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Microbial Community Analysis with Ribosomal Gene Fragments from Shotgun Metagenomes

机译:Shot弹枪基因组的核糖体基因片段的微生物群落分析。

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Shotgun metagenomic sequencing does not depend on gene-targeted primers or PCR amplification; thus, it is not affected by primer bias or chimeras. However, searching rRNA genes from large shotgun Illumina data sets is computationally expensive, and no approach exists for unsupervised community analysis of small-subunit (SSU) rRNA gene fragments retrieved from shotgun data. We present a pipeline, SSUsearch, to achieve the faster identification of short-subunit rRNA gene fragments and enabled unsupervised community analysis with shotgun data. It also includes classification and copy number correction, and the output can be used by traditional amplicon analysis platforms. Shotgun metagenome data using this pipeline yielded higher diversity estimates than amplicon data but retained the grouping of samples in ordination analyses. We applied this pipeline to soil samples with paired shotgun and amplicon data and confirmed bias against Verrucomicrobia in a commonly used V6-V8 primer set, as well as discovering likely bias against Actinobacteria and for Verrucomicrobia in a commonly used V4 primer set. This pipeline can utilize all variable regions in SSU rRNA and also can be applied to large-subunit (LSU) rRNA genes for confirmation of community structure. The pipeline can scale to handle large amounts of soil metagenomic data (5 Gb memory and 5 central processing unit hours to process 38 Gb [1 lane] of trimmed Illumina HiSeq2500 data) and is freely available at https://github.com/dib-lab/SSUsearch under a BSD license.
机译:gun弹枪宏基因组测序不依赖于基因靶向引物或PCR扩增。因此,它不受引物偏倚或嵌合体的影响。但是,从大型shot弹枪Illumina数据集搜索rRNA基因在计算上是昂贵的,并且不存在对从shot弹枪数据中检索的小亚基(SSU)rRNA基因片段进行无监督社区分析的方法。我们提出了一个管道SSUsearch,以更快地识别短亚基rRNA基因片段,并通过散弹枪数据实现无监督的社区分析。它还包括分类和拷贝数校正,输出可用于传统扩增子分析平台。 this弹枪基因组数据使用此管道比扩增子数据产生更高的多样性估计,但保留了排序分析中的样本分组。我们将此管线应用于带有配对shot弹枪和扩增子数据的土壤样品,并确认了常用的V6-V8引物中对Verrucomicrobia的偏倚,并发现了常见的V4引物中对放线菌和Verrucomicrobia的偏倚。该管道可以利用SSU rRNA中的所有可变区,也可以应用于大亚基(LSU)rRNA基因,以确认群落结构。该管道可以扩展以处理大量的土壤宏基因组数据(5 Gb内存和5个中央处理单元小时,以处理38 Gb [1通道]的修剪过的Illumina HiSeq2500数据),并且可以从https://github.com/dib免费获得。 -lab / SSUsearch在BSD许可下。

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