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基于分子相互作用分析的蜜蜂应激源风险评估

Risk assessment of honey bee stressors based on analysis of molecular interactions.

作者信息

Del Águila Conde Mónica, Febbraio Ferdinando

机构信息

Institute of Biochemistry and Cell Biology National Research Council (CNR) Naples Italy.

出版信息

EFSA J. 2022 Dec 14;20(Suppl 2):e200912. doi: 10.2903/j.efsa.2022.e200912. eCollection 2022 Dec.

Abstract

A global decline of the honey bee has been observed in the last decades. This pollinator plays a fundamental role in food production and the economy in Europe. The decline of honey bee colonies is linked to several stressors, including pesticides. The current pesticide risk assessment of honey bees in Europe focuses on lethal effects and lacks reflection on sublethal effects. A better understanding of the consequences that exposure to these chemicals has on honey bees is still needed. In this context, the aim of this European Food Risk Assessment Fellowship Programme fellowship project has been to use methodologies, such as virtual screening, as a first step to identify possible interactions at the molecular level between proteins and pesticide ligands. For this purpose, a docking study of the proteins from and pesticide ligands extracted from online databases has been performed by using the software Autodock Vina. The results obtained were a ranking based on the predicted affinity of the pesticides for specific and non-specific binding sites on bee macromolecules. These results were compared with data obtained from the literature and linked to potential sublethal effects. Finally, a risk assessment analysis of the identified molecular stressors of honey bees was performed. The results of this study are considered a starting point to identify new sources of possible stress for honey bees and thereby contribute to the overall understanding of the honey bee decline.

摘要

在过去几十年中,全球范围内都观察到了蜜蜂数量的减少。这种传粉者在欧洲的粮食生产和经济中发挥着至关重要的作用。蜜蜂蜂群数量的减少与多种压力因素有关,包括农药。目前欧洲对蜜蜂的农药风险评估侧重于致死效应,而缺乏对亚致死效应的考量。仍需要更好地了解接触这些化学物质对蜜蜂产生的后果。在此背景下,这个欧洲食品风险评估奖学金计划的研究项目旨在使用虚拟筛选等方法,作为第一步来识别蛋白质与农药配体在分子水平上可能存在的相互作用。为此,通过使用Autodock Vina软件,对从在线数据库中提取的蛋白质和农药配体进行了对接研究。所获得的结果是基于农药对蜜蜂大分子上特定和非特定结合位点的预测亲和力进行的排名。这些结果与从文献中获得的数据进行了比较,并与潜在的亚致死效应相关联。最后,对已识别出的蜜蜂分子应激源进行了风险评估分析。这项研究的结果被视为识别蜜蜂可能面临的新压力源的起点,从而有助于全面了解蜜蜂数量减少的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4e4/9749446/b8536c1313ec/EFS2-20-e200912-g003.jpg

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