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Roles of young serine-endopeptidase genes in survival and reproduction revealed rapid evolution of phenotypic effects at adult stages

机译:年轻的丝氨酸内肽酶基因在存活和繁殖中的作用揭示了成年期表型效应的快速演变

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Our recent study found that 30% of young genes were essential for viability that determines development through stages from embryo to pupae in Drosophila melanogaster, revealing rapidly evolving genetic components involved in the evolution of development. Meanwhile, many young genes did not produce complete lethal phenotype upon constitutive knockdown, suggesting that they may not be essential for viability. These genes, nevertheless, were fixed by natural selection, and might play an important functional role in their adult stage. Here we present a detailed demonstration that a newly duplicated serine-type endopeptidase gene that originated in the common ancestor in the D. melanogaster subgroup 6 similar to 11 million years ago, named Slfc, revealing a strong effect in post-eclosion. Although animals survived constitutive knockdown of Slfc to adult stage, however, their life span reduced significantly by two-thirds compared to wild-type. Furthermore, the Slfc-RNAi males dropped their fertility to less than 10% of the wild-type level, with over 80% of these males being sterile. The Slfc-RNAi females, on the other hand, showed a slight reduction in fertility. This case study demonstrates that a young gene can contribute to fitness on the three important traits of life history in adults, including the life expectancy, male fertility and female fertility, suggesting that new genes can quickly evolve and impact multiple phenotypes.
机译:我们最近的研究发现,果蝇中有30%的年轻基因对于生存力至关重要,而生存力决定了从胚到p的发育过程,揭示了发育过程中迅速进化的遗传成分。同时,许多年轻基因在组成性敲低后并未产生完整的致死表型,这表明它们可能不是生存力所必需的。但是,这些基因是通过自然选择固定的,可能在成年阶段起着重要的功能作用。在这里,我们提供一个详细的证明,一个新复制的丝氨酸型内肽酶基因起源于D. melanogaster亚组6的共同祖先,类似于一千一百万年前,命名为Slfc,揭示了在去除后的强大作用。尽管动物能够抵抗Slfc的组成型敲减直至成年阶段,但是与野生型动物相比,它们的寿命显着减少了三分之二。此外,Slfc-RNAi雄性的育性下降到野生型水平的不到10%,其中80%以上的雄性不育。另一方面,Slfc-RNAi雌性的生育力略有下降。这项案例研究表明,年轻基因可以促进成年人生活史的三个重要特征的适应,包括预期寿命,男性生育能力和女性生育能力,这表明新基因可以迅速进化并影响多种表型。

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