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Productivity-Diversity Relationships in Lake Plankton Communities

机译:浮游生物湖社区的生产力与多样性关系

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摘要

One of the most intriguing environmental gradients connected with variation in diversity is ecosystem productivity. The role of diversity in ecosystems is pivotal, because species richness can be both a cause and a consequence of primary production. However, the mechanisms behind the varying productivity-diversity relationships (PDR) remain poorly understood. Moreover, large-scale studies on PDR across taxa are urgently needed. Here, we examined the relationships between resource supply and phyto-, bacterio-, and zooplankton richness in 100 small boreal lakes. We studied the PDR locally within the drainage systems and regionally across the systems. Second, we studied the relationships between resource availability, species richness, biomass and resource ratio (N∶P) in phytoplankton communities using Structural Equation Modeling (SEM) for testing the multivariate hypothesis of PDR. At the local scale, the PDR showed variable patterns ranging from positive linear and unimodal to negative linear relationships for all planktonic groups. At the regional scale, PDRs were significantly linear and positive for phyto- and zooplankton. Phytoplankton richness and the amount of chlorophyll a showed a positive linear relationship indicating that communities consisting of higher number of species were able to produce higher levels of biomass. According to the SEM, phytoplankton biomass was largely related to resource availability, yet there was a pathway via community richness. Finally, we found that species richness at all trophic levels was correlated with several environmental factors, and was also related to richness at the other trophic levels. This study showed that the PDRs in freshwaters show scale-dependency. We also documented that the PDR complies with the multivariate model showing that plant biomass is not mirroring merely the resource availability, but is also influenced by richness. This highlights the need for conserving diversity in order to maintain ecosystem processes in freshwaters.
机译:与多样性变化相关的最引人入胜的环境梯度之一是生态系统生产力。多样性在生态系统中的作用至关重要,因为物种丰富性既可能是初级生产的原因,又可能是初级生产的结果。但是,对生产力与多样性关系(PDR)变化的背后机制仍然知之甚少。此外,迫切需要对整个分类群上的PDR进行大规模研究。在这里,我们研究了资源供应与100个小型北方湖泊中植物,细菌和浮游动物丰富度之间的关系。我们在排水系统内部局部研究了PDR,在整个系统中局部研究了PDR。其次,我们使用结构方程模型(SEM)检验了PDR的多元假设,研究了浮游植物群落中资源可用性,物种丰富度,生物量和资源比(N∶P)之间的关系。在地方尺度上,PDR对所有浮游类群均表现出从正线性和单峰到负线性关系的可变模式。在区域范围内,PDR呈线性,对浮游植物和浮游动物呈阳性。浮游植物的丰富度和叶绿素a的量呈正线性关系,表明由更多物种组成的群落能够产生更高水平的生物量。根据SEM,浮游植物的生物量主要与资源的可获得性有关,但是有一条通过群落丰富性的途径。最后,我们发现所有营养级别的物种丰富度与几个环境因素相关,并且也与其他营养级别的丰富度相关。这项研究表明,淡水中的PDR显示出规模依赖性。我们还记录了PDR符合多元模型,该模型表明植物生物量不仅反映了资源的可用性,还受到丰富度的影响。这突出了为了维持淡水生态系统进程而需要保护多样性的必要性。

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