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当前保护缓冲区之外的陆地土地利用对地下水动物群的影响。

Terrestrial land use signals on groundwater fauna beyond current protection buffers.

作者信息

Knüsel Mara, Alther Roman, Altermatt Florian

机构信息

Department of Aquatic Ecology, Eawag, Swiss Federal Institute of Aquatic Science and Technology, Dübendorf, Switzerland.

Department of Evolutionary Biology and Environmental Studies, University of Zurich, Zurich, Switzerland.

出版信息

Ecol Appl. 2024 Dec;34(8):e3040. doi: 10.1002/eap.3040. Epub 2024 Oct 18.

Abstract

Terrestrial and aquatic ecosystems are tightly linked, with direct implications for applied resource management and conservation. It is well known that human land use change and intensification of terrestrial systems can have large impacts on surface freshwater ecosystems. Contrastingly, the study and understanding of such land use impacts on groundwater communities is lagging behind. Both the impact strength of land use on groundwater communities and the spatial extents at which such interlinkages are operating are largely unknown, despite our reliance on groundwater for drinking water extraction as a key ecosystem service. Here, we analyzed groundwater amphipod occurrence from several hundred shallow groundwater aquifers used for drinking water extraction across a region of varying agricultural intensity and human population density in Switzerland. Despite drinking water extraction sites being generally built at locations with expected minimal aboveground impacts on water quality, we found a direct correlation between land use type and intensity within the surrounding catchment area and the locally measured nitrate concentrations, which is a direct proxy for drinking water quality. Furthermore, groundwater amphipods were more likely to be found at sites with higher forest coverage than at sites with higher crop and intensive pasture coverages, clearly indicating a tight connection between aboveground land use and groundwater biodiversity. Our results indicate that land use type effects on groundwater communities are most relevant and pronounced to spatial scales of about 400-1000 m around the groundwater sampling site. Importantly, the here identified spatial scale is 1.2- to 3-fold exceeding the average extent of currently defined groundwater protection zones. We postulate that incorporating an ecosystem perspective into groundwater management strategies is needed for effective protection of groundwater quality and biodiversity.

摘要

陆地和水生生态系统紧密相连,这对应用资源管理和保护有着直接影响。众所周知,人类土地利用变化和陆地系统的集约化会对地表淡水生态系统产生重大影响。相比之下,对这种土地利用对地下水群落影响的研究和理解却滞后了。尽管我们依赖地下水作为关键的生态系统服务来提取饮用水,但土地利用对地下水群落的影响强度以及这种相互联系起作用的空间范围在很大程度上仍不为人知。在这里,我们分析了瑞士一个农业强度和人口密度各异的地区数百个用于饮用水提取的浅层地下水含水层中地下水端足类动物的出现情况。尽管饮用水提取地点通常建在对水质预期地面影响最小的位置,但我们发现周边集水区内的土地利用类型和强度与当地测量的硝酸盐浓度之间存在直接关联,而硝酸盐浓度是饮用水质量的直接指标。此外,在森林覆盖率较高的地点比在作物和集约化牧场覆盖率较高的地点更有可能发现地下水端足类动物,这清楚地表明了地面土地利用与地下水生物多样性之间的紧密联系。我们的结果表明,土地利用类型对地下水群落的影响在地下水采样点周围约400 - 1000米的空间尺度上最为相关且显著。重要的是,这里确定的空间尺度比目前定义的地下水保护区的平均范围超出了1.2至3倍。我们推测,为了有效保护地下水质量和生物多样性,需要将生态系统视角纳入地下水管理策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddd0/11610645/0fa36e07e027/EAP-34-e3040-g001.jpg

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