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二十八年来的生态系统恢复与失衡:生物入侵和气候变化对温带河流的影响。

Twenty-eight years of ecosystem recovery and destabilisation: Impacts of biological invasions and climate change on a temperate river.

机构信息

University of Koblenz, Institute for Integrated Natural Sciences, Universitätsstr. 1, 56070 Koblenz, Germany; Federal Institute of Hydrology, Department U4 Animal Ecology, Am Mainzer Tor 1, 56068 Koblenz, Germany.

Federal Institute of Hydrology, Department U4 Animal Ecology, Am Mainzer Tor 1, 56068 Koblenz, Germany.

出版信息

Sci Total Environ. 2023 Jun 1;875:162678. doi: 10.1016/j.scitotenv.2023.162678. Epub 2023 Mar 8.

Abstract

Most river ecosystems are exposed to multiple anthropogenic stressors affecting the composition and functionality of benthic communities. Identifying main causes and detecting potentially alarming trends in time depends on the availability of long-term monitoring data sets. Our study aimed to improve the knowledge about community effects of multiple stressors that is needed for effective, sustainable management and conservation. We conducted a causal analysis to detect the dominant stressors and hypothesised that multiple stressors, such as climate change and multiple biological invasions, reduce biodiversity and thus endanger ecosystem stability. Using a data set from 1992 to 2019 for the benthic macroinvertebrate community of a 65-km stretch of the upper Elbe river in Germany, we evaluated the effects of alien species, temperature, discharge, phosphorus, pH and abiotic conditional variables on the taxonomic and functional composition of the benthic community and analysed the temporal behaviour of biodiversity metrics. We observed fundamental taxonomic and functional changes in the community, with a shift from collectors/gatherers to filter feeders and feeding opportunists preferring warm temperatures. A partial dbRDA revealed significant effects of temperature and alien species abundance and richness. The occurrence of distinct phases in the development of community metrics suggests a temporally varying impact of different stressors. Taxonomic and functional richness responded more sensitively than the diversity metrics whereas the functional redundancy metric remained unchanged. Especially the last 10-year phase, however, showed a decline in richness metrics and an unsaturated, linear relationship between taxonomic and functional richness, which rather indicates reduced functional redundancy. We conclude that the varying anthropogenic stressors over three decades, mainly biological invasions and climate change, affected the community severely enough to increase its vulnerability to future stressors. Our study highlights the importance of long-term monitoring data and emphasises a careful use of biodiversity metrics, preferably considering also community composition.

摘要

大多数河流生态系统都受到多种影响底栖群落组成和功能的人为压力源的影响。确定主要原因并及时发现潜在的警报趋势取决于长期监测数据集的可用性。我们的研究旨在提高对多种压力源对群落影响的认识,这是进行有效、可持续管理和保护所必需的。我们进行了因果分析,以检测主要压力源,并假设气候变化和多种生物入侵等多种压力源会降低生物多样性,从而危及生态系统稳定性。我们使用了德国上易北河 65 公里长的一段河流的底栖大型无脊椎动物群落的数据集,该数据集的时间跨度为 1992 年至 2019 年,评估了外来物种、温度、流量、磷、pH 值和非生物条件变量对底栖群落分类和功能组成的影响,并分析了生物多样性指标的时间行为。我们观察到群落中存在根本性的分类和功能变化,从收集者/采集者转变为滤食者和机会主义食者,更喜欢温暖的温度。部分 dbRDA 显示温度和外来物种丰度和丰富度有显著影响。生物多样性指标发展的不同阶段的出现表明不同压力源的影响随时间而变化。分类和功能丰富度比多样性指标更敏感,而功能冗余指标保持不变。然而,特别是在过去的 10 年阶段,丰富度指标下降,分类和功能丰富度之间呈不饱和线性关系,这表明功能冗余减少。我们得出结论,三十年来不断变化的人为压力源,主要是生物入侵和气候变化,严重影响了群落,使其更容易受到未来压力源的影响。我们的研究强调了长期监测数据的重要性,并强调了谨慎使用生物多样性指标,最好同时考虑群落组成。

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