首页> 外文期刊>The Science of the Total Environment >Unravelling the effects of multiple stressors on diatom and macroinvertebrate communities in European river basins using structural and functional approaches
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Unravelling the effects of multiple stressors on diatom and macroinvertebrate communities in European river basins using structural and functional approaches

机译:利用结构和功能方法解开欧洲河流盆地硅藻和大型脊椎动物社区的多重压力源的影响

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摘要

Rivers suffer from more severe decreases in species diversity compared to other aquatic and terrestrial ecosystems due to a variety of pressures related to human activities. Species provide different roles in the functioning of the ecosystem, and their loss may reduce the capacity of the ecosystems to respond to multiple stressors. The effects on diversity will differ based on the type, combination and severity of stressors, as well as on the characteristics of the community composition and tolerance. Multiple trait-based approaches (MTBAs) can help to unravel the effects of multiple stressors on communities, providing a mechanistic interpretation, and, thus, complementing traditional biodiversity assessments using community structure. We studied the relationships between diversity indexes and trait composition of macroinvertebrate and diatom communities, as well as environmental variables that described the hydrological and geomorphological alterations and toxic pollution (pesticides and Pharmaceuticals) of three different European river basins: the Adige, the Sava, and the Evrotas. These river basins can be considered representative cases of different situations in European freshwater systems. Hydrological variables were the main drivers determining the community structure and function in the rivers, for both diatoms and macroinvertebrates. For diatom communities, pharmaceutical active compound (PhAC) toxic units were also identified as a very important driver of diversity changes, explaining up to 57% of the variance in taxonomic richness. For macroinvertebrates, river geomorphology was an important driver of structural changes, particularly affecting Plecoptera richness. In addition, PhAC and pesticide toxic units were also identified as stressors for macroinvertebrate communities. MTBA provided a detailed picture of the effects of the stressors on the communities and confirmed the importance of hydrological variables in shaping the functional attributes of the communities.
机译:与其他与人类活动有关的各种压力导致的其他水生和陆地生态系统相比,河流患有物种多样性的更严重减少。物种在生态系统的运作中提供了不同的角色,他们的损失可能会降低生态系统的能力,以响应多个压力源。对多样性的影响将基于压力源的类型,组合和严重程度,以及社区成分和耐受性的特征。基于多种性质的方法(MTBA)可以帮助解开多个压力源对社区的影响,提供机械解释,从而补充使用社区结构的传统生物多样性评估。我们研究了多种近河流和硅藻群的多样性指数和特质组合之间的关系,以及三种不同欧洲河流流域的水文和地貌改变和毒性污染(农药和药物)的环境变量:Adige,Sava和Evrotas。这些河流盆地可以被认为是欧洲淡水系统不同情况的代表性案例。水文变量是确定河流的社区结构和功能的主要驱动因素,用于硅藻和大型脊椎动物。对于硅藻群,药物活性化合物(PHAC)有毒单位也被确定为多样性变化的一个非常重要的驱动因素,占分类学丰富的差异的57%。对于大型蠕虫物,河流晶体是结构变化的重要推动力,特别是影响Plecoptera丰富性。此外,PHAC和农药有毒单位也被鉴定为大型脊椎动物群落的压力源。 MTBA提供了压力源对社区的影响,并确认了水文变量在整形社区功能属性方面的重要性。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第10期|140543.1-140543.12|共12页
  • 作者单位

    Department of Evolutionary Biology Ecology and Environmental Sciences Universitat de Barcelona Barcelona Spain;

    Univ Lyon Universite Claude Bernard Lyon 1 CNRS ENTPE UMR 5023 LEHNA F-69622 Villeurbanne France;

    Institute of Marine Biological Resources and Inland Waters Hellenic Centre for Marine Research Anavissos Greece;

    Institute of Marine Biological Resources and Inland Waters Hellenic Centre for Marine Research Anavissos Greece;

    University of Belgrade Institute for Biological Research Sinisa Stankovic (IBISS) Belgrade Serbia;

    University of Belgrade Institute for Biological Research Sinisa Stankovic (IBISS) Belgrade Serbia;

    Catalan Institute for Water Research (ICRA) Girona Spain Institute of Aquatic Ecology Universitat de Girona Girona Spain;

    Catalan Institute for Water Research (ICRA) Girona Spain;

    Department of Evolutionary Biology Ecology and Environmental Sciences Universitat de Barcelona Barcelona Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biodiversity; Biofilm; Invertebrates; Toxic units; Traits; Hydrology;

    机译:生物多样性;生物膜;无脊椎动物;有毒单位;特征;水文;

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