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Analysis of the Cystic Fibrosis Lung Microbiota via Serial Illumina Sequencing of Bacterial 16S rRNA Hypervariable Regions

机译:通过细菌的16s rRNa高变区序列Illumina测序的囊性纤维化肺微生物群的分析

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摘要

The characterization of bacterial communities using DNA sequencing has revolutionized our ability to study microbes in nature and discover the ways in which microbial communities affect ecosystem functioning and human health. Here we describe Serial Illumina Sequencing (SI-Seq): a method for deep sequencing of the bacterial 16S rRNA gene using next-generation sequencing technology. SI-Seq serially sequences portions of the V5, V6 and V7 hypervariable regions from barcoded 16S rRNA amplicons using an Illumina short-read genome analyzer. SI-Seq obtains taxonomic resolution similar to 454 pyrosequencing for a fraction of the cost, and can produce hundreds of thousands of reads per sample even with very high multiplexing. We validated SI-Seq using single species and mock community controls, and via a comparison to cystic fibrosis lung microbiota sequenced using 454 FLX Titanium. Our control runs show that SI-Seq has a dynamic range of at least five orders of magnitude, can classify >96% of sequences to the genus level, and performs just as well as 454 and paired-end Illumina methods in estimation of standard microbial ecology diversity measurements. We illustrate the utility of SI-Seq in a pilot sample of central airway secretion samples from cystic fibrosis patients.
机译:使用DNA测序对细菌群落进行表征已彻底改变了我们研究自然界微生物并发现微生物群落影响生态系统功能和人类健康的方式的能力。在这里,我们描述了串行Illumina测序(SI-Seq):一种使用下一代测序技术对细菌16S rRNA基因进行深度测序的方法。 SI-Seq使用Illumina短读基因组分析仪从条形码化的16S rRNA扩增子对V5,V6和V7高变区的部分序列进行序列化。 SI-Seq只需花费一小部分费用,即可获得类似于454焦磷酸测序的生物分类分辨率,即使在非常高的多路复用条件下,每个样品也可产生数十万个读数。我们使用单一物种和模拟社区对照,以及与使用454 FLX Titanium测序的囊性纤维化肺微生物群的比较,验证了SI-Seq。我们的对照实验表明,SI-Seq的动态范围至少为五个数量级,可以将> 96%的序列分类到属水平,并且在估计标准微生物时的性能与454和成对末端Illumina方法一样好生态多样性测量。我们说明了SI-Seq在囊性纤维化患者中央气道分泌物样品的先导样品中的实用性。

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