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物种间相互作用的生物过滤作用限制了食物网在空间和非生物梯度上的变异性。

Biotic filtering by species' interactions constrains food-web variability across spatial and abiotic gradients.

作者信息

Bauer Barbara, Berti Emilio, Ryser Remo, Gauzens Benoit, Hirt Myriam R, Rosenbaum Benjamin, Digel Christoph, Ott David, Scheu Stefan, Brose Ulrich

机构信息

Institute of Ecology, Friedrich Schiller University Jena, Jena, Germany.

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

出版信息

Ecol Lett. 2022 May;25(5):1225-1236. doi: 10.1111/ele.13995. Epub 2022 Mar 14.

Abstract

Despite intensive research on species dissimilarity patterns across communities (i.e. β-diversity), we still know little about their implications for variation in food-web structures. Our analyses of 50 lake and 48 forest soil communities show that, while species dissimilarity depends on environmental and spatial gradients, these effects are only weakly propagated to the networks. Moreover, our results show that species and food-web dissimilarities are consistently correlated, but that much of the variation in food-web structure across spatial, environmental, and species gradients remains unexplained. Novel food-web assembly models demonstrate the importance of biotic filtering during community assembly by (1) the availability of resources and (2) limiting similarity in species' interactions to avoid strong niche overlap and thus competitive exclusion. This reveals a strong signature of biotic filtering processes during local community assembly, which constrains the variability in structural food-web patterns across local communities despite substantial turnover in species composition.

摘要

尽管针对不同群落间的物种差异模式(即β多样性)开展了深入研究,但我们对其对食物网结构变化的影响仍知之甚少。我们对50个湖泊和48个森林土壤群落的分析表明,虽然物种差异取决于环境和空间梯度,但这些影响仅微弱地传递至食物网。此外,我们的结果表明,物种与食物网差异始终相关,但跨越空间、环境和物种梯度的食物网结构的许多变化仍无法得到解释。新颖的食物网组装模型通过(1)资源可用性和(2)限制物种间相互作用的相似性以避免强烈的生态位重叠从而避免竞争排斥,证明了生物过滤在群落组装过程中的重要性。这揭示了局部群落组装过程中生物过滤过程的强烈特征,尽管物种组成有大量更替,但该特征限制了局部群落间结构食物网模式的变异性。

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