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Development of a pan-Simbu real-time reverse transcriptase PCR for the detection of Simbu serogroup viruses and comparison with SBV diagnostic PCR systems

机译:泛Simbu实时逆转录酶PCR的开发,用于检测Simbu血清群病毒并与SBV诊断PCR系统进行比较

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Background Schmallenberg virus (SBV), a novel orthobunyavirus of the Simbu serogroup, was first identified in October 2011 in dairy cattle in Germany, where it caused fever, diarrhea and a drop in milk yield. Since then, SBV additionally has been detected in adult sheep and goats. Although symptoms of acute infection were not observed, infection during a vulnerable phase of pregnancy caused congenital malformations and stillbirths. In view of the current situation and the possible emergence of further Simbu serogroup members, a pan-Simbu real-time reverse transcriptase (RT) PCR system for the reliable detection of Simbu serogroup viruses should be developed. Methods In this study a pan-Simbu real-time RT-PCR system was established and compared to several SBV real-time RT-PCR assays. All PCR-systems were tested using a panel of different Simbu serogroup viruses as well as several field samples from diseased cattle, sheep and goats originating from all over Germany. Several pan-Simbu real-time RT-PCR products were sequenced via Sanger sequencing. Furthermore, in silico analyses were performed to investigate suitability for the detection of further orthobunyaviruses. Results All tested members of the Simbu serogroup (n?=?14) as well as most of the field samples were successfully detected by the pan-Simbu real-time RT-PCR system. The comparison of this intercalating dye assay with different TaqMan probe-based assays developed for SBV diagnostics confirmed the functionality of the pan-Simbu assay for screening purposes. However, the SBV-TaqMan-assay SBV-S3 delivered the highest analytical sensitivity of less than ten copies per reaction for duplex systems including an internal control. In addition, for confirmation of SBV-genome detection the highly specific SBV-M1 assay was established. Conclusion The pan-Simbu real-time RT-PCR system was able to detect all tested members of the Simbu serogroup, most of the SBV field samples as well as three tested Bunyamwera serogroup viruses with a suitable sensitivity. According to in silico analyses, this system seems to be able to detect a broad orthobunyavirus spectrum. As an additional feature of the pan-Simbu real-time RT-PCR system, subsequent species classification via sequencing is feasible. Regarding SBV diagnostics, the performance of the S-segment targeting SBV-S3 assay was superior with respect to the analytical sensitivity.
机译:背景技术Schmallenberg病毒(SBV)是Simbu血清群的一种新型正统支原体病毒,于2011年10月在德国的奶牛中首次发现,引起发烧,腹泻和牛奶产量下降。从那时起,在成年绵羊和山羊中还发现了SBV。尽管未观察到急性感染的症状,但在妊娠易感阶段感染会导致先天性畸形和死产。鉴于目前的情况以及可能还会出现更多的Simbu血清群成员,应该开发一种用于可靠检测Simbu血清群病毒的泛Simbu实时逆转录酶(RT)PCR系统。方法在本研究中,建立了一个Pan-Simbu实时RT-PCR系统,并与几种SBV实时RT-PCR分析方法进行了比较。所有PCR系统均使用一组不同的Simbu血清群病毒以及来自德国各地的患病牛,绵羊和山羊的几个田间样品进行了测试。通过Sanger测序对几种pan-Simbu实时RT-PCR产物进行了测序。此外,进行了计算机分析,以调查是否适合检测其他正支原体病毒。结果通过pan-Simbu实时RT-PCR系统成功检测了Simbu血清组的所有受试成员(n?=?14)以及大多数现场样品。该嵌入染料测定法与针对SBV诊断开发的基于TaqMan探针的不同测定法的比较证实了pan-Simbu测定法用于筛选的功能。但是,SBV-TaqMan测定法SBV-S3对包括内部对照的双工系统,每个反应的分析灵敏度最高,不到10个拷贝。另外,为了证实SBV基因组检测,建立了高度特异性的SBV-M1测定法。结论pan-Simbu实时RT-PCR系统能够以适当的灵敏度检测到所有Simbu血清群的受试成员,大部分SBV现场样品以及三种测试的Bunyamwera血清群病毒。根据计算机分析,该系统似乎能够检测到宽广的正支病毒。作为pan-Simbu实时RT-PCR系统的另一个功能,通过测序进行后续物种分类是可行的。关于SBV诊断,针对S片段的SBV-S3分析的性能相对于分析灵敏度而言更为出色。

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