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拦河鱼塘对源头溪流功能的集水区土地利用相关影响。

Catchment land use-dependent effects of barrage fishponds on the functioning of headwater streams.

作者信息

Four Brian, Arce Evelyne, Danger Michaël, Gaillard Juliette, Thomas Marielle, Banas Damien

机构信息

UR Animal et Fonctionnalités des Produits Animaux, EA 3998, USC INRA 340, University of Lorraine, 54500, Vandoeuvre-lès-Nancy, France.

UAR 1275 DEPT EFPA Département Ecologie des Forêts, Prairies et milieux Aquatiques. Centre de recherche de Nancy, INRA, 54280, Champenoux, France.

出版信息

Environ Sci Pollut Res Int. 2017 Feb;24(6):5452-5468. doi: 10.1007/s11356-016-8273-x. Epub 2016 Dec 27.

Abstract

Extensive fish production systems in continental areas are often created by damming headwater streams. However, these lentic systems favour autochthonous organic matter production. As headwater stream functioning is essentially based on allochthonous organic matter (OM) supply, the presence of barrage fishponds on headwater streams might change the main food source for benthic communities. The goal of this study was thus to identify the effects of barrage fishponds on the functioning of headwater streams. To this end, we compared leaf litter breakdown (a key ecosystem function in headwater streams), their associated invertebrate communities and fungal biomass at sites upstream and downstream of five barrage fishponds in two dominant land use systems (three in forested catchments and two in agricultural catchments). We observed significant structural and functional differences between headwater stream ecosystems in agricultural catchments and those in forested catchments. Leaf litter decay was more rapid in forest streams, with a moderate, but not significant, increase in breakdown rate downstream from the barrage fishponds. In agricultural catchments, the trend was opposite with a 2-fold lower leaf litter breakdown rate at downstream sites compared to upstream sites. Breakdown rates observed at all sites were closely correlated with fungal biomass and shredder biomass. No effect of barrage fishponds were observed in this study concerning invertebrate community structure or functional feeding groups especially in agricultural landscapes. In forest streams, we observed a decrease in organic pollution (OP)-intolerant taxa at downstream sites that was correlated with an increase in OP-tolerant taxa. These results highlighted that the influence of barrage fishponds on headwater stream functioning is complex and land use dependent. It is therefore necessary to clearly understand the various mechanisms (competition for food resources, complementarities between autochthonous and allochthonous OM) that control ecosystem functioning in different contexts in order to optimize barrage fishpond management.

摘要

大陆地区广泛的鱼类养殖系统通常是通过筑坝拦截源头溪流形成的。然而,这些静水系统有利于本地有机物质的生产。由于源头溪流的功能主要基于外源有机物质(OM)的供应,源头溪流上的拦河鱼塘可能会改变底栖生物群落的主要食物来源。因此,本研究的目的是确定拦河鱼塘对源头溪流功能的影响。为此,我们比较了两个主要土地利用系统(三个位于森林集水区,两个位于农业集水区)中五个拦河鱼塘上下游站点的落叶分解(源头溪流中的一项关键生态系统功能)、相关的无脊椎动物群落和真菌生物量。我们观察到农业集水区和森林集水区的源头溪流水生态系统在结构和功能上存在显著差异。森林溪流中的落叶腐烂更快,拦河鱼塘下游的分解速率有适度但不显著的增加。在农业集水区,趋势相反,下游站点的落叶分解速率比上游站点低两倍。所有站点观察到的分解速率与真菌生物量和碎食者生物量密切相关。在这项研究中,未观察到拦河鱼塘对无脊椎动物群落结构或功能摄食组有影响,特别是在农业景观中。在森林溪流中,我们观察到下游站点对有机污染(OP)不耐受的分类群减少,这与对OP耐受的分类群增加相关。这些结果突出表明,拦河鱼塘对源头溪流功能的影响是复杂的,且取决于土地利用。因此,有必要清楚了解控制不同背景下生态系统功能的各种机制(对食物资源的竞争、本地和外源OM之间的互补性),以便优化拦河鱼塘的管理。

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