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Fixation probabilities depend on life history: Fecundity, generation time and survival in a burst-death model

机译:注视概率取决于生活史:爆发死亡模型中的生殖力,世代时间和生存率

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The burst-death model has been developed to describe the life history of organisms with variable generation times and a burst of a fixed number of offspring. The model also includes an optional constant clearance rate, such as washout from a chemostat, and the possibility of sustained periods of population growth followed by severe bottlenecks, as in serial passaging. In this model, a beneficial mutation can either increase the burst rate or the burst size, or reduce the clearance rate, thus increasing survival. In this article we examine the effects of these three possible mechanisms on both the Malthusian fitness and the fixation probability of the lineage. We find that equivalent relative increases in the burst rate or burst size confer equivalent increases in the Malthusian fitness of a lineage, whereas increasing survival typically has a more moderate effect on Malthusian fitness. In contrast, for beneficial mutations that confer the same increase in fitness, mutations that increase survival are the most likely to fix, followed by mutations that increase the burst rate. Mutations that increase the burst size are the least likely to fix. These results imply that mutant lineages with the highest Malthusian fitness are not, in many cases, the most likely to escape extinction.
机译:已经开发了猝死模型来描述具有可变世代时间和固定数量后代爆发的生物的生命史。该模型还包括一个可选的恒定清除率,例如从化学恒温器中冲刷出来,以及在连续传代中,种群持续增长并随后出现严重瓶颈的可能性。在此模型中,有益的突变可以增加爆发率或爆发大小,或降低清除率,从而提高生存率。在本文中,我们研究了这三种可能的机制对马尔萨斯适应度和谱系固定概率的影响。我们发现,突发速率或突发大小的相对相对增加使谱系的马尔萨斯适应度等效增加,而提高生存率通常对马尔萨斯适应度有更中等的影响。相比之下,对于赋予相同适应性增加的有益突变,增加生存率的突变最有可能修复,其次是增加爆发率的突变。增加突发大小的突变最不可能修复。这些结果表明,在许多情况下,马尔萨斯族人适应度最高的突变谱系并非最有可能灭绝。

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