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多重实时 RT-qPCR 在健康犊牛牛呼吸道疾病早期检测中的应用。

Multiplex RT-qPCR Application in Early Detection of Bovine Respiratory Disease in Healthy Calves.

机构信息

Central Iwate Prefectural Livestock Health and Hygiene Center, Takizawa 020-0605, Iwate, Japan.

Division of Zoonosis Research and Division of Hygiene Management, Sapporo Research Station, National Institute of Animal Health, NARO, Sapporo 062-0045, Hokkaido, Japan.

出版信息

Viruses. 2023 Mar 2;15(3):669. doi: 10.3390/v15030669.

Abstract

Bovine respiratory diseases (BRD) are associated with various predisposing factors, such as physical and physiological stress factors, and bacterial and viral pathogens. These stressors and viruses suppress immune defenses, leading to bacterial growth in the upper respiratory tract and invasion of pathogens into the lower respiratory tract. Therefore, continuous monitoring of the causative pathogens would contribute to the early detection of BRD. Nasal swabs and sera from 63 clinically healthy calves were continuously collected from seven farms in Iwate prefecture from 2019 to 2021. We attempted to monitor dynamics of BRD-associated pathogens by multiplex real-time RT-PCR (RT-qPCR) using their nasal swab samples. In addition, we attempted to monitor fluctuation of antibody titers against each BRD-associated pathogen by virus neutralization test (VNT) using their sera. In contrast, nasal swabs from 89 calves infected with BRD were collected from 28 farms in Iwate prefecture from 2019 to 2021. We attempted to analyze their nasal swab samples by multiplex RT-qPCR aim to detect BRD-associated pathogens that are dominant in this region. As a result, our analyses using samples from clinically healthy calves showed that positive results by multiplex RT-qPCR were closely related to a significant increase of antibody titers by VNT in bovine coronavirus (BCoV), bovine torovirus (BToV), and bovine respiratory syncytial virus (BRSV). In addition, our data exhibited that BCoV, BToV, BRSV, bovine parainfluenza virus 3, and have been more frequently detected in calves infected with BRD compared to those detected in clinically healthy calves. Moreover, the data presented herein revealed co-infections by combination multiple viral pathogens with bacterial pathogens are closely involved in the onset of BRD. Taken together, our study demonstrates multiplex RT-qPCR which can simultaneously analyze multiple pathogens, including viruses and bacteria, and is useful for the early detection of BRD.

摘要

牛呼吸道疾病(BRD)与多种诱发因素有关,如物理和生理应激因素以及细菌和病毒病原体。这些应激源和病毒会抑制免疫防御,导致上呼吸道细菌生长和病原体侵入下呼吸道。因此,持续监测病原体有助于早期发现 BRD。从 2019 年到 2021 年,我们连续从岩手县的七个农场采集了 63 头临床健康小牛的鼻腔拭子和血清。我们试图通过使用鼻腔拭子样本的多重实时 RT-PCR(RT-qPCR)监测 BRD 相关病原体的动态。此外,我们试图通过病毒中和试验(VNT)监测针对每种 BRD 相关病原体的抗体滴度的波动,该试验使用其血清。相反,我们从 2019 年到 2021 年从岩手县的 28 个农场采集了 89 头感染 BRD 的小牛的鼻腔拭子。我们试图通过多重 RT-qPCR 分析它们的鼻腔拭子样本,旨在检测该地区占主导地位的 BRD 相关病原体。结果,我们对临床健康小牛样本的分析表明,多重 RT-qPCR 的阳性结果与 VNT 中牛冠状病毒(BCoV)、牛轮状病毒(BToV)和牛呼吸道合胞体病毒(BRSV)抗体滴度的显著增加密切相关。此外,我们的数据表明,与临床健康小牛相比,感染 BRD 的小牛中更频繁地检测到 BCoV、BToV、BRSV、牛副流感病毒 3 和 ,并且在感染 BRD 的小牛中更频繁地检测到。此外,本文提供的数据表明,多种病毒病原体与细菌病原体的合并感染与 BRD 的发生密切相关。总之,我们的研究表明,多重 RT-qPCR 可以同时分析多种病原体,包括病毒和细菌,有助于早期发现 BRD。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7832/10057971/b10afd45cad1/viruses-15-00669-g001.jpg

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