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城市多金属污染梯度的影响:不同季节采集的河流生物膜的金属生物积累和耐受能力。

Impact of an urban multi-metal contamination gradient: metal bioaccumulation and tolerance of river biofilms collected in different seasons.

机构信息

Irstea Antony - Unité de Recherche Hydrosystèmes et Bioprocédés, 1 rue Pierre-Gilles de Gennes, CS 10030, F 92761 Antony Cedex, France; FIRE, FR-3020, 4 Place Jussieu, 75005 Paris, France; AgroParisTech, F-75005 Paris, France.

Irstea Antony - Unité de Recherche Hydrosystèmes et Bioprocédés, 1 rue Pierre-Gilles de Gennes, CS 10030, F 92761 Antony Cedex, France; FIRE, FR-3020, 4 Place Jussieu, 75005 Paris, France.

出版信息

Aquat Toxicol. 2015 Feb;159:276-89. doi: 10.1016/j.aquatox.2014.12.014. Epub 2014 Dec 19.

Abstract

The aim of this study was to investigate the repeatability and seasonal variability of the biological response of river biofilms chronically exposed to a multi-metal pressure in an urban contamination gradient. Biofilms were grown on immersed plastic membranes at three sites on the Seine river upstream (site 1) and downstream (sites 2 and 3) from Paris (France). They were collected in four different seasons (autumn, spring, summer and winter). Biofilm tolerance to Cu, Ni, Pb and Zn was measured using a PICT (Pollution-Induced Community Tolerance) approach with a previously developed short-term toxicity test based on β-glucosidase (heterotrophic) activity. Metal concentrations in the river and also in the biofilm samples (total and non-exchangeable bioaccumulated metals) were also monitored. Biofilm-accumulated metal concentrations reflected the increase of the multi-metal exposure along the urban gradient. These concentrations were strongly correlated with dissolved and particulate organic carbon and with the total metal fraction in the river water, which recalls the significant influence of the environmental parameters on metal uptake processes in river biofilms. Overall, natural biofilms allow monitoring water quality by integrating the variations of a diffuse metal contamination overtime. Tolerance levels globally increased from site 1 to site 3 reflecting the metal pollution gradient measured in the river water collected at the three sites. Cu tolerance tended to increase during warm seasons but no clear seasonal tendency could be found for Ni, Pb and Zn. Furthermore, principal component analysis clearly discriminated samples collected upstream (site 1) from samples collected downstream (sites 2 and 3) along the first principal component which was correlated to the metal gradient. Samples collected in winter were also separated from the others along the second principal component correlated to parameters like water temperature and Total Suspended Solids concentration. This study shows that chronic in situ exposure to environmental metal concentrations has a significant impact on natural biofilms. Biofilm tolerance to metals and biofilm metal bioaccumulation both reflect metal exposure levels although they remain low when compared to Environmental Quality Standards from the European Water Framework Directive. Yet temperature appears as an important environmental variable shaping community structure and response to toxic exposure which shows that the sampling date is an important parameter to consider when using natural river biofilms to assess the impacts of urban pressure.

摘要

本研究旨在探究长期暴露于城市污染梯度中多种金属压力下的河流生物膜的生物响应的可重复性和季节性变化。生物膜在塞纳河上游(站点 1)和下游(站点 2 和 3)的三个位置的浸入式塑料膜上生长。它们在四个不同的季节(秋季、春季、夏季和冬季)收集。使用先前开发的基于β-葡萄糖苷酶(异养)活性的短期毒性试验的 PICT(污染诱导的群落耐受)方法测量生物膜对 Cu、Ni、Pb 和 Zn 的耐受性。还监测了河流和生物膜样本中的金属浓度(总金属和不可交换的生物积累金属)。生物膜积累的金属浓度反映了沿城市梯度的多金属暴露的增加。这些浓度与溶解和颗粒有机碳以及河水中的总金属分数强烈相关,这表明环境参数对河流生物膜中金属吸收过程有重大影响。总的来说,天然生物膜通过整合随时间推移的扩散金属污染的变化来监测水质。从站点 1 到站点 3,总体耐受性水平增加,反映了在三个站点收集的河水中测量的金属污染梯度。Cu 的耐受性在温暖季节趋于增加,但对于 Ni、Pb 和 Zn 没有明显的季节性趋势。此外,主成分分析清楚地区分了沿第一主成分采集的上游(站点 1)和下游(站点 2 和 3)采集的样本,该主成分与金属梯度相关。沿与水温和总悬浮固体浓度相关的第二主成分,冬季采集的样本也与其他样本分离。本研究表明,慢性原位暴露于环境金属浓度对天然生物膜有重大影响。生物膜对金属的耐受性和生物膜金属生物积累都反映了金属暴露水平,尽管与欧洲水框架指令的环境质量标准相比仍然较低。然而,温度似乎是塑造群落结构和对毒性暴露反应的重要环境变量,这表明在使用天然河流生物膜评估城市压力的影响时,采样日期是一个重要的考虑因素。

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