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评估人为因素对自然压力生态系统的影响:重新审视河流分类和盐度梯度下的生物监测指标。

Evaluating anthropogenic impacts on naturally stressed ecosystems: Revisiting river classifications and biomonitoring metrics along salinity gradients.

机构信息

Grup de Recerca Freshwater Ecology, Hydrology and Management (FEHM), Departament de Biologia Evolutiva, Ecologia i Ciències Ambientals, Facultat de Biologia, Institut de Recerca de la Biodiversitat (IRBio), Universitat de Barcelona, 08028 Barcelona, Catalonia, Spain.

Grupo de Ecología y Evolución en islas, Instituto de Productos Naturales y Agrobiología, IPNA-CSIC, Av. Astrofísico Francisco Sánchez, 3, Santa Cruz de Tenerife, Spain.

出版信息

Sci Total Environ. 2019 Mar 25;658:912-921. doi: 10.1016/j.scitotenv.2018.12.253. Epub 2018 Dec 19.

Abstract

Naturally stressed ecosystems hold a unique fraction of biodiversity. However, they have been largely ignored in biomonitoring and conservation programmes, such as the EU Water Framework Directive, while global change pressures are threatening their singular values. Here we present a framework to classify and evaluate the ecological quality of naturally stressed rivers along a water salinity gradient. We gathered datasets, including aquatic macroinvertebrate assemblages and environmental information, for 243 river locations across the western Mediterranean to: a) gauge the role of natural stressors (salinity) in driving aquatic community richness and composition; b) make river classifications by encompassing the wide range of environmental and biological variation exhibited by Mediterranean rivers; c) provide effective biomonitoring metrics of ecological quality for saline rivers. Our results showed that water salinity played a pivotal role in explaining the community richness and compositional changes in rivers, even when considering other key and commonly used descriptors, such as elevation, climate or lithology. Both environmental and biologically-based classifications included seven river types: three types of freshwater perennial rivers, one freshwater intermittent river type and three new saline river types. These new saline types were not included in previous classifications. Their validation by independent datasets showed that the saline and freshwater river types represented differentiable macroinvertebrate assemblages at family and species levels. Biomonitoring metrics based on the abundance of indicator taxa of each saline river type provided a much better assessment of the ecological quality of saline rivers than other widely used biological metrics and indices. Here we demonstrate that considering natural stressors, such as water salinity, is essential to design effective and accurate biomonitoring programmes for rivers and to preserve their unique biodiversity.

摘要

自然压力下的生态系统拥有独特的生物多样性。然而,它们在生物监测和保护计划中(如欧盟水框架指令)被忽视了,而全球变化的压力正在威胁它们的独特价值。在这里,我们提出了一个框架,用于沿着水盐梯度对自然压力下的河流的生态质量进行分类和评估。我们收集了包括水生大型无脊椎动物群落和环境信息在内的数据集,共 243 个位于西地中海的河流位置,目的是:a)评估自然压力源(盐度)在驱动水生群落丰富度和组成方面的作用;b)通过涵盖地中海河流所表现出的广泛环境和生物变化,对河流进行分类;c)为咸水河流提供有效的生态质量生物监测指标。我们的结果表明,即使考虑到其他关键和常用的描述符,如海拔、气候或岩性,水盐度在解释河流群落丰富度和组成变化方面也起着关键作用。基于环境和生物的分类都包括七种河流类型:三种永久性淡水河流类型、一种间歇性淡水河流类型和三种新的咸水河流类型。这些新的咸水河流类型以前没有被包括在分类中。通过独立数据集进行验证表明,咸水和淡水河流类型在科和种水平上代表了可区分的大型无脊椎动物群落。基于每个咸水河流类型的指示生物类群丰度的生物监测指标,比其他广泛使用的生物指标和指数能更好地评估咸水河流的生态质量。在这里,我们证明了考虑自然压力源,如水盐度,对于设计有效的、准确的河流生物监测计划以及保护其独特的生物多样性是至关重要的。

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