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A Multicompartment Approach - Diatoms Macrophytes Benthic Macroinvertebrates and Fish - To Assess the Impact of Toxic Industrial Releases on a Small French River

机译:多室方法-硅藻大型植物底栖大型无脊椎动物和鱼类-评估有毒工业释放对一条法国小河的影响

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摘要

The River Luzou flows through a sandy substrate in the South West of France. According to the results of two assessment surveys, the Water Agency appraised that this river may not achieve the good ecological status by 2015 as required by the Water Framework Directive (2000/60/EC). This ecosystem is impacted by industrial effluents (organic matter, metals and aromatic compounds). In order to assess and characterize the impact, this study aimed to combine a set of taxonomic and non-taxonomic metrics for diatoms, macrophytes, macroinvertebrates and fish along the up- to downstream gradient of the river. Diversity metrics, biological indices, biological and ecological traits were determined for the four biological quality elements (BQE). Various quantitative metrics (biomass estimates) were also calculated for diatom communities. The results were compared to physicochemical analysis. Biological measurements were more informative than physicochemical analysis, in the context of the study. Biological responses indicated both the contamination of water and its intensity. Diversity metrics and biological indices strongly decreased with pollution for all BQE but diatoms. Convergent trait selection with pollution was observed among BQE: reproduction, colonization strategies, or trophic regime were clearly modified at impaired sites. Taxon size and relation to the substrate diverged among biological compartments. Multiple anthropogenic pollution calls for alternate assessment methods of rivers' health. Our study exemplifies the fact that, in the case of complex contaminations, biological indicators can be more informative for environmental risk, than a wide screening of contaminants by chemical analysis alone. The combination of diverse biological compartments provided a refined diagnostic about the nature (general mode of action) and intensity of the contamination.
机译:卢祖河流经法国西南部的一片沙质基底。根据两次评估调查的结果,水务局评估说,这条河流可能无法按照水框架指令(2000/60 / EC)的要求到2015年达到良好的生态状况。该生态系统受到工业废水(有机物,金属和芳族化合物)的影响。为了评估和描述其影响,本研究旨在将河流上游至下游的硅藻,大型植物,大型无脊椎动物和鱼类的一组分类学和非分类学指标相结合。确定了四个生物质量要素(BQE)的多样性指标,生物指标,生物和生态特征。还为硅藻群落计算了各种定量指标(生物量估计值)。将结果与理化分析进行比较。在这项研究中,生物学测量比物理化学分析提供了更多的信息。生物反应表明水的污染及其强度。除硅藻外,所有BQE的多样性指标和生物指标均随着污染而大大降低。在BQE中观察到有污染的收敛性状选择:在受损场所明显地改变了繁殖,定殖策略或营养方式。分类单元的大小及其与底物的关系在生物隔室之间有所分歧。多种人为污染要求对河流健康进行替代评估。我们的研究例证了这样一个事实,即在复杂污染物的情况下,生物学指标对环境风险的信息要比仅通过化学分析对污染物进行的广泛筛查更为有用。多种生物隔室的结合提供了关于污染的性质(一般作用方式)和强度的精确诊断。

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