霰弹枪测序
基因组
微生物群
猎枪
深度测序
计算生物学
生物
人类微生物组计划
放大器
扩增子测序
仿形(计算机编程)
DNA测序
人体微生物群
16S核糖体RNA
基因组
生物信息学
计算机科学
遗传学
基因
聚合酶链反应
操作系统
作者
Benjamin Hillmann,Gabriel A. Al‐Ghalith,Robin Shields‐Cutler,Qiyun Zhu,Daryl M. Gohl,Kenneth B. Beckman,Rob Knight,Dan Knights
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2018-05-12
被引量:28
摘要
ABSTRACT Although microbial communities are associated with many aspects of human, environmental, plant, and animal health, there exists no cost-effective method for precisely characterizing species and genes present in such communities. While deep whole-genome shotgun (WGS) sequencing provides the highest-level of taxonomic and functional resolution, it is often prohibitively expensive for large-scale studies. The prevailing alternative, high-throughput 16S rRNA gene amplicon sequencing (16S), often does not resolve taxonomy past the genus level and provides only moderately accurate predictions of the functional profile; thus, there is currently no widely accepted approach to affordable, high-resolution, taxonomic and functional microbiome analysis. To address this technology gap, we evaluated the information content of shallow shotgun sequencing with as low as 0.5 million sequences per sample as an alternative to 16S sequencing for large human microbiome studies. We describe a library preparation protocol enabling shallow shotgun sequencing at approximately the same per-sample cost as 16S. We analyzed multiple real and simulated biological data sets, including two novel human stool samples with ultra-deep sequencing of 2.5 billion sequences per sample, and found that shallow shotgun recovers accurate species-level taxonomic and functional profiles of the human microbiome. We recognize and discuss some of the inherent limitations of shallow shotgun sequencing, and note that 16S sequencing remains a valuable and important method for taxonomic profiling of novel environments. Although deep WGS remains the gold standard for high-resolution microbiome analysis, we recommend that researchers consider shallow shotgun sequencing as a useful alternative to 16S for large-scale human microbiome research studies.
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