首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >A Recent Global Selective Sweep on the age-1 Phosphatidylinositol 3-OH Kinase Regulator of the Insulin-Like Signaling Pathway Within Caenorhabditis remanei
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A Recent Global Selective Sweep on the age-1 Phosphatidylinositol 3-OH Kinase Regulator of the Insulin-Like Signaling Pathway Within Caenorhabditis remanei

机译:最近的全球选择性扫除对Remanei内胰岛素样信号通路的1岁磷脂酰肌醇3-OH激酶调节剂的研究

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摘要

The discovery that genetic pathways can be manipulated to extend lifespan has revolutionized our understanding of aging, yet their function within natural populations remains poorly characterized. In particular, evolutionary theories of aging predict tradeoffs in resource investment toward somatic maintenance vs. reproductive output that should impose strong natural selection on genetic components that influence this balance. To explore such selective pressure at the molecular level, we examine population genetic variation in the insulin-like signaling pathway of the nematode Caenorhabditis remanei. We document a recent global selective sweep on the phosphoinositide-3-kinase pathway regulator, , the first life-extension gene to have been identified. In particular, we find that has 5−20 times less genetic variation than any other insulin-like signaling pathway components and that evolutionary signatures of selection center on the locus within its genomic environment. These results demonstrate that critical components of aging-related pathways can be subject to shifting patterns of strong selection, as predicted by theory. This highly polymorphic outcrossing species offers high-resolution, population-level analyses of molecular variation as a complement to functional genetic studies within the self-reproducing C. elegans model system.
机译:可以操纵遗传途径来延长寿命的发现彻底改变了我们对衰老的理解,但是它们在自然种群中的功能仍然缺乏很好的表征。尤其是,衰老的进化理论预测,在资源投资上要权衡躯体维持与生殖输出,这应该对影响这种平衡的遗传成分强加自然选择。为了在分子水平上探索这种选择性压力,我们研究了线虫Caenorhabditis remanei的胰岛素样信号通路中的群体遗传变异。我们记录了最近的全球选择性扫荡对phosphoinositide-3-激酶途径调节剂,第一个被确定的寿命延长基因。特别是,我们发现其遗传变异比任何其他胰岛素样信号通路成分少5-20倍,并且选择中心的进化特征位于其基因组环境内。这些结果表明,与衰老相关的途径的关键组成部分可能会受到理论选择所预测的强选择模式的转变。这种高度多态的异型物种提供了分子变异的高分辨率,群体水平分析,作为自我复制秀丽隐杆线虫模型系统内功能遗传研究的补充。

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