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首页> 外文期刊>mSystems >A Universal Next-Generation Sequencing Protocol To Generate Noninfectious Barcoded cDNA Libraries from High-Containment RNA Viruses
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A Universal Next-Generation Sequencing Protocol To Generate Noninfectious Barcoded cDNA Libraries from High-Containment RNA Viruses

机译:一种通用的下一代测序协议,可从高含量RNA病毒生成非感染性条形码cDNA库

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Several biosafety level 3 and/or 4 (BSL-3/4) pathogens are high-consequence, single-stranded RNA viruses, and their genomes, when introduced into permissive cells, are infectious. Moreover, many of these viruses are select agents (SAs), and their genomes are also considered SAs. For this reason, cDNAs and/or their derivatives must be tested to ensure the absence of infectious virus and/or viral RNA before transfer out of the BSL-3/4 and/or SA laboratory. This tremendously limits the capacity to conduct viral genomic research, particularly the application of next-generation sequencing (NGS). Here, we present a sequence-independent method to rapidly amplify viral genomic RNA while simultaneously abolishing both viral and genomic RNA infectivity across multiple single-stranded positive-sense RNA (ssRNA+) virus families. The process generates barcoded DNA amplicons that range in length from 300 to 1,000?bp, which cannot be used to rescue a virus and are stable to transport at room temperature. Our barcoding approach allows for up to 288 barcoded samples to be pooled into a single library and run across various NGS platforms without potential reconstitution of the viral genome. Our data demonstrate that this approach provides full-length genomic sequence information not only from high-titer virion preparations but it can also recover specific viral sequence from samples with limited starting material in the background of cellular RNA, and it can be used to identify pathogens from unknown samples. In summary, we describe a rapid, universal standard operating procedure that generates high-quality NGS libraries free of infectious virus and infectious viral RNA. IMPORTANCE This report establishes and validates a standard operating procedure (SOP) for select agents (SAs) and other biosafety level 3 and/or 4 (BSL-3/4) RNA viruses to rapidly generate noninfectious, barcoded cDNA amenable for next-generation sequencing (NGS). This eliminates the burden of testing all processed samples derived from high-consequence pathogens prior to transfer from high-containment laboratories to lower-containment facilities for sequencing. Our established protocol can be scaled up for high-throughput sequencing of hundreds of samples simultaneously, which can dramatically reduce the cost and effort required for NGS library construction. NGS data from this SOP can provide complete genome coverage from viral stocks and can also detect virus-specific reads from limited starting material. Our data suggest that the procedure can be implemented and easily validated by institutional biosafety committees across research laboratories.
机译:几种具有生物安全性的3级和/或4级(BSL-3 / 4)病原体是高后果的单链RNA病毒,当将它们的基因组引入允许性细胞时,它们具有感染性。此外,这些病毒中有许多是选择剂(SA),其基因组也被视为SA。因此,在移出BSL-3 / 4和/或SA实验室之前,必须对cDNA和/或其衍生物进行测试,以确保不存在传染性病毒和/或病毒RNA。这极大地限制了进行病毒基因组研究的能力,尤其是下一代测序(NGS)的应用。在这里,我们提出了一种独立于序列的方法,可快速扩增病毒基因组RNA,同时取消跨多个单链正义RNA(ssRNA +)病毒家族的病毒和基因组RNA感染性。该过程产生条形码化的DNA扩增子,其长度在300至1,000?bp范围内,不能用于拯救病毒,并且在室温下稳定运输。我们的条形码方法可将多达288个条形码化的样品汇总到一个库中,并在各种NGS平台上运行,而无需重新构建病毒基因组。我们的数据表明,这种方法不仅可以从高滴度病毒体制备物中提供全长基因组序列信息,而且还可以从细胞RNA背景中起始材料有限的样品中回收特定的病毒序列,并且可以用于鉴定病原体来自未知样本。总之,我们描述了一种快速,通用的标准操作程序,该程序可生成不含传染性病毒和传染性病毒RNA的高质量NGS库。重要信息此报告建立并验证了选择试剂(SAs)和其他生物安全等级3和/或4(BSL-3 / 4)RNA病毒的标准操作程序(SOP),以快速生成适合下一代测序的无感染条形码条形码cDNA (NGS)。这样就消除了在从高含量实验室转移到低含量设施进行测序之前测试所有来自高含量病原体的处理样品的负担。我们建立的协议可以扩大规模,以便同时对数百个样品进行高通量测序,从而可以显着降低NGS库构建所需的成本和工作量。来自此SOP的NGS数据可以提供病毒库的完整基因组覆盖范围,还可以检测来自有限起始材料的病毒特异性读数。我们的数据表明,该程序可以由研究实验室的机构生物安全委员会实施并轻松验证。

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