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环境中限制资源的数量控制着底栖藻类的时间多样性模式。

The number of limiting resources in the environment controls the temporal diversity patterns in the algal benthos.

作者信息

Larson Chad A, Adumatioge Larry, Passy Sophia I

机构信息

Washington State Department of Ecology, Environmental Assessment Program, 300 Desmond Drive SE, Lacey, WA, 98503, USA.

Biology Department, The University of Texas at Arlington, Box 19498, Arlington, TX, 76019-0498, USA.

出版信息

Microb Ecol. 2016 Jul;72(1):64-69. doi: 10.1007/s00248-016-0741-9. Epub 2016 Mar 4.

Abstract

The role of the number of limiting resources (NLR) on species richness has been the subject of much theoretical and experimental work. However, how the NLR controls temporal beta diversity and the processes of community assembly is not well understood. To address this knowledge gap, we initiated a series of laboratory microcosm experiments, exposing periphyton communities to a gradient of NLR from 0 to 3, generated by supplementation with nitrogen, phosphorus, iron, and all their combinations. We hypothesized that similarly to alpha diversity, shown to decrease with the NLR in benthic algae, temporal beta diversity would also decline due to filtering. Additionally, we predicted that the NLR would also affect turnover and community nestedness, which would show opposing responses. Indeed, as the NLR increased, temporal beta diversity decreased; turnover, indicative of competition, decreased; and nestedness, suggestive of complementarity, increased. Finally, the NLR determined the role of deterministic versus stochastic processes in community assembly, showing respectively an increasing and a decreasing trend. These results imply that the NLR has a much greater, yet still unappreciated influence on producer communities, constraining not only alpha diversity but also temporal dynamics and community assembly.

摘要

限制资源数量(NLR)对物种丰富度的作用一直是大量理论和实验工作的主题。然而,NLR如何控制时间上的β多样性以及群落组装过程尚不清楚。为了填补这一知识空白,我们开展了一系列实验室微观实验,让附生植物群落暴露于通过添加氮、磷、铁及其所有组合产生的从0到3的NLR梯度中。我们假设,与底栖藻类中显示出随NLR降低的α多样性类似,时间上的β多样性也会因过滤而下降。此外,我们预测NLR也会影响周转率和群落嵌套性,它们会呈现相反的反应。确实,随着NLR增加,时间上的β多样性降低;表明竞争的周转率降低;而表明互补性的嵌套性增加。最后,NLR决定了群落组装中确定性过程与随机过程的作用,分别呈现增加和减少的趋势。这些结果意味着NLR对生产者群落具有大得多但仍未得到充分认识的影响,不仅限制α多样性,还限制时间动态和群落组装。

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