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C57BL/6J和C3H/HeJ近交系小鼠股骨生物力学、结构和密度的遗传效应。

Genetic effects for femoral biomechanics, structure, and density in C57BL/6J and C3H/HeJ inbred mouse strains.

作者信息

Koller Daniel L, Schriefer Jennifer, Sun Qiwei, Shultz Kathryn L, Donahue Leah R, Rosen Clifford J, Foroud Tatiana, Beamer Wesley G, Turner Charles H

机构信息

Department of Medical and Molecular Genetics, Indiana University, Purdue University Indianapolis, Indianapolis, Indiana, USA.

出版信息

J Bone Miner Res. 2003 Oct;18(10):1758-65. doi: 10.1359/jbmr.2003.18.10.1758.

Abstract

UNLABELLED

Genome-wide QTL analysis for bone density, structure, and biomechanical phenotypes was performed in 999 (B6xC3H)F2 mice. Multivariate phenotypes were also derived to test for pleiotropic QTL effects. Highly significant QTLs were detected with pleiotropic effects on many of these phenotypes, and QTLs with unique effects on specific phenotypes were found as well.

INTRODUCTION

The inbred C57BL/6J (B6) and C3H/HeJ (C3H) mouse strains were previously shown to segregate quantitative trait loci (QTLs) for femoral bone density.

MATERIALS AND METHODS

The 999 s filial (F2) mouse progeny were further phenotyped for measures of femoral biomechanics (load to failure, Fu; work to failure, U; stiffness, S), structure (polar moment of inertia, Ip; moment of inertia ratio, Ir), and more specific femoral midshaft bone density measures (cortical and total vBMD). Two novel multivariate phenotypes were computed using principal component analysis, thus aiding in the exploration of pleiotropic effects of the QTLs detected.

RESULTS AND CONCLUSIONS

Results of a genome-wide analysis provided strong evidence of pleiotropic QTL effects on chromosome 4, with six of the seven primary phenotypic measures, representing femoral biomechanics, density, and structure, producing LOD scores greater than 8. Chromosomes 1, 8, 13, and 14 were also identified as harboring QTLs that affect phenotypes in two of the three aspects of bone properties. QTLs uniquely contributing to variability in biomechanical measures were identified on chromosomes 10 and 12, whereas a QTL solely affecting structure was found on chromosome 17. Analysis of the evidence for pleiotropic effects using principal component analysis revealed pleiotropic QTLs on chromosomes 4 and 14, influencing nearly all the bone phenotypes measured and revealed QTLs on chromosomes 1, 8, 13, and 17 with pleiotropic effects restricted to either density or the structure and stiffness phenotypes. The use of multivariate phenotypes has allowed us to identify pleiotropic effects of several QTLs previously linked in studies of other mouse strains and in human studies of bone mineral density and femoral structure, which will provide important insight regarding the importance of allelic variation on the entire skeleton.

摘要

未标注

对999只(B6xC3H)F2小鼠进行了全基因组QTL分析,以研究骨密度、结构和生物力学表型。还推导了多变量表型以测试多效性QTL效应。检测到对许多这些表型具有多效性效应的高度显著QTL,同时也发现了对特定表型具有独特效应的QTL。

引言

近交系C57BL/6J(B6)和C3H/HeJ(C3H)小鼠品系先前已被证明在股骨骨密度方面存在数量性状基因座(QTL)分离。

材料与方法

对999只子二代(F2)小鼠后代进一步进行表型分析,测量股骨生物力学指标(破坏载荷,Fu;破坏功,U;刚度,S)、结构指标(极惯性矩,Ip;惯性矩比,Ir)以及更具体的股骨干中部骨密度指标(皮质骨和总体积骨密度,vBMD)。使用主成分分析计算了两种新的多变量表型,从而有助于探索检测到的QTL的多效性效应。

结果与结论

全基因组分析结果提供了强有力的证据,表明4号染色体上存在多效性QTL效应,七个主要表型指标中的六个,代表股骨生物力学、密度和结构,产生的LOD分数大于8。1、8、13和14号染色体也被确定含有影响骨特性三个方面中两个方面表型的QTL。在10号和12号染色体上鉴定出对生物力学测量变异性有独特贡献的QTL,而在17号染色体上发现了一个仅影响结构的QTL。使用主成分分析对多效性效应的证据进行分析,揭示了4号和14号染色体上的多效性QTL,影响几乎所有测量的骨表型,并揭示了1、8、13和17号染色体上的多效性效应仅限于密度或结构与刚度表型。多变量表型的使用使我们能够识别先前在其他小鼠品系研究以及人类骨矿物质密度和股骨结构研究中与多个QTL相关的多效性效应,这将为等位基因变异对整个骨骼的重要性提供重要见解。

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