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Shifts in the importance of the species pool and environmental controls of epiphytic bryophyte richness across multiple scales

机译:在多种尺度上的物种池和环境控制的重要性转变

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Species richness is influenced by a nested set of environmental factors, but how do these factors interact across several scales? Our main aim is to disentangle the relative importance of environmental filters and the species pool on the richness of epiphytic bryophytes across spatial scales. To do so, we sampled epiphytic bryophytes in 43 oak forests across the northwest of the Iberian Peninsula. As predictors we used climate, descriptors of forest structure and micro-environment. We applied structural equation modeling to relate these variables with richness and cover at three scales: locality (forest), stand (three stands per forest), and sample (a quadrate in a tree). We assumed top-down relationships, so that large-scale variables influenced lower scale variables, and in which cover directly influenced richness. Richness at the next larger scale (locality to stand and stand to sample) is considered a surrogate of the species pool and included as a predictor of richness at the next smaller scale. Environmental variables explain locality richness, but as we decrease the spatial scale, its importance decreases and the dependence on species pool increases. In addition, we found unexpected bottom-up relationships (between micro-scale environment to locality richness). Our results point to the scale dependence of niche vs. neutral processes: niche processes are important at the locality (forest) scale, while neutral processes are significant at the small (sample) scale. We propose a modified conceptualization of the factors influencing biodiversity at different spatial scales by adding links across different scales (between micro-environment and locality-scale richness in our study).
机译:物种丰富性受到嵌套环境因素的影响,但这些因素如何在几种尺度上互动?我们的主要目标是解开环境过滤器和物种库对空间鳞片的果皮苔藓植物丰富性的相对重要性。为此,我们在伊比利亚半岛西北43棵橡木林中采样了果皮苔藓植物。作为预测器,我们使用气候,森林结构和微环境的描述符。我们应用了结构方程模型,将这些变量与富裕和盖子相关三个尺度:地方(森林),支架(每森林三个代表)和样品(树中的四级)。我们假设自上而下的关系,使大规模变量影响较低的尺度变量,并且在其中覆盖直接影响丰富性。在下一个更大的尺度(待机和待机的地方)的丰富度被认为是物种池的代理,并且包括在下一个更小的比例下作为丰富性的预测因子。环境变量解释了地方性丰富,但随着我们减少空间规模,其重要性降低,对物种池的依赖增加。此外,我们发现意想不到的自下而上的关系(在微级环境之间到地区丰富)。我们的结果指出了利基与中性过程的规模依赖性:利基过程在局部(森林)尺度上很重要,而中性过程在小(样本)规模中是显着的。我们提出了一种改进的概念化,通过在不同尺度上添加链接(在我们的研究中微环境和地区规模丰富性之间的链接,提出了影响不同空间尺度的生物多样性的因素。

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