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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Synergistic Pleiotropy Overrides the Costs of Complexity in Viral Adaptation
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Synergistic Pleiotropy Overrides the Costs of Complexity in Viral Adaptation

机译:协同多效性超越了病毒适应的复杂性成本

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Adaptive evolution progresses as a series of steps toward a multidimensional phenotypic optimum, and organismal or environmental complexity determines the number of phenotypic dimensions, or traits, under selection. Populations evolving in complex environments may experience costs of complexity such that improvement in one or more traits is impeded by selection on others. We compared the fitness effects of the first fixed mutations for populations of single-stranded DNA bacteriophage evolving under simple selection for growth rate to those of populations evolving under more complex selection for growth rate as well as capsid stability. We detected a cost of complexity manifested as a smaller growth rate improvement for mutations fixed under complex conditions. We found that, despite imposing a cost for growth rate improvement, strong complex selection resulted in the greatest overall fitness improvement, even for single mutations. Under weaker secondary selective pressures, tradeoffs between growth rate and stability were pervasive, but strong selection on the secondary trait resulted largely in mutations beneficial to both traits. Strength of selection therefore determined the nature of pleiotropy governing observed trait evolution, and strong positive selection forced populations to find mutations that improved multiple traits, thereby overriding costs incurred as a result of a more complex selective environment. The costs of complexity, however, remained substantial when considering the effects on a single trait in the context of selection on multiple traits.
机译:适应性进化是迈向多维表型最优的一系列步骤,而有机物或环境的复杂性决定了所选择表型的数量或性状。在复杂环境中进化的种群可能会经历复杂性的代价,以致于一个或多个特征的改进会因选择其他特征而受到阻碍。我们比较了第一个固定突变对单链DNA噬菌体在简单选择生长速率下进化的种群与那些在更复杂的生长速率和衣壳稳定性下进化的种群的适应性效应。我们检测到复杂性的代价,表现为在复杂条件下固定的突变的增长率降低幅度较小。我们发现,尽管为提高增长率付出了代价,但强大的复合物选择即使对于单个突变,也能带来最大的整体适应性改善。在次要选择压力较弱的情况下,生长率和稳定性之间的权衡是无处不在的,但是对次要性状的强选择在很大程度上导致了对两个性状都有利的突变。因此,选择的强度决定了支配着观察到的性状进化的多效性的性质,强大的正向选择力迫使种群寻找改善多种性状的突变,从而抵消了因更复杂的选择环境而产生的成本。但是,在选择多个性状的背景下考虑单个性状的影响时,复杂性的成本仍然很高。

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