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DYNAMICS OF HYBRID INCOMPATIBILITY IN GENE NETWORKS IN A CONSTANT ENVIRONMENT

机译:恒定环境中基因网络的混合不相容性动力学

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After an ancestral population splits into two allopatric populations, different mutations may fix in each. When pairs of mutations are brought together in a hybrid offspring, epistasis may cause reduced fitness. Such pairs are known as Bateson-Dobzhansky-Muller (BDM) incompatibilities. A well-known model of BDM incompatibility due to Orr suggests that the fitness load on hybrids should initially accelerate, and continue to increase as the number of potentially incompatible substitutions increases (the "snowball effect"). In the gene networks model, which violates a key assumption of Orr's model (independence of fixation probabilities), the snowball effect often does not occur. Instead, we describe three possible dynamics in a constant environment: (1) Stabilizing selection can constrain two allopatric populations to remain near-perfectly compatible. (2) Despite constancy of environment, punctuated evolution may obtain; populations may experience rare adaptations asynchronously, permitting incompatibility. (3) Despite stabilizing selection, developmental system drift may permit genetic change, allowing two populations to drift in and out of compatibility. We reinterpret Orr's model in terms of genetic distance. We extend Orr's model to the finite loci case, which can limit incompatibility. Finally, we suggest that neutral evolution of gene regulation in nature, to the point of speciation, is a distinct possibility.
机译:一个祖先的种群分裂成两个异源种群后,每个种群可能会固定不同的突变。当成对的突变在杂种后代中聚集在一起时,上位性可能会导致适应性降低。此类对称为Bateson-Dobzhansky-Muller(BDM)不兼容。由Orr引起的BDM不兼容的著名模型表明,杂种的适应性负载应首先加速,并随着潜在不兼容取代数的增加而继续增加(“雪球效应”)。在违反Orr模型的关键假设(固定概率独立性)的基因网络模型中,通常不会发生滚雪球效应。取而代之的是,我们描述了在恒定环境中的三种可能的动力学:(1)稳定选择可以约束两个异源种群保持近乎完美的相容性。 (2)尽管环境是不变的,但仍可能获得点点的进化;人群可能会异步经历罕见的适应,从而导致不兼容。 (3)尽管选择稳定,但发育系统的漂移可能会导致遗传变化,从而使两个种群的相容性发生漂移。我们根据遗传距离重新解释了奥尔模型。我们将Orr模型扩展到有限位点的情况,这可以限制不兼容的情况。最后,我们认为自然界中基因调控的中性进化是一种明显的可能性。

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