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首页> 外文期刊>The Science of the Total Environment >Evaluation of 16S next-generation sequencing of hypervariable region 4 in wastewater samples: An unsuitable approach for bacterial enteric pathogen identification
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Evaluation of 16S next-generation sequencing of hypervariable region 4 in wastewater samples: An unsuitable approach for bacterial enteric pathogen identification

机译:废水样品中高变区4的16S下一代测序的评估:细菌性肠病原体鉴定的不合适方法

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摘要

Recycled wastewater can carry human-infectious microbial pathogens and therefore wastewater treatment strategies must effectively eliminate pathogens before recycled wastewater is used to supplement drinking and agricultural water supplies. This study characterised the bacterial composition of four wastewater treatment plants (WWTPs) (three waste stabilisation ponds and one oxidation ditch WWTP using activated sludge treatment) in Western Australia. The hypervariable region 4 (V4) of the bacterial 16S rRNA (16S) gene was sequenced using next-generation sequencing (NGS) on the Illumina MiSeq platform. Sequences were pre-processed in USEARCH v10.0 and denoised into zero-radius taxonomic units (ZOTUs) with UNOISE3. Taxonomy was assigned to the ZOTUs using QIIME 2 and the Greengenes database and cross-checked with the NCBI nrt database. Bacterial composition of all WWTPs and treatment stages (influent, intermediate and effluent) were dominated by Proteobacteria (29.0-87.4%), particularly Betaproteobacteria (9.0-53.5%) and Gamrnaproteobacteria (8.6-34.6%). Nitrifying bacteria (Nitrospira spp.) were found only in the intermediate and effluent of the oxidation ditch WWTP, and denitrifying and floc-forming bacteria were detected in all WWTPs, particularly from the families Comamonadaceae and Rhodocyclales. Twelve pathogens were assigned taxonomy by the Greengenes database, but comparison of sequences from genera and families known to contain pathogens to the NCBI nrt database showed that only three pathogens (Arcobacter venerupis, Laribacter hongkongensis and Neisseria canis) could be identified in the dataset at the V4 region. Importantly, Enterobacteriaceae genera could not be differentiated. Family level taxa assigned by Greengenes database agreed with NCBI nrt in most cases, however, BLAST analyses revealed erroneous taxa in Greengenes database. This study highlights the importance of validating taxonomy of NGS sequences with databases such as NCBI nrt, and recommends including the V3 region of 16S in future short amplicon NGS studies that aim to identify bacterial enteric pathogens, as this will improve taxonomic resolution of most, but not all, Enterobacteriaceae species. (C) 2019 Elsevier B.V. All rights reserved.
机译:再生废水可以携带人类感染性微生物病原体,因此废水处理策略必须有效地消除病原体,然后再利用再生废水补充饮用水和农业用水。这项研究表征了西澳大利亚州的四个废水处理厂(WWTP)(三个废水稳定池和一个使用活性污泥处理的氧化沟WWTP)的细菌组成。使用Illumina MiSeq平台上的下一代测序(NGS)对细菌16S rRNA(16S)基因的高变区4(V4)进行了测序。在USEARCH v10.0中对序列进行了预处理,并使用UNOISE3将其去噪为零半径分类单位(ZOTU)。使用QIIME 2和Greengenes数据库将分类法分配给ZOTU,并使用NCBI nr / nt数据库进行交叉检查。所有污水处理厂和处理阶段(进水,中级和出水)的细菌组成均以变形杆菌(29.0-87.4%),尤其是β变形杆菌(9.0-53.5%)和革兰氏杆菌(8.6-34.6%)为主。仅在氧化沟污水处理厂的中间和出水中发现了硝化细菌(Nitrospira spp。),并且在所有污水处理厂中都检测到了反硝化和形成絮凝的细菌,特别是科摩亚科和杜鹃花科。 Greengenes数据库对12种病原体进行了分类,但是将已知含有病原体的属和科的序列与NCBI nr / nt数据库进行了比较,结果表明在数据集中只能识别出三种病原体(Venerupis弧菌,Laribacter hongkongensis和Caniss犬)。在V4区域。重要的是,不能区分肠杆菌科。在大多数情况下,由Greengenes数据库分配的家庭级别分类单元与NCBI nr / nt一致,但是,BLAST分析显示Greengenes数据库中的错误分类单元。这项研究强调了使用NCBI nr / nt等数据库验证NGS序列分类的重要性,并建议在未来的短扩增子NGS研究中包括16S的V3区,以鉴定细菌性肠病原体,因为这将改善大多数细菌的分类学分辨率。 ,但不是全部,肠杆菌科物种。 (C)2019 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《The Science of the Total Environment 》 |2019年第20期| 1111-1124| 共14页
  • 作者单位

    Murdoch Univ, Sch Vet & Life Sci, Vector & Waterborne Pathogens Res Grp, Perth, WA, Australia|Murdoch Univ, Western Australian State Agr Biotechnol Ctr, Perth, WA, Australia;

    Murdoch Univ, Sch Vet & Life Sci, Vector & Waterborne Pathogens Res Grp, Perth, WA, Australia;

    Murdoch Univ, Sch Vet & Life Sci, Vector & Waterborne Pathogens Res Grp, Perth, WA, Australia|Murdoch Univ, Western Australian State Agr Biotechnol Ctr, Perth, WA, Australia;

    Murdoch Univ, Sch Vet & Life Sci, Vector & Waterborne Pathogens Res Grp, Perth, WA, Australia;

    Curtin Univ, Sch Mol & Life Sci, Curtin Water Qual Res Ctr, Chem, GPO Box U1987, Perth, WA, Australia|ChemCentre, POB 1250, Perth, WA, Australia;

    Curtin Univ, Sch Mol & Life Sci, Curtin Water Qual Res Ctr, Chem, GPO Box U1987, Perth, WA, Australia;

    Murdoch Univ, Sch Vet & Life Sci, Vector & Waterborne Pathogens Res Grp, Perth, WA, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wastewater; Next-generation sequencing; 16S rRNA; V4; Greengenes; Enterobacteriaceae;

    机译:废水;新一代测序;16S rRNA;V4;绿色基因;肠杆菌科;

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