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局部与区域土地利用对法国塞讷河小支流的生物影响:基于稳定同位素的食物网方法的见解。

Biological impacts of local vs. regional land use on a small tributary of the Seine River (France): insights from a food web approach based on stable isotopes.

机构信息

Irstea, UR HBAN, 1 rue Pierre-Gilles de Gennes, CS 10030, F-92761, Antony, France.

UMR 5174 EDB (Laboratoire Evolution et Diversité Biologique), CNRS, IRD, UPS, ENFA, Université Paul Sabatier, F-31062, Toulouse, France.

出版信息

Environ Sci Pollut Res Int. 2018 Aug;25(24):23583-23594. doi: 10.1007/s11356-017-8771-5. Epub 2017 Mar 23.

Abstract

As part of the landscape, streams are influenced by land use. Here, we contributed to the understanding of the biological impacts of land use on streams, investigating how landscape effects vary with spatial scales (local vs. regional). We adopted a food web approach integrating both biological structure and functioning, to focus on the overall effect of land use on stream biocœnosis. We selected 17 sites of a small tributary of the Seine River (France) for their contrasted land use, and conducted a natural experiment by sampling three organic matter sources, three macroinvertebrate taxa, and most of the fish community. Using stable isotope analysis, we calculated three food web metrics evaluating two major dimensions of the trophic diversity displayed by the fish community: (i) the diversity of exploited resources and (ii) the trophic level richness. The idea was to examine whether (1) land-use effects varied according to spatial scales, (2) land use affected food webs through an effect on community structure and (3) land use affected food webs through an effect on available resources. Beside an increase in trophic diversity from upstream to downstream, our empirical data showed that food webs were influenced by land use in the riparian corridors (local scale). The effect was complex, and depended on site's position along the upstream-downstream gradient. By contrast, land use in the catchment (regional scale) did not influence stream biocœnosis. At the local scale, community structure was weakly influenced by land use, and thus played a minor role in explaining food web modifications. Our results suggested that the amount of available resources at the base of the food web was partly responsible for food web modifications. In addition, changes in biological functioning (i.e. feeding interactions) can also explain another part of the land-use effect. These results highlight the role played by the riparian corridors as a buffer zone, and advocate that riparian corridor should be at the centre of water management attention.

摘要

作为景观的一部分,溪流受到土地利用的影响。在这里,我们通过研究景观效应如何随空间尺度(局部与区域)而变化,来增进对土地利用对溪流生物群落影响的理解。我们采用食物网方法综合考虑生物结构和功能,以聚焦于土地利用对溪流生物群落的综合影响。我们选择了法国塞纳河支流的 17 个地点,这些地点的土地利用差异较大,并通过采样三种有机质来源、三种大型无脊椎动物类群和大部分鱼类群落进行了自然实验。我们利用稳定同位素分析,计算了三个评估鱼类群落所显示的营养多样性的两个主要维度的食物网指标:(i)被利用资源的多样性和(ii)营养层丰富度。我们的目的是检验:(1)土地利用效应是否随空间尺度而变化,(2)土地利用是否通过对群落结构的影响来影响食物网,以及(3)土地利用是否通过对可用资源的影响来影响食物网。除了从上游到下游的营养多样性增加之外,我们的实证数据还表明,在河岸带(局部尺度)土地利用会影响河流食物网。这种影响很复杂,取决于地点在上下游梯度上的位置。相比之下,流域(区域尺度)的土地利用并不影响溪流生物群落。在局部尺度上,土地利用对群落结构的影响较弱,因此在解释食物网变化方面作用较小。我们的研究结果表明,食物网底部的可用资源量部分解释了食物网的变化。此外,生物功能的变化(即摄食相互作用)也可以解释土地利用效应的另一部分。这些结果突出了河岸带作为缓冲区的作用,并提倡将河岸带作为水管理的重点。

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