Institute for Integrative Systems Biology, I2SysBio (Universitat de València-CSIC), C. Catedràtic José Beltrán 2, 46980, Paterna, Spain.
Department of Physiology, Genetics and Microbiology, Universidad de Alicante, C. San Vicente del Raspeig s/n, 03690, Alicante, Spain.
Sci Rep. 2021 Mar 25;11(1):6824. doi: 10.1038/s41598-021-86375-z.
The replication machinery of most RNA viruses lacks proofreading mechanisms. As a result, RNA virus populations harbor a large amount of genetic diversity that confers them the ability to rapidly adapt to changes in their environment. In this work, we investigate whether further increasing the initial population diversity of a model RNA virus can improve adaptation to a single selection pressure, thermal inactivation. For this, we experimentally increased the diversity of coxsackievirus B3 (CVB3) populations across the capsid region. We then compared the ability of these high diversity CVB3 populations to achieve resistance to thermal inactivation relative to standard CVB3 populations in an experimental evolution setting. We find that viral populations with high diversity are better able to achieve resistance to thermal inactivation at both the temperature employed during experimental evolution as well as at a more extreme temperature. Moreover, we identify mutations in the CVB3 capsid that confer resistance to thermal inactivation, finding significant mutational epistasis. Our results indicate that even naturally diverse RNA virus populations can benefit from experimental augmentation of population diversity for optimal adaptation and support the use of such viral populations in directed evolution efforts that aim to select viruses with desired characteristics.
大多数 RNA 病毒的复制机制缺乏校对机制。因此,RNA 病毒群体具有大量的遗传多样性,使它们能够迅速适应环境变化。在这项工作中,我们研究了进一步增加模型 RNA 病毒初始群体多样性是否可以提高对单一选择压力(热失活)的适应能力。为此,我们在实验中增加了柯萨奇病毒 B3(CVB3)群体在衣壳区域的多样性。然后,我们在实验进化环境中比较了这些高多样性 CVB3 群体相对于标准 CVB3 群体获得对热失活抗性的能力。我们发现,多样性高的病毒群体在实验进化过程中使用的温度以及更极端的温度下,更能获得对热失活的抗性。此外,我们鉴定出了赋予 CVB3 衣壳对热失活抗性的突变,发现了显著的突变上位性。我们的结果表明,即使是自然多样化的 RNA 病毒群体也可以从群体多样性的实验增加中受益,以实现最佳适应,并支持在定向进化努力中使用此类病毒群体,以选择具有所需特征的病毒。