Shanghai Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Shanghai 200241, PR China.
Shanghai Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Shanghai 200241, PR China.
J Virol Methods. 2024 Dec;330:115031. doi: 10.1016/j.jviromet.2024.115031. Epub 2024 Sep 8.
Feline caliciviruses can cause oral and upper respiratory tract infections in cats. However, a virulent and systemic feline calicivirus (VS-FCV) variant implicated in multisystem lesions and death in cats has emerged recently. To date, the mechanism underlying virulence variations in VS-FCV remains unclear. The aim of the present study was to provide a tool for exploring genetic variation in VS-FCV, by constructing an infectious clone of VS-FCV SH/2014. First, a full-length cDNA molecular clone of VS-FCV SH/2014 strain, which contains an Xba I recognition site generated by mutating one base (A→T) as a genetic marker, was constructed using the circular polymerase extension reaction (CPER) method. Second, the full-length cDNA clone was introduced into Crandell-Rees feline kidney cells using liposomes to rescue recombinant VS-FCV SH/2014 (rVS-FCV SH/2014). Third, the rescued viruses were identified by real-time PCR, immunofluorescence assay, western blotting, and electron microscopy. The full-length cDNA molecular clone of the VS-FCV SH/2014 strain was successfully constructed and that rVS-FCV SH/2014 could be rescued efficiently. rVS-FCV SH/2014 had the expected genetic markers and morphology and growth characteristics similar to those of the parental virus. The reverse genetics system provides a research platform for future studies on VS-FCV genetic variation and pathogenesis.
猫杯状病毒可引起猫口腔和上呼吸道感染。然而,最近出现了一种与猫多系统病变和死亡相关的强毒和系统性猫杯状病毒(VS-FCV)变异株。迄今为止,VS-FCV 毒力变异的机制尚不清楚。本研究旨在构建 VS-FCV SH/2014 的感染性克隆,为探索 VS-FCV 的遗传变异提供工具。首先,使用环聚合酶延伸反应 (CPER) 方法构建了 VS-FCV SH/2014 株全长 cDNA 分子克隆,该克隆包含一个通过突变一个碱基(A→T)产生的 Xba I 识别位点,作为遗传标记。其次,使用脂质体将全长 cDNA 克隆导入猫肾细胞 Crandell-Rees 中,拯救重组 VS-FCV SH/2014(rVS-FCV SH/2014)。然后,通过实时 PCR、免疫荧光检测、western blot 和电子显微镜鉴定拯救的病毒。成功构建了 VS-FCV SH/2014 株全长 cDNA 分子克隆,能够有效拯救 rVS-FCV SH/2014。rVS-FCV SH/2014 具有预期的遗传标记和与亲本病毒相似的形态和生长特征。该反向遗传学系统为未来研究 VS-FCV 的遗传变异和发病机制提供了研究平台。