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Real-time PCR for differential quantification of CVI988 vaccine virus and virulent strains of Marek’s disease virus

机译:实时PCR差异定量分析CVI988疫苗病毒和马立克氏病病毒的毒株

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摘要

CVI988/Rispens vaccine, the ‘gold standard’ vaccine against Marek’s disease in poultry, is not easily distinguishable from virulent strains of Marek’s disease herpesvirus (MDV). Accurate differential measurement of CVI988 and virulent MDV is commercially important to confirm successful vaccination, to diagnose Marek’s disease, and to investigate causes of vaccine failure. A real-time quantitative PCR assay to distinguish CVI988 and virulent MDV based on a consistent single nucleotide polymorphism in the pp38 gene, was developed, optimised and validated using common primers to amplify both viruses, but differential detection of PCR products using two short probes specific for either CVI988 or virulent MDV. Both probes showed perfect specificity for three commercial preparations of CVI988 and 12 virulent MDV strains. Validation against BAC-sequence-specific and US2-sequence-specific q-PCR, on spleen samples from experimental chickens co-infected with BAC-cloned pCVI988 and wild-type virulent MDV, demonstrated that CVI988 and virulent MDV could be quantified very accurately. The assay was then used to follow kinetics of replication of commercial CVI988 and virulent MDV in feather tips and blood of vaccinated and challenged experimental chickens. The assay is a great improvement in enabling accurate differential quantification of CVI988 and virulent MDV over a biologically relevant range of virus levels.
机译:CVI988 / Rispens疫苗是针对家禽马立克氏病的“黄金标准”疫苗,很难与马立克氏病疱疹病毒(MDV)的毒株区分开来。 CVI988和强毒MDV的准确差异测量对于确认成功的疫苗接种,诊断马立克氏病和调查疫苗失败的原因具有重要的商业意义。利用通用引物扩增两种病毒,开发,优化和验证了一种实时定量PCR分析方法,该方法基于pp38基因中一致的单核苷酸多态性来区分CVI988和强毒MDV,但使用两种短探针特异性检测PCR产物的差异适用于CVI988或强毒的MDV。两种探针都对三种CVI988商业制剂和12种强毒MDV菌株显示出完美的特异性。在BAC克隆的pCVI988和野生型强毒MDV共同感染的实验鸡的脾脏样品上针对BAC序列特异性和US2序列特异性q-PCR的验证表明,可以非常准确地定量CVI988和强毒MDV。然后,该测定法用于跟踪在疫苗接种和攻击的实验鸡的羽毛尖端和血液中商业CVI988和有毒的MDV复制的动力学。该测定法在生物学水平相关的病毒水平范围内,能够对CVI988和有毒的MDV进行准确的差异定量分析,是一项重大改进。

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