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Temporal and spatial influences incur reconfiguration of Arctic heathland soil bacterial community structure

机译:时空影响导致北极欧石南丛土壤细菌群落结构的重构

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摘要

Microbial responses to Arctic climate change could radically alter the stability of major stores of soil carbon. However, the sensitivity of plot-scale experiments simulating climate change effects on Arctic heathland soils to potential confounding effects of spatial and temporal changes in soil microbial communities is unknown. Here, the variation in heathland soil bacterial communities at two survey sites in Sweden between spring and summer 2013 and at scales between 0-1 m and, 1-100 m and between sites (> 100 m) were investigated in parallel using 16S rRNA gene T-RFLP and amplicon sequencing. T-RFLP did not reveal spatial structuring of communities at scales < 100 m in any site or season. However, temporal changes were striking. Amplicon sequencing corroborated shifts from r- to K-selected taxon-dominated communities, influencing in silico predictions of functional potential. Network analyses reveal temporal keystone taxa, with a spring betaproteobacterial sub-network centred upon a Burkholderia operational taxonomic unit (OTU) and a reconfiguration to a summer sub-network centred upon an alphaproteobacterial OTU. Although spatial structuring effects may not confound comparison between plot-scale treatments, temporal change is a significant influence. Moreover, the prominence of two temporally exclusive keystone taxa suggests that the stability of Arctic heathland soil bacterial communities could be disproportionally influenced by seasonal perturbations affecting individual taxa.
机译:微生物对北极气候变化的反应可能会从根本上改变土壤碳储量的稳定性。但是,模拟气候变化对北极欧石南丛生土壤的影响对土壤微生物群落的时空变化的潜在混杂影响的敏感性尚不清楚。在这里,我们使用16S rRNA基因平行研究了2013年春季和夏季之间瑞典两个调查点以及0-1 m和1-100 m之间以及两个地点(> 100 m)之间的荒地土壤细菌群落的变化。 T-RFLP和扩增子测序。 T-RFLP在任何站点或季节都没有揭示规模小于100 m的社区的空间结构。但是,时间变化是惊人的。扩增子测序证实了从r-选择的分类单元为主的社区的转变,影响了功能潜力的计算机预测。网络分析揭示了暂时的梯形分类群,其中一个春季β-Proteobacterial子网络以Burkholderia操作分类单位(OTU)为中心,并重新配置为以α-ProteobacterialOTU为中心的夏季子网络。尽管空间结构效果可能不会混淆地块规模处理之间的比较,但时间变化是一个重大影响。此外,两个时间上唯一的梯形分类群的突出表明,北极欧石南丛生土壤细菌群落的稳定性可能会受到影响单个分类群的季节性扰动的过度影响。

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