Pavličev Mihaela, Mitteroecker Philipp, Gonzalez Paula M, Rolian Campbell, Jamniczky Heather, Villena Fernando Pardo-Manuel, Marcucio Ralph, Spritz Richard, Hallgrimsson Benedikt
Cincinnati Children's Hospital Medical Center and University of Cincinnati, Cincinnati, Ohio.
Department of Theoretical Biology, University of Vienna, Vienna, Austria.
J Exp Zool B Mol Dev Evol. 2016 Dec;326(8):474-488. doi: 10.1002/jez.b.22722. Epub 2017 Jan 18.
Development translates genetic variation into a multivariate pattern of phenotypic variation, distributing it among traits in a nonuniform manner. As developmental processes are largely shared within species, this suggests that heritable phenotypic variation will be patterned similarly, in spite of the different segregating alleles. To investigate developmental effect on the variational pattern in the shape of the mouse skull across genetically differentiated lines, we employed the full set of reciprocal crosses (a.k.a. diallel) between eight inbred mouse strains of the Collaborative Cross Project. We used geometric morphometrics and multivariate analysis to capture cranial size and shape changes in 8 parentals and their 54 F1 crosses. The high heterozygosity generated in the F1 crosses allowed us to compare the multivariate deviations of the F1 phenotypes from the expected midparental phenotypes in different haplotype combinations. In contrast to body weight, we found a high degree of nonadditive deviation in craniofacial shape. Whereas the phenotypic and genetic divergence of parental strains manifested in high dimensionality of additive effects, the nonadditive deviations exhibited lesser dimensionality and in particular a strikingly coherent direction in shape space. We interpret this finding as evidence for a strong structuring effect of a relatively small set of developmental processes on the mapping of genetic to phenotypic variation.
发育将遗传变异转化为多变量的表型变异模式,并以非均匀的方式将其分布于各个性状之间。由于发育过程在物种内部基本是共享的,这表明尽管存在不同的分离等位基因,可遗传的表型变异仍将呈现相似的模式。为了研究发育对遗传分化品系间小鼠颅骨形状变异模式的影响,我们利用了协作杂交项目中八个近交小鼠品系之间的全套正反交组合(即双列杂交)。我们使用几何形态计量学和多变量分析来捕捉8个亲本及其54个F1杂交后代的颅骨大小和形状变化。F1杂交后代中产生的高杂合性使我们能够比较不同单倍型组合中F1表型相对于预期中亲本表型的多变量偏差。与体重不同,我们发现颅面形状存在高度的非加性偏差。亲本品系的表型和遗传差异表现为加性效应的高维度,而非加性偏差则表现出较低的维度,尤其是在形状空间中呈现出惊人的一致方向。我们将这一发现解释为相对少量的发育过程对遗传变异到表型变异的映射具有强大结构化效应的证据。