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利用体外交替宿主传播模型研究单一蓝舌病毒株的遗传多样化。

The Genetic Diversification of a Single Bluetongue Virus Strain Using an In Vitro Model of Alternating-Host Transmission.

机构信息

Department of Microbiology, Immunology, and Pathology, Colorado State University, Fort Collins, CO 80523, USA.

出版信息

Viruses. 2020 Sep 18;12(9):1038. doi: 10.3390/v12091038.

Abstract

Bluetongue virus (BTV) is an arbovirus that has been associated with dramatic epizootics in both wild and domestic ruminants in recent decades. As a segmented, double-stranded RNA virus, BTV can evolve via several mechanisms due to its genomic structure. However, the effect of BTV's alternating-host transmission cycle on the virus's genetic diversification remains poorly understood. Whole genome sequencing approaches offer a platform for investigating the effect of host-alternation across all ten segments of BTV's genome. To understand the role of alternating hosts in BTV's genetic diversification, a field isolate was passaged under three different conditions: (i) serial passages in cells, (ii) serial passages in bovine pulmonary artery endothelial cells, or (iii) alternating passages between insect and bovine cells. Aliquots of virus were sequenced, and single nucleotide variants were identified. Measures of viral population genetics were used to quantify the genetic diversification that occurred. Two consensus variants in segments 5 and 10 occurred in virus from all three conditions. While variants arose across all passages, measures of genetic diversity remained largely similar across cell culture conditions. Despite passage in a relaxed in vitro system, we found that this BTV isolate exhibited genetic stability across passages and conditions. Our findings underscore the valuable role that whole genome sequencing may play in improving understanding of viral evolution and highlight the genetic stability of BTV.

摘要

蓝舌病病毒(BTV)是一种虫媒病毒,近几十年来,它与野生和家养反刍动物的剧烈爆发性疾病有关。作为一种分段的双链 RNA 病毒,由于其基因组结构,BTV 可以通过几种机制进化。然而,BTV 的交替宿主传播周期对病毒遗传多样化的影响仍知之甚少。全基因组测序方法为研究 BTV 基因组的十个片段的所有宿主交替的影响提供了一个平台。为了了解交替宿主在 BTV 遗传多样化中的作用,对一个田间分离株在三种不同条件下进行了传代:(i)在细胞中连续传代,(ii)在牛肺动脉内皮细胞中连续传代,或(iii)在昆虫和牛细胞之间交替传代。对病毒进行了测序,并鉴定了单核苷酸变异。病毒种群遗传学的度量标准用于量化发生的遗传多样化。在来自所有三种条件的病毒中都出现了 5 号和 10 号片段的两个共识变异体。虽然在所有传代中都出现了变异体,但遗传多样性的衡量标准在细胞培养条件下基本保持相似。尽管在放松的体外系统中进行了传代,但我们发现该 BTV 分离株在传代和条件下表现出遗传稳定性。我们的研究结果强调了全基因组测序在改善对病毒进化的理解方面可能发挥的重要作用,并突出了 BTV 的遗传稳定性。

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