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Resource heterogeneity does not explain the diversity-productivity relationship across a boreal island fertility gradient

机译:资源异质性不能解释北岛岛屿生育力梯度的多样性-生产率关系

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Many studies at the regional scale have found either negative or hump-shaped relationships between productivity and diversity, and some theories propose that these occur because soil resource heterogeneity is either lower or less important in more productive environments. However, there have been few explicit tests of these theories in natural ecosystems. We evaluated the relationship between soil resource heterogeneity and plant richness within a well characterized system of 30 islands in northern Sweden across which soil fertility and productivity declines, and species richness increases, as a consequence of ecosystem retrogression. On each island we created a spatially explicit grid consisting of 49 sampling points in a 9.5 m quadrat, which we used to quantify spatial heterogeneity of five soil variables (NH4+-N, amino N, PO4--P, microbial biomass, and decomposition), and plant community composition. Using a hierarchical Bayesian approach, we estimated mean semivariograms of each variable for each island size class to compare three components of spatial heterogeneity: total variability, spatial grain, and patchiness. This analysis showed that variability within islands was usually lowest on small islands, where species richness was highest and productivity lowest; however, NH4+-N and amino N had greater patchiness and spatial grain on small islands. We did not detect any significant across-island correlations between whole-plot plant species richness and either whole-plot standard deviation or coefficient of variation of any soil variable. Using partial Mantel tests, we found that mean correlation coefficients between within-plot plant community composition and the soil variables were never significant for any island size class, and did not differ between island size classes. Our findings do not provide any evidence that soil resource heterogeneity controls the productivitydiversity relationship in this system, and suggests other mechanisms are primarily responsible.
机译:区域范围内的许多研究都发现生产力与多样性之间存在负相关或驼峰形的关系,有些理论认为,之所以出现,是因为在生产性较高的环境中,土壤资源异质性的重要性较低或较低。然而,在自然生态系统中很少有对这些理论的明确测试。我们评估了瑞典北部30个岛屿的特征明确的系统中土壤资源异质性与植物丰富度之间的关系,由于生态系统退化,该地区的土壤肥力和生产力下降,物种丰富度增加。在每个岛上,我们创建了一个空间明确的网格,该网格由9.5 m正方形中的49个采样点组成,用于量化五个土壤变量(NH4 + -N,氨基N,PO4--P,微生物生物量和分解)的空间异质性,以及植物群落组成。使用分层贝叶斯方法,我们估计了每个岛屿大小类别的每个变量的平均半变异函数,以比较空间异质性的三个组成部分:总变异性,空间粒度和斑块性。该分析表明,岛屿上的变异性通常在物种丰富度最高,生产力最低的小岛上最低。然而,NH4 + -N和氨基N在小岛上的斑块和空间粒较大。我们没有发现全图植物物种丰富度与全图标准偏差或任何土壤变量的变异系数之间的任何显着的跨岛相关性。使用局部Mantel测试,我们发现,对于任何岛屿大小级别,样地内植物群落组成与土壤变量之间的平均相关系数均不显着,并且在岛屿大小级别之间也没有差异。我们的发现没有提供任何证据表明土壤资源异质性控制了该系统中的生产力多样性关系,并暗示了其他机制是主要原因。

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