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当病毒在密切相关的物种中进化时,宿主转移会导致平行的遗传变化。

Host shifts result in parallel genetic changes when viruses evolve in closely related species.

机构信息

Biosciences, College of Life & Environmental Sciences, University of Exeter, Penryn Campus, Penryn, United Kingdom.

Department of Genetics, University of Cambridge, Cambridge, United Kingdom.

出版信息

PLoS Pathog. 2018 Apr 12;14(4):e1006951. doi: 10.1371/journal.ppat.1006951. eCollection 2018 Apr.

Abstract

Host shifts, where a pathogen invades and establishes in a new host species, are a major source of emerging infectious diseases. They frequently occur between related host species and often rely on the pathogen evolving adaptations that increase their fitness in the novel host species. To investigate genetic changes in novel hosts, we experimentally evolved replicate lineages of an RNA virus (Drosophila C Virus) in 19 different species of Drosophilidae and deep sequenced the viral genomes. We found a strong pattern of parallel evolution, where viral lineages from the same host were genetically more similar to each other than to lineages from other host species. When we compared viruses that had evolved in different host species, we found that parallel genetic changes were more likely to occur if the two host species were closely related. This suggests that when a virus adapts to one host it might also become better adapted to closely related host species. This may explain in part why host shifts tend to occur between related species, and may mean that when a new pathogen appears in a given species, closely related species may become vulnerable to the new disease.

摘要

宿主转移是病原体入侵并在新宿主物种中建立的主要来源,也是新发传染病的主要来源。它们经常发生在相关的宿主物种之间,通常依赖于病原体进化出适应性,从而提高其在新宿主物种中的适应性。为了研究新宿主中的遗传变化,我们在 19 种不同的果蝇科物种中对一种 RNA 病毒(果蝇 C 病毒)进行了复制谱系的实验进化,并对病毒基因组进行了深度测序。我们发现了一个强烈的平行进化模式,即来自同一宿主的病毒谱系彼此之间的遗传相似性大于来自其他宿主物种的谱系。当我们比较在不同宿主物种中进化的病毒时,我们发现如果两个宿主物种密切相关,那么平行的遗传变化更有可能发生。这表明,当病毒适应一种宿主时,它也可能更容易适应密切相关的宿主物种。这部分解释了为什么宿主转移往往发生在相关物种之间,并且当一种新的病原体出现在特定物种中时,密切相关的物种可能容易受到新疾病的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a8b/5897010/e425c61f09dd/ppat.1006951.g001.jpg

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