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默兹河流域水质:使用笼养三刺鱼(Gasterosteus aculeatus L.)多生物标志物方法进行评估。

Water quality of the Meuse watershed: Assessment using a multi-biomarker approach with caged three-spined stickleback (Gasterosteus aculeatus L.).

机构信息

Institut National de l'Environnement et des Risques (INERIS), UMR-I 02 SEBIO (Stress Environnementaux et Biosurveillance des milieux aquatiques), BP 2, 60550 Verneuil-en-Halatte, France.

Institut National de l'Environnement et des Risques (INERIS), UMR-I 02 SEBIO (Stress Environnementaux et Biosurveillance des milieux aquatiques), BP 2, 60550 Verneuil-en-Halatte, France.

出版信息

Ecotoxicol Environ Saf. 2021 Jan 15;208:111407. doi: 10.1016/j.ecoenv.2020.111407. Epub 2020 Oct 15.

Abstract

The use of a multi-biomarker approach with three-spined sticklebacks (Gasterosteus aculeatus) through an active biomonitoring strategy appears to be a promising tool in water quality assessment. The present work proposes to assess the efficiency of these tools in the discrimination of some sites in a large scale on the Meuse basin in Europe. The study was part of an EU program which aims to assess water quality in the Meuse across the French-Belgian border. Sticklebacks were caged 21 days upstream and downstream from the wastewater treatment plants (WWTPs) of Namur (Belgium), Charleville-Mézières (France), Bouillon (Belgium) and Avesnes-sur-Helpe (France). First, the state of a variety of physiological functions was assessed using a battery of biomarkers that represented innate immunity (leucocyte mortality and distribution, phagocytosis activity, respiratory burst), antioxidant system (GPx, CAT, SOD and total GSH content), oxidative damages to the membrane lipids (TBARS), biotransformation enzymes (EROD, GST), synaptic transmission (AChE) and reproduction system (spiggin and vitellogenin concentration). The impacts of the effluents were first analysed for each biomarker using a mixed model ANOVA followed by post-hoc analyses. Secondly, the global river contamination was assessed using a principal component analysis (PCA) followed by a hierarchical agglomerative clustering (HAC). The results highlighted a small number of effects of WWTP effluents on the physiological parameters in caged sticklebacks. Despite a significant effect of the "localisation" factor (upstream/downstream) in the mixed ANOVA for several biomarkers, post-hoc analyses revealed few differences between upstream and downstream of the WWTPs. Only a significant decrease of innate immune responses was observed downstream from the WWTPs of Avesnes-sur-Helpe and Namur. Other biomarker responses were not impacted by WWTP effluents. However, the multivariate analyses (PCA and HAC) of the biomarker responses helped to clearly discriminate the different study sites from the reference but also amongst themselves. Thus, a reduction of general condition (condition index and HSI) was observed in all groups of caged sticklebacks, associated with a weaker AChE activity in comparison with the reference population. A strong oxidative stress was highlighted in fish caged in the Meuse river at Charleville-Mézières whereas sticklebacks caged in the Meuse river at Namur exhibited weaker innate immune responses than others. Conversely, sticklebacks caged in the Helpe-Majeure river at Avesnes-sur-Helpe exhibited higher immune responses. Furthermore, weak defence capacities were recorded in fish caged in the Semois river at Bouillon. This experiment was the first to propose an active biomonitoring approach using three-spined stickleback to assess such varied environments. Low mortality and encouraging results in site discrimination support the use of this tool to assess the quality of a large number of water bodies.

摘要

利用三刺鱼(Gasterosteus aculeatus)通过主动生物监测策略的多生物标志物方法似乎是水质评估的一种很有前途的工具。本研究旨在评估这些工具在欧洲默兹盆地大规模区分一些地点的效率。该研究是欧盟计划的一部分,该计划旨在评估法国-比利时边境默兹河的水质。将刺鱼笼养在那慕尔(比利时)、沙勒维尔-梅济耶尔(法国)、布永(比利时)和阿夫内斯-苏尔-埃勒普(法国)的废水处理厂上下游 21 天。首先,使用代表先天免疫(白细胞死亡率和分布、吞噬作用活性、呼吸爆发)、抗氧化系统(GPx、CAT、SOD 和总 GSH 含量)、膜脂质氧化损伤(TBARS)、生物转化酶(EROD、GST)、突触传递(AChE)和生殖系统(spiggin 和卵黄蛋白原浓度)的生物标志物来评估各种生理功能的状态。使用混合模型 ANOVA 分析每个生物标志物的废水影响,然后进行事后分析。其次,使用主成分分析(PCA)和层次聚类(HAC)评估河流的整体污染情况。结果突出了废水处理厂对笼养刺鱼生理参数的少数影响。尽管在几个生物标志物的混合 ANOVA 中,“定位”因子(上下游)有显著影响,但事后分析表明,WWTP 上下游之间的差异很小。只有在阿夫内斯-苏尔-埃勒普和那慕尔的 WWTP 下游观察到先天免疫反应的显著下降。其他生物标志物反应不受 WWTP 废水的影响。然而,生物标志物反应的多元分析(PCA 和 HAC)有助于清楚地区分不同的研究地点与参考点,以及彼此之间的差异。因此,所有笼养刺鱼组的一般状况(状况指数和 HSI)都有所下降,与参考种群相比,AChE 活性较弱。在沙勒维尔-梅济耶尔的默兹河上笼养的鱼类中,强烈的氧化应激,而在那慕尔的默兹河上笼养的刺鱼则表现出较弱的先天免疫反应。相反,在阿夫内斯-苏尔-埃勒普的埃尔佩河上笼养的刺鱼表现出更高的免疫反应。此外,在布永的塞姆河上笼养的鱼类中,防御能力较弱。这项实验是首次提出使用三刺鱼进行主动生物监测,以评估如此多样化的环境。低死亡率和令人鼓舞的现场区分结果支持使用该工具来评估大量水体的质量。

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