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Virus Evolution: Insights from an Experimental Approach

机译:病毒进化:实验方法的见解

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Viruses represent a serious problem faced by human and veterinary medicine and agronomy. New viruses are constantly emerging while old ones evolve and challenge the latest advances in antiviral pharmaceutics, thus generating tremendous social alarm, sanitary problems, and economical losses. However, they constitute very powerful tools for experimental evolution. These two faces of virology are tightly related because future antiviral treatments shall be rationally designed by considering evolutionary principles. Evidence indicates that the evolution of viruses is determined mainly by key features such as their small genomes, enormous population sizes, and short generation times, and at least for RNA viruses, large selection coefficients, antagonistic epistasis, and high mutation rates. We summarize recent advances in the field of experimental virus evolution. Increasing our understanding of the roles of selection, mutation, chance, and historical contingency on the ecology and epidemiology of viral infections could determine our ability to combat them.
机译:病毒是人类和兽药以及农学面临的一个严重问题。新病毒不断涌现,而旧病毒不断进化并挑战抗病毒药物的最新发展,从而产生了巨大的社会警报,卫生问题和经济损失。但是,它们构成了用于实验进化的非常强大的工具。病毒学的这两个方面紧密相关,因为未来的抗病毒治疗应通过考虑进化原理来合理设计。有证据表明,病毒的进化主要取决于关键特征,例如其小的基因组,庞大的种群规模和较短的生成时间,至少对于RNA病毒而言,选择系数大,拮抗上位性和突变率高。我们总结了实验性病毒进化领域的最新进展。加深我们对病毒感染的生态学和流行病学的选择,突变,偶然性和历史偶然性的作用的了解,可能决定我们抵抗病毒感染的能力。

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