MRC Virology Unit, Institute of Virology, University of Glasgow, Church Street, Glasgow G11 5JR, UK.
Vet Microbiol. 2010 Jun 16;143(1):52-69. doi: 10.1016/j.vetmic.2010.02.014. Epub 2010 Feb 11.
This paper is about the taxonomy and genomics of herpesviruses. Each theme is presented as a digest of current information flanked by commentaries on past activities and future directions. The International Committee on Taxonomy of Viruses recently instituted a major update of herpesvirus classification. The former family Herpesviridae was elevated to a new order, the Herpesvirales, which now accommodates 3 families, 3 subfamilies, 17 genera and 90 species. Future developments will include revisiting the herpesvirus species definition and the criteria used for taxonomic assignment, particularly in regard to the possibilities of classifying the large number of herpesviruses detected only as DNA sequences by polymerase chain reaction. Nucleotide sequence accessions in primary databases, such as GenBank, consist of the sequences plus annotations of the genetic features. The quality of these accessions is important because they provide a knowledge base that is used widely by the research community. However, updating the accessions to take account of improved knowledge is essentially reserved to the original depositors, and this activity is rarely undertaken. Thus, the primary databases are likely to become antiquated. In contrast, secondary databases are open to curation by experts other than the original depositors, thus increasing the likelihood that they will remain up to date. One of the most promising secondary databases is RefSeq, which aims to furnish the best available annotations for complete genome sequences. Progress in regard to improving the RefSeq herpesvirus accessions is discussed, and insights into particular aspects of herpesvirus genomics arising from this work are reported.
本文介绍了疱疹病毒的分类学和基因组学。每个主题都以当前信息的摘要呈现,两侧是对过去活动和未来方向的评论。国际病毒分类学委员会最近对疱疹病毒的分类进行了重大更新。以前的疱疹病毒科被提升为一个新的目,即疱疹病毒目,现在它容纳了 3 个科、3 个亚科、17 个属和 90 个种。未来的发展将包括重新审视疱疹病毒种的定义和用于分类的分类标准,特别是在将通过聚合酶链反应仅检测到 DNA 序列的大量疱疹病毒进行分类的可能性方面。初级数据库(如 GenBank)中的核苷酸序列访问号包括序列以及遗传特征的注释。这些访问号的质量很重要,因为它们提供了一个知识库,被研究界广泛使用。然而,更新访问号以考虑改进的知识主要保留给原始存款人,而且这种活动很少进行。因此,主要数据库可能会过时。相比之下,二级数据库可以由原始存款人以外的专家进行管理,从而增加了它们保持最新的可能性。最有前途的二级数据库之一是 RefSeq,它旨在为完整基因组序列提供最佳可用注释。讨论了改进 RefSeq 疱疹病毒访问号的进展,并报告了由此项工作产生的关于疱疹病毒基因组学的特定方面的见解。