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Lethal Mutagenesis Failure May Augment Viral Adaptation

机译:致死性诱变失败可能增强病毒适应性

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Lethal mutagenesis, the attempt to extinguish a population by elevating its mutation rate, has been endorsed in the virology literature as a promising approach for treating viral infections. In support of the concept, in vitro studies have forced viral extinction with high doses of mutagenic drugs. However, the one known mutagenic drug used on patients commonly fails to cure infections, and in vitro studies typically find a wide range of mutagenic conditions permissive for viral growth. A key question becomes how subsequent evolution is affected if the viral population is mutated but avoids extinction—Is viral adaptation augmented rather than suppressed? Here we consider the evolution of highly mutated populations surviving mutagenesis, using the DNA phage T7. In assays using inhibitory hosts, whenever resistance mutants were observed, the mutagenized populations exhibited higher frequencies, but some inhibitors blocked plaque formation by even the mutagenized stock. Second, outgrowth of previously mutagenized populations led to rapid and potentially complete fitness recovery but polymorphism was slow to decay, and mutations exhibited inconsistent patterns of change. Third, the combination of population bottlenecks with mutagenesis did cause fitness declines, revealing a vulnerability that was not apparent from mutagenesis of large populations. The results show that a population surviving high mutagenesis may exhibit enhanced adaptation in some environments and experience little negative fitness consequences in many others.
机译:致命诱变,即通过提高突变率来消灭种群的尝试,已被病毒学文献认可为治疗病毒感染的一种有前途的方法。为了支持这一概念,体外研究已经用高剂量的诱变药物迫使病毒灭绝。然而,一种已知的用于患者的诱变药物通常无法治愈感染,体外研究通常发现广泛的诱变条件允许病毒生长。一个关键问题是,如果病毒种群发生突变但避免了灭绝,那么后续进化会受到怎样的影响——病毒的适应是增强的还是抑制的?在这里,我们考虑使用DNA噬菌体T7在诱变中幸存下来的高度突变种群的进化。在使用抑制性宿主的测定中,每当观察到抗性突变体时,诱变群体表现出更高的频率,但一些抑制剂甚至通过诱变原液阻止斑块形成。其次,先前诱变种群的生长导致快速且可能完全的适应性恢复,但多态性衰减缓慢,突变表现出不一致的变化模式。第三,种群瓶颈与诱变的结合确实导致了适应度下降,揭示了大量种群诱变不明显的脆弱性。结果表明,在高诱变中幸存下来的种群在某些环境中可能表现出增强的适应能力,而在许多其他环境中几乎没有负面的适应性后果。

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