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表型变异性与颅面畸形:唇裂小鼠模型中形状变异增加

Phenotypic variability and craniofacial dysmorphology: increased shape variance in a mouse model for cleft lip.

作者信息

Parsons Trish E, Kristensen Erika, Hornung Lynnette, Diewert Virginia M, Boyd Steven K, German Rebecca Z, Hallgrímsson Benedikt

机构信息

Biological Anthropology Graduate Program and Bone and Joint Institute, University of Calgary, Canada.

出版信息

J Anat. 2008 Feb;212(2):135-43. doi: 10.1111/j.1469-7580.2007.00845.x. Epub 2007 Dec 17.

DOI:10.1111/j.1469-7580.2007.00845.x
PMID:18093101
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2408978/
Abstract

Cleft lip and palate (CL/P), as is true of many craniofacial malformations in humans, is etiologically complex and highly variable in expression. A/WySn mice are an intriguing model for human CL/P because they develop this dysmorphology with a variable expression pattern, incomplete penetrance and frequent unilateral expression on a homogeneous genetic background. The developmental basis for this variation in expression is unknown, but of great significance for understanding such expression patterns in humans. As a step towards this goal, this study used three-dimensional geometric morphometric and novel high throughput morphometric techniques based on three-dimensional computed microtomography of mouse embryos to analyze craniofacial shape variation during primary palate formation. Our analysis confirmed previous findings based on two-dimensional analyses that the midface in A/WySn embryos, and the maxillary prominence in particular, is relatively reduced in size and appears to be developmentally delayed. In addition, we find that shape variance is increased in A/WySn embryos during primary palate formation compared to both C57BL/6J mice and the F1 crosses between these strains. If the reduction in midfacial growth caused by the Wnt9b hypomorphic mutation pushes A/WySn mice closer on average to the threshold for cleft lip formation, the elevated shape variance may explain why some, but not all, embryos develop the dysmorphology in a genetically homogeneous inbred line of mice.

摘要

唇腭裂(CL/P),与人类许多颅面畸形一样,病因复杂,表现高度可变。A/WySn小鼠是人类CL/P的一个有趣模型,因为它们在同质遗传背景下以可变的表达模式、不完全外显率和频繁的单侧表达发展出这种畸形。这种表达差异的发育基础尚不清楚,但对于理解人类的这种表达模式具有重要意义。作为朝着这一目标迈出的一步,本研究使用三维几何形态测量和基于小鼠胚胎三维计算机显微断层扫描的新型高通量形态测量技术,分析了原发腭形成过程中的颅面形状变化。我们的分析证实了基于二维分析的先前发现,即A/WySn胚胎的中面部,特别是上颌突,尺寸相对减小,并且似乎发育延迟。此外,我们发现与C57BL/6J小鼠以及这些品系之间的F1杂交种相比,A/WySn胚胎在原发腭形成过程中的形状变异增加。如果由Wnt9b亚效突变引起的中面部生长减少使A/WySn小鼠平均更接近唇裂形成的阈值,那么升高的形状变异可能解释了为什么在基因同质的近交系小鼠中,一些但不是所有胚胎会出现这种畸形。

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