Li Hongliang, Wu Fan, Zhao Lei, Tan Jing, Jiang Hongtao, Hu Fuliang
Zhejiang Provincial Key Laboratory of Biometrology and Inspection & Quarantine, College of Life Sciences, China Jiliang University, Hangzhou 310018, China; College of Animal Sciences, Zhejiang University, Hangzhou 310058, China.
Zhejiang Provincial Key Laboratory of Biometrology and Inspection & Quarantine, College of Life Sciences, China Jiliang University, Hangzhou 310018, China.
Int J Biol Macromol. 2015 Nov;81:624-30. doi: 10.1016/j.ijbiomac.2015.08.055. Epub 2015 Aug 28.
The decline of bee population has caused great concern in recent years. A noticeable factor points to the neonicotinoid insecticides, which remain in the nectar and pollen of plants and impair the olfactory cognition of foraging bees. However, it remains elusive that if and how neonicotinoid insecticides interact with the olfactory system of bees. Herein, we studied the binding interaction between neonicotinoid imidacloprid and ASP2, one odorant-binding protein in eastern bees, Apis cerana, by multispectroscopic methods. The results indicate that imidacloprid significantly quenched the intrinsic fluorescence of ASP2 as the static quenching mode, and expanded the conformation of ASP2 measured by the circular dichroism (CD) spectra. The acting force is mainly driven by hydrophobic force based on thermodynamic analysis. Docking analysis predicts a formation of a hydrogen bond, while the corresponding site-directed mutagenesis indicated that the hydrogen bond is not main force here. Moreover, imidacloprid with a sublethal dose (0.8ng/bee) clearly decreased the binding affinity of ASP2 to a floral volatile, β-ionone, which had been identified to strongly bind with the wild ASP2 before. This study may benefit to evaluate the effect of neonicotinoid insecticides on the olfactory cognitive behavior of bees involved in the crops pollination.
近年来,蜜蜂数量的减少引起了人们的极大关注。一个值得注意的因素指向新烟碱类杀虫剂,它们残留在植物的花蜜和花粉中,损害觅食蜜蜂的嗅觉认知。然而,新烟碱类杀虫剂是否以及如何与蜜蜂的嗅觉系统相互作用仍不清楚。在此,我们通过多光谱方法研究了新烟碱类吡虫啉与东方蜜蜂(Apis cerana)中的一种气味结合蛋白ASP2之间的结合相互作用。结果表明,吡虫啉以静态猝灭模式显著猝灭了ASP2的固有荧光,并通过圆二色光谱(CD)测量扩展了ASP2的构象。基于热力学分析,作用力主要由疏水力驱动。对接分析预测形成了氢键,而相应的定点诱变表明氢键在此处不是主要作用力。此外,亚致死剂量(0.8ng/只蜜蜂)的吡虫啉明显降低了ASP2与一种花香挥发物β-紫罗兰酮的结合亲和力,β-紫罗兰酮之前已被确定与野生型ASP2有强烈结合。这项研究可能有助于评估新烟碱类杀虫剂对参与作物授粉的蜜蜂嗅觉认知行为的影响。