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利用 C57BL/6 与 Mus spretus 种系之间的种间重组近交系对颅骨形状变异和形态整合进行遗传分析。

Genetic analysis of skull shape variation and morphological integration in the mouse using interspecific recombinant congenic strains between C57BL/6 and mice of the mus spretus species.

机构信息

Unité postulante de Génétique fonctionnelle de la Souris, CNRS URA 2578, Institut Pasteur, 75724 Paris cedex 15, France.

出版信息

Evolution. 2009 Oct;63(10):2668-86. doi: 10.1111/j.1558-5646.2009.00737.x. Epub 2009 May 28.

Abstract

To assess the genetic basis of the skull shape variation and morphological integration in mice, we have used a tool based on the cross between the distantly related mouse species Mus spretus (SEG/Pas strain) and the laboratory strain C57BL/6 called interspecific recombinant congenic strains (IRCSs). The genome of each IRCS consists on average of 1.3% of SEG/Pas derived sequences, located on multiple chromosomes as small-sized, DNA segments. Quantitative trait loci (QTL) on the skull shape, separated into dorsal and ventral sides, were analyzed in 17 IRCSs by a Procrustes superimposition method using 3D landmarks. The shapes of 16 strains differed significantly from C57BL/6. Discrepancy in the QTLs effects was found between the dorsal side and the anterior region of the ventral side due to a differential effect of the SEG/Pas alleles on the skull shape. A comprehensive analysis of all allelic combinations of the BCG-66H strain showed strong epistatic interactions between SEG/Pas segment acting on both skull sides. Epistatic pleiotropy and covariation between sides were dependent in SEG/Pas alleles direction and contributed to the strong morphological integration between sides. Introduction of Mus spretus alleles in a C57BL/6 background induced strong morphological changes mostly in SEG/Pas alleles direction and provided evidence for high level of morphological integration.

摘要

为了评估小鼠头骨形状变异和形态整合的遗传基础,我们使用了一种基于远缘种系(野生型小家鼠)和实验室品系 C57BL/6 杂交的工具,称为种间重组近交系(IRCS)。每个 IRCS 的基因组平均包含 1.3%来自野生型小家鼠的序列,这些序列位于多个染色体上,呈小型 DNA 片段形式存在。通过使用 3D 标志进行 Procrustes 叠加方法,我们在 17 个 IRCS 中分析了头骨形状的数量性状基因座(QTL),分为颅背侧和颅腹侧。16 个品系的形状与 C57BL/6 明显不同。由于野生型小家鼠等位基因对颅骨形状的不同影响,颅背侧和颅腹侧前区的 QTL 效应存在差异。对 BCG-66H 品系所有等位基因组合的综合分析表明,作用于颅骨两侧的野生型小家鼠片段之间存在强烈的上位性相互作用。上位性多效性和侧面之间的协变取决于野生型小家鼠等位基因的方向,并导致两侧之间强烈的形态整合。在 C57BL/6 背景下引入野生型小家鼠等位基因会引起强烈的形态变化,主要是在野生型小家鼠等位基因的方向上,并提供了高水平形态整合的证据。

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