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Analysis of the microbiome: Advantages of whole genome shotgun versus 16S amplicon sequencing

机译:微生物组分析:全基因组shot弹枪与16S扩增子测序相比的优势

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摘要

The human microbiome has emerged as a major player in regulating human health and disease. Translation studies of the microbiome have the potential to indicate clinical applications such as fecal transplants and probiotics. However, one major issue is accurate identification of microbes constituting the microbiota. Studies of the microbiome have frequently utilized sequencing of the conserved 16S ribosomal RNA (rRNA) gene. We present a comparative study of an alternative approach using shotgun whole genome sequencing (WGS). In the present study, we analyzed the human fecal microbiome compiling a total of 194.1×106 reads from a single sample using multiple sequencing methods and platforms. Specifically, after establishing the reproducibility of our methods with extensive multiplexing, we compared: 1) The 16S rRNA amplicon versus the WGS method, 2) the Illumina HiSeq versus MiSeq platforms, 3) the analysis of reads versus de novo assembled contigs, and 4) the effect of shorter versus longer reads. Our study demonstrates that shotgun whole genome sequencing has multiple advantages compared with the 16S amplicon method including enhanced detection of bacterial species, increased detection of diversity and increased prediction of genes. In addition, increased length, either due to longer reads or the assembly of contigs, improved the accuracy of species detection.
机译:人类微生物组已成为调节人类健康和疾病的主要参与者。微生物组的翻译研究有潜力表明其临床应用,例如粪便移植和益生菌。然而,一个主要问题是精确鉴定构成微生物群的微生物。微生物组的研究经常利用保守的16S核糖体RNA(rRNA)基因的测序。我们提出了一种使用散弹枪全基因组测序(WGS)的替代方法的比较研究。在本研究中,我们分析了人类粪便微生物组,使用多种测序方法和平台,从单个样品中收集了总计194.1×10 6 读数。具体而言,在建立了我们方法广泛重复性的可重复性之后,我们进行了比较:1)16S rRNA扩增子与WGS方法,2)Illumina HiSeq与MiSeq平台,3)读数与从头组装重叠群的分析,以及4 )短读与长读的影响。我们的研究表明,与16S扩增子方法相比,shot弹枪全基因组测序具有多种优势,包括增强细菌种类检测,增加多样性检测和增加基因预测。此外,由于更长的阅读时间或重叠群的组装,增加了长度,提高了物种检测的准确性。

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