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时空养分变化是否能让更多物种共存?

Does spatiotemporal nutrient variation allow more species to coexist?

机构信息

Department of Ecology and Evolution, University of Salzburg, Hellbrunnerstrasse 34, 5020, Salzburg, Austria.

出版信息

Oecologia. 2020 Dec;194(4):695-707. doi: 10.1007/s00442-020-04768-9. Epub 2020 Oct 24.

Abstract

Temporal heterogeneity in nutrient availability is known to increase phytoplankton diversity by allowing more species to coexist under different resource niches. Spatial heterogeneity has also been positively correlated with species diversity. Here we investigated how temporal and spatial differences in nutrient addition together impact biodiversity in metacommunities varying in the degree of connectivity among the patches. We used a microcosm experimental design to test two spatiotemporal ways of supplying nutrients: synchronously (nutrients were added regionally-to all four patches at the same time) and asynchronously (nutrients were added locally-to a different patch each time), combined with two different degrees of connectivity among the patches (low or high connectivity). We used three species of algae and one species of cyanobacteria as the primary producers; and five ciliate and two rotifer species as the grazers. We expected higher diversity in metacommunities receiving an asynchronous nutrient supply, assuming stronger development of heterogeneous patches with this condition rather than with synchronous nutrient supply. This result was expected, however, to be dependent on the degree of connectivity among patches. We found significant effects of nutrient addition in both groups of organisms. Phytoplankton diversity increased until the fourth week (transiently) and zooplankton richness was persistently higher under asynchronous nutrient addition. Our results were consistent with our hypothesis that asynchronicity in nutrient supply would create a more favorable condition for species to co-occur. However, this effect was, in part, transient and was not influenced by the degree of connectivity.

摘要

养分供应的时间异质性被认为通过允许更多的物种在不同的资源小生境中共存来增加浮游植物的多样性。空间异质性也与物种多样性呈正相关。在这里,我们研究了养分添加的时间和空间差异如何共同影响斑块间连通性不同的复合群落中的生物多样性。我们使用微宇宙实验设计来测试两种时空养分供应方式:同步(养分在区域上添加 - 同时添加到所有四个斑块)和异步(养分局部添加 - 每次添加到不同的斑块),同时结合两种不同的斑块间连通性(低或高连通性)。我们使用三种藻类和一种蓝藻作为初级生产者;以及五种纤毛虫和两种轮虫作为食草动物。我们预计,在异步养分供应的复合群落中,多样性会更高,因为在这种条件下,异质斑块的发展会更强,而不是在同步养分供应的情况下。然而,这一结果预计取决于斑块之间的连通性程度。我们在两组生物中都发现了养分添加的显著影响。浮游植物多样性直到第四周(短暂地)增加,而在异步养分添加下,浮游动物丰富度持续更高。我们的结果与我们的假设一致,即养分供应的异步性将为物种共存创造更有利的条件。然而,这种效应部分是短暂的,并且不受连通性程度的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c99/7683490/228b611ebdfa/442_2020_4768_Fig1_HTML.jpg

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