Hao Mengling, Tang Jiabao, Ge Shengxiang, Li Tingdong, Xia Ningshao
State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics, Department of Laboratory Medicine, School of Public Health, Xiamen University, Xiamen 361102, China.
Xiang An Biomedicine Laboratory, Xiamen 361102, China.
Microorganisms. 2023 Feb 26;11(3):589. doi: 10.3390/microorganisms11030589.
Herpesviruses are major pathogens that infect humans and animals. Manipulating the large genome is critical for exploring the function of specific genes and studying the pathogenesis of herpesviruses and developing novel anti-viral vaccines and therapeutics. Bacterial artificial chromosome (BAC) technology significantly advanced the capacity of herpesviruses researchers to manipulate the virus genomes. In the past years, advancements in BAC-based genome manipulating and screening strategies of recombinant BACs have been achieved, which has promoted the study of the herpes virus. This review summarizes the advances in BAC-based gene editing technology and selection strategies. The merits and drawbacks of BAC-based herpesvirus genome editing methods and the application of BAC-based genome manipulation in viral research are also discussed. This review provides references relevant for researchers in selecting gene editing methods in herpes virus research. Despite the achievements in the genome manipulation of the herpes viruses, the efficiency of BAC-based genome manipulation is still not satisfactory. This review also highlights the need for developing more efficient genome-manipulating methods for herpes viruses.
疱疹病毒是感染人类和动物的主要病原体。操纵其庞大的基因组对于探索特定基因的功能、研究疱疹病毒的发病机制以及开发新型抗病毒疫苗和治疗方法至关重要。细菌人工染色体(BAC)技术显著提升了疱疹病毒研究人员操纵病毒基因组的能力。在过去几年中,基于BAC的基因组操纵以及重组BAC的筛选策略取得了进展,这推动了疱疹病毒的研究。本综述总结了基于BAC的基因编辑技术和筛选策略的进展。还讨论了基于BAC的疱疹病毒基因组编辑方法的优缺点以及基于BAC的基因组操纵在病毒研究中的应用。本综述为疱疹病毒研究中选择基因编辑方法的研究人员提供了相关参考。尽管在疱疹病毒基因组操纵方面取得了成就,但基于BAC的基因组操纵效率仍不尽人意。本综述还强调了为疱疹病毒开发更高效基因组操纵方法的必要性。