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首页> 外文期刊>BMC Genomics >Metagenomic analysis of viral nucleic acid extraction methods in respiratory clinical samples
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Metagenomic analysis of viral nucleic acid extraction methods in respiratory clinical samples

机译:病毒核酸提取方法在呼吸临床样品中的偏见分析

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摘要

Numerous protocols for viral enrichment and genome amplification have been created. However, the direct identification of viral genomes from clinical specimens using next-generation sequencing (NGS) still has its challenges. As a selected viral nucleic acid extraction method may determine the sensitivity and reliability of NGS, it is still valuable to evaluate the extraction efficiency of different extraction kits using clinical specimens directly. In this study, we performed qRT-PCR and viral metagenomic analysis of the extraction efficiency of four commonly used Qiagen extraction kits: QIAamp Viral RNA Mini Kit (VRMK), QIAamp MinElute Virus Spin Kit (MVSK), RNeasy Mini Kit (RMK), and RNeasy Plus Micro Kit (RPMK), using a mixed respiratory clinical sample without any pre-treatment. This sample contained an adenovirus (ADV), influenza virus A (Flu A), human parainfluenza virus 3 (PIV3), human coronavirus OC43 (OC43), and human metapneumovirus (HMPV). The quantity and quality of the viral extracts were significantly different among these kits. The highest threshold cycle(Ct)values for ADV and OC43 were obtained by using the RPMK. The MVSK had the lowest Ct values for ADV and PIV3. The RMK revealed the lowest detectability for HMPV and PIV3. The most effective rate of NGS data at 67.47% was observed with the RPMK. The other three kits ranged between 12.1-26.79% effectiveness rates for the NGS data. Most importantly, compared to the other three kits the highest proportion of non-host reads was obtained by the RPMK. The MVSK performed best with the lowest Ct value of 20.5 in the extraction of ADV, while the RMK revealed the best extraction efficiency by NGS analysis. The evaluation of viral nucleic acid extraction efficiency is different between NGS and qRT-PCR analysis. The RPMK was most applicable for the metagenomic analysis of viral RNA and enabled more sensitive identification of the RNA virus genome in respiratory clinical samples. In addition, viral RNA extraction kits were also applicable for metagenomic analysis of the DNA virus. Our results highlighted the importance of nucleic acid extraction kit selection, which has a major impact on the yield and number of viral reads by NGS analysis. Therefore, the choice of extraction method for a given viral pathogen needs to be carefully considered.
机译:已经产生了许多用于病毒富集和基因组扩增的方案。然而,使用下一代测序(NGS)从临床标本直接鉴定来自临床标本(NGS)的挑战。作为选定的病毒核酸提取方法可以确定NGS的灵敏度和可靠性,仍然有价值使用临床标本直接使用临床标本的不同提取套件的提取效率。在这项研究中,我们进行了QRT-PCR和病毒偏见分析四种常用的QIAGEN提取试剂盒的提取效率:QIAAMP病毒RNA迷你试剂盒(VRMK),QIAAMP MINELUTE病毒旋转试剂盒(MVSK),RNEASY MINI KIT(RMK),和rneasy加上微套件(RPMK),使用混合呼吸临床样品,无需任何预处理。该样品含有腺病毒(ADV),流感病毒A(流感A),人对血管病毒3(PIV3),人冠状病毒OC43(OC 43)和人类术语(HMPV)。这些试剂盒中病毒提取物的数量和质量显着差异。通过使用RPMK获得ADV和OC43的最高阈值周期(CT)值。 MVSK对ADV和PIV3具有最低的CT值。 RMK揭示了HMPV和PIV3的最低可检测性。用RPMK观察到67.47%的NGS数据最有效的率。另外三个套件在NGS数据的有效性率之间为12.1-26.79%。最重要的是,与其他三个套件相比,RPMK获得了最高比例的非主体读数。 MVSK在ADV的提取中最佳地具有20.5的最低CT值,而RMK通过NGS分析显示最佳提取效率。病毒核酸提取效率的评价在NGS和QRT-PCR分析之间是不同的。 RPMK最适用于病毒RNA的偏见分析,并使RNA病毒基因组在呼吸临床样品中的更敏感鉴定。此外,病毒RNA提取试剂盒也适用于DNA病毒的偏见分析。我们的结果强调了核酸提取试剂盒选择的重要性,这对NGS分析产生了对病毒读数的产量和数量的重大影响。因此,需要仔细考虑对给定病毒病原体的提取方法的选择。

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