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首页> 外文期刊>Water Research >Identification of eukaryotic microorganisms with 18S rRNA next-generation sequencing in wastewater treatment plants, with a more targeted NGS approach required for Cryptosporidium detection
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Identification of eukaryotic microorganisms with 18S rRNA next-generation sequencing in wastewater treatment plants, with a more targeted NGS approach required for Cryptosporidium detection

机译:用废水处理厂18S rRNA下一代测序鉴定真核微生物,具有更具靶向的NGS方法,用于隐孢子虫检测所需的方法

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摘要

While some microbial eukaryotes can improve effluent quality in wastewater treatment plants (WWTPs), eukaryotic waterborne pathogens are a threat to public health. This study aimed to identify Eukarya, particularly faecal pathogens including Cryptosporidium, in different treatment stages (influent, intermediate and effluent) from four WWTPs in Western Australia (WA). Three WWTPs that utilise stabilisation ponds and one WWTP that uses activated sludge (oxidation ditch) treatment technologies were sampled. Eukaryotic 18S rRNA (18S) was targeted in the wastewater samples (n = 26) for next-generation sequencing (NGS), and a mammalian-blocking primer was used to reduce the amplification of mammalian DNA. Overall, bioinformatics analyses revealed 49 eukaryotic phyla in WWTP samples, and three of these phyla contained human intestinal parasites, which were primarily detected in the influent. These human intestinal parasites either had a low percent sequence composition or were not detected in the intermediate and effluent stages and included the amoebozoans Endolimax sp., Entamoeba sp. and Iodamoeba sp., the human pinworm Enterobius vermicularis (Nematoda), and Blastocystis sp. subtypes (Sarcomastigophora). Six Blastocystis subtypes and four Entamoeba species were identified by eukaryotic 18S NGS, however, Cryptosporidium sp. and Giardia sp. were not detected. Real-time polymerase chain reaction (PCR) also failed to detect Giardia, but Cryptosporidium-specific NGS detected Cryptosporidium in all WWTPs, and a total of nine species were identified, including five zoonotic pathogens. Although eukaryotic 18S NGS was able to identify some faecal pathogens, this study has demonstrated that more specific NGS approaches for pathogen detection are more sensitive and should be applied to future wastewater pathogen assessments. (C) 2019 Published by Elsevier Ltd.
机译:虽然一些微生物真核可以改善废水处理植物(WWTPS)中的污水质量,但真核水性病原体是对公共卫生的威胁。该研究旨在鉴定Eukarya,特别是粪便病原体,包括在澳大利亚西澳大利亚(WA)的四个WWTPS的不同治疗阶段(流水,中间和流出物)中的水刺孢子虫。采样使用稳定池塘和一种使用活性污泥(氧化沟)处理技术的三种WWTP。真核18S rRNA(18s)靶向下一代测序(NGS)的废水样品(n = 26)中,并且使用哺乳动物阻断引物来减少哺乳动物DNA的扩增。总体而言,生物信息学分析揭示了WWTP样品中的49个真核植物,其中三种含有人类肠寄生虫的三种,其主要检测在流入物中。这些人肠寄生虫具有低百分比的序列组合物,或者在中间体和流出物阶段中未检测到并包括胚轴Sp。,entamoeba sp。和Iodamoeba sp。,人类捕虫肠道蛭(镍钛虫)和胚泡sp。亚型(Sarcomastigophora)。通过真核18s Ngs鉴定了六种胚泡亚型和四种entamoeba物种,然而,Cryptosporidium sp。和吉亚迪亚sp。没有检测到。实时聚合酶链式反应(PCR)也未能检测到贾迪亚,但是鉴定了密码孔特异性NGS检测到所有WWTP中的密码孢子,并且鉴定了总共九种物种,包括五种动物质病原体。虽然真核18s NGs能够识别一些粪便病原体,但该研究表明,对于病原体检测的更多特异性NGS方法更敏感,应适用于未来的废水病原体评估。 (c)2019年由elestvier有限公司发布

著录项

  • 来源
    《Water Research》 |2019年第jul1期|301-312|共12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 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;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wastewater; Cryptosporidium; Blastotystis; Entamoeba; Next-generation sequencing;

    机译:废水;隐孢子虫;Blastotystis;entamoeba;下一代测序;

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