Kheimar Ahmed, Klinger Romina, Bertzbach Luca D, Sid Hicham, Yu You, Conradie Andelé M, Schade Benjamin, Böhm Brigitte, Preisinger Rudolf, Nair Venugopal, Kaufer Benedikt B, Schusser Benjamin
Institute of Virology, Freie Universität Berlin, 14163 Berlin, Germany.
Department of Poultry Diseases, Faculty of Veterinary Medicine, Sohag University, 82424 Sohag, Egypt.
Microorganisms. 2021 May 14;9(5):1066. doi: 10.3390/microorganisms9051066.
Viral diseases remain a major concern for animal health and global food production in modern agriculture. In chickens, avian leukosis virus subgroup J (ALV-J) represents an important pathogen that causes severe economic loss. Until now, no vaccine or antiviral drugs are available against ALV-J and strategies to combat this pathogen in commercial flocks are desperately needed. CRISPR/Cas9 targeted genome editing recently facilitated the generation of genetically modified chickens with a mutation of the chicken ALV-J receptor Na/H exchanger type 1 (chNHE1). In this study, we provide evidence that this mutation protects a commercial chicken line (NHE1ΔW38) against the virulent ALV-J prototype strain HPRS-103. We demonstrate that replication of HPRS-103 is severely impaired in NHE1ΔW38 birds and that ALV-J-specific antigen is not detected in cloacal swabs at later time points. Consistently, infected NHE1ΔW38 chickens gained more weight compared to their non-transgenic counterparts (NHE1W38). Histopathology revealed that NHE1W38 chickens developed ALV-J typical pathology in various organs, while no pathological lesions were detected in NHE1ΔW38 chickens. Taken together, our data revealed that this mutation can render a commercial chicken line resistant to highly pathogenic ALV-J infection, which could aid in fighting this pathogen and improve animal health in the field.
在现代农业中,病毒性疾病仍然是动物健康和全球粮食生产的主要关注点。在鸡群中,禽白血病病毒J亚群(ALV-J)是一种重要的病原体,会造成严重的经济损失。到目前为止,尚无针对ALV-J的疫苗或抗病毒药物,因此迫切需要在商业鸡群中对抗这种病原体的策略。CRISPR/Cas9靶向基因组编辑最近促进了具有鸡ALV-J受体1型钠/氢交换体(chNHE1)突变的转基因鸡的产生。在本研究中,我们提供证据表明这种突变可保护一个商业鸡品系(NHE1ΔW38)免受强毒ALV-J原型毒株HPRS-103的侵害。我们证明HPRS-103在NHE1ΔW38鸡中的复制严重受损,并且在后期的泄殖腔拭子中未检测到ALV-J特异性抗原。一致的是,与非转基因对照鸡(NHE1W38)相比,感染的NHE1ΔW38鸡体重增加更多。组织病理学显示,NHE1W38鸡在各个器官中出现了ALV-J典型病变,而NHE1ΔW38鸡未检测到病理损伤。综上所述,我们的数据表明这种突变可使一个商业鸡品系对高致病性ALV-J感染产生抗性,这有助于对抗这种病原体并改善该领域的动物健康。