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斑马贻贝(多形饰贝)的氢核磁共振代谢组学分析:生态毒理学研究中的现场规模监测工具

H-NMR metabolomics profiling of zebra mussel (Dreissena polymorpha): A field-scale monitoring tool in ecotoxicological studies.

作者信息

Hani Younes Mohamed Ismail, Prud'Homme Sophie Martine, Nuzillard Jean-Marc, Bonnard Isabelle, Robert Christelle, Nott Katherine, Ronkart Sébastien, Dedourge-Geffard Odile, Geffard Alain

机构信息

Université de Reims Champagne-Ardenne (URCA), UMR-I 02 SEBIO (Stress Environnementaux et Biosurveillance des Milieux Aquatiques), Moulin de la Housse, Reims, France; Université de Bordeaux, UMR EPOC 5805, équipe Ecotoxicologie Aquatique, Place du Dr Peyneau, 33120, Arcachon, France.

Université de Reims Champagne-Ardenne (URCA), UMR-I 02 SEBIO (Stress Environnementaux et Biosurveillance des Milieux Aquatiques), Moulin de la Housse, Reims, France; Université de Lorraine, CNRS, LIEC, F-57000, Metz, France.

出版信息

Environ Pollut. 2021 Feb 1;270:116048. doi: 10.1016/j.envpol.2020.116048. Epub 2020 Nov 9.

Abstract

Biomonitoring of aquatic environments requires new tools to characterize the effects of pollutants on living organisms. Zebra mussels (Dreissena polymorpha) from the same site in north-eastern France were caged for two months, upstream and downstream of three wastewater treatment plants (WWTPs) in the international watershed of the Meuse (Charleville-Mézières "CM" in France, Namur "Nam" and Charleroi "Cr" in Belgium). The aim was to test H-NMR metabolomics for the assessment of water bodies' quality. The metabolomic approach was combined with a more "classical" one, i.e., the measurement of a range of energy biomarkers: lactate dehydrogenase (LDH), lipase, acid phosphatase (ACP) and amylase activities, condition index (CI), total reserves, electron transport system (ETS) activity and cellular energy allocation (CEA). Five of the eight energy biomarkers were significantly impacted (LDH, ACP, lipase, total reserves and ETS), without a clear pattern between sites (Up and Down) and stations (CM, Nam and Cr). The metabolomic approach revealed variations among the three stations, and also between the upstream and downstream of Nam and CM WWTPs. A total of 28 known metabolites was detected, among which four (lactate, glycine, maltose and glutamate) explained the observed metabolome variations between sites and stations, in accordance with chemical exposure levels. Metabolome changes suggest that zebra mussel exposure to field contamination could alter their osmoregulation and anaerobic metabolism capacities. This study reveals that lactate is a potential biomarker of interest, and H-NMR metabolomics can be an efficient approach to assess the health status of zebra mussels in the biomonitoring of aquatic environments.

摘要

水生环境的生物监测需要新的工具来表征污染物对生物的影响。在法国东北部同一地点采集的斑马贻贝(多形饰贝)被放置在笼子里两个月,笼子分别位于默兹河国际流域的三个污水处理厂(WWTPs)的上游和下游(法国的沙勒维尔 - 梅济耶尔“CM”、比利时的那慕尔“Nam”和沙勒罗瓦“Cr”)。目的是测试氢核磁共振代谢组学用于评估水体质量。代谢组学方法与一种更“经典”的方法相结合,即测量一系列能量生物标志物:乳酸脱氢酶(LDH)、脂肪酶、酸性磷酸酶(ACP)和淀粉酶活性、状况指数(CI)、总储备、电子传递系统(ETS)活性和细胞能量分配(CEA)。八个能量生物标志物中的五个受到了显著影响(LDH、ACP、脂肪酶、总储备和ETS),不同地点(上游和下游)和站点(CM、Nam和Cr)之间没有明显的模式。代谢组学方法揭示了三个站点之间以及Nam和CM污水处理厂上下游之间的差异。总共检测到28种已知代谢物,其中四种(乳酸、甘氨酸、麦芽糖和谷氨酸)根据化学暴露水平解释了不同地点和站点间观察到的代谢组变化。代谢组变化表明斑马贻贝暴露于现场污染可能会改变它们的渗透调节和无氧代谢能力。这项研究表明乳酸是一种潜在的有意义的生物标志物,并且氢核磁共振代谢组学可以成为评估水生环境生物监测中斑马贻贝健康状况的有效方法。

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