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首页> 外文期刊>Molecular ecology >Insights into the genetic architecture of sexual dimorphism from an interspecific cross between two diverging Silene (Caryophyllaceae) species
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Insights into the genetic architecture of sexual dimorphism from an interspecific cross between two diverging Silene (Caryophyllaceae) species

机译:从两种发散硅烷(蛛网糖叶片)物种之间的间隙交叉的性二晶的遗传建筑洞察

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The evolution of sexual dimorphism in species with separate sexes is influenced by the resolution of sexual conflicts creating sex differences through genetic linkage or sex-biased expression. Plants with different degrees of sexual dimorphism are thus ideal to study the genetic basis of sexual dimorphism. In this study we explore the genetic architecture of sexual dimorphism between Silene latifolia and Silene dioica. These species have chromosomal sex determination and differ in the extent of sexual dimorphism. To test whether QTL for sexually dimorphic traits have accumulated on the sex chromosomes and to quantify their contribution to species differences, we create a linkage map and performed QTL analysis of life history, flower and vegetative traits using an unidirectional interspecific F2 hybrid cross. We found support for an accumulation of QTL on the sex chromosomes and that sex differences explained a large proportion of the variance between species, suggesting that both natural and sexual selection contributed to species divergence. Sexually dimorphic traits that also differed between species displayed transgressive segregation. We observed a reversal in sexual dimorphism in the F2 population, where males tended to be larger than females, indicating that sexual dimorphism is constrained within populations but not in recombinant hybrids. This study contributes to the understanding of the genetic basis of sexual dimorphism and its evolution in Silene.
机译:具有单独性别的物种中性别二态性的演变受到性冲突的影响,通过遗传联系或性偏见的表达产生性别差异。因此,性别二态度不同程度的植物是学习性二态性的遗传基础的理想选择。在这项研究中,我们探讨了硅烯拉脱米卡和硅烯二氧化硅之间的性关系的遗传建筑。这些物种具有染色体性别测定和性二态度的程度。为了测试QTL是否累积在性染色体上积累并量化了它们对物种差异的贡献,我们使用单向三角特异性F2杂种交叉交叉交叉进行联系地图并进行QTL分析生命历史,花卉和植物性状的QTL分析。我们发现对性染色体的QTL积累的支持,性别差异解释了物种之间的大部分差异,这表明自然和性选择都有助于物种差异。物种之间的性别二态性状显示越来越多的侵袭分离。我们观察到F2人群中的性二态性中的逆转,其中雄性往往大于女性,表明性二晶态受到群体内的约束,但不在重组杂种中受到限制。该研究有助于了解性二态性的遗传基础及其在硅烯中的演化。

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