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首页> 外文期刊>Freshwater Biology >Subsidy-stress and multiple-stressor effects along gradients of deposited fine sediment and dissolved nutrients in a regional set of streams and rivers
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Subsidy-stress and multiple-stressor effects along gradients of deposited fine sediment and dissolved nutrients in a regional set of streams and rivers

机译:沿河流和河流区域集中沉积的细小沉积物和溶解养分的梯度产生的补贴-压力和多重压力效应

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1. Stream managers need to understand relationships between multiple stressors and ecological responses. We examined responses of benthic invertebrates and algae along two land-use-related stressor gradients of concern in running waters. Our correlative study of the consequences of augmented deposited fine sediment and nutrient concentrations was conducted in a regional set of streams and rivers monitored by a water management authority in New Zealand and incorporated a wide range of catchment geologies and stream orders.2. We used multiple linear regression analysis and an information-theoretic approach to select the best predictive models for our biological response variables by testing multiple competing hypotheses that include nonlinear subsidy-stress relationships and interactive effects between the two stressors.3. Patterns consistent with a subsidy-stress response to increasing dissolved inorganic nitrogen concentration were found for the relative abundances of the common invertebrate genera Pycnocentrodes and Deleatidium and for the relative abundance of total individuals in the EPT orders (Ephemeroptera, Plecoptera, Trichoptera).4. Fine sediment seemed the more pervasive stressor, apparently counteracting and overwhelming any initial subsidy effect of increased nutrients, and accounting for more of the variance in biological response variables. Relationships with high nutrient concentrations were weaker and modelled with less certainty, probably reflecting the indirect modes of action of nutrients compared to those underlying sediment effects. Nevertheless, in several cases, the models indicated that nutrients interacted synergistically with fine sediment, lending further weight to the conclusion that managers need to address both stressors to achieve the best outcomes.
机译:1.河流管理者需要了解多种压力源与生态响应之间的关系。我们研究了自来水中两个与土地利用有关的应激源梯度对底栖无脊椎动物和藻类的响应。我们对由新西兰水管理机构监控的区域河流和河流中沉积的细沉积物和养分浓度增加的后果进行了相关研究,并纳入了广泛的流域地质和河流次序。2。通过测试包括非线性补贴-压力关系和两个压力源之间的相互作用的多重假设,我们使用多元线性回归分析和信息理论方法为我们的生物反应变量选择最佳的预测模型。3。对于普通无脊椎动物Pycnocentrodes和Deleatidium的相对丰度,以及EPT顺序中的总个体的相对丰度,发现了与补贴胁迫对增加的溶解性无机氮浓度的响应一致的模式。(Ephemeroptera,Plecoptera,Trichoptera)4。细小的沉积物似乎是更普遍的压力源,显然抵消并压倒了养分增加的任何初始补贴作用,并解释了生物反应变量的更多差异。与高养分浓度的关系较弱,建立模型的确定性较差,这可能反映了养分的间接作用方式与潜在的沉积物作用相比。然而,在某些情况下,模型表明养分与细泥沙协同作用,这进一步得出结论,即管理者需要解决两个压力因素以实现最佳结果。

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