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首页> 外文期刊>Scientific reports. >Chronic exposure to imidacloprid or thiamethoxam neonicotinoid causes oxidative damages and alters carotenoid-retinoid levels in caged honey bees ( Apis mellifera )
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Chronic exposure to imidacloprid or thiamethoxam neonicotinoid causes oxidative damages and alters carotenoid-retinoid levels in caged honey bees ( Apis mellifera )

机译:长期暴露于吡虫啉或噻虫嗪新烟碱类物质会引起笼养蜜蜂的氧化损伤并改变类胡萝卜素-类维生素A的水平(蜜蜂)

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Over the last decade, the persistent dwindling of the populations of honey bees has become a growing concern. While this phenomenon is partly attributed to neonicotinoids (NEOCs), chronic exposures to these insecticides at environmentally-relevant concentrations are needed to fully estimate their implications. In this study, honey bees were orally exposed for 10 days to low field-realistic concentrations of NEOCs known for their effects on the cholinergic system (imidacloprid – IMI or thiamethoxam – THM). Selected biomarkers were measured such as acetylcholinesterase (AChE) activity, lipid peroxidation (LPO), α-tocopherol as well as several forms of vitamin A (retinoids) and carotenoids. Bees exposed to IMI showed lower levels of two carotenoids (α-carotene and α-cryptoxanthin) and α-tocopherol. The THM exposure increased the oxidized vitamin A metabolites in bees conjointly with the LPO. These results could be the consequence of a pro-oxidant effect of NEOCs and were observed at levels where no effects were recorded for AChE activity. This study reveals that exposure to low levels of NEOCs alters the carotenoid-retinoid system in honey bees. This would merit further investigation as these compounds are important in various aspects of bees’ health. Overall, this study contributes to the development of biomonitoring tools for the health of bees and other pollinators.
机译:在过去的十年中,蜜蜂种群的持续减少已成为人们日益关注的问题。虽然这种现象部分归因于新烟碱(NEOCs),但需要长期暴露于与环境有关的浓度的这些杀虫剂才能充分估计其影响。在这项研究中,蜜蜂被口服暴露于低场现实浓度的NEOC中10天,该浓度以其对胆碱能系统的作用而闻名(吡虫啉– IMI或噻虫嗪– THM)。测量了选定的生物标记,例如乙酰胆碱酯酶(AChE)活性,脂质过氧化(LPO),α-生育酚以及多种形式的维生素A(类维生素A)和类胡萝卜素。暴露于IMI的蜜蜂显示两种类胡萝卜素(α-胡萝卜素和α-隐黄质)和α-生育酚的含量较低。 THM暴露与LPO共同增加了蜜蜂中氧化的维生素A代谢产物。这些结果可能是NEOCs的促氧化作用的结果,并且在未记录AChE活性影响的水平上观察到。这项研究表明,暴露于低水平的NEOCs会改变蜜蜂的类胡萝卜素-类维生素A系统。由于这些化合物在蜜蜂健康的各个方面都很重要,因此值得进一步研究。总的来说,这项研究有助于开发用于蜜蜂和其他授粉媒介健康的生物监测工具。

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