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慢性接触新烟碱类杀虫剂吡虫啉会抑制熊蜂体内的甲羟戊酸途径和脂肪酸合成。

Chronic exposure of bumblebees to neonicotinoid imidacloprid suppresses the entire mevalonate pathway and fatty acid synthesis.

机构信息

Crop Research Institute, Drnovska 507/73, Prague CZ-161 06, Czechia.

Crop Research Institute, Drnovska 507/73, Prague CZ-161 06, Czechia; Department of Medical Chemistry and Clinical Biochemistry, Faculty of Medicine, Charles University and Motol University Hospital, V Uvalu 84/1, Prague CZ-150 06, Czechia.

出版信息

J Proteomics. 2019 Mar 30;196:69-80. doi: 10.1016/j.jprot.2018.12.022. Epub 2018 Dec 21.

Abstract

Determining the side effects of pesticides on pollinators is an important topic due to the increasing loss of pollinators. We aimed to determine the effects of chronic sublethal exposure of the neonicotinoid pesticide imidacloprid on the bumblebee Bombus terrestris under laboratory conditions. The analytical standard of imidacloprid in sugar solution was used for the treatment. Verification of pesticides using UHPLC-QqQ-MS/MS in the experimental bumblebees showed the presence of only two compounds, imidacloprid and imidacloprid-olefin, which were found in quantities of 0.57 ± 0.22 and 1.95 ± 0.43 ng/g, respectively. Thus, the level of the dangerous metabolite imidacloprid-olefin was 3.4-fold higher than that of imidacloprid. Label-free nanoLC-MS/MS quantitative proteomics of bumblebee heads enabled quantitative comparison of 2883 proteins, and 206 proteins were significantly influenced by the imidacloprid treatment. The next analysis revealed that the highly downregulated markers are members of the terpenoid backbone biosynthesis pathway (KEGG: bter00900) and that imidacloprid treatment suppressed the entire mevalonate pathway, fatty acid synthesis and associated markers. The proteomics results indicate that the consequences of imidacloprid treatment are complex, and the marker changes are associated with metabolic and neurological diseases and olfaction disruption. This study provides important markers and can help to explain the widely held assumptions from biological observations. SIGNIFICANCE: The major finding is that all markers of the mevalonate pathway were substantially downregulated due to the chronic imidacloprid exposure. The disbalance of mevalonate pathway has many important consequences. We suggest the mechanism associated with the novel toxicogenic effect of imidacloprid. The results are helpful to explain that imidacloprid impairs the cognitive functions and possesses the delayed and time cumulative effect.

摘要

确定杀虫剂对传粉媒介的副作用是一个重要的课题,因为传粉媒介的损失越来越大。我们旨在确定在实验室条件下慢性亚致死暴露于新烟碱类杀虫剂吡虫啉对熊蜂 Bombus terrestris 的影响。使用含糖溶液中的吡虫啉分析标准进行处理。在实验用熊蜂中使用 UHPLC-QqQ-MS/MS 对杀虫剂进行验证,结果仅发现两种化合物,吡虫啉和吡虫啉-烯烃,其含量分别为 0.57±0.22 和 1.95±0.43ng/g。因此,危险代谢物吡虫啉-烯烃的水平是吡虫啉的 3.4 倍。对熊蜂头部进行无标记纳升 LC-MS/MS 定量蛋白质组学分析,可对 2883 种蛋白质进行定量比较,有 206 种蛋白质受到吡虫啉处理的显著影响。接下来的分析表明,高度下调的标志物是萜类化合物骨架生物合成途径的成员(KEGG:bter00900),吡虫啉处理抑制了整个甲羟戊酸途径、脂肪酸合成和相关标志物。蛋白质组学结果表明,吡虫啉处理的后果很复杂,标志物的变化与代谢和神经疾病以及嗅觉障碍有关。本研究提供了重要的标志物,可以帮助解释从生物学观察中得出的广泛假设。意义:主要发现是,由于慢性吡虫啉暴露,甲羟戊酸途径的所有标志物都明显下调。甲羟戊酸途径的失衡有许多重要的后果。我们提出了与吡虫啉新的毒性作用相关的机制。研究结果有助于解释吡虫啉损害认知功能并具有延迟和时间累积效应。

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