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生物污水处理中功能细菌分类的 16S rRNA 基因不同高变区的分类精度和注释方法。

Taxonomic precision of different hypervariable regions of 16S rRNA gene and annotation methods for functional bacterial groups in biological wastewater treatment.

机构信息

Environmental Biotechnology Laboratory, The University of Hong Kong, Hong Kong SAR, China.

出版信息

PLoS One. 2013 Oct 16;8(10):e76185. doi: 10.1371/journal.pone.0076185. eCollection 2013.

Abstract

High throughput sequencing of 16S rRNA gene leads us into a deeper understanding on bacterial diversity for complex environmental samples, but introduces blurring due to the relatively low taxonomic capability of short read. For wastewater treatment plant, only those functional bacterial genera categorized as nutrient remediators, bulk/foaming species, and potential pathogens are significant to biological wastewater treatment and environmental impacts. Precise taxonomic assignment of these bacteria at least at genus level is important for microbial ecological research and routine wastewater treatment monitoring. Therefore, the focus of this study was to evaluate the taxonomic precisions of different ribosomal RNA (rRNA) gene hypervariable regions generated from a mix activated sludge sample. In addition, three commonly used classification methods including RDP Classifier, BLAST-based best-hit annotation, and the lowest common ancestor annotation by MEGAN were evaluated by comparing their consistency. Under an unsupervised way, analysis of consistency among different classification methods suggests there are no hypervariable regions with good taxonomic coverage for all genera. Taxonomic assignment based on certain regions of the 16S rRNA genes, e.g. the V1&V2 regions - provide fairly consistent taxonomic assignment for a relatively wide range of genera. Hence, it is recommended to use these regions for studying functional groups in activated sludge. Moreover, the inconsistency among methods also demonstrated that a specific method might not be suitable for identification of some bacterial genera using certain 16S rRNA gene regions. As a general rule, drawing conclusions based only on one sequencing region and one classification method should be avoided due to the potential false negative results.

摘要

高通量测序 16S rRNA 基因使我们对复杂环境样品中的细菌多样性有了更深入的了解,但由于短读长的分类能力相对较低,会导致结果模糊。对于污水处理厂,只有那些被归类为营养修复菌、絮体/泡沫物种和潜在病原体的功能细菌属对生物污水处理和环境影响具有重要意义。这些细菌的精确分类(至少在属水平上)对于微生物生态研究和常规污水处理监测很重要。因此,本研究的重点是评估从混合活性污泥样品中产生的不同核糖体 RNA(rRNA)基因超可变区的分类精度。此外,通过比较它们的一致性,评估了三种常用的分类方法,包括 RDP 分类器、基于 BLAST 的最佳命中注释和 MEGAN 的最低共同祖先注释。在无监督的情况下,对不同分类方法之间一致性的分析表明,对于所有属,没有具有良好分类覆盖度的超可变区。基于 16S rRNA 基因某些区域(例如 V1&V2 区域)的分类分配,为相对广泛的属提供了相当一致的分类分配。因此,建议在研究活性污泥中的功能群时使用这些区域。此外,方法之间的不一致性也表明,对于某些 16S rRNA 基因区域,特定方法可能不适合鉴定某些细菌属。一般来说,由于可能存在假阴性结果,应避免仅基于一个测序区域和一种分类方法得出结论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc88/3797802/3fa8e3251553/pone.0076185.g001.jpg

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