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Genomewide linkage scan for combined obesity phenotypes using principal component analysis.

机译:全基因组连锁扫描使用主要成分分析组合肥胖表型。

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Traditional whole genome linkage scans for obesity were usually performed for a number of correlated obesity related phenotypes separately without considering their correlations. The purpose of this study was to identify quantitative trait loci (QTLs) underlying variations in multiple correlated obesity phenotypes. We performed principal component analysis (PCA) for four highly correlated obesity phenotypes (body mass index [BMI], fat mass, percentage of fat mass [PFM], and lean mass) in a sample of 427 pedigrees (comprising 3,273 individuals) and generated two independent principal components (PC1 and PC2). A whole genome linkage scan (WGS) was then conducted for PC1 and PC2. For PC1, the strongest linkage signal was identified on chromosome 20p12 (LOD = 2.67). For PC2, two suggestive linkages were found on 5q35 (LOD = 2.03) and 7p22 (LOD = 2.18). This study provided evidence supporting several previously identified linkage regions for obesity (e.g., 1p36, 6p23 and 7q34). In addition, our approach by linear combination of highly correlated obesity phenotypes identified several novel QTLs which were not found in genome linkage scans for individual phenotypes.
机译:传统的肥胖全基因组连锁扫描通常是针对许多与肥胖相关的表型分别进行的,而不考虑它们之间的相关性。这项研究的目的是确定潜在的多种相关的肥胖表型变异的数量性状位点(QTL)。我们在427个家谱(包含3,273个个体)的样本中对四种高度相关的肥胖表型(体重指数[BMI],脂肪质量,脂肪质量百分比[PFM]和瘦肉质量)进行了主成分分析(PCA),并生成了两个独立的主要组件(PC1和PC2)。然后对PC1和PC2进行了全基因组连锁扫描(WGS)。对于PC1,在20p12染色体上鉴定出最强的连锁信号(LOD = 2.67)。对于PC2,在5q35(LOD = 2.03)和7p22(LOD = 2.18)上发现了两个暗示性联系。这项研究提供了证据支持先前确定的肥胖连锁区域(例如1p36、6p23和7q34)。此外,我们通过高度相关的肥胖表型的线性组合方法鉴定了几种新颖的QTL,这些在基因组连锁扫描中未发现单个表型。

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