Guo Yiwen, Xu Zhenqi, Chao Yifei, Cao Xudong, Jiang Huiru, Li Han, Li Tuofan, Wan Zhimin, Shao Hongxia, Qin Aijian, Xie Quan, Ye Jianqiang
Key Laboratory of Jiangsu Preventive Veterinary Medicine, Key Laboratory for Avian Preventive Medicine, Ministry of Education, College of Veterinary Medicine, Yangzhou University, Yangzhou, Jiangsu, China.
Jiangsu Co-Innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonoses, Yangzhou, Jiangsu, China.
Front Microbiol. 2023 Mar 31;14:1160031. doi: 10.3389/fmicb.2023.1160031. eCollection 2023.
Recently, the infection of serotype 4 fowl adenovirus (FAdV-4) in chicken flocks has become endemic in China, which greatly threatens the sustainable development of poultry industry. The development of recombinant FAdV-4 expressing foreign genes is an efficient strategy for controlling both FAdV-4 and other important poultry pathogens. Previous reverse genetic technique for generating the recombinant fowl adenovirus is generally inefficient. In this study, a recombinant FAdV-4 expressing enhanced green fluorescence protein (EGFP), FA4-EGFP, was used as a template virus and directly edited gene to develop an efficient double-fluorescence approach to generate recombinant FAdV-4 through CRISPR/Cas9 and Cre-Loxp system. Moreover, using this strategy, a recombinant virus FAdV4-HA(H9) stably expressing the HA gene of H9N2 influenza virus was generated. Chicken infection study revealed that the recombinant virus FAdV4-HA(H9) was attenuated, and could induce haemagglutination inhibition (HI) titer against H9N2 influenza virus at early time points and inhibit the viral replication in oropharynx. All these demonstrate that the novel strategy for constructing recombinant FAdV-4 expressing foreign genes developed here paves the way for rapidly developing attenuated FAdV-4-based recombinant vaccines for fighting the diseases caused by both FAdV-4 and other pathogens.
近年来,4型禽腺病毒(FAdV-4)感染在中国鸡群中呈地方流行,这对家禽业的可持续发展构成了巨大威胁。开发表达外源基因的重组FAdV-4是控制FAdV-4和其他重要家禽病原体的有效策略。以往用于产生重组禽腺病毒的反向遗传技术通常效率低下。在本研究中,以表达增强型绿色荧光蛋白(EGFP)的重组FAdV-4(FA4-EGFP)作为模板病毒,直接编辑基因,通过CRISPR/Cas9和Cre-Loxp系统开发了一种高效的双荧光方法来产生重组FAdV-4。此外,利用该策略,产生了稳定表达H9N2流感病毒HA基因的重组病毒FAdV4-HA(H9)。鸡感染研究表明,重组病毒FAdV4-HA(H9)具有减毒特性,能在早期诱导针对H9N2流感病毒的血凝抑制(HI)效价,并抑制病毒在口咽部的复制。所有这些都表明,本文开发的构建表达外源基因的重组FAdV-4的新策略为快速开发基于减毒FAdV-4的重组疫苗以对抗由FAdV-4和其他病原体引起的疾病铺平了道路。