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综述水生生态系统向陆地生态系统传播的环境变化。

Review on environmental alterations propagating from aquatic to terrestrial ecosystems.

机构信息

Institute for Environmental Sciences, University of Koblenz-Landau, Landau, Germany.

Institute for Environmental Sciences, University of Koblenz-Landau, Landau, Germany; Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, Uppsala, Sweden.

出版信息

Sci Total Environ. 2015 Dec 15;538:246-61. doi: 10.1016/j.scitotenv.2015.08.038. Epub 2015 Aug 24.

Abstract

Terrestrial inputs into freshwater ecosystems are a classical field of environmental science. Resource fluxes (subsidy) from aquatic to terrestrial systems have been less studied, although they are of high ecological relevance particularly for the receiving ecosystem. These fluxes may, however, be impacted by anthropogenically driven alterations modifying structure and functioning of aquatic ecosystems. In this context, we reviewed the peer-reviewed literature for studies addressing the subsidy of terrestrial by aquatic ecosystems with special emphasis on the role that anthropogenic alterations play in this water-land coupling. Our analysis revealed a continuously increasing interest in the coupling of aquatic to terrestrial ecosystems between 1990 and 2014 (total: 661 studies), while the research domains focusing on abiotic (502 studies) and biotic (159 studies) processes are strongly separated. Approximately 35% (abiotic) and 25% (biotic) of the studies focused on the propagation of anthropogenic alterations from the aquatic to the terrestrial system. Among these studies, hydromorphological and hydrological alterations were predominantly assessed, whereas water pollution and invasive species were less frequently investigated. Less than 5% of these studies considered indirect effects in the terrestrial system e.g. via food web responses, as a result of anthropogenic alterations in aquatic ecosystems. Nonetheless, these very few publications indicate far-reaching consequences in the receiving terrestrial ecosystem. For example, bottom-up mediated responses via soil quality can cascade over plant communities up to the level of herbivorous arthropods, while top-down mediated responses via predatory spiders can cascade down to herbivorous arthropods and even plants. Overall, the current state of knowledge calls for an integrated assessment on how these interactions within terrestrial ecosystems are affected by propagation of aquatic ecosystem alterations. To fill these gaps, we propose a scientific framework, which considers abiotic and biotic aspects based on an interdisciplinary approach.

摘要

陆地输入对淡水生态系统是环境科学的一个经典领域。尽管水生系统向陆地系统的资源流动(补助)具有高度的生态相关性,特别是对受纳生态系统而言,但对其的研究却较少。然而,这些流动可能会受到人为驱动的改变的影响,这些改变会改变水生生态系统的结构和功能。在这种情况下,我们回顾了关于水生生态系统向陆地生态系统补助的同行评议文献,特别强调了人为改变在这种水-陆耦合中的作用。我们的分析表明,1990 年至 2014 年期间,人们对水生生态系统与陆地生态系统耦合的兴趣不断增加(总计:661 项研究),而专注于非生物(502 项研究)和生物(159 项研究)过程的研究领域则是相互分离的。大约 35%(非生物)和 25%(生物)的研究集中在水生系统向陆地系统传播人为改变上。在这些研究中,水力学形态学和水文学的改变是主要的评估对象,而水污染和入侵物种则较少被研究。在这些研究中,不到 5%的研究考虑了陆地系统中的间接效应,例如通过食物网的响应,这是由于水生生态系统中的人为改变造成的。尽管如此,这些为数不多的出版物表明,在受纳陆地生态系统中会产生深远的后果。例如,通过土壤质量的自下而上的介导反应可以通过植物群落级联到食草节肢动物,而通过捕食性蜘蛛的自上而下的介导反应可以级联到食草节肢动物,甚至是植物。总的来说,目前的知识状况需要综合评估这些陆地生态系统内部的相互作用如何受到水生生态系统改变传播的影响。为了填补这些空白,我们提出了一个科学框架,该框架基于跨学科方法考虑了非生物和生物方面。

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