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模型化的水文指标显示了水文学与溪流生物组合的功能组成之间的联系。

Modeled hydrologic metrics show links between hydrology and the functional composition of stream assemblages.

机构信息

Department of Life Sciences, Texas A&M University Corpus Christ, Corpus Christi, TX, 78412, USA.

出版信息

Ecol Appl. 2017 Jul;27(5):1605-1617. doi: 10.1002/eap.1554. Epub 2017 Jun 12.

Abstract

Flow alteration is widespread in streams, but current understanding of the effects of differences in flow characteristics on stream biological communities is incomplete. We tested hypotheses about the effect of variation in hydrology on stream communities by using generalized additive models to relate watershed information to the values of different flow metrics at gauged sites. Flow models accounted for 54-80% of the spatial variation in flow metric values among gauged sites. We then used these models to predict flow metrics in 842 ungauged stream sites in the mid-Atlantic United States that were sampled for fish, macroinvertebrates, and environmental covariates. Fish and macroinvertebrate assemblages were characterized in terms of a suite of metrics that quantified aspects of community composition, diversity, and functional traits that were expected to be associated with differences in flow characteristics. We related modeled flow metrics to biological metrics in a series of stressor-response models. Our analyses identified both drying and base flow instability as explaining 30-50% of the observed variability in fish and invertebrate community composition. Variations in community composition were related to variations in the prevalence of dispersal traits in invertebrates and trophic guilds in fish. The results demonstrate that we can use statistical models to predict hydrologic conditions at bioassessment sites, which, in turn, we can use to estimate relationships between flow conditions and biological characteristics. This analysis provides an approach to quantify the effects of spatial variation in flow metrics using readily available biomonitoring data.

摘要

水流改变在溪流中普遍存在,但目前对于水流特征差异对溪流生物群落的影响的理解并不完整。我们通过使用广义加性模型将流域信息与测量点不同水流指标的值联系起来,测试了关于水文学对溪流群落影响的假设。水流模型解释了测量点之间水流指标值空间变化的 54-80%。然后,我们使用这些模型预测了美国中大西洋地区 842 个未测量的溪流站点的水流指标,这些站点都进行了鱼类、大型无脊椎动物和环境协变量的采样。鱼类和大型无脊椎动物群落的特征是一整套指标,这些指标量化了群落组成、多样性和功能特征的各个方面,这些方面预计与水流特征的差异有关。我们在一系列胁迫反应模型中,将模型化的水流指标与生物指标联系起来。我们的分析确定了干燥和基流不稳定是解释鱼类和无脊椎动物群落组成观测变异性的 30-50%的原因。群落组成的变化与无脊椎动物中扩散特征的普遍性变化以及鱼类中的营养类群的变化有关。结果表明,我们可以使用统计模型来预测生物评估点的水文学条件,反过来,我们可以使用这些条件来估计水流条件和生物特征之间的关系。该分析提供了一种使用现成的生物监测数据来量化水流指标空间变化影响的方法。

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