首页> 外文期刊>Evolution: International Journal of Organic Evolution >GENETIC ARCHITECTURE OF SKELETAL EVOLUTION IN EUROPEAN LAKE AND STREAM STICKLEBACK
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GENETIC ARCHITECTURE OF SKELETAL EVOLUTION IN EUROPEAN LAKE AND STREAM STICKLEBACK

机译:欧洲湖泊和斑纹ST的骨骼演化的遗传结构

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Advances in genomic techniques are greatly facilitating the study of molecular signatures of selection in diverging natural populations. Connecting these signatures to phenotypes under selection remains challenging, but benefits from dissections of the genetic architecture of adaptive divergence. We here perform quantitative trait locus (QTL) mapping using 488 F_2 individuals and 2011 single nucleotide polymorphisms (SNPs) to explore the genetic architecture of skeletal divergence in a lake-stream stickleback system from Central Europe. We find QTLs for gill raker, snout, and head length, vertebral number, and the extent of lateral plating (plate number and height). Although two large-effect loci emerge, QTL effect sizes are generally small. Examining the neighborhood of the QTL-linked SNPs identifies several genes involved in bone formation, which emerge as strong candidate genes for skeletal evolution. Finally, we use SNP data from the natural source populations to demonstrate that some SNPs linked to QTLs in our cross also exhibit striking allele frequency differences in the wild, suggesting a causal role of these QTLs in adaptive population divergence. Our study paves the way for comparative analyses across other (lake-stream) stickleback populations, and for functional investigations of the candidate genes.
机译:基因组学技术的进步极大地促进了在多样化自然种群中选择分子标记的研究。将这些特征与选择下的表型联系起来仍然具有挑战性,但是得益于对适应性发散的遗传结构的解剖。我们在这里使用488个F_2个体和2011年单核苷酸多态性(SNPs)进行定量性状基因座(QTL)定位,以探索来自中欧的湖流棘背系统中骨骼发散的遗传结构。我们发现了ra犁耙,口鼻部,头部长度,椎骨数量和侧板范围(板块数量和高度)的QTL。尽管出现了两个大效应位点,但QTL效应大小通常很小。检查与QTL连接的SNP的邻域,可以确定涉及骨骼形成的几个基因,它们是骨骼进化的强大候选基因。最后,我们使用来自自然来源种群的SNP数据证明,在我们的杂交中,一些与QTL相关的SNP在野外也表现出惊人的等位基因频率差异,表明这些QTL在适应性种群差异中起因果作用。我们的研究为其他(湖流)stick背种群的比较分析以及候选基因的功能研究铺平了道路。

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