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在田间条件下暴露于农药的蜜蜂中(神经)肽的分析和评估。

Analysis and evaluation of (neuro)peptides in honey bees exposed to pesticides in field conditions.

机构信息

Chemistry and Physics Department, University of Almeria, Agrifood Campus of International Excellence (ceiA3), 04120 Almería, Spain.

Chemistry and Physics Department, University of Almeria, Agrifood Campus of International Excellence (ceiA3), 04120 Almería, Spain.

出版信息

Environ Pollut. 2018 Apr;235:750-760. doi: 10.1016/j.envpol.2017.12.091. Epub 2018 Feb 21.

Abstract

During the last years, declines in honey bee colonies are being registered worldwide. Cholinergic pesticides and their extensive use have been correlated to the decline of pollinators and there is evidence that pesticides act as neuroendocrine disruptors affecting the metabolism of neuropeptides. However, there is a big absence of studies with quantitative results correlating the effect of pesticide exposure with changes on neuropeptides insects, and most of them are conducted under laboratory conditions, typically with individual active ingredients. In this study, we present an analytical workflow to evaluate pesticide effects on honey bees through the analysis of (neuro)peptides. The workflow consists of a rapid extraction method and liquid chromatography with triple quadrupole for preselected neuropeptides. For non-target analysis, high resolution mass spectrometry, multivariate analysis and automatic identification of discriminated peptides using a specific software and protein sequence databases. The analytical method was applied to the analysis of target and non-target (neuro)peptides in honey bees with low and high content of a wide range of pesticides to which have been exposed in field conditions. Our findings show that the identification frequency of target neuropeptides decreases significantly in honey bees with high concentration of pesticides (pesticide concentrations ≥ 500 μg kg) in comparison with the honey bees with low content of pesticides (pesticide concentrations ≤ 20 μg kg). Moreover, the principal component analysis in non-target search shows a clear distinction between peptide concentration in honey bees with high level of pesticides and honey bees with low level. The use of high resolution mass spectrometry has allowed the identification of 25 non-redundant peptides responsible for discrimination between the two groups, derived from 18 precursor proteins.

摘要

在过去的几年中,全世界的蜜蜂种群数量都在减少。胆碱能杀虫剂及其广泛的使用与传粉媒介的减少有关,有证据表明杀虫剂会影响神经内分泌系统,从而影响神经肽的代谢。然而,目前缺乏将农药暴露与昆虫神经肽变化相关的定量研究结果,而且这些研究大多是在实验室条件下进行的,通常使用单一的活性成分。在这项研究中,我们提出了一种分析工作流程,通过分析(神经)肽来评估农药对蜜蜂的影响。该工作流程包括一种快速提取方法和液相色谱-三重四极杆质谱联用,用于预选定的神经肽。对于非靶向分析,采用高分辨率质谱、多变量分析和自动识别区分肽的软件,以及特定的蛋白质序列数据库。该分析方法应用于在田间条件下暴露于低浓度和高浓度、种类繁多的农药的蜜蜂中进行目标和非目标(神经)肽的分析。我们的研究结果表明,与低浓度农药(农药浓度≤20μg/kg)的蜜蜂相比,高浓度农药(农药浓度≥500μg/kg)的蜜蜂中目标神经肽的鉴定频率显著降低。此外,非目标搜索中的主成分分析显示,高浓度农药的蜜蜂和低浓度农药的蜜蜂之间的肽浓度存在明显差异。高分辨率质谱的使用允许鉴定 25 种非冗余肽,这些肽可用于区分这两组,来源于 18 种前体蛋白。

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