by exposure of bumblebee workers and queens to neonicotinoid pesticides, we implemented a transcriptome‐wide gene expression study. We chronically exposed Bombus terrestriscolonies to either clothianidin or imidacloprid at field‐realistic concentrations while controlling for factors including colony social environment and worker age. We reveal that genes involved in important biological processes including mitochondrial function are differentially expressed in response to neonicotinoid exposure. Additionally, clothianidin exposure had stronger effects on gene expression amplitude and alternative splicing than imidacloprid. Finally, exposure affected workers more strongly than queens. Our work demonstrates how RNA‐Seq transcriptome profiling can provide detailed novel insight on the mechanisms mediating pesticide toxicity to a key insect pollinator.
机译:社交蜜蜂是野花和农作物的重要昆虫传粉者,因此其报告的数量下降已成为全球关注的问题。导致这些下降的一个主要因素是新烟碱类农药的广泛使用。确实,最近的研究表明,低剂量的这些神经毒性农药的暴露会损害对殖民地功能和生存至关重要的蜜蜂行为。但是,我们对导致这种效应的分子遗传途径的理解是有限的,我们对菌落成员之间的效应可能如何不同的认识也很有限。为了了解大黄蜂工人和皇后区暴露于新烟碱类农药会影响哪些基因和途径,我们实施了转录组范围的基因表达研究。我们在现场控制的浓度下长期将孟买的地雷菌丛暴露于可比丁或吡虫啉中,同时控制着包括殖民地社会环境和工人年龄在内的各种因素。我们揭示了涉及重要的生物学过程,包括线粒体功能的基因差异表达响应新烟碱暴露。此外,与吡虫啉相比,可比丁胺暴露对基因表达幅度和选择性剪接的影响更大。最后,暴露对工人的影响比对女王的影响更大。我们的工作证明了RNA‐Seq转录组谱分析如何为介导农药对关键昆虫授粉者的毒性机理提供详细的新颖见解。

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