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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Age Specificity of Inbreeding Load in Drosophila melanogaster and Implications For the Evolution of Late-Life Mortality Plateaus
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Age Specificity of Inbreeding Load in Drosophila melanogaster and Implications For the Evolution of Late-Life Mortality Plateaus

机译:果蝇近亲繁殖的年龄特异性及其对后期死亡率高原演变的启示

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Current evolutionary theories explain the origin of aging as a byproduct of the decline in the force of natural selection with age. These theories seem inconsistent with the well-documented occurrence of late-life mortality plateaus, since under traditional evolutionary models mortality rates should increase monotonically after sexual maturity. However, the equilibrium frequencies of deleterious alleles affecting late life are lower than predicted under traditional models, and thus evolutionary models can accommodate mortality plateaus if deleterious alleles are allowed to have effects spanning a range of neighboring age classes. Here we test the degree of age specificity of segregating alleles affecting fitness in Drosophila melanogaster . We assessed age specificity by measuring the homozygous fitness effects of segregating alleles across the adult life span and calculated genetic correlations of these effects across age classes. For both males and females, we found that allelic effects are age specific with effects extending over 1–2 weeks across all age classes, consistent with modified mutation-accumulation theory. These results indicate that a modified mutation-accumulation theory can both explain the origin of senescence and predict late-life mortality plateaus.
机译:当前的进化理论将衰老的起源解释为自然选择力随年龄下降的副产品。这些理论似乎与文献记载的后期死亡高原期不一致,因为在传统的进化模型下,性成熟后死亡率应单调增加。但是,影响晚年生活的有害等位基因的平衡频率低于传统模型下的预测频率,因此,如果允许有害等位基因具有跨越一系列相邻年龄类别的影响,则进化模型可以适应死亡率的平稳期。在这里,我们测试了影响果蝇果蝇分离等位基因年龄特异性的程度。我们通过测量成年寿命中分离等位基因的纯合适应性效应,并计算这些效应在各个年龄段的遗传相关性,来评估年龄特异性。对于男性和女性,我们发现等位基因效应是特定于年龄的,在所有年龄段中效应都延伸超过1-2周,这与改良的突变积累理论一致。这些结果表明,改良的突变积累理论既可以解释衰老的起源,也可以预测后期死亡率的平稳期。

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