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The population genetics of adaptation on correlated fitness landscapes: The block model

机译:相关适应度景观适应的种群遗传学:块模型

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Several recent theoretical studies of the genetics of adaptation have focused on the mutational landscape model, which considers evolution on rugged fitness landscapes (i.e., ones having many local optima). Adaptation in this model is characterized by several simple results. Here I ask whether these results also hold on correlated fitness landscapes, which are smoother than those considered in the mutational landscape model. In particular, I study the genetics of adaptation in the block model, a tunably rugged model of fitness landscapes. Considering the scenario in which adaptation begins from a high fitness wild-type DNA sequence, I use extreme value theory and computer simulations to study both single adaptive steps and entire adaptive walks. I show that all previous results characterizing single steps in adaptation in the mutational landscape model hold at least approximately on correlated landscapes in the block model; many entire-walk results, however, do not.
机译:最近关于适应遗传学的一些理论研究都集中在突变景观模型上,该模型考虑了在崎fitness的健身景观(即具有许多局部最优值的景观)上的进化。该模型的适应性特征在于几个简单的结果。在这里,我问这些结果是否也适用于相关的适应度景观,该适应性景观比突变景观模型中考虑的平滑度更好。特别是,我在块模型中研究了适应的遗传学,块模型是健身景观的一种非常坚固的模型。考虑到适应从高适应性野生型DNA序列开始的场景,我使用极值理论和计算机模拟来研究单个适应性步骤和整个适应性步行。我表明,所有先前描述突变景观模型中适应的单个步骤的结果至少在块模型中的相关景观上至少都存在。但是,许多遍历结果却没有。

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