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The Study of Viral RNA Diversity in Bird Samples Using De Novo Designed Multiplex Genus-Specific Primer Panels

机译:使用从头设计的多重属特异性引物板研究鸟类样品中病毒RNA的多样性

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摘要

Advances in the next generation sequencing (NGS) technologies have significantly increased our ability to detect new viral pathogens and systematically determine the spectrum of viruses prevalent in various biological samples. In addition, this approach has also helped in establishing the associations of viromes with many diseases. However, unlike the metagenomic studies using 16S rRNA for the detection of bacteria, it is impossible to create universal oligonucleotides to target all known and novel viruses, owing to their genomic diversity and variability. On the other hand, sequencing the entire genome is still expensive and has relatively low sensitivity for such applications. The existing approaches for the design of oligonucleotides for targeted enrichment are usually involved in the development of primers for the PCR-based detection of particular viral species or genera, but not for families or higher taxonomic orders. In this study, we have developed a computational pipeline for designing the oligonucleotides capable of covering a significant number of known viruses within various taxonomic orders, as well as their novel variants. We have subsequently designed a genus-specific oligonucleotide panel for targeted enrichment of viral nucleic acids in biological material and demonstrated the possibility of its application for virus detection in bird samples. We have tested our panel using a number of collected samples and have observed superior efficiency in the detection and identification of viral pathogens. Since a reliable, bioinformatics-based analytical method for the rapid identification of the sequences was crucial, an NGS-based data analysis module was developed in this study, and its functionality in the detection of novel viruses and analysis of virome diversity was demonstrated.
机译:下一代测序(NGS)技术的进步显着提高了我们检测新病毒病原体并系统确定各种生物样品中普遍存在的病毒谱的能力。此外,这种方法还有助于建立病毒与许多疾病的联系。但是,与使用16S rRNA进行细菌检测的宏基因组学研究不同,由于它们的基因组多样性和可变性,不可能创建针对所有已知和新型病毒的通用寡​​核苷酸。另一方面,对整个基因组进行测序仍然很昂贵,并且对此类应用的敏感性相对较低。设计用于靶向富集的寡核苷酸的现有方法通常涉及引物的开发,该引物用于基于PCR的特定病毒物种或属的检测,但不涉及家族或更高的分类学顺序。在这项研究中,我们已经开发了一种计算管线,用于设计能够覆盖各种分类顺序内的大量已知病毒及其新型变异的寡核苷酸。随后,我们设计了一种属特异性寡核苷酸面板,用于在生物材料中靶向富集病毒核酸,并证明了其可用于禽类样品病毒检测的可能性。我们使用了许多收集的样品对我们的面板进行了测试,并观察到了在检测和鉴定病毒病原体方面的卓越效率。由于可靠,基于生物信息学的分析方法对序列的快速鉴定至关重要,因此在本研究中开发了基于NGS的数据分析模块,并证明了其在检测新型病毒和分析病毒多样性中的功能。

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