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首页> 外文期刊>Journal of Clinical Microbiology >Detection of Mammalian Reovirus RNA by Using Reverse Transcription-PCR: Sequence Diversity within the λ3-Encoding L1 Gene
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Detection of Mammalian Reovirus RNA by Using Reverse Transcription-PCR: Sequence Diversity within the λ3-Encoding L1 Gene

机译:使用逆转录PCR检测哺乳动物呼肠孤病毒RNA:编码λ3的L1基因内的序列多样性

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Reoviruses infect virtually all mammalian species, and infection of humans is associated with mild gastrointestinal or upper respiratory illnesses. To improve reovirus detection strategies, we developed a reverse transcription-PCR technique to amplify a fragment of the reovirus L1 gene segment. This assay was capable of detecting 44 of 44 reovirus field isolate strains and was sufficiently sensitive to detect nearly a single viral particle (1.16 ± 0.13) per PCR of prototype strain type 3 Dearing. Pairwise comparisons of the 44 partial L1 gene sequences revealed that nucleotide variability ranged from 0 to 24.7%, with most of the nucleotide polymorphism occurring at synonymous positions. Phylogenetic trees generated from amplified L1 gene sequences suggest that multiple alleles of the L1 gene cocirculate in nature and that genetic diversity of the L1 gene is largely independent of the host species, geographic locale, or date of isolation. Phylogenetic trees constructed from the L1 gene sequences are distinct from those constructed from the four reovirus S-class gene segments, which supports the hypothesis that reovirus gene segments reassort in nature. This study establishes a new sensitive and specific technique for the identification of mammalian reoviruses and enhances our understanding of reovirus evolution.
机译:呼肠孤病毒实际上感染了所有哺乳动物物种,人类感染与轻度胃肠道疾病或上呼吸道疾病有关。为了改善呼肠孤病毒的检测策略,我们开发了一种逆转录PCR技术来扩增呼肠孤病毒L1基因片段的片段。该测定法能够检测44种呼肠孤病毒场分离株中的44种,并且足够灵敏,足以检测3型原型菌株Dearing的每次PCR几乎检测到一个病毒颗粒(1.16±0.13)。成对比较44个L1基因的部分序列,发现核苷酸变异性介于0至24.7%之间,大多数核苷酸多态性发生在同义位置。从扩增的L1基因序列产生的系统发育树表明,L1基因的多个等位基因在自然界中共同循环,并且L1基因的遗传多样性在很大程度上与宿主物种,地理区域或分离日期无关。由L1基因序列构建的系统发育树与由四个呼肠孤病毒S类基因片段构建的系统树不同,这支持了呼肠孤病毒基因片段在自然中重排的假设。这项研究为鉴定哺乳动物呼肠孤病毒建立了一种新的敏感和特异性技术,并增强了我们对呼肠孤病毒进化的理解。

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