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开发一种三面板多重实时 PCR 检测方法,用于同时检测九种犬呼吸道病原体。

Development of a three-panel multiplex real-time PCR assay for simultaneous detection of nine canine respiratory pathogens.

机构信息

Kansas State Veterinary Diagnostic Laboratory, Kansas State University, Manhattan, KS 66506, United States; Yangzhou University College of Veterinary Medicine, Yangzhou, Jiangsu, China.

Kansas State Veterinary Diagnostic Laboratory, Kansas State University, Manhattan, KS 66506, United States.

出版信息

J Microbiol Methods. 2022 Aug;199:106528. doi: 10.1016/j.mimet.2022.106528. Epub 2022 Jun 23.

Abstract

Infectious respiratory disease is one of the most common diseases in dogs worldwide. Several bacterial and viral pathogens can serve as causative agents of canine infectious respiratory disease (CIRD), including Mycoplasma cynos, Mycoplasma canis, Bordetella bronchiseptica, canine adenovirus type 2 (CAdV-2), canine herpesvirus 1 (CHV-1), canine parainfluenza virus (CPIV), canine distemper virus (CDV), canine influenza virus (CIA) and canine respiratory coronavirus (CRCoV). Since these organisms cause similar clinical symptoms, disease diagnosis based on symptoms alone can be difficult. Therefore, a quick and accurate test is necessary to rapidly identify the presence and relative concentrations of causative CIRD agents. In this study, a multiplex real-time PCR panel assay was developed and composed of three subpanels for detection of the aforementioned pathogens. Correlation coefficients (R) were >0.993 for all singleplex and multiplex real-time PCR assays with the exception of one that was 0.988; PCR amplification efficiencies (E) were between 92.1% and 107.8% for plasmid DNA, and 90.6-103.9% for RNA templates. In comparing singular and multiplex PCR assays, the three multiplex reactions generated similar R and E values to those by corresponding singular reactions, suggesting that multiplexing did not interfere with the detection sensitivities. The limit of detection (LOD) of the multiplex real-time PCR for DNA templates was 5, 2, 3, 1, 1, 1, 4, 24 and 10 copies per microliter for M. cynos, M. canis, B. brochiseptica, CAdV-2, CHV-1, CPIV, CDV, CIA and CRCoV, respectively; and 3, 2, 6, 17, 4 and 8 copies per microliter for CAdV-2, CHV-1, CPIV, CDV, CIA and CRCoV, respectively, when RNA templates were used for the four RNA viruses. No cross-detection was observed among the nine pathogens. For the 740 clinical samples tested, the newly designed PCR assay showed higher diagnostic sensitivity compared to an older panel assay; pathogen identities from selected samples positive by the new assay but undetected by the older assay were confirmed by Sanger sequencing. Our data showed that the new assay has higher diagnostic sensitivity while maintaining the assay's specificity, as compared to the older version of the panel assay.

摘要

传染性呼吸道疾病是全球犬类最常见的疾病之一。有几种细菌和病毒病原体可作为犬传染性呼吸道疾病(CIRD)的致病因子,包括犬支原体、犬支原体、支气管败血波氏杆菌、犬腺病毒 2 型(CAdV-2)、犬疱疹病毒 1 型(CHV-1)、犬副流感病毒(CPIV)、犬瘟热病毒(CDV)、犬流感病毒(CIA)和犬呼吸道冠状病毒(CRCoV)。由于这些病原体引起相似的临床症状,仅凭症状进行疾病诊断可能很困难。因此,需要快速准确的检测方法来快速识别致病 CIRD 病原体的存在和相对浓度。在本研究中,开发了一种多重实时 PCR 检测试剂盒,由三个子检测组组成,用于检测上述病原体。除一个为 0.988 外,所有单重和多重实时 PCR 检测的相关系数(R)均大于 0.993;质粒 DNA 的 PCR 扩增效率(E)在 92.1%至 107.8%之间,RNA 模板的 E 值在 90.6%至 103.9%之间。在比较单重和多重 PCR 检测时,三重反应生成的 R 和 E 值与相应的单重反应相似,这表明多重反应不会干扰检测的敏感性。多重实时 PCR 对 DNA 模板的检测限(LOD)分别为 5、2、3、1、1、1、4、24 和 10 拷贝/微升,用于犬支原体、犬支原体、支气管败血波氏杆菌、犬腺病毒 2 型、犬疱疹病毒 1 型、犬副流感病毒、犬瘟热病毒、犬流感病毒和犬呼吸道冠状病毒;当使用 RNA 模板检测四种 RNA 病毒时,分别为 3、2、6、17、4 和 8 拷贝/微升。未观察到 9 种病原体之间的交叉检测。在 740 份临床样本中,新设计的 PCR 检测方法与旧的检测方法相比,显示出更高的诊断敏感性;通过新检测方法检测到但旧检测方法未检测到的选定样本的病原体身份通过 Sanger 测序得到证实。与旧版本的检测试剂盒相比,我们的数据表明,新的检测方法在保持检测特异性的同时,具有更高的诊断敏感性。

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