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一种用于鉴别结节性皮肤病病毒、山羊痘病毒和绵羊痘病毒的新型三重实时荧光定量PCR检测方法。

A novel triplex real-time PCR assay for the differentiation of lumpy skin disease virus, goatpox virus, and sheeppox virus.

作者信息

Nan Wenlong, Gong Mingxia, Lu You, Li Jinming, Li Lin, Qu Hailong, Liu Chunju, Wang Ying, Wu Faxing, Wu Xiaodong, Wang Zhiliang, Chen Yiping, Peng Daxin

机构信息

China Animal Health and Epidemiology Center, Qingdao, China.

College of Veterinary Medicine, Yangzhou University, Yangzhou, Jiangsu, China.

出版信息

Front Vet Sci. 2023 Jun 28;10:1175391. doi: 10.3389/fvets.2023.1175391. eCollection 2023.

Abstract

INTRODUCTION

Three members of (CaPV) genus, including lumpy skin disease virus (LSDV), goatpox virus (GTPV), and sheeppox virus (SPPV), are mentioned as notifiable forms by World Organization for Animal Health. These viruses have negatively impacted ruminant farming industry worldwide, causing great economic losses. Although SPPV and GTPV cause more severe clinical disease in only one animal species, they can transfer between sheep and goats. Both homologous and heterologous immunization strategies are used to protect animals against CaPVs. However, development of accurate and rapid methods to distinguish these three viruses is helpful for the early detection, disease surveillance, and control of CaPV infection. Therefore, we developed a novel triplex real-time PCR (qPCR) for the differentiation of LSDV, GTPV, and SPPV.

METHODS

Universal primers were designed to detect pan-CaPV sequences. Species-specific minor groove binder (MGB)-based probes were designed, which were labeled with FAM for LSDV, HEX for GTPV, and ROX for SPPV. The sensitivity, specificity, reproducibility, and ability of detecting mixed infections were evaluated for the triplex qPCR. Further, 226 clinical samples of the infection and negative controls were subjected to the triplex qPCR, and the results were verified using PCR-restriction fragment length polymorphism (PCR-RFLP) and sequencing methods for PRO30 gene.

RESULTS

The triplex qPCR could successfully distinguish LSDV, GTPV, and SPPV in one reaction, and the assay sensitivity was 5.41, 27.70, and 17.28 copies/μL, respectively. No cross-reactivity was observed with other viruses causing common ruminant diseases, including des petits ruminants virus, foot-and-mouth disease virus, bluetongue virus, ovine contagious pustular dermatitis virus, infectious bovine rhinotracheitis virus, and bovine viral diarrhea-mucosal disease virus. Inter-and intra-assay variabilities were < 2.5%. The results indicated that the triplex qPCR was highly specific, sensitive, and reproducible. Simulation experiments revealed that this assay could successfully distinguish two or three viruses in case of mixed infections without any cross-reaction. For clinical samples, the results were completely consistent with the results of PCR-RFLP and sequencing. This demonstrated that the assay was reliable for clinical application.

DISCUSSION

The triplex qPCR is a robust, rapid, and simple tool for identifying various types of CaPV as it can successfully distinguish LSDV, GTPV, and SPPV in one reaction. Furthermore, the assay can facilitate more accurate disease diagnosis and surveillance for better control of CaPV infection.

摘要

引言

痘病毒科(CaPV)的三个成员,包括结节性皮肤病病毒(LSDV)、山羊痘病毒(GTPV)和绵羊痘病毒(SPPV),被世界动物卫生组织列为应通报的疫病类型。这些病毒对全球反刍动物养殖业造成了负面影响,导致了巨大的经济损失。尽管SPPV和GTPV仅在一种动物物种中引起更严重的临床疾病,但它们可在绵羊和山羊之间传播。同源和异源免疫策略均被用于保护动物免受CaPVs感染。然而,开发准确、快速的方法来区分这三种病毒,有助于CaPV感染的早期检测、疾病监测和控制。因此,我们开发了一种用于区分LSDV、GTPV和SPPV的新型三重实时荧光定量PCR(qPCR)方法。

方法

设计通用引物以检测泛CaPV序列。设计了基于小沟结合蛋白(MGB)的物种特异性探针,其中用于LSDV的探针用FAM标记,用于GTPV的探针用HEX标记,用于SPPV的探针用ROX标记。对三重qPCR的灵敏度、特异性、重复性和检测混合感染的能力进行了评估。此外,对226份感染临床样本和阴性对照进行三重qPCR检测,并使用PCR-限制性片段长度多态性(PCR-RFLP)和PRO30基因测序方法对结果进行验证。

结果

三重qPCR能够在一次反应中成功区分LSDV、GTPV和SPPV,检测灵敏度分别为5.41、27.70和17.28拷贝/μL。未观察到与其他引起反刍动物常见疾病的病毒发生交叉反应,这些病毒包括小反刍兽疫病毒、口蹄疫病毒、蓝舌病病毒、绵羊传染性脓疱性皮炎病毒、传染性牛鼻气管炎病毒和牛病毒性腹泻-黏膜病病毒。批内和批间变异均<2.5%。结果表明,三重qPCR具有高度特异性、敏感性和重复性。模拟实验表明,该方法在混合感染情况下能够成功区分两种或三种病毒,且无任何交叉反应。对于临床样本,结果与PCR-RFLP和测序结果完全一致。这表明该方法在临床应用中是可靠的。

讨论

三重qPCR是一种强大、快速且简单的工具,可用于鉴定各种类型的CaPV,因为它能够在一次反应中成功区分LSDV、GTPV和SPPV。此外,该方法有助于更准确的疾病诊断和监测,以更好地控制CaPV感染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7e4/10336199/ea3af84143df/fvets-10-1175391-g001.jpg

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