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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Polyandry and the decrease of a selfish genetic element in a wild house mouse population
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Polyandry and the decrease of a selfish genetic element in a wild house mouse population

机译:一妻多夫制和自私遗传因子在野生家鼠种群中的减少

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摘要

Despite deleterious effects on individuals, the t haplotype is a selfish genetic element present in many house mouse populations. By distorting the transmission ratio, +/t males transmit the t haplotype to up to 90% of their offspring. However, t/t individuals perish in utero. Theoretical models based on these properties predict a much higher t frequency than observed, leading to the t paradox. Here, we use empirical field data and theoretical approaches to investigate whether polyandry is a female counterstrategy against the negative fitness consequences of such distorters. We found a significant decrease of the t frequency over a period of 5.5 years that cannot be explained by the effect of transmission ratio distortion and recessive lethals, despite significantly higher life expectancy of +/t females compared to +/+ females. We quantified life-history data and homozygous and heterozygous fitness effects. Population subdivision and inbreeding were excluded as evolutionary forces influencing the t system. The possible influence of polyandry on the t system was then investigated by applying a stochastic model to this situation. Simulations show that polyandry can explain the observed t dynamics, making it a biologically plausible explanation for low t frequencies in natural populations in general.
机译:尽管对个体有有害影响,但单倍型是许多家鼠种群中存在的自私遗传因素。通过扭曲传播比率,+ / t雄性将t型型传播至其后代的90%。但是,t / t个人在子宫内死亡。基于这些特性的理论模型预测t频率要比观察到的高得多,从而导致t悖论。在这里,我们使用经验数据和理论方法来研究一夫多妻制是否是针对此类扭曲者负面适应后果的女性对策。我们发现5.5年内t频率显着下降,尽管+ / t雌性的预期寿命显着高于+ / +雌性,但无法通过传动比失真和隐性致死率的影响来解释。我们量化了生活史数据以及纯合和杂合适应性影响。人口细分和近交作为影响t系统的进化力量被排除在外。然后通过在这种情况下应用随机模型来研究一妻多夫制对t系统的可能影响。模拟表明,一妻多夫制可以解释观察到的t动力学,因此对于一般自然种群中的低t频率而言,这是生物学上合理的解释。

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