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Vegetation responses to landscape structure at multiple scales across aNorthern Wisconsin, USA, pine barrens landscape

机译:整个美国威斯康星州北部的松树贫瘠地区景观对植被的多种尺度的响应

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Increasing awareness of the importance of scale and landscape structure to landscape processes and concern about loss of biodiversity has resulted in efforts to understand patterns of biodiversity across multiple scales. We examined plant species distributions and their relationships to landscape structure at varying spatial scales across a pine barrens landscape in northern Wisconsin, U.S.A. We recorded plant species cover in 1x1 m plots every 5 m along a 3575 m transect, along with variables describing macro- and micro-landscape structure. A total of 139 understory plant species were recorded. The distributions of many species appeared to be strongly associated with landscape structural features, such as distinct management patches and roads. TWINSPAN and detrended correspondence analysis (DCA) identified three groups of species that overlapped extensively in the ordination, possibly reflecting the relatively homogeneous nature of disturbance in the pine barrens landscape. Distribution of understory plants did not reflect all of the patch types we identified along the transect; plot ordination and classification resulted in three to five plot groups that differed in niche breadth. Wavelet transforms showed varying relationships between landscape features and plant diversity indices (Shannon-Weiner, Simpson's Dominance) at different resolutions. Wavelet variances indicated that patterns of Shannon diversity were dominated by coarse resolutions ranging from similar to 900-1500 m, which may have been related to topography. Patterns of Simpson's Dominance were dominated by similar to 700 m resolution, possibly associated with canopy cover. However, a strong correspondence between overstory patch type and diversity was found for several patch types at ranges of scales that varied by patch type. Effects of linear features such as roads were apparent in the wavelet transforms at resolutions of about 5-1000 m, suggesting roads may have an important impact on plant diversity at landscape scales. At broad scales, landscape context appeared more important to diversity than individual patches, suggesting that changes in structure at fine resolutions could alter overall diversity characteristics of the landscape. Therefore, a hierarchical perspective is necessary to recognize potential large-scale change resulting from small-scale activities.
机译:人们越来越意识到尺度和景观结构对景观过程的重要性以及对生物多样性丧失的关注,导致人们努力了解多种尺度的生物多样性模式。我们在美国威斯康星州北部的一片松树贫瘠的土地上研究了植物物种分布及其在不同空间尺度上与景观结构的关系。我们记录了沿3575 m断面每5 m的1x1 m地块中的植物物种覆盖度,以及描述宏观和动态的变量。微景观结构。总共记录了139种林下植物。许多物种的分布似乎与景观结构特征(例如不同的管理斑块和道路)密切相关。 TWINSPAN和去趋势对应分析(DCA)确定了三类在排序中广泛重叠的物种,这可能反映了松树贫瘠地区扰动的相对均匀性。林下植物的分布并未反映出我们在横断面上识别出的所有斑块类型。地块的排序和分类导致了三到五个地域宽度不同的地块组。小波变换以不同的分辨率显示了景观特征与植物多样性指数(Shannon-Weiner,Simpson的优势)之间的变化关系。小波方差表明,香农多样性的模式主要由近似于900-1500 m的粗分辨率所主导,这可能与地形有关。辛普森优势模式的分辨率大约为700 m,可能与树冠覆盖有关。但是,对于不同补丁类型范围内的几种补丁类型,发现了过度故事补丁类型与多样性之间的强烈对应关系。线性特征(如道路)的影响在小波变换中的分辨率约为5-1000 m,这很明显,这表明道路可能在景观尺度上对植物多样性产生重要影响。在广泛的尺度上,景观环境似乎比单个斑块对多样性更重要,这表明在高分辨率下结构的变化可能会改变景观的整体多样性特征。因此,必须有一个层次的观点来认识到由小规模活动引起的潜在的大规模变化。

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