高山峡谷地貌中溪流大型无脊椎动物的长期模式

IF 2 3区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Christopher T. Robinson, Christa Jolidon, Brigitte Lods-Crozet
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引用次数: 0

摘要

阿尔卑斯山地貌对环境变化的敏感性非常显著。地表水尤其敏感,因为许多地表水受到冰川融水的影响,而随着全球冰川的消退,冰川融水正在减少。瑞士国家公园马昆湖区是一个高山峡谷地貌,有许多湖泊通过溪流相互连接。该地区几十年来一直没有冰川,但在南部盆地仍有岩石冰川。自 2001 年以来,一直在仲夏时节对地表水(本研究中的 10 个溪流地点)的物理化学、浮游生物和大型无脊椎动物(包括 74 种摇蚊)进行监测。水的物理化学性质表明,集水区的两个主要盆地各不相同,这反映了南盆地的岩石冰川水的输入情况。不过,趋势表明,随着时间的推移,岩石冰川的输入逐渐减少,所有水域的氮含量普遍下降,因此水域变得越来越相似。浮游生物生物量在不同地点之间存在一定的空间差异,2010 年后普遍下降。包括摇蚊在内的大型无脊椎动物群在各流域之间以及各流域溪流网络沿线的空间上存在明显差异。值得注意的是,在监测点的大型无脊椎动物(包括摇蚊)的长期数据中没有观察到明显的时间趋势。研究结果表明,溪流和湖泊在地形上的相互连接可能会对地表大型无脊椎动物产生缓冲作用,从而减轻流水对环境变化的主要反应模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Long-term patterns of stream macroinvertebrates in an alpine cirque landscape

Long-term patterns of stream macroinvertebrates in an alpine cirque landscape

Alpine landscapes are notable regarding their sensitivity to environmental change. Surface waters are especially sensitive as many are influenced by glacial meltwaters that are diminishing with the retreat of glaciers worldwide. The Macun Lakes region, Swiss National Park, is an alpine cirque landscape housing a number of lakes interconnected by streams. The area has been non-glaciated for decades, although rock glaciers are still present in the south basin. Surface waters, 10 stream sites in the present study, have been monitored in mid-summer since the year 2001 for physico-chemistry, periphyton and macroinvertebrates (including 74 species of chironomids). Water physico-chemistry revealed that the two main basins in the catchment differed, reflecting the inputs of rock glacier waters in the south basin. However, trends suggest that waters are becoming more similar as rock glacier inputs diminish over time along with a general decrease in nitrogen levels in all waters. Periphyton biomass showed some spatial differences among sites and a general decrease after 2010. Macroinvertebrate assemblages, including chironomids, clearly differed among basins and spatially along the stream network in each basin. Notably, no significant temporal trend was observed in the long-term data for macroinvertebrates, including chironomids, at the monitored sites. The results suggest that lotic macroinvertebrates may be buffered by the interconnectedness of streams and lakes in the landscape, which mitigates major response patterns of running waters to environmental change.

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来源期刊
Aquatic Sciences
Aquatic Sciences 环境科学-海洋与淡水生物学
CiteScore
3.90
自引率
4.20%
发文量
60
审稿时长
1 months
期刊介绍: Aquatic Sciences – Research Across Boundaries publishes original research, overviews, and reviews dealing with aquatic systems (both freshwater and marine systems) and their boundaries, including the impact of human activities on these systems. The coverage ranges from molecular-level mechanistic studies to investigations at the whole ecosystem scale. Aquatic Sciences publishes articles presenting research across disciplinary and environmental boundaries, including studies examining interactions among geological, microbial, biological, chemical, physical, hydrological, and societal processes, as well as studies assessing land-water, air-water, benthic-pelagic, river-ocean, lentic-lotic, and groundwater-surface water interactions.
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