The Asia-Pacific Centre for Animal Health, Veterinary Biosciences, Melbourne Veterinary School, Faculty of Science, The University of Melbourne, Parkville, Victoria 3010, Australia.
Centre for Equine Infectious Disease, Veterinary Biosciences, Melbourne Veterinary School, Faculty of Science, The University of Melbourne, Parkville, Victoria 3010, Australia.
Infect Genet Evol. 2023 Nov;115:105517. doi: 10.1016/j.meegid.2023.105517. Epub 2023 Oct 23.
Equid gammaherpesvirus 5 (EHV5) is closely related to equid gammaherpesvirus 2 (EHV2). Detection of EHV5 is frequent in horse populations worldwide, but it is often without a clear and significant clinical impact. Infection in horses can often present as subclinical disease; however, it has been associated with respiratory disease, including equine multinodular pulmonary fibrosis (EMPF). Genetic heterogeneity within small regions of the EHV5 glycoprotein B (gB) sequences have been reported and multiple genotypes of this virus have been identified within individual horses, but full genome sequence data for these viruses is limited. The primary focus of this study was to assess the genomic diversity and natural recombination among EHV5 isolates.
The genome size of EHV5 prototype strain and the five EHV5 isolates cultured for this study, including four isolates from the same horse, ranged from 181,929 to 183,428 base pairs (bp), with the sizes of terminal repeat regions varying from 0 to 10 bp. The nucleotide sequence identity between the six EHV5 genomes ranged from 95.5 to 99.1%, and the estimated average nucleotide diversity between isolates was 1%. Individual genes displayed varying levels of nucleotide diversity that ranged from 0 to 19%. The analysis of nonsynonymous substitution (Ka > 0.025) revealed high diversity in eight genes. Genome analysis using RDP4 and SplitsTree programs detected evidence of past recombination events between EHV5 isolates.
Genomic diversity and recombination hotspots were identified among EHV5 strains. Recombination can drive genetic diversity, particularly in viruses that have a low rate of nucleotide substitutions. Therefore, the results from this study suggest that recombination is an important contributing factor to EHV5 genomic diversity. The findings from this study provide additional insights into the genetic heterogeneity of the EHV5 genome.
马γ疱疹病毒 5(EHV5)与马γ疱疹病毒 2(EHV2)密切相关。在世界范围内的马群中经常检测到 EHV5,但它通常没有明显的临床影响。马感染 EHV5 通常表现为亚临床疾病;然而,它与呼吸道疾病有关,包括马多发性肺纤维化(EMPF)。已经报道了 EHV5 糖蛋白 B(gB)序列的小区域内的遗传异质性,并且已经在个体马中鉴定出这种病毒的多个基因型,但这些病毒的全基因组序列数据有限。本研究的主要重点是评估 EHV5 分离株的基因组多样性和自然重组。
EHV5 原型株和本研究培养的五个 EHV5 分离株的基因组大小范围为 181929 至 183428 个碱基对(bp),末端重复区的大小从 0 到 10bp 不等。六个 EHV5 基因组之间的核苷酸序列同一性范围为 95.5%至 99.1%,分离株之间的估计平均核苷酸多样性为 1%。个别基因显示出不同程度的核苷酸多样性,范围从 0 到 19%。非同义替换(Ka>0.025)分析显示八个基因具有高度多样性。使用 RDP4 和 SplitsTree 程序对基因组进行分析检测到 EHV5 分离株之间过去重组事件的证据。
在 EHV5 株之间鉴定出基因组多样性和重组热点。重组可以驱动遗传多样性,特别是在核苷酸替换率低的病毒中。因此,本研究的结果表明重组是 EHV5 基因组多样性的一个重要因素。本研究的结果为 EHV5 基因组的遗传异质性提供了更多的见解。