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Taxon-specific physico-chemical change points for stream benthic invertebrates

机译:流底栖无脊椎动物的分类群特异性理化变化点

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摘要

Freshwater organisms face numerous stressors, such as nutrient enrichment, contaminant pollution, sedimentation and alterations in stream hydrology and habitat structure. One of the most significant and widespread stressors in European freshwaters is expected to be water pollution from intensive land use. However, the information on critical threshold concentrations at which taxa decline or increase in frequency and abundance is missing for the large majority of river benthic invertebrate taxa. The main aim was to determine ecological change points for benthic invertebrate taxa at which rapid alterations in species frequency and abundance occur as a consequence of relatively small changes in the environmental gradient. These change points can be interpreted as critical threshold concentrations. A total of 468 river benthic invertebrate taxa and nine physico-chemical variables describing the daytime dissolved oxygen, chloride, nutrient concentrations and organic load were analyzed. We selected 751 river sites from a nationwide range of locations in Germany for this investigation. Depending on the physico-chemical variable, between 20.6% and 48.8% of the total number of tested taxa were assigned with a valid change point. All taxa were assigned to negative or positive response groups depending on the response direction. Except for daytime dissolved oxygen, negative responding taxa are referred to as decreasers and positive responding taxa as increasers, respectively. In total, 25.8-100% of the decreasers' change points were below (and above in the case of daytime dissolved oxygen) the background values defined as quality criteria for German rivers by the water authorities. This indicates that stricter quality criteria may need to be set to reach the good ecological status according to the European Water Framework Directive. The calculated daytime dissolved oxygen change points were essentially in line with the species saprobic values and taxon-specific change points for physico-chemical variables fit well with the data provided in other international studies. We deliver valuable knowledge about the sensitivities and response schemes of river benthic invertebrate species. This information is especially useful for the development of efficient management and policy tools to predict the likelihood of occurrence of individual species under different levels of anthropogenic impact. (C) 2015 Elsevier Ltd. All rights reserved.
机译:淡水生物面临众多压力,例如营养富集,污染物污染,沉积以及河流水文学和生境结构的变化。欧洲淡水中最重要和最广泛的压力源之一是土地集约化对水的污染。但是,对于大多数河底无脊椎动物分类群而言,缺少分类群频率降低或丰度增加或增加的临界阈值浓度的信息。主要目的是确定底栖无脊椎动物类群的生态变化点,在该点上,由于环境梯度相对较小的变化,物种频率和丰度发生了快速变化。这些变化点可以解释为临界阈值浓度。总共分析了468个河底栖无脊椎动物类群和9个理化变量,这些变量描述了白天的溶解氧,氯化物,养分浓度和有机负荷。我们从德国全国各地的751个河流站点进行了调查。根据理化变量,为有效的分类单元分配了被测类群总数的20.6%至48.8%。根据反应方向,将所有分类单元分配为阴性或阳性反应组。除白天溶解氧外,负响应类群分别称为还原剂,正响应类群称为增加剂。总共,有25.8-100%的还原剂变化点低于(或高于白天的溶解氧)背景值被水务部门定义为德国河流的质量标准。这表明根据欧洲水框架指令,可能需要设定更严格的质量标准才能达到良好的生态状态。计算出的白天溶解氧变化点基本上与物种的腐殖质值相符,而物化变量的分类单元特异性变化点与其他国际研究提供的数据非常吻合。我们提供有关河底栖无脊椎动物物种的敏感性和响应方案的宝贵知识。该信息对于开发有效的管理和政策工具,以预测在不同程度的人为影响下单个物种出现的可能性特别有用。 (C)2015 Elsevier Ltd.保留所有权利。

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