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Spatial and temporal variation in the ecological stoichiometry of aquatic organisms in an urban catchment

机译:城市集水区水生生物生态学计量的时空变化

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Urban land use has increased dramatically over the past few decades. Urban streams are distinguished from forested or agricultural streams, in particular, by their more variable and unpredictable hydrologic pattern. The resulting high variability in nutrient loading is likely to alter the elemental composition of primary producers and, ultimately, to change the elemental composition of other foodweb components. Ecological stoichiometry is a useful framework for improving our understanding of the mass balance of multiple key elements in ecosystems. To this end, the C:N:P of key foodweb components were measured in Oxley Creek, an urban catchment in southeastern Queensland, Australia. Ten stream reaches were sampled to explore the spatial variation of C:N:P of abundant taxonomic groups across the catchment. Four of these sites were sampled weekly (for 8 wk) to examine temporal variation in elemental composition. Our results suggested that spatial and temporal variation in elemental composition of primary producers and some animal taxa were highly dependent on local (i.e., site) conditions. This local dependence makes determination of catchment-wide drivers of stoichiometric variability difficult, but our results do suggest that site-based influences in urban streams can generate substantial variability in the C:N:P content of in-stream biota. In the context of other studies that have been undertaken principally in forested streams, this application of ecological stoichiometry promises to further our understanding of the effects of urbanization on stream food webs and the stability of elemental flow.
机译:在过去的几十年中,城市土地使用急剧增加。城市溪流与森林溪流或农业溪流的区别尤其在于它们的水文模式更加可变且不可预测。养分含量的高度变化可能会改变初级生产者的元素组成,并最终改变其他食物网成分的元素组成。生态化学计量学是一个有用的框架,有助于增进我们对生态系统中多个关键元素的质量平衡的理解。为此,在澳大利亚昆士兰州东南部的城市集水区Oxley Creek测量了关键食物网成分的C:N:P。采样了十个河段,以探索流域内丰富的生物分类群的C:N:P的空间变化。每周(8周)对其中四个站点进行采样,以检查元素组成的时间变化。我们的研究结果表明,初级生产者和某些动物类群的元素组成在空间和时间上的变化高度依赖于当地(即现场)条件。这种局部依赖性使得很难确定集水区范围内化学计量变异性的驱动因素,但我们的结果确实表明,城市河流中基于地点的影响会导致河流生物区系中C:N:P含量产生实质性变化。在主要在森林溪流中进行的其他研究的背景下,这种生态化学计量的应用有望进一步使我们了解城市化对溪流食物网的影响和元素流的稳定性。

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