Suzuki Tohru, Hasebe Ayako
Division of Viral Disease and Epidemiology, National Institute of Animal Health, National Agriculture and Food Research Organization (NARO), Tsukuba, Japan.
Gifu Prefectural Central Livestock Health and Sanitation Office, Gifu, Japan.
J Gen Virol. 2017 Nov;98(11):2647-2662. doi: 10.1099/jgv.0.000953. Epub 2017 Oct 17.
Rotaviruses C (RVCs) have been detected in pigs, humans, cows, ferrets and dogs. Despite their zoonotic impact and pathogenicity, the genetic characterization of RVCs is incomplete, unlike rotaviruses A (RVAs), whose genetics are well studied. Several studies reported partial and complete genomic sequences for multiple porcine and canine RVCs. We aimed to establish a complete genome-based genotyping system for RVCs, by analysing complete genome data from 22 porcine RVCs identified in Japan from 2002 to 2010, along with those from multiple human, bovine, porcine, canine and ferret RVCs reported in several previous studies. Comparative sequence analyses among RVCs from various host species demonstrated that porcine RVCs had a high level of genetic diversity. In addition, phylogenetic analyses of all 11 RNA segments indicated that porcine RVCs could be classified into multiple genotypes. Notably, the VP4 dendrogram divided bovine RVCs into multiple genotypes. Consequently, the provisional genotype classification for RVCs from terrestrial mammals revealed the existence of genotypes 18G, 21P, 13I, 4R, 6C, 6M, 9A, 8N, 6T, 5E and 4H for the genes VP7, VP4, VP6, VP1, VP2, VP3, NSP1, NSP2, NSP3, NSP4 and NSP5, respectively, based on the cut-off values as defined by the Rotavirus Classification Working Group. The system established in this study deepens our understanding of RVC evolution and facilitates the discovery of genetic events (gene reassortment and interspecies transmission) among RVCs.
轮状病毒C(RVC)已在猪、人、牛、雪貂和狗中被检测到。尽管它们具有人畜共患病影响和致病性,但与轮状病毒A(RVA)不同,RVC的基因特征并不完整,RVA的遗传学已得到充分研究。多项研究报告了多种猪源和犬源RVC的部分和完整基因组序列。我们旨在通过分析2002年至2010年在日本鉴定的22株猪源RVC的完整基因组数据,以及之前多项研究报告的多株人源、牛源、猪源、犬源和雪貂源RVC的完整基因组数据,建立基于完整基因组的RVC基因分型系统。对来自不同宿主物种的RVC进行的比较序列分析表明,猪源RVC具有高度的遗传多样性。此外,对所有11个RNA片段的系统发育分析表明,猪源RVC可分为多个基因型。值得注意的是,VP4树状图将牛源RVC分为多个基因型。因此,基于轮状病毒分类工作组定义的截止值,陆生哺乳动物RVC的临时基因型分类分别揭示了VP7、VP4、VP6、VP1、VP2、VP3、NSP1、NSP2、NSP3、NSP4和NSP5基因存在18G、21P、13I、4R、6C、6M、9A、8N、6T、5E和4H基因型。本研究建立的系统加深了我们对RVC进化的理解,并有助于发现RVC之间的遗传事件(基因重配和种间传播)。