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在烟草蚀纹病毒共感染过程中,积累和毒力的差异决定了竞争的结果。

Differences in accumulation and virulence determine the outcome of competition during Tobacco etch virus coinfection.

机构信息

Instituto de Biología Molecular y Celular de Plantas, Consejo Superior de Investigaciones Científicas-UPV, València, Spain.

出版信息

PLoS One. 2011 Mar 15;6(3):e17917. doi: 10.1371/journal.pone.0017917.

Abstract

Understanding the evolution of virulence for RNA viruses is essential for developing appropriate control strategies. Although it has been usually assumed that virulence is a consequence of within-host replication of the parasite, viral strains may be highly virulent without experiencing large accumulation as a consequence of immunopathological host responses. Using two strains of Tobacco etch potyvirus (TEV) that show a negative relationship between virulence and accumulation rate, we first explored the evolution of virulence and fitness traits during simple and mixed infections. Short-term evolution experiments initiated with each strain independently confirmed the genetic and evolutionary stability of virulence and viral load, although infectivity significantly increased for both strains. Second, competition experiments between hypo- and hypervirulent TEV strains have shown that the outcome of competition is driven by differences in replication rate. A simple mathematical model has been developed to analyze the dynamics of these two strains during coinfection. The model qualitatively reproduced the experimental results using biologically meaningful parameters. Further analyses of the model also revealed a wide parametric region in which a low-fitness but hypovirulent virus can still outcompete a high-fitness but hypervirulent one. These results provide additional support to the observation that virulence and within-host replication may not necessarily be strongly tied in plant RNA viruses.

摘要

了解 RNA 病毒毒力的进化对于制定适当的控制策略至关重要。尽管通常认为毒力是寄生虫在体内复制的结果,但在没有宿主免疫病理反应导致大量积累的情况下,病毒株也可能具有高度的毒力。本研究使用两种烟草蚀纹病毒(TEV)株系,它们的毒力和积累率之间呈负相关,首先探索了在简单和混合感染中,毒力和适合度特征的进化。用每种毒株独立启动的短期进化实验证实了毒力和病毒载量的遗传和进化稳定性,尽管两种毒株的感染性都显著增加。其次,对弱毒和强毒株系之间的竞争实验表明,竞争的结果是由复制率的差异驱动的。已经开发了一个简单的数学模型来分析这两种菌株在共感染期间的动态。该模型使用有意义的生物学参数定性地再现了实验结果。对模型的进一步分析还揭示了一个宽的参数区域,在该区域内,低适合度但弱毒的病毒仍然可以胜过高适合度但强毒的病毒。这些结果为以下观察结果提供了额外的支持,即在植物 RNA 病毒中,毒力和体内复制不一定密切相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b14/3057992/df39d912cd38/pone.0017917.g001.jpg

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