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首页> 外文期刊>Scientific reports. >Sublethal effects of imidacloprid on targeting muscle and ribosomal protein related genes in the honey bee Apis mellifera L.
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Sublethal effects of imidacloprid on targeting muscle and ribosomal protein related genes in the honey bee Apis mellifera L.

机译:吡虫啉对蜂窝蜂蜜蜜蜂L.靶向肌肉和核糖体蛋白相关基因的亚致致盲作用。

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摘要

A sublethal concentration of imidacloprid can cause chronic toxicity in bees and can impact the behavior of honey bees. The nectar- and water-collecting, and climbing abilities of bees are crucial to the survival of the bees and the execution of responsibilities in bee colonies. Besides behavioral impact, data on the molecular mechanisms underlying the toxicity of imidacloprid, especially by the way of RNA-seq at the transcriptomic level, are limited. We treated Apis mellifera L. with sublethal concentrations of imidacloprid (0.1, 1 and 10 ppb) and determined the effect on behaviors and the transcriptomic changes. The sublethal concentrations of imidacloprid had a limited impact on the survival and syrup consumption of bees, but caused a significant increase in water consumption. Moreover, the climbing ability was significantly impaired by 10 ppb imidacloprid at 8 d. In the RNA-seq analysis, gene ontology (GO) term enrichment indicated a significant down-regulation of muscle-related genes, which might contribute to the impairment in climbing ability of bees. The enriched GO terms were attributed to the up-regulated ribosomal protein genes. Considering the ribosomal and extra-ribosomal functions of the ribosomal proteins, we hypothesized that imidacloprid also causes cell dysfunction. Our findings further enhance the understanding of imidacloprid sublethal toxicity.
机译:咪酰啉含量的亚体浓度可引起蜜蜂中的慢性毒性,并会影响蜂蜜蜜蜂的行为。蜜蜂的花蜜和水收集和攀岩能力对蜜蜂的生存和蜂殖民地的责任的处境至关重要。除了行为影响,关于吡虫啉毒性的分子机制的数据,特别是通过转录组水平的RNA-SEQ的毒性。我们用亚咪酰胺(0.1,1和10ppb)的亚甲醚浓度处理了Apis Mellifera L.并确定了对行为和转录组的影响。咪酰啉含量的亚咪醛浓度对蜜蜂的存活和糖浆消耗产生有限的影响,但造成的耗水量显着增加。此外,在8天的10 ppb咪酰啉代吡啶啉将攀爬能力显着损害。在RNA-SEQ分析中,基因本体论(GO)富集论富集表明肌肉相关基因的显着下调,这可能导致蜜蜂攀爬能力的损害。富集的GO术语归因于上调核糖体蛋白基因。考虑核糖体蛋白质的核糖体和超核糖体功能,我们假设吡虫啉还导致细胞功能障碍。我们的研究结果进一步增强了对吡虫啉的含有止血性毒性的理解。

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