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The brachymorph mouse and the developmental-genetic basis for canalization and morphological integration

机译:Brachymorph小鼠及其渠化和形态整合的发育遗传基础

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Although it is well known that many mutations influence phenotypic variability as well as the mean, the underlying mechanisms for variability effects are very poorly understood. The brachymorph (bm) phenotype results from an autosomal recessive mutation in the phosphoadenosine-phosphosulfate synthetase 2 gene (Papps2). A major cranial manifestation is a dramatic reduction in the growth of the chondrocranium which results from undersulfation of glycosaminoglycans (GAGs) in the cartilage matrix. We found that this reduction in the growth of the chondrocranium is associated with an altered pattern of craniofacial shape variation, a significant increase in phenotypic variance and a dramatic increase in morphological integration for craniofacial shape. Both effects are largest in the basicranium. The altered variation pattern indicates that the mutation produces developmental influences on shape that are not present in the wildtype. As the mutation dramatically reduces sulfation of GAGs, we infer that this influence is variation among individuals in the degree of sulfation, or variable expressivity of the mutation. This variation may be because of genetic variation at other loci that influence sulfation, environmental effects, or intrinsic effects. We infer that chondrocranial development exhibits greater sensitivity to variation in the sulfation of chondroitin sulfate when the degree of sulfation is low. At normal levels, sulfation probably contributes minimally to phenotypic variation. This case illustrates canalization in a particular developmental-genetic context.
机译:尽管众所周知,许多突变会影响表型变异性和均值,但对变异性作用的潜在机制了解甚少。 Brachymorph(bm)表型是由磷酸腺苷磷酸磷酸合成酶2基因(Papps2)中的常染色体隐性突变引起的。颅骨的主要表现是软骨基质生长的急剧减少,这是由于软骨基质中糖胺聚糖(GAG)的硫酸盐不足引起的。我们发现,软骨颅骨生长的这种减少与颅面部形状变化的模式改变,表型变异的显着增加以及颅面部形状的形态学整合显着增加有关。两种效应在碱性铀中最大。改变的变异模式表明突变对野生型不存在的形状产生发育影响。由于突变显着降低了GAG的硫酸化作用,因此我们推断这种影响是个体之间硫酸盐化程度的差异,或者是突变的可变表达性。这种变化可能是由于其他位点的遗传变异影响了硫酸盐化,环境效应或内在效应。我们推断,当硫酸化程度低时,软骨发育对硫酸软骨素的硫酸化变化表现出更大的敏感性。在正常水平下,硫酸化对表型变异的贡献可能最小。这个案例说明了特定发育遗传背景下的渠化。

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