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Trait-based structure of invertebrates along a gradient of sediment colmation: Benthos versus hyporheos responses

机译:基于特征的无脊椎动物沿沉积物归类的梯度结构:Benthos与hyperrheos反应

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摘要

Streambed colmation by fine sediment, e.g. the deposition, accumulation and storage of fines in the substrate, is known to have severe effects on invertebrate assemblages in both the benthic and hyporheic zones but the changes in biological attributes of invertebrate assemblages related to colmation have never been considered simultaneously for these two zones. We studied the effects of colmation on the invertebrate assemblages of three rivers, testing a priori hypotheses on the biological attributes that should be more selected in communities subjected to different levels of colmation in both zones. Only the proportion of organisms with high fecundity increased and the proportion of small-sized organisms decreased along the colmation gradient in both zones simultaneously. As expected, a higher number of traits were significantly modified with colmation in the benthic vs. hyporheic assemblages. Most of the biological attributes impaired were different in the two zones. In the benthic zone, colmation mainly selected particular physiological or trophic characteristics of species and features related to their resistance or resilience capacities. In contrast, the morphological attributes of species were much more impaired by colmation in the hyporheic zone than in the benthic zone. In clogged benthic habitats, traits seemed to be more impaired by an increase in physico-chemical constraints (e.g. the reduction of oxygen availability) and a reduction of potential exchanges (including exchanges of food resources) due to a decline in stream bed conductivity. The morphological attributes of the hyporheic species were probably more influenced by changes in interstitial space characteristics. A potential indicator of the effects of colmation on river health may be based on the functional traits of benthic communities because they (ⅰ) satisfy the WFD recommendations, (ⅱ) respond consistently along a colmation gradient and (ⅲ) are comparable among assemblages even across ecoregions that differ in their taxonomic composition.
机译:精细沉积物例如众所周知,底物中细粉的沉积,积累和储存对底栖和次流带的无脊椎动物集合都有严重影响,但是这两个区域从未同时考虑过与归类有关的无脊椎动物集合的生物学特性的变化。我们研究了归类对三条河流无脊椎动物集合的影响,检验了在两个区域中受到不同归类水平的社区中应该更多选择的生物学属性的先验假设。在这两个区域中,仅沿着繁殖梯度的高繁殖力生物体的比例增加,而小型生物体的比例降低。正如预期的那样,在底栖与流水组合中,通过归类可以显着改变更多数量的性状。在这两个区域中,大多数受损的生物学特性是不同的。在底栖地带,准直主要选择物种的特定生理或营养特征,以及与它们的抗性或复原力有关的特征。相比之下,与流栖区相比,流变区中归类对物种形态特征的损害要大得多。在淤积的底栖生境中,由于流化床电导率的下降,理化约束条件的增加(例如,氧气供应的减少)和潜在的交换(包括食物资源的交换)减少,这些特性似乎更加受损。缝隙性物种的形态属性可能更多地受到间隙空间特征变化的影响。准直对河流健康影响的潜在指标可能基于底栖生物群落的功能特征,因为它们(ⅰ)满足WFD的建议,(ⅱ)沿准直梯度一致地响应,并且(ⅲ)在各个群体之间甚至是可比的分类组成不同的生态区域。

著录项

  • 来源
    《Science of the total environment》 |2014年第1期|265-276|共12页
  • 作者单位

    Universite Lyon 1, UMR-CNRS 5023 Ecology of Natural and Anthropized Hydrosystem Laboratory, 43 Bd du 11 novembre 1918, 69622 Villeurbanne Cedex, France,IRSTEA, UR MALY, F-69336 Lyon, France,Electricite de France, Savoie Technolac, 73373 Le Bourget du Lac, France;

    IRSTEA, UR MALY, F-69336 Lyon, France;

    Universite de Lorraine, UMR-CNRS 7360, Interdisciplinary Laboratory of Continental Environments, Avenue du General Delestraint, 57070 Metz, France;

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

    Biological attributes; Fine sediment; Functional groups; Community; Mixed-effects models;

    机译:生物学特性;细泥沙;功能组;社区;混合效应模型;

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