Analysis of multiple-pressure pattern in rivers and its effects on the structure of macroinvertebrate communities

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2022-11-01 DOI:10.1016/j.limno.2022.126027
Martin Hroch , Karel Brabec
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Abstract

Natural and anthropogenic factors form stream macroinvertebrate communities depending on their combination, intensity, and spatial pattern. The study aimed to identify macroinvertebrate indicators that respond to land cover, hydromorphology, and wastewater releases individually and to their multiple-pressure pattern. Environmental and macroinvertebrate data from 36 sites were used in the study. Pressure parameters representing hierarchy of their complexity and spatial scale were included in analyses. Correlation analyses were used for evaluation of relationships among pressure characteristics and also pressure–macroinvertebrate relationships. The pressure-based and biological classification of sites was compared and indicator taxa were identified. The arable land in the sub-corridor extending 2–10 km upstream of an investigated site was the main pressure factor influencing the structure of macroinvertebrate communities in the studied streams. The biological effects of small-scale land cover were followed by catchment-scale land cover and hydromorphology. Almost no association of macroinvertebrates with the risk of point source pollution were detected. Classifications based on pressures and community composition corresponded only by the separation of most degraded sites from others. Among the macroinvertebrate indicators characterizing the severe impairment threshold, chironomids and oligochaetes dominated. Different responses of macroinvertebrates to hydromorphological degradation were observed under conditions of high small- and large-scale agricultural pressures (decrease in macroinvertebrate evenness and increase in oligochaete taxa richness, respectively). Linking biological indicators to pressure components and their combinations improves the efficiency of conservation and restoration strategies applied in fluvial ecosystems.

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河流多重压力格局分析及其对大型无脊椎动物群落结构的影响
自然和人为因素根据其组合、强度和空间格局形成河流大型无脊椎动物群落。该研究旨在确定大型无脊椎动物对土地覆盖、水文形态和废水排放的响应指标,以及它们的多重压力模式。该研究使用了来自36个地点的环境和大型无脊椎动物数据。压力参数表示其复杂性和空间尺度的层次关系。相关分析用于评价压力特性之间的关系以及压力-大型无脊椎动物之间的关系。比较了站址的压力分类和生物分类,确定了指示类群。调查点上游2 ~ 10 km子廊道的耕地面积是影响大型无脊椎动物群落结构的主要压力因子。小尺度土地覆被的生物效应次之,流域尺度土地覆被和水文形态的生物效应次之。几乎没有发现大型无脊椎动物与点源污染风险的关联。基于压力和群落组成的分类只能与大多数退化地点与其他地点的分离相对应。在表征严重损伤阈值的大型无脊椎动物指标中,手摇纲和寡毛纲占主导地位。大型无脊椎动物在小规模和大规模农业压力下对水文形态退化的响应不同(大型无脊椎动物均匀度降低,寡毛动物类群丰富度增加)。将生物指标与压力成分及其组合联系起来,可以提高河流生态系统中应用的保护和恢复策略的效率。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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