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Effects of Best Management Practice on Ecological Condition: Does Location Matter?

机译:最佳管理实践对生态条件的影响:位置重要吗?

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Best management practices (BMPs) are increasingly being promoted as a solution to the potentially adverse effects agriculture can have on aquatic systems. However, the ability of BMPs to improve riverine systems continues to be questioned due to equivocal empirical evidence linking BMP use with improved stream conditions, particularly in regard to ecological conditions. Explicitly viewing BMP location in relation to hydrologi-cal pathways may, however, assist in establishing stronger ecological linkages. The goal of this study was to assess the association between water chemistry, benthic macroinver-tebrate community structure, and the number and location of agricultural BMPs in a catchment. Macroinvertebrate and water samples were collected in 30 small (<12 km~2) catchments exhibiting gradients of BMP use and location in the Grand River Watershed, Southern Ontario, Canada. Stepwise regression analysis revealed that concentrations of most stream nutrients declined in association with greater numbers of BMPs and particularly when BMPs were located in hydrologically connected areas. However, BMPs were significantly associated with only one metric (%EPT) describing macroinvertebrate community structure. Furthermore, variance partitioning analysis indicated that less than 5 % of the among site variation in the macroinvertebrate community could be attributed to BMPs. Overall, the implemented BMPs appear to be achieving water quality improvement goals but spatial targeting of specific BMP types may allow management agencies to attain further water quality improvements more efficiently. Mitigation and rehabilitation measures beyond the BMPs assessed in this study may be required to meet goals of enhanced ecological condition.
机译:最佳管理规范(BMP)日益得到推广,以解决农业对水生系统可能产生的潜在不利影响。然而,由于将BMP的使用与改善的河流条件联系起来的模棱两可的经验证据,尤其是在生态条件方面,BMP改善河流系统的能力仍受到质疑。但是,相对于水文途径,明确观察BMP的位置可能有助于建立更牢固的生态联系。这项研究的目的是评估水化学,底栖大型无脊椎动物群落结构以及流域中农业BMP的数量和位置之间的关联。在加拿大南部安大略省大河流域的30个小型(<12 km〜2)流域收集了大型无脊椎动物和水样,这些流域显示了BMP使用的梯度和位置。逐步回归分析显示,大多数溪流营养物的浓度随着大量BMP的下降而下降,特别是当BMP位于水文连通区域时。但是,BMP仅与描述大型无脊椎动物群落结构的一个指标(%EPT)显着相关。此外,方差划分分析表明,在大型无脊椎动物群落中,不到5%的位点变异可归因于BMP。总体而言,已实施的BMP似乎正在实现水质改善目标,但是针对特定BMP类型的空间定位可能会使管理机构更有效地实现进一步的水质改善。为了达到改善生态条件的目标,可能需要采取超出本研究评估的BMPs的缓解和恢复措施。

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