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Linkages Between Nutrients and Assemblages of Macroinvertebrates and Fish in Wadeable Streams: Implication to Nutrient Criteria Development

机译:营养和水体无脊椎动物大无脊椎动物和鱼类的组合之间的联系:对营养标准制定的启示

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We sampled 240 wadeable streams across Wisconsin for different forms of phosphorus and nitrogen, and assemblages of macroinvertebrates and fish to (1) examine how macroinvertebrate and fish measures correlated with the nutrients; (2) quantify relationships between key biological measures and nutrient forms to identify potential threshold levels of nutrients to support nutrient criteria development; and (3) evaluate the importance of nutrients in influencing biological assemblages relative to other physicochem-ical factors at different spatial scales. Twenty-three of the 35 fish and 18 of the 26 macroinvertebrate measures significantly correlated (P < 0.05) with at least one nutrient measure. Percentages of carnivorous, intolerant, and omnivorous fishes, index of biotic integrity, and salmonid abundance were fish measures correlated with the most nutrient measures and had the highest correlation coefficients. Percentages of Ephemeroptera-Plecoptera-Trichoptera individuals and taxa, Hilsenhoff biotic index, and mean tolerance value were macroinvertebrate measures that most strongly correlated with the most nutrient measures. Selected biological measures showed clear trends toward degradation as concentrations of phosphorus and nitrogen increased, and some measures showed clear thresholds where biological measures changed drastically with small changes in nutrient concentrations. Our selected environmental factors explained 54% of the variation in the fish assemblages. Of this explained variance, 46% was attributed to catchment and instream habitat, 15% to nutrients, 3% to other water quality measures, and 36% to the interactions among all the environmental variables. Selected environmental factors explained 53% of the variation in macroinvertebrate assemblages. Of this explained variance, 42% was attributed to catchment and instream habitat, 22% to nutrients, 5% to other water quality measures, and 32% to the interactions among all the environmental variables.
机译:我们在威斯康星州的240条可涉水流中采样了不同形式的磷和氮,以及大型无脊椎动物和鱼类的组合,以(1)检查大型无脊椎动物和鱼类的措施与营养成分之间的关​​系; (2)量化关键生物学指标与养分形式之间的关系,以识别养分的潜在阈值水平,以支持养分标准的制定; (3)评估营养素在不同空间尺度上相对于其他理化因素影响生物组合的重要性。 35条鱼中的23条和26条大型无脊椎动物中的18条与至少一项营养指标显着相关(P <0.05)。食肉,不耐受和杂食鱼类的百分比,生物完整性指数和鲑鱼丰度是与营养措施相关程度最高的鱼类措施,并且相关系数最高。前翅翅目,翼翅目翅目,翼翅目个体的百分比和分类群,Hilsenhoff生物指数以及平均耐受值是与大多数营养措施最相关的大型无脊椎动物措施。选定的生物措施显示出明显的降解趋势,即磷和氮的浓度增加,并且某些措施显示了明确的阈值,其中生物措施随养分浓度的微小变化而急剧变化。我们选择的环境因素解释了鱼组合变化的54%。在这种解释的差异中,有46%归因于集水区和下游栖息地,15%归因于养分,3%归因于其他水质指标,而36%归因于所有环境变量之间的相互作用。选定的环境因素解释了大型无脊椎动物组合中53%的变化。在这种解释的差异中,有42%归因于集水区和下游生境,22%归因于养分,5%归因于其他水质指标,而32%归因于所有环境变量之间的相互作用。

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