Hou Guanxin, Zhu Siping, Li Hong, Li Chihuan, Liu Xiaochen, Ren Chao, Zhu Xintong, Shi Qiumei, Zhang Zhiqiang
Hebei Key Laboratory of Preventive Veterinary Medicine, Hebei Normal University of Science & Technology, Qinhuangdao 066600, China.
Vet Sci. 2024 Nov 24;11(12):589. doi: 10.3390/vetsci11120589.
Bovine respiratory syncytial virus (BRSV) is a significant cause of bovine respiratory disease, resulting in significant losses to the cattle industry. For rapid detection of BRSV, a real-time recombinase-aided isothermal amplification assay (qRT-RAA) based on the gene of BRSV was developed in this study.
The developed qRT-RAA assay showed good exponential amplification of the target fragment in 20 min at a constant temperature of 39 °C. And this assay displayed a high specificity for BRSV, without cross-reactions with Infectious Bovine Rhinotracheitis Virus (IBRV), Bovine Parainfluenza Virus Type 3 (BPIV3), Bovine Viral Diarrhea Virus (BVDV), and Bovine Coronavirus (BCoV). With the standard RNA of BRSV serving as a template, the limit of detection for qRT-RAA was 102 copies/μL. We examined ninety-seven clinical samples from cattle with respiratory disease using this method and determined a positive rate of 7.2% (7/97), consistent with results using the classical PCR method reported previously.
A qRT-RAA assay for BRSV detection was established in this study. The method is specific and sensitive and can be completed within 20 min at 39 °C. These works demonstrate that the generated qRT-RAA assay is an effective diagnostic tool for rapidly detecting BRSV in resource-limited settings, which may be applied for the clinical detection of BRSV.
牛呼吸道合胞病毒(BRSV)是牛呼吸道疾病的重要病因,给养牛业造成重大损失。本研究基于BRSV基因开发了一种实时重组酶辅助等温扩增检测方法(qRT-RAA),用于快速检测BRSV。
所开发的qRT-RAA检测方法在39℃恒温下20分钟内对目标片段显示出良好的指数扩增。该检测方法对BRSV具有高度特异性,与牛传染性鼻气管炎病毒(IBRV)、牛副流感病毒3型(BPIV3)、牛病毒性腹泻病毒(BVDV)和牛冠状病毒(BCoV)无交叉反应。以BRSV标准RNA为模板,qRT-RAA的检测限为102拷贝/μL。我们用该方法检测了97份患呼吸道疾病牛的临床样本,阳性率为7.2%(7/97),与先前报道的经典PCR方法结果一致。
本研究建立了一种用于检测BRSV的qRT-RAA检测方法。该方法特异、灵敏,可在39℃下20分钟内完成。这些工作表明,所建立的qRT-RAA检测方法是在资源有限环境中快速检测BRSV的有效诊断工具,可应用于BRSV的临床检测。