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The African Turquoise Killifish Genome Provides Insights into Evolution and Genetic Architecture of Lifespan

机译:非洲绿松石K鱼基因组提供生命周期进化和遗传结构的见解

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摘要

Lifespan is a remarkably diverse trait ranging from a few days to several hundred years in nature, but the mechanisms underlying the evolution of lifespan differences remain elusive. Here we de novo assemble a reference genome for the naturally short-lived African turquoise killifish, providing a unique resource for comparative and experimental genomics. The identification of genes under positive selection in this fish reveals potential candidates to explain its compressed lifespan. Several aging genes are under positive selection in this short-lived fish and long-lived species, raising the intriguing possibility that the same gene could underlie evolution of both compressed and extended lifespans. Comparative genomics and linkage analysis identify candidate genes associated with lifespan differences between various turquoise killifish strains. Remarkably, these genes are clustered on the sex chromosome, suggesting that short lifespan might have co-evolved with sex determination. Our study provides insights into the evolutionary forces that shape lifespan in nature.
机译:寿命是从几天到几百年不等的显着多样性特征,但是寿命差异演变的基础机制仍然难以捉摸。在这里,我们从头开始为天然短寿命的非洲蓝绿色kill鱼装配参考基因组,为比较和实验基因组学提供了独特的资源。对这条鱼正选择的基因的鉴定揭示了潜在的候选物,可以解释其压缩的寿命。在这种短寿命鱼类和长寿命物种中,一些衰老基因处于正选择状态,这增加了同一个基因可能成为压缩寿命和延长寿命的基础的有趣可能性。比较基因组学和连锁分析确定了与各种绿松石杀鳞鱼菌株之间的寿命差异相关的候选基因。值得注意的是,这些基因聚集在性染色体上,表明寿命短可能与性别决定共同进化。我们的研究提供了对影响自然寿命的进化力量的见识。

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