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首页> 外文期刊>Frontiers in Microbiology >Whole Genome Sequencing of Enterovirus species C Isolates by High-Throughput Sequencing: Development of Generic Primers
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Whole Genome Sequencing of Enterovirus species C Isolates by High-Throughput Sequencing: Development of Generic Primers

机译:高通量测序的肠病毒种C 分离物的全基因组测序:通用引物的开发

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摘要

Enteroviruses are among the most common viruses infecting humans and can cause diverse clinical syndromes ranging from minor febrile illness to severe and potentially fatal diseases. Enterovirus species C (EV-C) consists of more than 20 types, among which the three serotypes of polioviruses, the etiological agents of poliomyelitis, are included. Biodiversity and evolution of EV-C genomes are shaped by frequent recombination events. Therefore, identification and characterization of circulating EV-C strains require the sequencing of different genomic regions. A simple method was developed to quickly sequence the entire genome of EV-C isolates. Four overlapping fragments were produced separately by RT-PCR performed with generic primers. The four amplicons were then pooled and purified prior to being sequenced by a high-throughput technique. The method was assessed on a panel of EV-Cs belonging to a wide-range of types. It can be used to determine full-length genome sequences through de novo assembly of thousands of reads. It was also able to discriminate reads from closely related viruses in mixtures. By decreasing the workload compared to classical Sanger-based techniques, this method will serve as a precious tool for sequencing large panels of EV-Cs isolated in cell cultures during environmental surveillance or from patients, including vaccine-derived polioviruses.
机译:肠病毒是感染人类的​​最常见病毒之一,可引起多种临床综合征,从轻度发热到严重甚至可能致命的疾病。肠病毒C(EV-C)包含20多种类型,其中包括脊髓灰质炎的病原体脊髓灰质炎病毒的三种血清型。 EV-C基因组的生物多样性和进化受频繁的重组事件影响。因此,循环EV-C菌株的鉴定和表征需要对不同基因组区域进行测序。开发了一种简单的方法来快速测序EV-C分离株的整个基因组。通过使用通用引物进行的RT-PCR分别产生了四个重叠片段。然后将四个扩增子合并并纯化,然后再通过高通量技术进行测序。该方法在属于多种类型的EV-C面板上进行了评估。它可以通过从头组装成千上万个读数来确定全长基因组序列。它还能够区分混合物中密切相关的病毒的读段。与传统的基于Sanger的技术相比,通过减少工作量,该方法将成为一种宝贵的工具,用于对在环境监测过程中或从患者(包括疫苗衍生的脊髓灰质炎病毒)分离出的大批EV-C进行测序。

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