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空间尺度调节后生境集合组装过程的推断。

Spatial scale modulates the inference of metacommunity assembly processes.

机构信息

German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, Leipzig, Germany.

Institute for Computer Science, Martin Luther University Halle-Wittenberg, Halle (Saale), Germany.

出版信息

Ecology. 2019 Feb;100(2):e02576. doi: 10.1002/ecy.2576.

Abstract

The abundance and distribution of species across the landscape depend on the interaction between local, spatial, and stochastic processes. However, empirical syntheses relating these processes to spatiotemporal patterns of structure in metacommunities remain elusive. One important reason for this lack of synthesis is that the relative importance of the core assembly processes (dispersal, selection, and drift) critically depends on the spatial grain and extent over which communities are studied. To illustrate this, we simulated different aspects of community assembly on heterogeneous landscapes, including the strength of response to environmental heterogeneity (inherent to niche theory) vs. dispersal and stochastic drift (inherent to neutral theory). We show that increasing spatial extent leads to increasing importance of niche selection, whereas increasing spatial grain leads to decreasing importance of niche selection. The strength of these scaling effects depended on environment configuration, dispersal capacity, and niche breadth. By mapping the variation observed from the scaling effects in simulations, we could recreate the entire range of variation observed within and among empirical studies. This means that variation in the relative importance of assembly processes among empirical studies is largely scale dependent and cannot be directly compared. The scaling coefficient of the relative contribution of assembly processes, however, can be interpreted as a scale-integrative estimate to compare assembly processes across different regions and ecosystems. This emphasizes the necessity to consider spatial scaling as an explicit component of studies intended to infer the importance of community assembly processes.

摘要

物种在景观中的丰富度和分布取决于局域、空间和随机过程之间的相互作用。然而,将这些过程与复合种群结构的时空模式联系起来的经验综合仍然难以实现。造成这种缺乏综合的一个重要原因是,核心组装过程(扩散、选择和漂移)的相对重要性取决于群落研究的空间粒度和范围。为了说明这一点,我们在异质景观上模拟了群落组装的不同方面,包括对环境异质性的响应强度(与生态位理论有关)与扩散和随机漂移(与中性理论有关)。结果表明,空间范围的增加导致生态位选择的重要性增加,而空间粒度的增加导致生态位选择的重要性降低。这些尺度效应的强度取决于环境配置、扩散能力和生态位宽度。通过模拟中观察到的尺度效应的变化,我们可以重现实证研究中观察到的整个变化范围。这意味着实证研究中组装过程相对重要性的变化在很大程度上是依赖于尺度的,不能直接进行比较。然而,组装过程相对贡献的尺度系数可以被解释为一个尺度综合的估计值,用于比较不同区域和生态系统中的组装过程。这强调了在旨在推断群落组装过程重要性的研究中,必须考虑空间尺度作为一个显式组成部分。

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