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Validation of Internal Controls for Extraction and Amplification of Nucleic Acids from Enteric Viruses in Water Samples

机译:用于从水样中的肠病毒中提取和扩增核酸的内部对照的验证

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摘要

Inhibitors that reduce viral nucleic acid extraction efficiency and interfere with cDNA synthesis and/or polymerase activity affect the molecular detection of viruses in aquatic environments. To overcome these significant problems, we developed a methodology for assessing nucleic acid yields and DNA amplification efficiencies for environmental water samples. This involved adding particles of adenovirus type 5 and murine norovirus and newly developed primer-sharing controls, which are amplified with the same primer pairs and result in the same amplicon sizes as the targets, to these samples. We found that nucleic acid loss during the extraction process, rather than reverse transcription-PCR (RT-PCR) inhibition, more significantly attributed to underestimation of the presence of viral genomes in the environmental water samples tested in this study. Our success rate for satisfactorily amplifying viral RNAs and DNAs by RT-PCR was higher than that for obtaining adequate nucleic acid preparations. We found that inhibitory properties were greatest when we used larger sample volumes. A magnetic silica bead-based RNA extraction method effectively removed inhibitors that interfere with viral nucleic acid extraction and RT-PCR. To our knowledge, this is the first study to assess the inhibitory properties of environmental water samples by using both control virus particles and primer-sharing controls.
机译:降低病毒核酸提取效率并干扰cDNA合成和/或聚合酶活性的抑制剂会影响水生环境中病毒的分子检测。为了克服这些重大问题,我们开发了一种评估环境水样品的核酸产量和DNA扩增效率的方法。这涉及向这些样品中添加5型腺病毒和鼠诺如病毒颗粒,以及新开发的引物共享对照,它们用相同的引物对进行扩增,并得到与靶标相同的扩增子大小。我们发现提取过程中的核酸损失,而不是逆转录-PCR(RT-PCR)抑制,更多地归因于低估了本研究中测试的环境水样品中病毒基因组的存在。我们通过RT-PCR令人满意地扩增病毒RNA和DNA的成功率要高于获得足够的核酸制品的成功率。我们发现当我们使用更大的样品量时,抑制性能最大。基于磁性硅珠的RNA提取方法可有效去除干扰病毒核酸提取和RT-PCR的抑制剂。据我们所知,这是首次通过使用对照病毒颗粒和引物共享对照来评估环境水样品的抑制特性的研究。

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