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Genetic Dissection of a QTL Affecting Bone Geometry

机译:影响骨骼几何的QTL的遗传解剖

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摘要

Parameters of bone geometry such as width, length, and cross-sectional area are major determinants of bone strength. Although these traits are highly heritable, few genes influencing bone geometry have been identified. Here, we dissect a major quantitative trait locus (QTL) influencing femur size. This QTL was originally identified in an F2 cross between the C57BL/6J-hg/hg (HG) and CAST/EiJ strains and was referred to as femur length in high growth mice 2 (Feml2). Feml2 was located on chromosome (Chr.) 9 at ∼20 cM. Here, we show that the HG.CAST-(D9Mit249-D9Mit133)/Ucd congenic strain captures Feml2. In an F2 congenic cross, we fine-mapped the location of Feml2 to an ∼6 Mbp region extending from 57.3 to 63.3 Mbp on Chr. 9. We have identified candidates by mining the complete genome sequence of CAST/EiJ and through allele-specific expression (ASE) analysis of growth plates in C57BL/6J × CAST/EiJ F1 hybrids. Interestingly, we also find that the refined location of Feml2 overlaps a cluster of six independent genome-wide associations for human height. This work provides the foundation for the identification of novel genes affecting bone geometry.
机译:骨骼几何形状的参数(例如宽度,长度和横截面积)是骨骼强度的主要决定因素。尽管这些特征具有很高的遗传性,但几乎没有发现影响骨骼几何形状的基因。在这里,我们解剖影响股骨大小的主要数量性状基因座(QTL)。此QTL最初在C57BL / 6J-hg / hg(HG)和CAST / EiJ株之间的F2杂交中鉴定,在高生长小鼠2(Feml2)中称为股骨长度。 Feml2位于20号染色体上的染色体(Chr。)9上。在这里,我们显示HG.CAST-(D9Mit249-D9Mit133)/ Ucd同系菌株捕获Feml2。在F2同基因杂交中,我们将Feml2的位置映射到Chr上从57.3 Mbp扩展到63.3 Mbp的〜6 Mbp区域。 9.我们通过挖掘CAST / EiJ的完整基因组序列,并通过C57BL / 6J×CAST / EiJ F1杂种生长板的等位基因特异性表达(ASE)分析,确定了候选基因。有趣的是,我们还发现Feml2的精确定位与六个独立的人类高度基因组范围的关联簇重叠。这项工作为鉴定影响骨骼几何形状的新基因提供了基础。

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