首页> 美国卫生研究院文献>Journal of Virology >Full Genome-Based Classification of Rotaviruses Reveals a Common Origin between Human Wa-Like and Porcine Rotavirus Strains and Human DS-1-Like and Bovine Rotavirus Strains
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Full Genome-Based Classification of Rotaviruses Reveals a Common Origin between Human Wa-Like and Porcine Rotavirus Strains and Human DS-1-Like and Bovine Rotavirus Strains

机译:轮状病毒的基于全基因组的分类揭示了人类Wa-Like和猪轮状病毒株与人DS-1-Like和牛轮状病毒株之间的共同起源。

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摘要

Group A rotavirus classification is currently based on the molecular properties of the two outer layer proteins, VP7 and VP4, and the middle layer protein, VP6. As reassortment of all the 11 rotavirus gene segments plays a key role in generating rotavirus diversity in nature, a classification system that is based on all the rotavirus gene segments is desirable for determining which genes influence rotavirus host range restriction, replication, and virulence, as well as for studying rotavirus epidemiology and evolution. Toward establishing such a classification system, gene sequences encoding VP1 to VP3, VP6, and NSP1 to NSP5 were determined for human and animal rotavirus strains belonging to different G and P genotypes in addition to those available in databases, and they were used to define phylogenetic relationships among all rotavirus genes. Based on these phylogenetic analyses, appropriate identity cutoff values were determined for each gene. For the VP4 gene, a nucleotide identity cutoff value of 80% completely correlated with the 27 established P genotypes. For the VP7 gene, a nucleotide identity cutoff value of 80% largely coincided with the established G genotypes but identified four additional distinct genotypes comprised of murine or avian rotavirus strains. Phylogenetic analyses of the VP1 to VP3, VP6, and NSP1 to NSP5 genes showed the existence of 4, 5, 6, 11, 14, 5, 7, 11, and 6 genotypes, respectively, based on nucleotide identity cutoff values of 83%, 84%, 81%, 85%, 79%, 85%, 85%, 85%, and 91%, respectively. In accordance with these data, a revised nomenclature of rotavirus strains is proposed. The novel classification system allows the identification of (i) distinct genotypes, which probably followed separate evolutionary paths; (ii) interspecies transmissions and a plethora of reassortment events; and (iii) certain gene constellations that revealed (a) a common origin between human Wa-like rotavirus strains and porcine rotavirus strains and (b) a common origin between human DS-1-like rotavirus strains and bovine rotaviruses. These close evolutionary links between human and animal rotaviruses emphasize the need for close simultaneous monitoring of rotaviruses in animals and humans.
机译:当前,A组轮状病毒分类基于两个外层蛋白VP7和VP4以及中间层蛋白VP6的分子特性。由于所有11个轮状病毒基因片段的重排在自然产生轮状病毒多样性方面都起着关键作用,因此,基于所有轮状病毒基因片段的分类系统对于确定哪些基因会影响轮状病毒宿主范围的限制,复制和毒力至关重要,因为以及用于研究轮状病毒的流行病学和进化。为了建立这样的分类系统,除了数据库中可用的那些之外,还针对属于不同G和P基因型的人和动物轮状病毒株确定了编码VP1至VP3,VP6和NSP1至NSP5的基因序列,并将其用于定义系统发育所有轮状病毒基因之间的关系。基于这些系统发育分析,为每个基因确定了适当的同一性临界值。对于VP4基因,核苷酸同一性临界值80%与27种已建立的P基因型完全相关。对于VP7基因,核苷酸同一性截止值80%在很大程度上与已建立的G基因型重合,但是鉴定出了另外四种由鼠或禽轮状病毒株组成的不同基因型。对VP1到VP3,VP6和NSP1到NSP5基因的系统进化分析表明,基于83%的核苷酸同一性临界值,分别存在4、5、6、11、14、5、7、11和6个基因型,84%,81%,85%,79%,85%,85%,85%和91%。根据这些数据,提出了轮状病毒毒株的修订命名法。新颖的分类系统可以识别(i)可能遵循不同进化途径的不同基因型; (ii)种间传播和过多的重配事件; (iii)某些基因星座揭示了(a)人类Wa型轮状病毒株与猪轮状病毒株之间的共同起源,以及(b)DS-1类轮状病毒株与牛轮状病毒之间的共同起源。人类和动物轮状病毒之间的这些紧密的进化联系强调了对动物和人类中的轮状病毒进行密切同步监测的需要。

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