Development of a Triplex qPCR Assay Based on the TaqMan Probe for the Detection of Haemophilus parasuis, Streptococcus suis Serotype 2 and Pasteurella multocida.

IF 4.1 2区 生物学 Q2 MICROBIOLOGY Microorganisms Pub Date : 2024-10-05 DOI:10.3390/microorganisms12102017
Kaili Li, Yu Zhang, Tingyu Luo, Changwen Li, Haibo Yu, Wei Wang, He Zhang, Hongyan Chen, Changyou Xia, Caixia Gao
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Abstract

Porcine respiratory disease is a significant economic problem for the global swine industry. Haemophilus parasuis (H. parasuis), Streptococcus suis (S. suis), and Pasteurella multocida (P. multocida) are three important pathogenic bacteria of the swine respiratory tract. Notably, the three pathogens not only frequently manifest as mixed infections, but their striking clinical similarities also present difficulties for pig populations in terms of disease prevention and treatment. Thus, we developed a triplex real-time quantitative polymerase chain reaction (qPCR) assay based on a TaqMan probe for the detection of H. parasuis, S. suis serotype 2, and P. multocida. Primers and probes were designed to target the conserved regions of the H. parasuis OmpP2 gene, the S. suis serotype 2 gdh gene, and the P. multocida Kmt1 gene. By optimizing the reaction system and conditions, a triplex qPCR method for simultaneous detection of H. parasuis, S. suis serotype 2, and P. multocida was successfully established. The amplification efficiencies of the standard curves for all three pathogens were found to be highly similar, with values of 102.105% for H. parasuis, 105.297% for S. suis serotype 2, and 104.829% for P. multocida, and all R2 values achieving 0.999. The specificity analysis results showed that the triplex qPCR method had a strong specificity. The sensitivity test results indicated that the limit of detection can reach 50 copies/μL for all three pathogens. Both intra- and inter-assay coefficients of variation for repeatability were below 1%. This triplex qPCR method was shown to have good specificity, sensitivity, and reproducibility. Finally, the triplex qPCR method established in this study was compared with the nested PCR as recommended by the Chinese national standard (GB/T34750-2017) for H. parasuis, the PCR as recommended by the Chinese national standard (GB/T 19915.9-2005) for S. suis serotype 2, and the PCR as recommended by the Chinese agricultural industry standard (NY/T 564-2016) for P. multocida by detecting the same clinical samples. Both methods are reasonably consistent, while the triplex qPCR assay was more sensitive. In summary, triplex qPCR serves not only as a rapid and accurate detection and early prevention method for these pathogens but also constitutes a robust tool for microbial quality control in specific pathogen-free pigs.

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开发基于 TaqMan 探针的三重 qPCR 分析,用于检测寄生嗜血杆菌、猪链球菌血清 2 型和多杀性巴氏杆菌。
猪呼吸道疾病是全球养猪业的一个重大经济问题。寄生嗜血杆菌(H. parasuis)、猪链球菌(S. suis)和多杀性巴氏杆菌(P. multocida)是猪呼吸道的三种重要致病菌。值得注意的是,这三种病原体不仅经常表现为混合感染,而且其惊人的临床相似性也给猪群的疾病预防和治疗带来了困难。因此,我们开发了一种基于 TaqMan 探针的三重实时定量聚合酶链反应(qPCR)检测方法,用于检测寄生虫病猪、猪痢疾杆菌血清 2 型和多杀性猪嗜血杆菌。设计的引物和探针分别针对寄生虫 OmpP2 基因、鼠疫血清 2 型 gdh 基因和多杀性白喉杆菌 Kmt1 基因的保守区。通过优化反应体系和条件,成功建立了同时检测寄生虫、鼠疫血清 2 型和多杀性疟原虫的三重 qPCR 方法。结果发现,三种病原体的标准曲线的扩增效率非常接近,寄生虫为 102.105%,猪链球菌血清型 2 为 105.297%,多杀性疟原虫为 104.829%,所有 R2 值均达到 0.999。特异性分析结果表明,三重 qPCR 方法具有很强的特异性。灵敏度测试结果表明,三种病原体的检测限均可达到 50 拷贝/μL。测定内和测定间的重复性变异系数均低于 1%。该三重 qPCR 方法具有良好的特异性、灵敏度和可重复性。最后,通过检测相同的临床样本,将本研究建立的三重 qPCR 方法与中国国家标准(GB/T34750-2017)推荐的寄生虫巢式 PCR 方法、中国国家标准(GB/T 19915.9-2005)推荐的猪流感病毒血清 2 型 PCR 方法和中国农业行业标准(NY/T 564-2016)推荐的多杀螨球菌 PCR 方法进行了比较。两种方法的灵敏度相当一致,而三重 qPCR 检测方法的灵敏度更高。总之,三重 qPCR 不仅是快速、准确地检测和早期预防这些病原体的方法,也是特定无病原猪微生物质量控制的有力工具。
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来源期刊
Microorganisms
Microorganisms Medicine-Microbiology (medical)
CiteScore
7.40
自引率
6.70%
发文量
2168
审稿时长
20.03 days
期刊介绍: Microorganisms (ISSN 2076-2607) is an international, peer-reviewed open access journal which provides an advanced forum for studies related to prokaryotic and eukaryotic microorganisms, viruses and prions. It publishes reviews, research papers and communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation or experimental procedure, if unable to be published in a normal way, can be deposited as supplementary electronic material.
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