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首页> 外文期刊>The Journal of Applied Ecology >Flow–ecology relationships are spatially structured and differ among flow regimes
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Flow–ecology relationships are spatially structured and differ among flow regimes

机译:Flow-ecology关系是空间结构化和流动机制之间的不同

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1.In streams,hydrology is a predominant driver of ecological structure and function.Providing adequate flows to support aquatic life,or environmental flows,is therefore a top management priority in stream systems.2.Flow regime classification is a widely accepted approach for establishing environmental flow guidelines.However,it is surprisingly difficult to quantify relationships between hydrology and ecology (flow–ecology relationships) while describing how these relationships vary across classified flow regimes.Developing such relationships is complicated by several sources of spatial bias,such as autocorrelation due to spatial design,flow regime classification and other environmental or ecological sources of spatial bias.3.We used mixed moving-average spatial stream network models to develop flow– ecology relationships across classified flow regimes and to assess spatial patterns of these relationships.We compared relationships between fish traits and life-history strategies with hydrologic metrics across flow regimes and assessed whether spatial autocorrelation influenced these relationships.4.Trait–hydrology relationships varied between flow regimes and across all streams combined.Some relationships between traits and hydrologic metrics fit predictions based on life-history theory,while others exhibited unexpected relationships with hydrology.Spatial factors described a large proportion of variability in fish traits and different patterns of spatial autocorrelation were observed in different flow regimes.5.Synthesis and applications.Further work is needed to understand why flow–ecology relationships vary across classified flow regimes and why these relationships may not fit predictions based on life-history theories.Managers determining environmental flow standards need to be aware that different hydrologic metrics are often important drivers of fish trait diversity in different flow regimes.Flow–ecology relationships may therefore be confounded by spatial
机译:1.生态结构和功能。有足够的资金来支持水生生物,或环境流,因此一个高层管理人员优先流systems.2。分类是一种被广泛接受的方法建立环境流指导方针。量化水文和之间的关系生态学(flow-ecology关系)描述这些关系不同分类流程制度。受到了多方的关系是复杂的空间的偏见,比如自相关原因空间设计,流态分类和其他环境或生态的来源空间bias.3。空间开发流-流网络模型生态分类流程间的关系这些制度和评估空间模式的关系。鱼的特征和生活史策略在流政权和水文指标评估是否空间自相关影响这些relationships.4.Trait-hydrology之间的关系不同制度和流程在所有流的总和。特征和水文指标之间预测基于生活史理论,他人表现出意想不到的关系水文。比例的变化特征和鱼不同的空间自相关模式观察在不同流regimes.5。需要理解为什么flow-ecology吗不同分类流机制的关系为什么这些关系可能不适合预测基于生活史理论。需要注意,不同的标准水文指标往往是重要的司机鱼特征多样性在不同流政权。蒙羞的空间

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