Molecular and Integrative Biosciences Research Programme, Faculty of Biological and Environmental Sciences, University of Helsinki, 00014 Helsinki, Finland.
Viruses. 2023 Oct 25;15(11):2154. doi: 10.3390/v15112154.
Half a century has passed since the discovery of Pseudomonas phage phi6, the first enveloped dsRNA bacteriophage to be isolated. It remained the sole known dsRNA phage for a quarter of a century and the only recognised member of the family until the year 2018. After the initial discovery of phi6, additional dsRNA phages have been isolated from globally distant locations and identified in metatranscriptomic datasets, suggesting that this virus type is more ubiquitous in nature than previously acknowledged. Most identified dsRNA phages infect strains and utilise either pilus or lipopolysaccharide components of the host as the primary receptor. In addition to the receptor-mediated strictly lytic lifestyle, an alternative persistent infection strategy has been described for some dsRNA phages. To date, complete genome sequences of fourteen dsRNA phage isolates are available. Despite the high sequence diversity, similar sets of genes can typically be found in the genomes of dsRNA phages, suggesting shared evolutionary trajectories. This review provides a brief overview of the recognised members of the virus family and related dsRNA phage isolates, outlines the current classification of dsRNA phages, and discusses their relationships with eukaryotic RNA viruses.
自第一个被分离的包膜双链 RNA 噬菌体——假单胞菌噬菌体 phi6 发现以来,已经过去了半个世纪。在接下来的四分之一个世纪里,它一直是唯一已知的双链 RNA 噬菌体,也是 科的唯一公认成员,直到 2018 年。在最初发现 phi6 之后,从全球不同地区分离到了更多的双链 RNA 噬菌体,并在宏转录组数据集得到鉴定,这表明这种病毒类型在自然界中的普遍性比之前认为的要高。大多数已鉴定的双链 RNA 噬菌体感染 菌株,并利用宿主的菌毛或脂多糖成分作为主要受体。除了受体介导的严格裂解生活方式外,一些双链 RNA 噬菌体还描述了一种替代的持续感染策略。迄今为止,已有 14 个双链 RNA 噬菌体分离株的完整基因组序列可用。尽管序列多样性很高,但双链 RNA 噬菌体的基因组中通常可以找到类似的基因集,这表明它们具有共同的进化轨迹。本文简要概述了 科的公认成员和相关双链 RNA 噬菌体分离株,概述了双链 RNA 噬菌体的现行分类,并讨论了它们与真核 RNA 病毒的关系。