Cannon Matthew V, Craine Joseph, Hester James, Shalkhauser Amanda, Chan Ernest R, Logue Kyle, Small Scott, Serre David
Cleveland Clinic, Genomic Medicine Institute, Cleveland,OH, United States of America.
Jonah Ventures, Manhattan, KS, United States of America.
PLoS One. 2017 Oct 19;12(10):e0186290. doi: 10.1371/journal.pone.0186290. eCollection 2017.
The study of the microbial communities has gained traction in recent years with the advent of next-generation sequencing with, or without, PCR-based amplification of the 16S ribosomal RNA region. Such studies have been applied to topics as diverse as human health and environmental ecology. Fewer studies have investigated taxa outside of bacteria, however. We present here data demonstrating the utility of studying taxa outside of bacteria including algae, diatoms, archaea and fungi. Here, we show how location along the Cuyahoga River as well as a transient rainfall event heavily influence the microbial composition. Our data reveal how individual OTUs vary between samples and how the patterns of OTU abundance can accurately predict sampling location. The clustering of samples reveals that these taxa are all sensitive to water conditions in unique ways and demonstrate that, for our dataset, algae was most distinctive between sample groups, surpassing bacteria. Diversity between sampling sites could allow studies investigating pollution or water quality to identify marker OTUs or patterns of OTU abundance as indicators to assess environmental conditions or the impact of human activity. We also directly compare data derived from primers amplifying distinct taxa and show that taxa besides bacteria are excellent indicators of water condition.
近年来,随着基于或不基于聚合酶链式反应(PCR)扩增16S核糖体RNA区域的新一代测序技术的出现,微生物群落研究越来越受到关注。此类研究已应用于人类健康和环境生态学等诸多不同主题。然而,对细菌以外类群的研究较少。我们在此展示的数据表明了研究包括藻类、硅藻、古菌和真菌在内的细菌以外类群的实用性。在这里,我们展示了凯霍加河沿岸的位置以及一次短暂降雨事件如何严重影响微生物组成。我们的数据揭示了各个操作分类单元(OTU)在不同样本之间的差异,以及OTU丰度模式如何能够准确预测采样位置。样本聚类表明,这些类群都以独特的方式对水条件敏感,并表明,对于我们的数据集,藻类在样本组之间最为独特,超过了细菌。采样地点之间的多样性可以让研究污染或水质的研究确定标记OTU或OTU丰度模式,作为评估环境条件或人类活动影响的指标。我们还直接比较了来自扩增不同类群的引物的数据,并表明除细菌外的类群是水条件的优秀指标。