首页> 美国卫生研究院文献>Journal of Virology >Full Genomic Analysis of Human Rotavirus Strain B4106 and Lapine Rotavirus Strain 30/96 Provides Evidence for Interspecies Transmission
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Full Genomic Analysis of Human Rotavirus Strain B4106 and Lapine Rotavirus Strain 30/96 Provides Evidence for Interspecies Transmission

机译:人类轮状病毒B4106株和Lapine轮状病毒30/96株的完整基因组分析为种间传播提供了证据

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摘要

The Belgian rotavirus strain B4106, isolated from a child with gastroenteritis, was previously found to have VP7 (G3), VP4 (P[14]), and NSP4 (A genotype) genes closely related to those of lapine rotaviruses, suggesting a possible lapine origin or natural reassortment of strain B4106. To investigate the origin of this unusual strain, the gene sequences encoding VP1, VP2, VP3, VP6, NSP1, NSP2, NSP3, and NSP5/6 were also determined. To allow comparison to a lapine strain, the 11 double-stranded RNA segments of a European G3P[14] rabbit rotavirus strain 30/96 were also determined. The complete genome similarity between strains B4106 and 30/96 was 93.4% at the nucleotide level and 96.9% at the amino acid level. All 11 genome segments of strain B4106 were closely related to those of lapine rotaviruses and clustered with the lapine strains in phylogenetic analyses. In addition, sequence analyses of the NSP5 gene of strain B4106 revealed that the altered electrophoretic mobility of NSP5, resulting in a super-short pattern, was due to a gene rearrangement (head-to-tail partial duplication, combined with two short insertions and a deletion). Altogether, these findings confirm that a rotavirus strain with an entirely lapine genome complement was able to infect and cause severe disease in a human child.
机译:比利时轮状病毒B4106株是从一名患有肠胃炎的儿童中分离出来的,以前发现它具有与高山轮状病毒基因密切相关的VP7(G3),VP4(P [14])和NSP4(A基因型)基因,表明可能存在高山B4106菌株的起源或自然重配。为了调查这种异常菌株的起源,还确定了编码VP1,VP2,VP3,VP6,NSP1,NSP2,NSP3和NSP5 / 6的基因序列。为了与Lapine菌株进行比较,还确定了欧洲G3P [14]兔轮状病毒菌株30/96的11个双链RNA片段。菌株B4106和30/96之间的完全基因组相似性在核苷酸水平为93.4%,在氨基酸水平为96.9%。菌株B4106的所有11个基因组片段都与拉丁裔轮状病毒密切相关,并在系统发育分析中与该拉丁裔菌株聚类。此外,对菌株B4106的NSP5基因的序列分析显示NSP5的电泳迁移率发生改变,从而导致超短模式,这是由于基因重排(头对尾部分重复,加上两个短插入和删除)。总而言之,这些发现证实了具有完整的羽扇豆基因组互补体的轮状病毒株能够感染人类儿童并引起严重的疾病。

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