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Intergenerational phenotypic mixing in viral evolution

机译:病毒进化中的代际表型混合

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摘要

Viral particles (virions) are made of genomic material packaged with proteins, drawn from the pool of proteins in the parent cell. It is well known that when virion concentrations are high, cells can be coinfected with multiple viral strains that can complement each other. Viral genomes can then interact with proteins derived from different strains, in a phenomenon known as phenotypic mixing. But phenotypic mixing is actually far more common: viruses mutate very often, and each time a mutation occurs, the parent cell contains different types of viral genomes. Due to phenotypic mixing, changes in viral phenotypes can be shifted by a generation from the mutations that cause them. In the regime of evolutionary invasion and escape, when mutations are crucial for the virus to survive, this timing can have a large influence on the probability of emergence of an adapted strain. Modeling the dynamics of viral evolution in these contexts thus requires attention to the mutational mechanism and the determinants of fitness.
机译:病毒颗粒(病毒体)由与蛋白质包装在一起的基因组材料制成,从亲本细胞中的蛋白质池中提取。众所周知,当病毒体浓度高时,细胞可以被多种可以相互补充的病毒株共同感染。然后,病毒基因组可以与衍生自不同菌株的蛋白质发生相互作用,这种现象称为表型混合。但是表型混合实际上更普遍:病毒非常频繁地突变,并且每次发生突变时,亲代细胞都包含不同类型的病毒基因组。由于表型混合,病毒表型的变化可以从引起它们的突变中转移一代。在进化侵袭和逃避机制中,当突变对于病毒的生存至关重要时,这个时机会对适应菌株的出现概率产生重大影响。因此,在这些情况下对病毒进化的动力学建模需要注意突变机制和适应性决定因素。

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