[Variability of genes encoding nonstructural proteins of rotavirus А (Reoviridae: Rotavirus: Rotavirus A) genotype G9P[8] during the period of dominance in the territory of Nizhny Novgorod (central part of Russia) (2011-2020)].

Q3 Medicine Voprosy virusologii Pub Date : 2023-02-07 DOI:10.36233/0507-4088-143
E I Velikzhanina, T A Sashina, O V Morozova, N V Epifanova, N A Novikova
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Abstract

Introduction: In Russia, rotavirus A is the main cause of severe viral gastroenteritis in young children. The molecular features that allow a rotavirus of a particular genotype to gain an evolutionary advantage remain unclear, therefore, the study of the genetic diversity of rotaviruses based on genes encoding nonstructural proteins (NSPs) responsible for the reproduction of the virus in the cell is an urgent task.

Objective: To study the genetic diversity of rotaviruses of genotype G9P[8], which dominated Nizhny Novgorod in 20112020, based on genes encoding nonstructural proteins.

Materials and methods: Rotavirus-positive samples were subjected to PCR-genotyping and sequencing of NSP1 NSP5 genes. Phylogenetic analysis was carried out in the MEGA X program.

Results: In the period 20112020, G9P[8] rotaviruses with four variants of the NSP2 gene were co-circulating in Nizhny Novgorod. New alleles were noted in 2012 (N1-a-III), 2016 (N1-a-IV) and in 2019 (N1-a-II). The appearance of new variants of other genes occurred in 2014 (E1-3, NSP4), 2018 (T1-a3-III, NSP3) and in 2019 (A1-b-II, NSP1). NSP2 gene had the most variable amino acid sequence (16 substitutions), 2 to 7 substitutions were observed in NSP1, NSP3 and NSP4, NSP5 was conservative.

Discussion: The results obtained are consistent with the literature data and indicate the participation of NSP genes in maintaining the heterogeneity of the rotavirus population.

Conclusion: Until 2018, the genetic diversity of rotaviruses in Nizhny Novgorod was determined by the circulation of strains carrying several alleles of the NSP2 gene and conservative genes NSP1, NSP3NSP5. By the end of the study period, new variants of the genotype G9P[8] were formed in the population, carrying previously unknown combinations of alleles of nonstructural genes.

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[轮状病毒А(呼肠孤病毒科:轮状病毒:轮状病毒A)基因型G9P[8]在下诺夫哥罗德(俄罗斯中部)地区占主导地位期间(2011-2020)编码非结构蛋白的基因变异]。
简介:在俄罗斯,轮状病毒A是幼儿严重病毒性胃肠炎的主要原因。使特定基因型轮状病毒获得进化优势的分子特征尚不清楚,因此,基于编码病毒在细胞内繁殖的非结构蛋白(NSPs)基因的轮状病毒遗传多样性研究是一项紧迫任务。目的:研究2011 - 2020年下诺夫哥罗德市流行的G9P基因型轮状病毒[8]基于非结构蛋白编码基因的遗传多样性。材料与方法:对轮状病毒阳性标本进行pcr分型和NSP1 NSP5基因测序。在MEGA X程序中进行系统发育分析。结果:2011 - 2020年期间,携带NSP2基因四种变体的G9P[8]轮状病毒在下诺夫哥罗德市共流行。在2012年(N1-a-III)、2016年(N1-a-IV)和2019年(N1-a-II)分别发现了新的等位基因。其他基因的新变异出现在2014年(E1-3, NSP4)、2018年(T1-a3-III, NSP3)和2019年(A1-b-II, NSP1)。NSP2基因的氨基酸序列变化最大(16个替换),NSP1、NSP3和NSP4中有2 ~ 7个替换,NSP5较为保守。讨论:所得结果与文献数据一致,表明NSP基因参与维持轮状病毒群体的异质性。结论:直到2018年,下诺夫哥罗德地区轮状病毒的遗传多样性是由携带NSP2基因和保守基因NSP1、NSP3NSP5的几个等位基因的毒株的循环决定的。在研究期结束时,群体中形成了基因型G9P[8]的新变体,携带了以前未知的非结构基因等位基因组合。
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来源期刊
Voprosy virusologii
Voprosy virusologii Medicine-Infectious Diseases
CiteScore
2.00
自引率
0.00%
发文量
48
期刊介绍: The journal deals with advances in virology in Russia and abroad. It publishes papers dealing with investigations of viral diseases of man, animals and plants, the results of experimental research on different problems of general and special virology. The journal publishes materials are which promote introduction into practice of the achievements of the virological science in the eradication and incidence reduction of infectious diseases, as well as their diagnosis, treatment and prevention. The reader will find a description of new methods of investigation, new apparatus and devices.
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