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Refined QTLs of osteoporosis-related traits by linkage analysis with genome-wide SNPs: Framingham SHARe.

机译:通过与全基因组SNP的连锁分析来完善骨质疏松症相关性状的QTL:Framingham SHARe。

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Genome-wide association studies (GWAS) using high-density array of single-nucleotide polymorphisms (SNPs) offer an unbiased strategy to identify new candidate genes for osteoporosis. We used a subset of autosomal SNPs from the Affymetrix 500K+50K SNP GeneChip marker set to examine genetic linkage with multiple highly heritable osteoporosis-related traits, including BMD of the hip and spine, heel ultrasound (attenuation and speed of sound), and geometric indices of the hip, in two generations from the Framingham Osteoporosis Study. Variance component linkage analysis was performed using normalized residuals (adjusted for age, height, BMI, and estrogen status in women). Multipoint linkage analyses produced LOD scores > or =3.0 for BMD on chromosomes (chr.) 9 and 11 and for ultrasound speed of sound on chr. 5. Hip geometric traits were linked with higher LOD scores, such as with shaft width on chr. 4 (LOD=3.9) and chr. 16 (LOD=3.8) and with shaft section modulus on chr. 22 (LOD=4.0). LOD score > or =5.0 was obtained for femoral neck width on chr. 7. In conclusion, with an SNP-based linkage approach, we identified several novel potential QTLs and confirmed previously identified chromosomal regions linked to bone mass and geometry. Subsequent focus on the spectrum of genetic polymorphisms in these refined regions may contribute to finding variants predisposing to osteoporosis.
机译:使用高密度单核苷酸多态性(SNP)阵列的全基因组关联研究(GWAS)提供了一种公正的策略来鉴定骨质疏松症的新候选基因。我们使用了Affymetrix 500K + 50K SNP GeneChip标记物中的常染色体SNP的子集来检查与多种高度遗传性骨质疏松相关性状的遗传连锁,包括髋部和脊柱的BMD,足跟超声(声音的衰减和速度)以及几何弗雷明汉骨质疏松研究的两代人的髋关节指数。使用归一化的残差(针对年龄,身高,BMI和女性的雌激素状况进行调整)进行方差成分连锁分析。对于染色体(chr。)9和11上的BMD以及chr上声音的超声速度,多点链接分析得出LOD得分>或= 3.0。 5.髋关节的几何特征与较高的LOD得分相关,例如与chr上的杆身宽度相关。 4(LOD = 3.9)和chr。 16(LOD = 3.8),轴截面模数为chr。 22(LOD = 4.0)。在chr上获得股骨颈宽度的LOD得分>或= 5.0。 7.总而言之,采用基于SNP的连锁方法,我们鉴定了几种新颖的潜在QTL,并确认了先前鉴定的与骨量和几何形状有关的染色体区域。随后关注这些精制区域中的遗传多态性谱可能有助于发现易患骨质疏松症的变异。

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