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Development and Validation of a Universal One-Step RT-PCR Assay for Broad Detection of Duck Tembusu Virus

机译:广泛检测鸭温病毒的通用一步RT-PCR测定的开发与验证

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摘要

Duck Tembusu virus (DTMUV), a mosquito-borne flavivirus, has been identified as a causative agent of an emerging disease in ducks. Since its first report in 2010, several clusters of DTMUV have increasingly been identified and caused outbreaks in many Asian countries. This highlights the need for improved and novel broad detection assays in order to detect all circulating clusters of DTMUV. In this study, a universal one-step reverse-transcription PCR (RT-PCR) assay targeting a highly conserved region of the NS5 gene was developed and validated for broad detection of all DTMUV clusters. The newly developed universal RT-PCR assay could specifically detect all clusters of DTMUV without cross-reactions with common duck viruses and other related flaviviruses. The assay was able to detect DTMUV as low as a 0.001 50% embryo lethal dose/milliliter. The performance of the assay was evaluated by using experimental and field clinical samples. The assay could successfully detect DTMUV in all experimentally DTMUV-infected samples and gave a higher DTMUV detection rate (36%) than the previously reported envelope-specific RT-PCR assay (30%) in field dinical samples. All the positive samples were confirmed DTMUV-positive by DNA sequencing. In conclusion, the newly developed universal RT-PCR assay exhibited high accuracy, specificity, and sensitivity in broad DTMUV detection, thus providing an improved screening assay for routine detection and epidemiologic surveillance of DTMUV.
机译:Duck Tembusu病毒(DTMUV)是一种蚊子般的黄病毒,已被鉴定为鸭子的新兴疾病的致病因子。自2010年第一届报告以来,越来越多地确定了许多亚洲国家的爆发的几个DTMUV集群。这突出了改进和新型广泛检测测定的需要,以检测DTMUV的所有循环簇。在本研究中,靶向NS5基因高度保守区域的通用一步逆转录PCR(RT-PCR)测定并验证,以广泛检测所有DTMUV簇。新开发的通用RT-PCR测定可以特异性地检测所有DTMUV的簇,而不会与常见的鸭病毒和其他相关的黄病毒进行交叉反应。测定能够检测DTMUV,低至0.001 50%胚胎剂量/毫升。通过使用实验和现场临床样品来评估测定的性能。该测定可以在所有实验DTMUV感染的样品中成功检测DTMUV,并比现年的野外的封存特异性RT-PCR测定(30%)产生更高的DTMUV检测率(36%)。通过DNA测序证实了所有阳性样品DTMUV阳性。总之,新开发的通用RT-PCR测定在广泛的DTMUV检测中表现出高精度,特异性和敏感性,从而提供了改进的筛选测定,用于DTMUV的常规检测和流行病学监测。

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