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首页> 外文期刊>Nucleic Acids Research >Short pyrosequencing reads suffice for accurate microbial community analysis
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Short pyrosequencing reads suffice for accurate microbial community analysis

机译:简短的焦磷酸测序足以进行准确的微生物群落分析

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摘要

Pyrosequencing technology allows us to characterize microbial communities using 16S ribosomal RNA (rRNA) sequences orders of magnitude faster and more cheaply than has previously been possible. However, results from different studies using pyrosequencing and traditional sequencing are often difficult to compare, because amplicons covering different regions of the rRNA might yield different conclusions. We used sequences from over 200 globally dispersed environments to test whether studies that used similar primers clustered together mistakenly, without regard to environment. We then tested whether primer choice affects sequence-based community analyses using UniFrac, our recently-developed method for comparing microbial communities. We performed three tests of primer effects. We tested whether different simulated amplicons generated the same UniFrac clustering results as near-full-length sequences for three recent large-scale studies of microbial communities in the mouse and human gut, and the Guerrero Negro microbial mat. We then repeated this analysis for short sequences (100-, 150-, 200- and 250-base reads) resembling those produced by pyrosequencing. The results show that sequencing effort is best focused on gathering more short sequences rather than fewer longer ones, provided that the primers are chosen wisely, and that community comparison methods such as UniFrac are surprisingly robust to variation in the region sequenced.
机译:焦磷酸测序技术使我们能够使用16S核糖体RNA(rRNA)序列表征微生物群落,其数量级和价廉程度超过了以往。但是,使用焦磷酸测序和传统测序进行的不同研究的结果通常难以比较,因为覆盖rRNA不同区域的扩增子可能得出不同的结论。我们使用了来自200多个全球分散环境中的序列,以测试使用类似引物的研究是否在不考虑环境的情况下错误地聚集在一起。然后,我们使用UniFrac(我们最近开发的用于比较微生物群落的方法)测试了引物的选择是否会影响基于序列的群落分析。我们进行了三个引物效果测试。我们对小鼠和人类肠道中的微生物群落以及Guerrero Negro微生物垫进行了三项近期大规模研究,测试了不同的模拟扩增子是否产生了与全长序列相同的UniFrac聚类结果。然后,我们对类似于焦磷酸测序产生的短序​​列(100、150、200和250个碱基的读取)重复了此分析。结果表明,只要明智地选择引物,测序工作最好集中在收集更多的短序列上,而不是更少的更长的序列上,并且社区比较方法(如UniFrac)出人意料地对测序区域的变异具有鲁棒性。

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