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J 亚群禽白血病病毒逆转录重组酶辅助扩增检测方法的建立与应用。

Development and application of a reverse-transcription recombinase-aided amplification assay for subgroup J Avian leukosis virus.

机构信息

Heyuan Branch, Guangdong Provincial Laboratory of Lingnan Modern Agricultural Science and Technology, College of Animal Science, South China Agricultural University, Guangzhou 510642, P. R. China; Guangdong Engineering Research Center for Vector Vaccine of Animal Virus, Guangzhou 510642, P. R. China; South China Collaborative Innovation Center for Poultry Disease Control and Product Safety, Guangzhou 510642, P. R. China.

Henan Provincial Engineering and Technology Center of Health Products for Livestock and Poultry, Nanyang Normal University, Nanyang 473061, P. R. China.

出版信息

Poult Sci. 2022 Apr;101(4):101743. doi: 10.1016/j.psj.2022.101743. Epub 2022 Jan 21.

Abstract

Subgroup J Avian leukosis virus (ALV-J) is an important pathogen of poultry tumor diseases. Since its discovery, it has caused significant economic losses to the poultry industry. Thus, the rapid detection of molecular level with strong specificity is particularly important whether poultry are infected with ALV-J. In this study, we designed primers and probe for real-time fluorescent reverse-transcription recombinase-aided amplification assay (RT-RAA) based on the ALV-J gp85 sequence. We had established a real-time fluorescent RT-RAA method and confirmed this system by verifying the specificity and sensitivity of the primers and probe. In addition, repeatability tests and clinical sample regression tests were used for preliminary evaluation of this detection method. The sensitivity of established method was about 10 copies/μL, and the repeatability of the CV of the C value is 4%, indicating repeatability is good. Moreover, there was no cross-reactivity with NDV, IBV, IBDV, H9N2, MDV, and REV, and other avian leukosis virus subgroups, such as subgroups A, B, C, D, K and E. Importantly, the real-time fluorescent RT-RAA completed the test within 30 min at a constant temperature of 41°C. Forty-two clinical samples with known background were tested, and the test results were coincided with 100%. Overall, these results suggested that the real-time fluorescent RT-RAA developed in this study had strong specificity, high sensitivity, and good feasibility. The method is simple, easy, and portable, that is suitable for clinical and laboratory diagnosis, and provides technical support for the prevention and control of ALV-J.

摘要

亚群 J 禽白血病病毒 (ALV-J) 是家禽肿瘤病的重要病原体。自发现以来,它给家禽业造成了重大的经济损失。因此,快速、特异性强的分子水平检测在判断家禽是否感染 ALV-J 方面尤为重要。本研究基于 ALV-J gp85 序列设计了实时荧光 RT-RAA 的引物和探针,建立了实时荧光 RT-RAA 方法,并通过验证引物和探针的特异性和灵敏度对该系统进行了确认。此外,还对该检测方法进行了重复性试验和临床样本回归试验的初步评估。所建立方法的灵敏度约为 10 拷贝/μL,C 值的 CV 重复性为 4%,表明重复性良好。此外,该方法与新城疫病毒(NDV)、传染性支气管炎病毒(IBV)、传染性法氏囊病病毒(IBDV)、H9N2、马立克氏病病毒(MDV)和禽网状内皮组织增生病病毒(REV)等其他禽白血病病毒亚群以及亚群 A、B、C、D、K 和 E 均无交叉反应。重要的是,实时荧光 RT-RAA 在 41°C 恒温下 30 min 内即可完成检测。对 42 份已知背景的临床样本进行了检测,检测结果与 100%相符。综上所述,本研究建立的实时荧光 RT-RAA 具有特异性强、灵敏度高、可行性好的特点。该方法简便、易于携带,适合临床和实验室诊断,为 ALV-J 的防控提供了技术支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df4a/8889409/3d645aedfa27/gr1.jpg

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