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Hepatitis E virus genotype 3 strains and a plethora of other viruses detected in raw and still in tap water

机译:在原水中和自来水中检测到的戊型肝炎病毒基因型3株和大量其他病毒

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摘要

In this study, next generation sequencing was used to explore the virome in 20L up to 10,000L water from different purification steps at two Swedish drinking water treatment plants (DWTPs), and in tap water. One DWTP used ultrafiltration (UF) with 20 nm pores, the other UV light treatment after conventional treatment of the water. Viruses belonging to 26 different families were detected in raw water, in which 6-9 times more sequence reads were found for phages than for known environmental, plant or vertebrate viruses. The total number of viral reads was reduced more than 4-log10 after UF and 3-log10 over UV treatment. However, for some viruses the reduction was 3.5-log10 after UF, as for hepatitis E virus (HEV), which was also detected in tap water, with sequences similar to those in raw water and after treatment. This indicates that HEV had passed through the treatment and entered into the supply network. However, the viability of the viruses is unknown. In tap water 10-130 International Units of HEV RNA/mL were identified, which is a comparable low amount of virus. The risk of getting infected through consumption of tap water is probably negligible, but needs to be investigated. The HEV strains in the waters belonged to subtypes HEV3a and HEV3c/i, which is associated with unknown source of infection in humans infected in Sweden. None of these subtypes are common among pigs or wild boar, the major reservoirs for HEV, indicating that water may play a role in transmitting this virus. The results indicate that monitoring small fecal/oral transmitted viruses in DWTPs may be considered, especially during community outbreaks, to prevent potential transmission by tap water. (C) 2019 The Authors. Published by Elsevier Ltd.
机译:在这项研究中,使用下一代测序技术在两个瑞典饮用水处理厂(DWTP)和自来水中,通过不同纯化步骤从20升至10,000升水中探索病毒。一种DWTP使用具有20 nm孔的超滤(UF),另一种采用常规水处理后的UV光处理。在原水中检测到属于26个不同家族的病毒,与已知的环境,植物或脊椎动物病毒相比,在噬菌体中发现的序列读数多6-9倍。 UF后病毒读取的总数减少了4-log10以上,而UV处理则减少了3-log10。但是,对于某些病毒,超滤后的减少量为3.5 log10,就像戊型肝炎病毒(HEV)一样,在自来水中也能检测到,其序列与原水中和处理后的序列相似。这表明混合动力车已通过处理并进入供应网络。但是,病毒的生存能力未知。在自来水中,鉴定出10-130国际单位的HEV RNA / mL,这是相当低的病毒量。通过饮用自来水而被感染的风险可以忽略不计,但需要进行调查。海水中的HEV菌株属于HEV3a和HEV3c / i亚型,这与瑞典感染人类的​​未知感染源有关。这些子类型中没有一个是猪或野猪(HEV的主要贮水库)中常见的,这表明水可能在传播这种病毒中起作用。结果表明,尤其是在社区暴发期间,可考虑监测DWTP中粪便/口腔传播的小型病毒,以防止自来水潜在的传播。 (C)2019作者。由Elsevier Ltd.发布

著录项

  • 来源
    《Water Research》 |2020年第1期|115141.1-115141.9|共9页
  • 作者单位

    Univ Gothenburg Sahlgrenska Acad Inst Biomed Dept Infect Dis Virol Gothenburg Sweden;

    Goteborgs Stad Kretslopp & Vatten Gothenburg Sweden;

    Univ Gothenburg Sahlgrenska Acad Inst Biomed Dept Pathol & Genet S-41345 Gothenburg Sweden|SciLife Labs Clin Genom Gothenburg Gothenburg Sweden;

    Univ Gothenburg Sahlgrenska Acad Inst Biomed Dept Infect Dis Virol Gothenburg Sweden|Sahlgrens Univ Hosp Reg Vastra Goraland Dept Infect Dis Gothenburg Sweden;

    Goteborgs Stad Kretslopp & Vatten Gothenburg Sweden|Chalmers Univ Technol City Gothenburg Gothenburg Sweden|Chalmers Univ Technol DRICKS Gothenburg Sweden;

  • 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

    Virome in water; Drinking water; HEV3 in water; Phage; Gokushovirus; Microviridae;

    机译:水中病毒;饮用水;水中的HEV3;噬菌体Gokushovirus;微病毒科;

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