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Microtopographic heterogeneity constrains alpine plant diversity, Glacier National Park, MT

机译:微观形貌异质性限制了高山植物的多样性,新泽西州冰川国家公园

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Theoretical and empirical evidence exists for a positive relationship between environmental heterogeneity and species diversity. Alpine plant communities can exhibit exceptional diversity at a fine scale, which niche theory would suggest is the result of fine scale spatial heterogeneity of the environment. To test if species diversity of alpine plants is driven by environmental heterogeneity, we sampled vascular plant species composition, microtopography, and ground cover within 1 m(2) plots with and without solifluction forms in Glacier National Park, MT. We analyzed the relationship between microtopographic heterogeneity and species richness at the plot and sub-plot scale with linear and quantile regression, respectively. Species richness does not differ between the plots varying in cover type. Species richness is negatively related to the fractal dimension (D) of the ground surface and non-vegetated ground cover within 1 m(2) plots. At a finer scale, the standard deviation of elevation and slope appear to impose a limit on species richness such that more variable sub-plots have lower species richness. Contrary to our expectations, microtopographic heterogeneity does not promote the diversity of alpine plants. The negative relationship between topographic heterogeneity and species richness is contrary to the theoretical prediction that environmental heterogeneity generally results in greater species diversity. It is possible that microtopographic variability represents a measure of soil disturbance, which would be expected to have a negative effect on species diversity in alpine tundra due to its low productivity.
机译:在环境异质性和物种多样性之间存在正相关的理论和经验证据。高山植物群落可以在精细尺度上展现出异常的多样性,利基理论认为这是环境精细尺度空间异质性的结果。为了测试高山植物的物种多样性是否是由环境异质性驱动的,我们在密西西比州冰川国家公园的1 m(2)地块内采样了维管束植物物种组成,微观形貌和地被植物,包括有无溶积形式。我们分别使用线性回归和分位数回归分析了该图和子图尺度下微地形异质性与物种丰富度之间的关系。在覆盖类型不同的地块之间,物种丰富度没有差异。物种丰富度与1 m(2)内的地表和非植被地表的分形维数(D)负相关。在更精细的规模上,高程和坡度的标准偏差似乎对物种丰富度施加了限制,因此,更多的可变子图具有较低的物种丰富度。与我们的预期相反,微观形貌的异质性不会促进高山植物的多样性。地形异质性与物种丰富度之间的负相关关系与理论预测相反,即环境异质性通常会导致更大的物种多样性。微观形貌的变化可能代表了土壤扰动的一种度量,由于其生产力低下,预计会对高山冻原的物种多样性产生负面影响。

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