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首页> 外文期刊>Human Molecular Genetics >Interspecies synteny mapping identifies a quantitative trait locus for bone mineral density on human chromosome Xp22.
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Interspecies synteny mapping identifies a quantitative trait locus for bone mineral density on human chromosome Xp22.

机译:种间同态映射确定了人类染色体Xp22上骨矿物质密度的数量性状位点。

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Bone mineral density (BMD) is a complex trait with a strong genetic component and an important predictor of osteoporotic fracture risk. Here we report the use of a cross-species strategy to identify genes that regulate BMD, proceeding from quantitative trait mapping in mice to association mapping of the syntenic region in the human genome. We identified a quantitative trait locus (QTL) on the mouse X-chromosome for post-maturity change in spine BMD in a cross of SAMP6 and AKR/J mice and conducted association mapping of the syntenic region on human chromosome Xp22. We studied 76 single nucleotide polymorphisms (SNP) from the human region in two sets of DNA pools prepared from individuals with lumbar spine-BMD (LS-BMD) values falling into the top and bottom 13th percentiles of a population-based study of 3100 post-menopausal women. This procedure identified a region of significant association for two adjacent SNP (rs234494 and rs234495) within the Xp22 locus (P<0.001). Individual genotyping for rs234494 in the BMD pools confirmed the presence of an association for alleles (P=0.018) and genotypes (P=0.008). Analysis of rs234494 and rs234495 in 1053 women derived from the same population who were not selected for BMD values showed an association with LS-BMD for rs234495 (P=0.01) and for haplotypes defined by both SNP (P=0.002). Our study illustrates that interspecies synteny can be used to identify and refine QTL for complex traits and represents the first example where a human QTL for BMD regulation has been mapped using this approach.
机译:骨矿物质密度(BMD)是一个复杂的特征,具有很强的遗传成分,是预测骨质疏松性骨折风险的重要指标。在这里,我们报告了一种跨物种策略,用于识别调节BMD的基因,从小鼠的定量性状定位到人类基因组中同义区域的关联定位。我们在小鼠X染色体上针对SAMP6和AKR / J小鼠杂交后的脊柱BMD的成熟度变化确定了一个定量性状基因座(QTL),并对人染色体Xp22上的同义区域进行了关联映射。我们研究了人类DNA中的76种单核苷酸多态性(SNP),该两组DNA池是从腰椎-BMD(LS-BMD)值落入基于人群的研究(3100年后)的最高和最低第13个百分位的个体制备的-绝经期妇女。此过程确定了Xp22基因座中两个相邻SNP(rs234494和rs234495)的显着关联区域(P <0.001)。 BMD库中rs234494的个体基因分型证实了等位基因(P = 0.018)和基因型(P = 0.008)的关联。对1053名来自同一人群的未选择BMD值的女性中的rs234494和rs234495进行分析,结果显示rs234495(P = 0.01)和两个SNP定义的单倍型均与LS-BMD相关(P = 0.002)。我们的研究表明,种间同构可用于识别和完善复杂性状的QTL,并代表使用该方法绘制了用于BMD调节的人类QTL的第一个例子。

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