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马γ疱疹病毒 2 田间分离株的全基因组序列分析显示出高度的基因组多样性和重组。

Whole genome sequence analysis of equid gammaherpesvirus -2 field isolates reveals high levels of genomic diversity and recombination.

机构信息

Melbourne Veterinary School, Faculty of Veterinary and Agricultural Sciences, The Asia-Pacific Centre for Animal Health, The University of Melbourne, Parkville, VIC, 3010, Australia.

Centre for Equine Infectious Diseases, Faculty of Veterinary and Agricultural Sciences, The University of Melbourne, Parkville, VIC, 3010, Australia.

出版信息

BMC Genomics. 2022 Aug 30;23(1):622. doi: 10.1186/s12864-022-08789-x.

Abstract

BACKGROUND

Equid gammaherpesvirus 2 (EHV2) is a gammaherpesvirus with a widespread distribution in horse populations globally. Although its pathogenic significance can be unclear in most cases of infection, EHV2 infection can cause upper respiratory tract disease in foals. Co-infection of different strains of EHV2 in an individual horse is common. Small regions of the EHV2 genome have shown considerable genetic heterogeneity. This could suggest genomic recombination between different strains of EHV2, similar to the extensive recombination networks that have been demonstrated for some alphaherpesviruses. This study examined natural recombination and genome diversity of EHV2 field isolates.

RESULTS

Whole genome sequencing analysis of 18 EHV2 isolates, along with analysis of two publicly available EHV2 genomes, revealed variation in genomes sizes (from 173.7 to 184.8 kbp), guanine plus cytosine content (from 56.7 to 57.8%) and the size of the terminal repeat regions (from 17,196 to 17,551 bp). The nucleotide sequence identity between the genomes ranged from 86.2 to 99.7%. The estimated average inter-strain nucleotide diversity between the 20 EHV2 genomes was 2.9%. Individual gene sequences showed varying levels of nucleotide diversity and ranged between 0 and 38.1%. The ratio of nonsynonymous substitutions, Ka, to synonymous substitutions, Ks, (Ka/Ks) suggests that over 50% of EHV2 genes are undergoing diversifying selection. Recombination analyses of the 20 EHV2 genome sequences using the recombination detection program (RDP4) and SplitsTree revealed evidence of viral recombination.

CONCLUSIONS

Analysis of the 18 new EHV2 genomes alongside the 2 previously sequenced genomes revealed a high degree of genetic diversity and extensive recombination networks. Herpesvirus genome diversification and virus evolution can be driven by recombination, and our findings are consistent with recombination being a key mechanism by which EHV2 genomes may vary and evolve.

摘要

背景

马γ疱疹病毒 2(EHV2)是一种在全球马群中广泛分布的γ疱疹病毒。尽管在大多数感染情况下其致病性意义可能不明确,但 EHV2 感染可导致幼驹上呼吸道疾病。同一匹马中不同 EHV2 株的合并感染很常见。EHV2 基因组的小区域显示出相当大的遗传异质性。这可能表明不同 EHV2 株之间存在基因组重组,类似于一些α疱疹病毒所表现出的广泛重组网络。本研究检查了 EHV2 田间分离株的自然重组和基因组多样性。

结果

对 18 株 EHV2 分离株进行全基因组测序分析,并对两个公开的 EHV2 基因组进行分析,发现基因组大小(从 173.7 到 184.8 kbp)、鸟嘌呤加胞嘧啶含量(从 56.7 到 57.8%)和末端重复区大小(从 17196 到 17551 bp)存在差异。基因组之间的核苷酸序列同一性范围为 86.2 到 99.7%。20 株 EHV2 基因组之间的平均种间核苷酸多样性估计为 2.9%。个体基因序列显示出不同水平的核苷酸多样性,范围在 0 到 38.1%之间。非同义替换率 Ka 与同义替换率 Ks 的比值(Ka/Ks)表明,超过 50%的 EHV2 基因正在经历多样化选择。使用重组检测程序(RDP4)和 SplitsTree 对 20 株 EHV2 基因组序列进行重组分析,发现了病毒重组的证据。

结论

对 18 个新的 EHV2 基因组以及之前测序的 2 个基因组进行分析,揭示了高度的遗传多样性和广泛的重组网络。疱疹病毒基因组多样化和病毒进化可能由重组驱动,我们的发现与重组是 EHV2 基因组变异和进化的关键机制一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6878/9426266/c4204624aa15/12864_2022_8789_Fig1_HTML.jpg

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