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Exploring the role of vegetation fragmentation on aquatic conditions: linking upland with riparian areas in lowland streams.

机译:探索植被破碎在水生条件下的作用:将高地与低地河流中的河岸地区联系起来。

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摘要

A controversial issue in managing urbanizing watersheds is determining the scale at which conservation measures should be implemented. Current "best practices" suggest establishing riparian buffers along stream corridors and limiting impervious surfaces to prevent degradation of instream biological conditions. While there is increasing evidence that the amount of land covers (e.g., impervious surface, vegetation) has an impact on instream aquatic conditions, the effect of upland vegetation fragmentation on aquatic conditions requires further study. By using landscape metrics to quantity vegetation amount and distribution at the riparian and watershed scales, and a macroinvertebrate index to describe aquatic conditions, this study presents empirical evidence about the interactions between riparian and upland vegetation as they affect instream biological condition of 51 nested watersheds in the Puget Sound lowland. We ask if the fragmentation of vegetation within a watershed helps predict instream biological condition. In addition, we hypothesize that the fragmentation of vegetation at the riparian and watershed scales affects instream biological condition. Using parametric and non-parametric statistical analyses to test relationships, our findings suggest that the fragmentation of upland vegetation and the total amount of riparian vegetation explain the greatest amount of variation in aquatic conditions. These results help frame a management approach for conserving upland areas of vegetation through the use of land use planning techniques.
机译:在管理城市化流域时,一个有争议的问题是确定实施保护措施的规模。当前的“最佳实践”建议沿河流走廊建立河岸缓冲带并限制不透水的表面,以防止河流生物条件的恶化。尽管越来越多的证据表明土地覆盖的数量(例如不透水的表面,植被)对河流水生条件有影响,但旱地植被破碎对水生条件的影响尚需进一步研究。通过使用景观度量来定量河岸和流域尺度上的植被数量和分布,并用无脊椎动物指数描述水生条件,本研究提供了关于河岸植被和高地植被之间相互作用的经验证据,因为它们影响了51个嵌套流域的上游生物条件。普吉特海湾低地。我们问分水岭内的植被破碎是否有助于预测河流生物状况。此外,我们假设在河岸和分水岭尺度上的植被破碎会影响河流生物条件。使用参数和非参数统计分析来检验关系,我们的发现表明,高地植被的碎片化和河岸植被的总量解释了水生条件的最大变化。这些结果有助于通过使用土地利用规划技术来制定保护植被高地地区的管理方法。

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