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Spatial Variation among Lakes within Landscapes: Ecological Organization along Lake Chains

机译:景观湖泊空间变异:湖链生态组织

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摘要

Although limnologists have long been interested in regional patterns in lake attributes, only recently have they considered lakes connected and organized across the landscape, rather than as spatially independent entities. Here we explore the spatial organization of lake districts through the concept of landscape position, a concept that considers lakes longitudinally along gradients of geomorphology and hydrology. We analyzed long-term chemical and biological data from nine lake chains (lakes in a series connected through surface or groundwater flow) from seven lake districts of diverse hydrologic and geomorphic settings across North America. Spatial patterns in lake variables driven by landscape position were surprisingly common across lake districts and across a wide range of variables. On the other hand, temporal patterns of lake variables, quantified using synchrony, the degree to which pairs of lakes exhibit similar dynamics through time, related to landscape position only for lake chains with lake water residence times that spanned a wide range and were generally long (close to or greater than 1 year). Highest synchrony of lakes within a lake chain occurred when lakes had short water residence times. Our results from both the spatial and temporal analyses suggest that certain features of the landscape position concept are robust enough to span a wide range of seemingly disparate lake types. The strong spatial patterns observed in this analysis, and some unexplained patterns, suggest the need to further study these scales and to continue to view lake ecosystems spatially, longitudinally, and broadly across the landscape.
机译:尽管森林学家一直对湖泊属性的区域格局感兴趣,但直到最近才才考虑湖泊在整个景观中相互连接和组织,而不是在空间上相互独立。在这里,我们通过景观位置的概​​念来探索湖泊区域的空间组织,景观概念是沿着地貌学和水文学梯度纵向地考虑湖泊。我们分析了来自北美七个水域和地貌环境不同的七个湖区的九个湖链(通过地表水或地下水流连接的一系列湖泊)的长期化学和生物学数据。令人惊讶的是,由景观位置驱动的湖泊变量的空间格局在整个湖区和各种各样的变量中都很普遍。另一方面,湖泊变量的时间模式是用同步性来量化的,成对的湖泊随时间表现出相似的动态程度,仅与湖水停留时间跨度大且通常较长的湖泊链的景观位置有关。 (接近或大于1年)。当湖泊的水滞留时间短时,湖泊链中湖泊的最高同步度就发生了。我们从时空分析得出的结果表明,景观位置概念的某些特征足够强大,可以涵盖各种看似不同的湖泊类型。在此分析中观察到的强空间格局以及一些无法解释的格局表明,有必要进一步研究这些尺度,并继续在整个景观中从空间,纵向和广泛的角度观察湖泊生态系统。

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