Cook Steven C
USDA-ARS, Bee Research Laboratory, 10300 Baltimore Avenue, Beltsville, MD 20705, USA.
Insects. 2019 Jan 8;10(1):18. doi: 10.3390/insects10010018.
Use of neonicotinoid pesticides is now ubiquitous, and consequently non-targeted arthropods are exposed to their residues at sub-lethal doses. Exposure to these neurotoxins may be a major contributor to poor honey bee colony health. Few studies have explored how sub lethal exposure to neonicotinoids affects honey bee metabolic physiology, including nutritional and energetic homeostasis, both of which are important for maintaining colony health. Reported here are results from a study of chronic oral exposure of honey bees to two sub lethal concentrations of clothianidin and imidacloprid. Neonicotinoids altered important aspects of honey bee nutritional and metabolic physiology in a compound and dose-dependent manner; both compounds at low doses reduced honey bee body weight. Low-dose clothianidin exposure resulted in bees having protein, lipids, carbohydrates, and glycogen levels similar to newly emerged bees. High-dose clothianidin exposure lowered lipids and glycogen content of bees. High-dose imidacloprid exposure resulted in bees having depressed metabolic rate. Low-dose imidacloprid exposure resulted in bees consuming low and high levels of protein and carbohydrate rich foods, respectively. Results suggest neonicotinoids interfere with honey bee endocrine neurophysiological pathways. Compound and dose-dependent effects might represent respective chemical structural differences determining an observed effect, and thresholds of compound effects on honey bee physiology.
新烟碱类杀虫剂的使用如今十分普遍,因此非靶标节肢动物会接触到其残留的亚致死剂量。接触这些神经毒素可能是导致蜜蜂蜂群健康状况不佳的主要因素。很少有研究探讨亚致死剂量接触新烟碱类杀虫剂如何影响蜜蜂的代谢生理,包括营养和能量稳态,而这两者对于维持蜂群健康都很重要。本文报告了一项关于蜜蜂经口长期接触两种亚致死浓度的噻虫胺和吡虫啉的研究结果。新烟碱类杀虫剂以化合物和剂量依赖的方式改变了蜜蜂营养和代谢生理的重要方面;两种化合物的低剂量均降低了蜜蜂体重。低剂量噻虫胺暴露导致蜜蜂的蛋白质、脂质、碳水化合物和糖原水平与新羽化的蜜蜂相似。高剂量噻虫胺暴露降低了蜜蜂的脂质和糖原含量。高剂量吡虫啉暴露导致蜜蜂代谢率降低。低剂量吡虫啉暴露导致蜜蜂分别消耗低水平和高水平的富含蛋白质和碳水化合物的食物。结果表明新烟碱类杀虫剂会干扰蜜蜂的内分泌神经生理途径。化合物和剂量依赖效应可能分别代表决定观察到的效应的化学结构差异,以及化合物对蜜蜂生理影响的阈值。