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用于临床样本检测山羊痘病毒的实时荧光定量PCR方法的建立

Development of a Real-Time qPCR Method for the Clinical Sample Detection of Capripox Virus.

作者信息

Wen Jiaxin, Yin Xinying, Zhang Xiaobo, Lan Desong, Liu Junshan, Song Xiaohui, Sun Yu, Cao Jijuan

机构信息

Key Laboratory of Biotechnology and Bioresources Utilization of Ministry of Education, Dalian Minzu University, Dalian 116600, China.

Liaoning Center for Animal Disease Control and Prevention, Shenyang 110164, China.

出版信息

Microorganisms. 2023 Oct 2;11(10):2476. doi: 10.3390/microorganisms11102476.

Abstract

Capripox viruses (CaPVs), including sheep pox virus (SPV), goat pox virus (GPV), and lumpy skin disease virus (LSDV), are the cause of sheep pox (SPP), goat pox (GTP), and lumpy skin disease (LSD) in cattle. These diseases are of great economic significance to farmers, as they are endemic on farms and are a major constraint to international trade in livestock and their products. Capripoxvirus (CaPV) infections produce similar symptoms in sheep and goats, and the three viruses cannot be distinguished serologically. In this study, we developed a real-time quantitative polymerase chain reaction (qPCR) method for identifying CaPV in goats, sheep, and cattle. Clinical samples were tested and verified. The developed assay was highly specific for target viruses, including GPVSPV and LSDV, which had no cross-reaction with other viruses causing similar clinical symptoms. An artificially synthesized positive control plasmid using the CaPV 32 gene inserted into the vector pMD19-T was used as a template, and the correlation coefficient of the linear regression curve () was 0.9916, the estimated amplification efficiency () was 96.06%, and the sensitivity (limit of detection, LOD) was 3.80 copies per reaction. Using the clinical samples as a template, the limit of detection (LOD) was 4.91 × 10 ng per reaction (1.60 × 10-2.13 × 10 ng, 95% confidence interval (CI)), which means that this method was one of the most sensitive detection assays for CaPVs. A total of 85 clinical samples from CaPV-infected animals (goats, sheep, and cattle) and 50 clinical samples from healthy animals were used to test and compare the diagnostic results using the Synergy Brands (SYBR) Green-based PCR method recommended by the World Organization of Animal Health (WOAH). Both diagnostic sensitivity () (95.8-100%, 95% CI) and diagnostic specificity () (92.9-100%, 95% CI) results of the real-time quantitative PCR (qPCR) and SYBR Green PCR were 100%, and the kappa value (κ) was 1.0 (1-1, 95% CI). In summary, the assay established based on TaqMan probes was advantageous in high specificity, sensitivity, and general applicability and could be a competitive candidate tool for the diagnosis of CaPV in clinically suspected animals.

摘要

痘病毒(CaPVs),包括绵羊痘病毒(SPV)、山羊痘病毒(GPV)和牛结节性皮肤病病毒(LSDV),是引起绵羊痘(SPP)、山羊痘(GTP)和牛结节性皮肤病(LSD)的病原体。这些疾病对养殖户具有重大经济意义,因为它们在养殖场呈地方性流行,并且是牲畜及其产品国际贸易的主要制约因素。痘病毒(CaPV)感染在绵羊和山羊中产生相似的症状,并且这三种病毒无法通过血清学进行区分。在本研究中,我们开发了一种实时定量聚合酶链反应(qPCR)方法,用于鉴定山羊、绵羊和牛中的CaPV。对临床样本进行了检测和验证。所开发的检测方法对包括GPV、SPV和LSDV在内的目标病毒具有高度特异性,与其他引起相似临床症状的病毒无交叉反应。使用插入载体pMD19-T的CaPV 32基因人工合成的阳性对照质粒作为模板,线性回归曲线的相关系数()为0.9916,估计扩增效率()为96.06%,灵敏度(检测限,LOD)为每个反应3.80个拷贝。以临床样本为模板,检测限(LOD)为每个反应4.9×10 ng(1.60×10 - 2.13×10 ng,95%置信区间(CI)),这意味着该方法是检测CaPVs最灵敏的检测方法之一。总共85份来自感染CaPV的动物(山羊、绵羊和牛)的临床样本和50份来自健康动物的临床样本用于检测,并使用世界动物卫生组织(WOAH)推荐的基于SYnergy Brands(SYBR)Green的PCR方法比较诊断结果。实时定量PCR(qPCR)和SYBR Green PCR的诊断敏感性()(95.8 - 100%,95% CI)和诊断特异性()(92.9 - 100%,95% CI)结果均为100%,kappa值(κ)为1.0(1 - 1,95% CI)。总之,基于TaqMan探针建立的检测方法在高特异性、灵敏度和广泛适用性方面具有优势,并且可能成为临床疑似动物中CaPV诊断的有竞争力的候选工具。

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