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Spatial heterogeneity of eukaryotic microbial communities in an unstudied geothermal diatomaceous biological soil crust: Yellowstone National Park, WY, USA

机译:未研究的地热硅藻土生物土壤地壳中真核微生物群落的空间异质性:美国怀俄明州黄石国家公园

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Knowledge of microbial communities and their inherent heterogeneity has dramatically increased with the widespread use of high-throughput sequencing technologies, and we are learning more about the ecological processes that structure microbial communities across a wide range of environments, as well as the relative scales of importance for describing bacterial communities in natural systems. Little work has been carried out to assess fine-scale eukaryotic microbial heterogeneity in soils. Here, we present findings from a bar-coded 18S rRNA survey of the eukaryotic microbial communities in a previously unstudied geothermal diatomaceous biological soil crust in Yellowstone National Park, WY, USA, in which we explicitly compare microbial community heterogeneity at the particle scale within soil cores. Multivariate analysis of community composition showed that while subsamples from within the same soil core clustered together, community dissimilarity between particles in the same core was high. This study describes a novel soil microbial environment and also adds to our growing understanding of microbial heterogeneity and the scales relevant to the study of soil microbial communities.
机译:随着高通量测序技术的广泛使用,微生物群落及其固有异质性的知识已大大增加,我们正在学习更多有关在广泛环境中构成微生物群落的生态过程以及相对重要性的范围。描述自然系统中的细菌群落。评估土壤中小规模真核微生物异质性的工作很少。在这里,我们介绍了来自美国怀俄明州黄石国家公园以前未研究过的地热硅藻生物土壤地壳中真核微生物群落的条形码18S rRNA调查结果,在该研究中,我们明确比较了土壤中颗粒尺度的微生物群落异质性核心。群落组成的多变量分析显示,虽然来自同一土壤核心内的子样本聚集在一起,但同一核心内的粒子之间的群落差异很大。这项研究描述了一种新型的土壤微生物环境,也增加了我们对微生物异质性和与土壤微生物群落研究有关的尺度的日益了解。

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