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Genetics of murine craniofacial morphology: diallel analysis of the eight founders of the Collaborative Cross

机译:鼠颅面形态的遗传学:协作十字八位创始人的透析分析

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摘要

Using eight inbred founder strains of the mouse Collaborative Cross (CC) project and their reciprocal F1 hybrids, we quantified variation in craniofacial morphology across mouse strains, explored genetic contributions to craniofacial variation that distinguish the founder strains, and tested whether specific or summary measures of craniofacial shape display stronger additive genetic contributions. This study thus provides critical information about phenotypic diversity among CC founder strains and about the genetic contributions to this phenotypic diversity, which is relevant to understanding the basis of variation in standard laboratory strains and natural populations. Craniofacial shape was quantified as a series of size‐adjusted linear dimensions (RDs) and by principal components (PC) analysis of morphological landmarks captured from computed tomography images from 62 of the 64 reciprocal crosses of the CC founder strains. We first identified aspects of skull morphology that vary between these phenotypically ‘normal’ founder strains and that are defining characteristics of these strains. We estimated the contributions of additive and various non‐additive genetic factors to phenotypic variation using diallel analyses of a subset of these strongly differing RDs and the first eight PCs of skull shape variation. We find little difference in the genetic contributions to RD measures and PC scores, suggesting fundamental similarities in the magnitude of genetic contributions to both specific and summary measures of craniofacial phenotypes. Our results indicate that there are stronger additive genetic effects associated with defining phenotypic characteristics of specific founder strains, suggesting these distinguishing measures are good candidates for use in genotype–phenotype association studies of CC mice. Our results add significantly to understanding of genotype–phenotype associations in the skull, which serve as a foundation for modeling the origins of medically and evolutionarily relevant variation.
机译:我们使用小鼠协作十字(CC)项目的8个近交始祖菌株及其倒数F1杂种,量化了不同小鼠菌株的颅面形态的变异,探讨了对区别于始祖菌株的颅面变异的遗传贡献,并测试了特定的或概括的措施颅面形状显示出较强的累加遗传贡献。因此,这项研究提供了有关CC创建者菌株之间的表型多样性以及对该表型多样性的遗传贡献的重要信息,这与理解标准实验室菌株和自然种群的变异基础有关。颅面形状被量化为一系列尺寸调整后的线性尺寸(RDs),并通过主成分(PC)分析从CC创始菌株的64个反向杂交中的62个从计算机断层摄影图像中捕获的形态标志。我们首先确定了头骨形态的各个方面,这些方面在这些表型上为“正常”的创始者菌株之间有所不同,并且定义了这些菌株的特征。我们使用这些强烈不同的RD的子集和头骨形状变化的前八个PC的透析分析来估计加性和多种非加性遗传因素对表型变异的贡献。我们发现对RD测量和PC评分的遗传贡献几乎没有差异,这表明对颅面表型的特定和总结测量的遗传贡献大小基本相似。我们的结果表明,与确定特定创始菌株的表型特征相关的遗传效应更强,表明这些区别性措施是CC小鼠基因型-表型关联研究的良好候选者。我们的研究结果大大增加了对头骨中基因型与表型之间联系的理解,这为建模医学和进化相关变异的起源奠定了基础。

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