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Stress indicator gene expression profiles colony dynamics and tissue development of honey bees exposed to sub-lethal doses of imidacloprid in laboratory and field experiments

机译:在实验室和田间实验中暴露于亚致死剂量吡虫啉的蜜蜂的应激指标基因表达谱菌落动态和组织发育

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摘要

In this study, different context-dependent effects of imidacloprid exposure on the honey bee response were studied. Honey bees were exposed to different concentrations of imidacloprid during a time period of 40 days. Next to these variables, a laboratory-field comparison was conducted. The influence of the chronic exposure on gene expression levels was determined using an in-house developed microarray targeting different immunity-related and detoxification genes to determine stress-related gene expression changes. Increased levels of the detoxification genes encoding, CYP9Q3 and CYT P450, were detected in imidacloprid-exposed honey bees. The different context-dependent effects of imidacloprid exposure on honey bees were confirmed physiologically by decreased hypopharyngeal gland sizes. Honey bees exposed to imidacloprid in laboratory cages showed a general immunosuppression and no detoxification mechanisms were triggered significantly, while honey bees in-field showed a resilient response with an immune stimulation at later time points. However, the treated colonies had a brood and population decline tendency after the first brood cycle in the field. In conclusion, this study highlighted the different context-dependent effects of imidacloprid exposure on the honey bee response. These findings warn for possible pitfalls concerning the generalization of results based on specific experiments with short exposure times. The increased levels of CYT P450 and CYP9Q3 combined with an immune response reaction can be used as markers for bees which are exposed to pesticides in the field.
机译:在这项研究中,研究了吡虫啉暴露对蜜蜂反应的不同背景依赖性影响。蜜蜂在40天内暴露于不同浓度的吡虫啉。在这些变量旁边,进行了实验室现场比较。使用针对不同的免疫相关和解毒基因的内部开发的微阵列,确定应激相关基因表达的变化,确定了慢性暴露对基因表达水平的影响。在暴露有吡虫啉的蜜蜂中检测到编码CYP9Q3和CYT P450的解毒基因水平升高。通过减少咽下腺的大小,可以确认吡虫啉对蜜蜂的不同情境依赖性作用。暴露于实验室笼中吡虫啉的蜜蜂表现出一般的免疫抑制作用,并且未明显触发解毒机制,而蜜蜂在野外表现出在较晚时间点具有免疫刺激的弹性反应。但是,在田间第一个育雏周期后,处理过的菌落具有育雏和种群下降的趋势。总之,这项研究突出了吡虫啉暴露对蜜蜂反应的不同背景依赖性影响。这些发现警告了基于短暴露时间的特定实验得出的关于结果归纳的潜在陷阱。 CYT P450和CYP9Q3水平的升高与免疫反应反应的结合可以用作蜜蜂暴露于田间农药的标记物。

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