[Analysis of changes in the genome of the Omsk hemorrhagic fever virus (Flaviviridae: Orthoflavivirus) during laboratory practices for virus preservation].

Q3 Medicine Voprosy virusologii Pub Date : 2024-12-15 DOI:10.36233/0507-4088-266
Z S Tyulko, A V Fadeev, A G Vasilenko, E A Gradoboeva, V V Yakimenko, A B Komissarov
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Abstract

Introduction: Omsk hemorrhagic fever (OHF) is a severe disease identified in the 1940s in Western Siberia, Russia. Disease is caused by the OHF virus, which belongs to the genus Orthoflavivirus. The purpose of the work. Analysis of changes in the genome associated with the isolation of OHF virus strains in laboratory animals (Mus musculus).

Materials and methods: Whole-genome nucleotide sequences of OHF virus strains from the working collection of the laboratory of arboviral infections of the department of natural focal viral infections of the Omsk Research Institute of Natural Focal Infections of Rospotrebnadzor were used in the study, as well as sequences from GenBank. Assessment of adaptive changes in the genome of the OHF virus was carried out using discriminant analysis methods, analyzing the composition and localization of emerging substitutions in viral RNA sequences obtained during the adaptation of viruses to the mouse organism as a result of passaging. Linked nucleotide substitutions were identified by calculating the mutual information for each pair of columns in the array of aligned nucleotide sequences. In the phylogenetic analysis, the relaxed clock algorithm of the BEAST program was used.

Results: It has been shown that point substitutions during adaptation of OHF viruses to the mouse organism occur in all parts of the genome. Many of these substitutions are included in the pattern of linked substitutions identified in the genome of the OHF virus. Discriminant analysis of differences in nucleotide substitutions for groups combining sequences by the number of passages does not allow reliable discrimination between original sequences obtained from muskrat and sequences from first passages, but it recognizes well sequences from 7 or more passages, which suggests the possibility of adaptive selection of nucleotide substitutions when interacting with the body of a white mouse. Calculation of the average rate of substitutions per site per year without taking into account the occurrence of adaptive and related substitutions gives a value of 10-5, which is almost an order of magnitude different from the result when their presence is taken into account ‒ 10-4.

Conclusion: Changes in the nucleotide sequences of OHF that occur during laboratory virus preservation practices may influence the evolutionary rate values determined when analyzing these sequences and require further study.

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[鄂木斯克出血热病毒(黄病毒科:正黄病毒)基因组在实验室病毒保存过程中的变化分析]。
鄂木斯克出血热(OHF)是20世纪40年代在俄罗斯西伯利亚西部发现的一种严重疾病。疾病由OHF病毒引起,该病毒属于正黄病毒属。工作的目的。在实验动物(小家鼠)中分离OHF病毒株相关的基因组变化分析。材料和方法:本研究使用的OHF病毒株全基因组核苷酸序列来自俄罗斯国家自然局灶性病毒感染研究所鄂木斯克自然局灶性病毒感染科虫媒病毒感染实验室工作采集的标本,以及来自GenBank的序列。利用判别分析方法对OHF病毒基因组的适应性变化进行评估,分析病毒传代适应小鼠机体过程中获得的病毒RNA序列中新兴取代的组成和定位。通过计算对齐核苷酸序列阵列中每对列的互信息来确定连锁核苷酸替换。在系统发育分析中,采用BEAST程序的松弛时钟算法。结果:研究表明,OHF病毒在适应小鼠机体的过程中,在基因组的所有部分都发生了点替换。在OHF病毒基因组中发现的连锁取代模式中包括许多这些取代。根据传代数对组合序列群的核苷酸替换差异进行判别分析,不能可靠地区分从麝鼠获得的原始序列和第一次传代的序列,但可以很好地识别7个或更多传代的序列,这表明在与小白鼠机体相互作用时,核苷酸替换可能存在适应性选择。在不考虑适应性替代和相关替代的情况下,每年每个站点的平均替代率的计算结果为10-5,这与考虑它们的存在时的结果几乎相差一个数量级- 10-4。结论:在实验室病毒保存过程中发生的OHF核苷酸序列的变化可能会影响分析这些序列时确定的进化速率值,需要进一步研究。
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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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A simple, highly sensitive and specific serological test for the detection of antibodies to Varicella-zoster virus (Varicellovirus humanalpha3). Endothelial activation and dysfunction caused by influenza A virus (Alphainfluenzavirus influenzae). Genealogy of D.I. Ivanovsky. Identification of a new alphacoronavirus (Coronaviridae: Alphacoronavirus) associated with the greater horseshoe bat (Rhinolophus ferrumequinum) in the south of European part of Russia. [Analysis of changes in the genome of the Omsk hemorrhagic fever virus (Flaviviridae: Orthoflavivirus) during laboratory practices for virus preservation].
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