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Ecosystem Size Mediates the Effects of Resource Flows on Species Diversity and Ecosystem Function at Different Scales

机译:生态系统规模在不同尺度上调节资源流动对物种多样性和生态系统功能的影响

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摘要

Ecosystem size and spatial resource flows are key factors driving species diversity and ecosystem function. However, the question of whether and how these drivers interact has been largely overlooked. Here, we investigated how ecosystem size asymmetry affects species diversity and function of two‐patch meta‐ecosystems connected through flows of nonliving resources. We conducted a microcosm experiment, mimicking resource flows between ecosystems of different sizes yet otherwise identical properties or between ecosystems of the same size. Meta‐ecosystems with asymmetric ecosystem sizes displayed higher α‐diversity but lower β‐diversity and ecosystem function (total biomass) than their unconnected counterparts. At the same time, such an effect was not found for meta‐ecosystems of identical patch sizes. Our work demonstrates how the size of ecosystems, interconnected via resource flows, can modulate cross‐ecosystem dynamics, having implications for species diversity and function across scales.
机译:生态系统规模和空间资源流动是驱动物种多样性和生态系统功能的关键因素。然而,这些驱动因素是否以及如何互动的问题在很大程度上被忽视了。在这里,我们研究了生态系统大小不对称如何影响物种多样性和通过非生物资源流动连接的双斑块元生态系统的功能。我们进行了一项微观实验,模拟了不同规模但其他特性相同的生态系统之间或相同规模的生态系统之间的资源流动。与未连接的生态系统相比,具有不对称生态系统大小的元生态系统表现出更高的α多样性,但β多样性和生态系统功能(总生物量)较低。同时,对于相同斑块大小的元生态系统,没有发现这种效果。我们的工作展示了通过资源流动相互连接的生态系统的大小如何调节跨生态系统动态,从而对物种多样性和跨尺度的功能产生影响。

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