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首页> 外文期刊>Ecology and Evolution >Chromosomal rearrangements, phenotypic variation and modularity: a case study from a contact zone between house mouse Robertsonian races in Central Italy
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Chromosomal rearrangements, phenotypic variation and modularity: a case study from a contact zone between house mouse Robertsonian races in Central Italy

机译:染色体重排,表型变异和模块性:来自意大利中部罗伯逊族之间的接触区的案例研究

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Abstract The Western European house mouse, Mus musculus domesticus , is well-known for the high frequency of Robertsonian fusions that have rapidly produced more than 50 karyotipic races, making it an ideal model for studying the mechanisms of chromosomal speciation. The mouse mandible is one of the traits studied most intensively to investigate the effect of Robertsonian fusions on phenotypic variation within and between populations. This complex bone structure has also been widely used to study the level of integration between different morphogenetic units. Here, with the aim of testing the effect of different karyotypic assets on the morphology of the mouse mandible and on its level of modularity, we performed morphometric analyses of mice from a contact area between two highly metacentric races in Central Italy. We found no difference in size, while the mandible shape was found to be different between the two Robertsonian races, even after accounting for the genetic relationships among individuals and geographic proximity. Our results support the existence of two modules that indicate a certain degree of evolutionary independence, but no difference in the strength of modularity between chromosomal races. Moreover, the ascending ramus showed more pronounced interpopulation/race phenotypic differences than the alveolar region, an effect that could be associated to their different polygenic architecture. This study suggests that chromosomal rearrangements play a role in the house mouse phenotypic divergence, and that the two modules of the mouse mandible are differentially affected by environmental factors and genetic makeup.
机译:摘要西欧家鼠(Mus musculus domesticus)以罗伯逊融合的高频率而闻名,该融合迅速产生了50多个核型小种,使其成为研究染色体形态形成机理的理想模型。小鼠下颌骨是最深入研究的特征之一,用于研究罗伯逊融合蛋白对种群内和种群之间表型变异的影响。这种复杂的骨骼结构也已广泛用于研究不同形态发生单元之间的整合水平。在这里,目的是测试不同核型资产对小鼠下颌骨形态及其模块水平的影响,我们从意大利中部两个高度亚中心种族之间的接触区域进行了小鼠形态分析。我们发现大小没有差异,而两个罗伯逊氏族之间的下颌骨形状也有所不同,即使考虑了个体之间的遗传关系和地理邻近性也是如此。我们的结果支持两个模块的存在,这些模块指示一定程度的进化独立性,但染色体小族之间的模块化强度没有差异。而且,上升的支核比群体的肺泡区域表现出更明显的种群间/种族表型差异,这种效应可能与它们不同的多基因结构有关。这项研究表明,染色体重排在家鼠表型差异中起作用,并且小鼠下颌骨的两个模块受环境因素和遗传组成的差异影响。

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