首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Genome-Wide Association Mapping of Phenotypic Traits Subject to a Range of Intensities of Natural Selection in Timema cristinae*
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Genome-Wide Association Mapping of Phenotypic Traits Subject to a Range of Intensities of Natural Selection in Timema cristinae*

机译:表型性状的全基因组关联图谱(根据cristinae的自然选择强度范围而定)*

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摘要

The genetic architecture of adaptive traits can reflect the evolutionary history of populations and also shape divergence among populations. Despite this central role in evolution, relatively little is known regarding the genetic architecture of adaptive traits in nature, particularly for traits subject to known selection intensities. Here we quantitatively describe the genetic architecture of traits that are subject to known intensities of differential selection between host plant species in Timema cristinae stick insects. Specifically, we used phenotypic measurements of 10 traits and 211,004 single-nucleotide polymorphisms (SNPs) to conduct multilocus genome-wide association mapping. We identified a modest number of SNPs that were associated with traits and sometimes explained a large proportion of trait variation. These SNPs varied in their strength of association with traits, and both major and minor effect loci were discovered. However, we found no relationship between variation in levels of divergence among traits in nature and variation in parameters describing the genetic architecture of those same traits. Our results provide a first step toward identifying loci underlying adaptation in T. cristinae. Future studies will examine the genomic location, population differentiation, and response to selection of the trait-associated SNPs described here.
机译:适应性状的遗传结构可以反映种群的进化历史,也可以塑造种群之间的差异。尽管在进化中起着核心作用,但人们对自然界中适应性状的遗传结构知之甚少,特别是对于具有已知选择强度的性状。在这里,我们定量地描述了性状的遗传结构,这些性状要受到已知的Timema cristinae竹节虫宿主植物之间差异选择强度的影响。具体来说,我们使用了10个性状和211,004个单核苷酸多态性(SNP)的表型测量来进行多基因座全基因组关联映射。我们鉴定出与性状相关的少量SNP,有时解释了大部分性状变异。这些SNP与性状的关联强度各不相同,并且发现了主要和次要作用基因座。然而,我们发现自然性状之间的差异水平差异与描述相同性状遗传结构的参数差异之间没有关系。我们的结果提供了第一步,以识别cri。cristinae中潜在的适应位点。未来的研究将检查基因组位置,种群分化以及对此处描述的与性状相关的SNP的选择的反应。

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