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Nutrient recycling by fish in streams along a gradient of agricultural land use

机译:鱼类在农田土地利用梯度上的养分循环利用

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Nutrient recycling is an essential ecosystem process provided by animals. In many aquatic systems, fish have been identified as important in ecosystem nutrient recycling; however, this importance can vary widely between systems. The factors controlling intersystem variation in animal-mediated nutrient cycling have rarely been examined and as such it remains unclear what impact human landscape changes will have upon these processes. Here we examined rates of nutrient recycling for temperate stream fish assemblages along a gradient of agricultural land use (proportion cropland in the watershed: 1-59%). We quantified nutrient excretion rates of both ammonium-N (NH4+-N) and phosphate (as soluble reactive phosphate: SRP) for fish assemblages at eight streams in southern Ontario, Canada with species-specific excretion measurements and quantitative assemblage sampling. For both nutrients, total assemblage excretion exhibited a strong positive relationship with riparian cropland. The distance required for fish assemblages to turn over ambient nutrient pools was shorter for cropland systems, indicating that the relative importance of excreted nutrients was higher in these systems. Based on measured uptake rates of NH4+-N in two streams (one higher cropland and one low cropland) and on modeled uptake rates for all streams, the proportion of ecosystem demand that can be satisfied by excretion is generally higher in the more agricultural streams. These patterns appear to be driven largely by disproportionate increases in fish assemblage biomass with increasing stream nutrient concentrations.
机译:营养循环是动物提供的必不可少的生态系统过程。在许多水生系统中,鱼类已被确认对生态系统养分循环很重要。但是,此重要性在系统之间可能有很大差异。很少研究控制动物介导的养分循环中系统间变异的因素,因此,目前尚不清楚人类景观的变化将对这些过程产生何种影响。在这里,我们研究了沿农业土地利用的梯度(流域的比例农田:1-59%)的温流鱼类组合的养分回收率。我们通过特定物种的排泄测量和定量组合采样,量化了加拿大安大略省南部八条鱼群中铵态氮(NH4 + -N)和磷酸盐(作为可溶性反应性磷酸盐:SRP)的养分排泄速率。对于这两种营养素,总组合排泄物与河岸农田表现出很强的正相关关系。在农田系统中,鱼群翻转周围营养池所需的距离较短,这表明在这些系统中,排泄的营养物的相对重要性较高。根据测量的两条河流(一个较高的耕地和一个低耕地)中的NH4 + -N吸收率以及所有河流的模型化吸收率,可以通过排泄满足生态系统需求的比例在更多的农业流中通常更高。这些模式似乎主要是由鱼群生物量随溪流养分浓度的增加而过度增加所驱动。

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