Suppr超能文献

传染性喉气管炎病毒在共感染期间的遗传多样性与病毒复制平行,且源于基因组内的重组热点。

Genetic Diversity of Infectious Laryngotracheitis Virus during Coinfection Parallels Viral Replication and Arises from Recombination Hot Spots within the Genome.

作者信息

Loncoman Carlos A, Hartley Carol A, Coppo Mauricio J C, Vaz Paola K, Diaz-Méndez Andrés, Browning Glenn F, García Maricarmen, Spatz Stephen, Devlin Joanne M

机构信息

Asia-Pacific Centre for Animal Health, Melbourne Veterinary School, Faculty of Veterinary and Agricultural Sciences, University of Melbourne, Parkville, Victoria, Australia

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

出版信息

Appl Environ Microbiol. 2017 Nov 16;83(23). doi: 10.1128/AEM.01532-17. Print 2017 Dec 1.

Abstract

Recombination is a feature of many alphaherpesviruses that infect people and animals. Infectious laryngotracheitis virus (ILTV; ) causes respiratory disease in chickens, resulting in significant production losses in poultry industries worldwide. Natural (field) ILTV recombination is widespread, particularly recombination between attenuated ILTV vaccine strains to create virulent viruses. These virulent recombinants have had a major impact on animal health. Recently, the development of a single nucleotide polymorphism (SNP) genotyping assay for ILTV has helped to understand ILTV recombination in laboratory settings. In this study, we applied this SNP genotyping assay to further examine ILTV recombination in the natural host. Following coinoculation of specific-pathogen-free chickens, we examined the resultant progeny for evidence of viral recombination and characterized the diversity of the recombinants over time. The results showed that ILTV replication and recombination are closely related and that the recombinant viral progeny are most diverse 4 days after coinoculation, which is the peak of viral replication. Further, the locations of recombination breakpoints in a selection of the recombinant progeny, and in field isolates of ILTV from different geographical regions, were examined following full-genome sequencing and used to identify recombination hot spots in the ILTV genome. Alphaherpesviruses are common causes of disease in people and animals. Recombination enables genome diversification in many different species of alphaherpesviruses, which can lead to the evolution of higher levels of viral virulence. Using the alphaherpesvirus infectious laryngotracheitis virus (ILTV), we performed coinfections in the natural host (chickens) to demonstrate high levels of virus recombination. Higher levels of diversity in the recombinant progeny coincided with the highest levels of virus replication. In the recombinant progeny, and in field isolates, recombination occurred at greater frequency in recombination hot spot regions of the virus genome. Our results suggest that control measures that aim to limit viral replication could offer the potential to limit virus recombination and thus the evolution of virulence. The development and use of vaccines that are focused on limiting virus replication, rather than vaccines that are focused more on limiting clinical disease, may be indicated in order to better control disease.

摘要

重组是许多感染人和动物的α疱疹病毒的一个特征。传染性喉气管炎病毒(ILTV)可导致鸡的呼吸道疾病,在全球家禽业造成重大生产损失。自然(田间)ILTV重组很普遍,特别是减毒ILTV疫苗株之间的重组以产生强毒病毒。这些强毒重组体对动物健康产生了重大影响。最近,一种针对ILTV的单核苷酸多态性(SNP)基因分型检测方法的开发有助于在实验室环境中了解ILTV重组情况。在本研究中,我们应用这种SNP基因分型检测方法进一步研究自然宿主中的ILTV重组。在对无特定病原体的鸡进行共接种后,我们检查了产生的子代是否有病毒重组的证据,并随着时间推移对重组体的多样性进行了表征。结果表明,ILTV复制与重组密切相关,重组病毒子代在共接种后4天最为多样,这也是病毒复制的高峰期。此外,在对部分重组子代以及来自不同地理区域的ILTV田间分离株进行全基因组测序后,检查了重组断点的位置,并用于识别ILTV基因组中的重组热点。α疱疹病毒是人和动物疾病的常见病因。重组使许多不同种类的α疱疹病毒的基因组多样化,这可能导致病毒毒力水平的进化。利用α疱疹病毒传染性喉气管炎病毒(ILTV),我们在自然宿主(鸡)中进行了共感染,以证明高水平的病毒重组。重组子代中更高水平的多样性与最高水平的病毒复制相吻合。在重组子代和田间分离株中,病毒基因组的重组热点区域发生重组的频率更高。我们的结果表明,旨在限制病毒复制的控制措施可能有潜力限制病毒重组,从而限制毒力的进化。为了更好地控制疾病,可能需要开发和使用侧重于限制病毒复制的疫苗,而不是更侧重于限制临床疾病的疫苗。

相似文献

引用本文的文献

本文引用的文献

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验