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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Population structure promotes the evolution of costly sex in artificial gene networks
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Population structure promotes the evolution of costly sex in artificial gene networks

机译:人口结构促进人工基因网络中昂贵性行为的演变

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We build on previous observations that Hill-Robertson interference generates an advantage of sex that, in structured populations, can be large enough to explain the evolutionary maintenance of costly sex. We employed a gene network model that explicitly incorporates interactions between genes. Mutations in the gene networks have variable effects that depend on the genetic background in which they appear. Consequently, our simulations include two costs of sex-recombination and migration loads- that were missing from previous studies of the evolution of costly sex. Our results suggest a critical role for population structure that lies in its ability to align the long- and short-term advantages of sex. We show that the addition of population structure favored the evolution of sex by disproportionately decreasing the equilibrium mean fitness of asexual populations, primarily by increasing the strength of Muller's Ratchet. Population structure also increased the ability of the short-term advantage of sex to counter the primary limit to the evolution of sex in the gene network model-recombination load. On the other hand, highly structured populations experienced migration load in the form of Dobzhansky-Muller incompatibilities, decreasing the effective rate of migration between demes and, consequently, accelerating the accumulation of drift load in the sexual populations.
机译:我们建立在以前的观察结果,罗伯森干扰产生了性行为的优势,在结构化人口中可以大到足以解释昂贵性行为的进化维护。我们使用了一种基因网络模型,明确地掺入基因之间的相互作用。基因网络中的突变具有可变的效果,这取决于它们出现的遗传背景。因此,我们的模拟包括两种性别重组和迁移载荷的成本 - 从先前的昂贵性行为演变的研究中缺失。我们的成果为人口结构表示关键作用,这些作用是对符合性行为的长期和短期优势的能力。我们表明,增加人口结构赞扬性别的演变,通过不成比例地降低无性群体的平衡平均适应性,主要是提高了Muller的棘轮的强度。人口结构还增加了性行为的能力,以对抗基因网络模型 - 重组负载中性别演变的主要限制。另一方面,高度结构化的人群经历了Dobzhansky-Muller的形式的迁移载荷,降低了后代之间的有效迁移率,从而加速了性群体中漂移负荷的积累。

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