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Identification and quantification of abundant species from pyrosequences of 16S rRNA by consensus alignment

机译:通过共有比对从16S rRNA的焦磷酸序列鉴定和定量丰富物种

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16S rRNA gene profiling has recently been boosted by the development of pyrosequencing methods. A common analysis is to group pyrosequences into Operational Taxonomic Units (OTUs), such that reads in an OTU are likely sampled from the same species. However, species diversity estimated from error-prone 16S rRNA pyrosequences may be inflated because the reads sampled from the same 16S rRNA gene may appear different, and current OTU inference approaches typically involve time-consuming pairwise/multiple distance calculation and clustering. I propose a novel approach Abun-dantOTU based on a Consensus Alignment (CA) algorithm, which infers consensus sequences, each representing an OTU, taking advantage of the sequence redundancy for abundant species. Pyrosequencing reads can then be recruited to the consensus sequences to give quantitative information for the corresponding species. As tested on 16S rRNA pyrosequence datasets from mock communities with known species, Abun-dantOTU rapidly reported identified sequences of the source 16S rRNAs and the abundances of the corresponding species. AbundantOTU was also applied to 16S rRNA pyrosequence datasets derived from real microbial communities and the results are in general agreement with previous studies.
机译:最近通过焦肌静脉法的发育来提高16S rRNA基因分析。常见分析是将焦塞进行分为运作分类单位(OTUS),这样OTU中的读数可能从同一物种中取样。然而,由于从相同的16S rRNA基因采样的读取可能出现不同的读取可能会膨胀物种多样性,所以可能出现不同的读取,并且当前的OTU推断方法通常涉及耗时的成对/多距离计算和聚类。我提出了一种基于共识对准(CA)算法的新建方法,其infers Infers Infers表示OTU,利用序列冗余以获得丰富的物种。然后可以招募焦点读入共识序列,以给出相应物种的定量信息。如在16S RRNA焦塞的数据集中由嘲笑社区的具有已知物种,Abun-Dantotu迅速报道源16S rRNA的鉴定序列和相应物种的丰富。 Abveryotu也应用于16S rRNA焦点数据集,来自真正的微生物群落,结果均与以前的研究一致。

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