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首页> 外文期刊>Journal of Thermal Biology >The effect of temperature on candidate gene expression in the brain of honey bee Apis mellifera (Hymenoptera: Apidae) workers exposed to neonicotinoid imidacloprid
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The effect of temperature on candidate gene expression in the brain of honey bee Apis mellifera (Hymenoptera: Apidae) workers exposed to neonicotinoid imidacloprid

机译:温度对蜂蜜蜂苗(Hymenoptera:Apidaza)脑脑脑中候选基因表达的影响暴露于Neonicotinoid吡虫啉的工人

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Neonicotinoid insecticides are potent agonists of nicotinic acetylcholine receptors and are a major factor in the decline of pollinators worldwide. Several studies show that low doses of this neurotoxin influence honey bee physiology, however, little is known about how insecticides interact with other environmental variables. We studied the effects of two neonicotinoid Imidacloprid doses (IMD, 0, 2.5, and 10 ppb), and three temperatures (20, 28, and 36 degrees C) on gene expression in the brains of worker honey bees (Apis mellifera). Using qRT-PCR we quantified the expression of eight key genes related to the nervous system, stress response, and motor and olfactory capacities. Gene expression tended to increase with the low IMD dose, which was further intensified in individuals maintained in the cold treatment (20 degrees C). At 20 degrees C the octopamine receptor gene (oa1) was underexpressed in bees that were not exposed to IMD, but overexpressed in individuals exposed to 2.5 ppb IMD. Also, heat shock proteins (hsp70 and hsp90) increased their expression at high temperatures (36 degrees C), but not with IMD doses. These results suggest that despite the low insecticide concentrations used in this study (a field-realistic dose), changes in gene expression associated with honey bee physiological responses could be induced. This study contributes to the understanding of how neonicotinoid residual doses may alter honey bee physiology.
机译:Neonicotinoid杀虫剂是烟碱乙酰胆碱受体的有效激动剂,是全世界粉刷者衰落的主要因素。几项研究表明,这种神经毒素的低剂量影响蜂蜜蜂生理学,然而,关于杀虫剂如何与其他环境变量相互作用。我们研究了两种新烟碱蛋白酰上的效果剂量(IMD,0,2.5和10 ppb),以及三个温度(20,28和36℃)的基因表达,在工人蜂蜜蜜蜂(Apis mellifera)中的基因表达上。使用QRT-PCR,我们量化了与神经系统,应力反应和电动机和嗅觉能力相关的八个关键基因的表达。基因表达往往与低IMD剂量增加,该剂量进一步加剧在冷处理(20℃)中保持的个体。在20摄氏度下,八甘醇受体基因(OA1)在未暴露于IMD的蜜蜂中呈未表调,但在暴露于2.5ppb IMD的个体中过表达。此外,热休克蛋白(HSP70和HSP90)在高温(36℃)下增加它们的表达,但不适用于IMD剂量。这些结果表明,尽管本研究中使用的低杀虫剂浓度(现场实际剂量),但可以诱导与蜂蜜蜂蜜生理反应相关的基因表达的变化。这项研究有助于了解新烟碱素残留剂量如何改变蜂蜜生理学。

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