Departments of Biology, and Biochemistry and Molecular Biology, Center for Infectious Disease Dynamics, and the Huck Institutes of the Life Sciences, Pennsylvania State University, University Park, Pennsylvania, 16802, USA.
Curr Issues Mol Biol. 2021;42:41-80. doi: 10.21775/cimb.042.041. Epub 2020 Nov 7.
Alphaherpesviruses, as large double-stranded DNA viruses, were long considered to be genetically stable and to exist in a homogeneous state. Recently, the proliferation of high-throughput sequencing (HTS) and bioinformatics analysis has expanded our understanding of herpesvirus genomes and the variations found therein. Recent data indicate that herpesviruses exist as diverse populations, both in culture and , in a manner reminiscent of RNA viruses. In this review, we discuss the past, present, and potential future of alphaherpesvirus genomics, including the technical challenges that face the field. We also review how recent data has enabled genome-wide comparisons of sequence diversity, recombination, allele frequency, and selective pressures, including those introduced by cell culture. While we focus on the human alphaherpesviruses, we draw key insights from related veterinary species and from the beta- and gamma-subfamilies of herpesviruses. Promising technologies and potential future directions for herpesvirus genomics are highlighted as well, including the potential to link viral genetic differences to phenotypic and disease outcomes.
α疱疹病毒是一种大型双链 DNA 病毒,长期以来被认为具有遗传稳定性,并以同质状态存在。最近,高通量测序(HTS)和生物信息学分析的快速发展扩展了我们对疱疹病毒基因组及其内部变异的认识。最近的数据表明,疱疹病毒在培养和体内都存在多种不同的种群,这让人联想到 RNA 病毒。在这篇综述中,我们讨论了 α 疱疹病毒基因组学的过去、现在和潜在的未来,包括该领域面临的技术挑战。我们还回顾了最近的数据如何能够实现全基因组范围内的序列多样性、重组、等位基因频率和选择压力(包括细胞培养引入的压力)的比较。虽然我们专注于人类 α 疱疹病毒,但我们也从相关的兽医物种以及β和γ疱疹病毒亚科中汲取了关键的见解。本文还强调了疱疹病毒基因组学的有前途的技术和潜在的未来方向,包括将病毒遗传差异与表型和疾病结果联系起来的潜力。