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序列处理和分类方法对环境样本中真核生物群落结构的影响,重点关注硅藻。

Impact of sequence processing and taxonomic classification approaches on eukaryotic community structure from environmental samples with emphasis on diatoms.

机构信息

Department of Bioscience, Helmholtz Center for Polar and Marine Research, Alfred Wegener Institute, Bremerhaven, Germany.

Jacobs University Bremen, Bremen, Germany.

出版信息

Mol Ecol Resour. 2018 Mar;18(2):204-216. doi: 10.1111/1755-0998.12726. Epub 2017 Oct 30.

Abstract

Next-generation sequencing is a common method for analysing microbial community diversity and composition. Configuring an appropriate sequence processing strategy within the variety of tools and methods is a nontrivial task and can considerably influence the resulting community characteristics. We analysed the V4 region of 18S rRNA gene sequences of marine samples by 454-pyrosequencing. Along this process, we generated several data sets with QIIME, mothur, and a custom-made pipeline based on DNAStar and the phylogenetic tree-based PhyloAssigner. For all processing strategies, default parameter settings and punctual variations were used. Our results revealed strong differences in total number of operational taxonomic units (OTUs), indicating that sequence preprocessing and clustering had a major impact on protist diversity estimates. However, diversity estimates of the abundant biosphere (abundance of ≥1%) were reproducible for all conducted processing pipeline versions. A qualitative comparison of diatom genera emphasized strong differences between the pipelines in which phylogenetic placement of sequences came closest to light microscopy-based diatom identification. We conclude that diversity studies using different sequence processing strategies are comparable if the focus is on higher taxonomic levels, and if abundance thresholds are used to filter out OTUs of the rare biosphere.

摘要

下一代测序是分析微生物群落多样性和组成的常用方法。在各种工具和方法中配置适当的序列处理策略是一项艰巨的任务,并且会极大地影响最终的群落特征。我们通过 454 焦磷酸测序分析了海洋样本的 18S rRNA 基因 V4 区序列。在此过程中,我们使用 QIIME、 mothur 和基于 DNAStar 和基于系统发育树的 PhyloAssigner 的定制管道生成了几个数据集。对于所有处理策略,我们使用了默认参数设置和特定变化。我们的结果显示出总操作分类单元(OTU)数量的强烈差异,表明序列预处理和聚类对原生生物多样性估计有重大影响。但是,对于所有进行的处理管道版本,丰富生物圈(丰度≥1%)的多样性估计值是可重复的。硅藻属的定性比较强调了序列系统发育定位最接近基于光学显微镜的硅藻鉴定的管道之间存在强烈差异。我们的结论是,如果关注的是更高的分类水平,并且使用丰度阈值过滤稀有生物圈的 OTU,那么使用不同序列处理策略进行的多样性研究是可以比较的。

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