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Experimental Evolution and Population Genetics of RNA Viruses

机译:RNA病毒的实验进化和种群遗传学

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Viral studies have contributed substantially to the field of experimental evolution during the last two decades. The rapid evolution of RNA viruses makes them especially suitable for investigating real-time evolution, while their small genomes facilitate the analysis of the genetic basis of evolutionary change. We review recent advances in RNA virus experimental evolution, focusing on genetic properties that differentiate them from DNA-based organisms, such as their high mutation rates, small genome sizes, low genetic robustness, and the predominance of antagonistic epistasis. We argue that these properties can explain many aspects of RNA virus evolution, including rapid evolution, marked fitness tradeoffs, frequent sequence convergences, strong deleterious effects of genetic drift, or high sensitivity to mutation accumulation.
机译:在过去的二十年中,病毒研究对实验发展领域做出了重大贡献。 RNA病毒的快速进化使其特别适合研究实时进化,而其小的基因组则有助于分析进化变化的遗传基础。我们回顾了RNA病毒实验进化的最新进展,重点是将其与基于DNA的生物区分开的遗传特性,例如它们的高突变率,小基因组大小,低遗传稳健性以及拮抗上位性。我们认为这些特性可以解释RNA病毒进化的许多方面,包括快速进化,显着的权衡取舍,频繁的序列收敛,遗传漂移的强烈有害影响或对突变积累的高度敏感性。

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