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Meta-Analysis of Genome-Wide Scans Provides Evidence for Sex- and Site-Specific Regulation of Bone Mass

机译:全基因组扫描的荟萃分析为骨量的性别和特定部位调节提供了证据

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摘要

Several genome-wide scans have been performed to detect loci that regulate BMD, but these have yielded inconsistent results, with limited replication of linkage peaks in different studies. In an effort to improve statistical power for detection of these loci, we performed a meta-analysis of genome-wide scans in which spine or hip BMD were studied. Evidence was gained to suggest that several chromosomal loci regulate BMD in a site-specific and sex-specific manner.IntroductionBMD is a heritable trait and an important predictor of osteoporotic fracture risk. Several genome-wide scans have been performed in an attempt to detect loci that regulate BMD, but there has been limited replication of linkage peaks between studies. In an attempt to resolve these inconsistencies, we conducted a collaborative meta-analysis of genome-wide linkage scans in which femoral neck BMD (FN-BMD) or lumbar spine BMD (LS-BMD) had been studied.
机译:已经进行了几次全基因组扫描,以检测调节BMD的基因座,但结果不一致,在不同研究中连锁峰的复制受到限制。为了提高检测这些基因座的统计能力,我们进行了全基因组扫描的荟萃分析,其中研究了脊柱或髋部BMD。有证据表明,几个染色体位点以位点特异性和性别特异性方式调节BMD。简介BMD是一种遗传性状,是骨质疏松性骨折风险的重要预测因子。为了检测调节BMD的基因座,已经进行了几次全基因组扫描,但是研究之间的连接峰复制受到限制。为了解决这些矛盾,我们进行了全基因组连锁扫描的协作荟萃分析,其中研究了股骨颈BMD(FN-BMD)或腰椎BMD(LS-BMD)。

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