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Modifications of ecological trophic structures on chemical gradients in lotic ecosystems and their relations to stream ecosystem health

机译:抽水生态系统中化学梯度对生态营养结构的修饰及其与河流生态系统健康的关系

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The objectives of this study were to evaluate how chemical gradients and physical habitats influence trophic dynamics and chemical tolerance in relation to ecological health, based on biological integrity model in the absence of cascading pressures (cascading theory) as a control mechanism of aquatic ecosystems. We conducted physical, chemical, and biological surveys from 76 national streams and rivers of four major watersheds during 2004–2005 along with surveys of 80 reference streams. Maximum species richness lines (MSRLs) in reference sites vs. regular sampling sites indicated that the third- to fifth-order streams were evidently impaired in the metrics of trophic and tolerant components. These trophic modifications were linked with land-use patterns, which resulted in differences of nutrients (N, P), organic matter contents and the N:P ratios on trophic structures. Overall, these trophic factors influenced ecological health, based on multimetric index of biological integrity model in these systems, so that trophic compositions and tolerance were regulated by bottom-up hypothesis.
机译:这项研究的目的是在没有级联压力(级联理论)作为水生生态系统控制机制的情况下,基于生物完整性模型,评估化学梯度和物理生境如何影响营养动力学和化学耐受性与生态健康之间的关系。在2004-2005年期间,我们对四个主要流域的76条国家河流和河流进行了物理,化学和生物学调查,并对80条参考河流进行了调查。参考地点和常规采样地点的最大物种丰富度线(MSRL)表明,营养成分和耐受成分的度量标准明显削弱了三阶到五阶流。这些营养变化与土地利用方式有关,导致营养结构上养分(N,P),有机质含量和N:P比值的差异。总体而言,这些营养因子基于这些系统中生物完整性模型的多指标指标影响了生态健康,因此营养因子的组成和耐受性受自下而上假设的调节。

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