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Heritability and shared environment estimates for myopia and associated ocular biometric traits: the Genes in Myopia (GEM) family study.

机译:近视及相关眼部生物特征的遗传力和共享环境估计:《近视基因》(GEM)家庭研究。

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To examine the familial correlations, heritability (h(2)) and common environmental components (c(2)) of myopia and ocular biometric traits (all treated as continuous outcomes) in families collected through the Genes in Myopia (GEM) family study in Australia. A total of 132 pedigrees (723 participants) were recruited for this study. All individuals completed a risk factor questionnaire and underwent a detailed eye examination including spherical equivalent (SphE) and ocular biometric measurements of axial length (AL), anterior chamber depth (ACD) and corneal curvature (CC). Familial correlations were calculated and h(2) and c(2) were estimated using a variance component model that assumes a multivariate t distribution within each pedigree. Two definitions of common environments (c(2)) were considered: nuclear family (current) shared environment (Model 1) and sib-ship (childhood) shared environment (Model 2). Population ascertainment adjustment was performed using the Blue Mountains eye study dataset. The trends observed for familial correlations suggested that SphE is influenced by both environmental and genetic factors whereas AL, ACD and CC are predominantly genetically determined. This was largely confirmed by variance components modelling. Heritability estimates (adjusted for age, sex and years of education) from the best fitting ACE model (Model 2, childhood shared environment) were 0.50 +/- 0.05 for SphE, 0.73 +/- 0.04 for AL, 0.78 +/- 0.04 for ACD and 0.16 +/- 0.06 for CC. Childhood environmental effects were significant with c(2) estimated to be 0.33 +/- 0.04 for SphE, 0.06 +/- 0.03 for AL, 0.22 +/- 0.04 for ACD and 0.10 +/- 0.05 for CC. Age was associated with SphE, total years of education was associated with AL and sex was associated with all traits studied. We used a novel and conservative approach to account for and estimate common environmental effects by specifying either nuclear family or sib-ship environment when estimating heritability estimates and showed that all traits examined (SphE,AL, ACD and CC) are heritable, thus reflecting a genetic component. These traits therefore all represent candidates for quantitative trait linkage analyses.
机译:为了研究近视眼的基因家族(GEM)家庭研究收集的近视眼的家族相关性,遗传力(h(2))和常见环境成分(c(2))和眼生物特征(均视为连续结果)。澳大利亚。总共招募了132个谱系(723名参与者)进行这项研究。所有个体均完成了一项危险因素调查表,并接受了详细的眼科检查,包括球面等效(SphE)以及眼轴长度(AL),前房深度(ACD)和角膜曲率(CC)的眼睛生物特征测量。使用方差成分模型计算家族相关性,并估计h(2)和c(2),该模型假定每个谱系内的多元t分布。考虑了两种常见环境定义(c(2)):核家庭(当前)共享环境(模型1)和同胞(儿童时代)共享环境(模型2)。使用“蓝山眼”研究数据集进行人口确定调整。观察到的家族相关性趋势表明,SphE受环境和遗传因素的影响,而AL,ACD和CC主要由遗传决定。这在很大程度上被方差成分建模所证实。最佳拟合ACE模型(模型2,儿童共享环境)的遗传力估计值(针对年龄,性别和受教育年限进行了调整)对于SphE为0.50 +/- 0.05,对于AL是0.73 +/- 0.04,对于SphE是0.78 +/- 0.04 ACD,CC为0.16 +/- 0.06。童年时期的环境影响是显着的,据估计,SphE的c(2)为0.33 +/- 0.04,AL的为0.06 +/- 0.03,ACD的为0.22 +/- 0.04,CC的为0.10 +/- 0.05。年龄与SphE有关,总的受教育年限与AL有关,而性别与所研究的所有特征有关。在估算遗传力估算值时,我们通过指定核家庭或同胞环境,采用新颖保守的方法来解释和估算常见的环境影响,并表明所检查的所有特征(SphE,AL,ACD和CC)都是可遗传的,从而反映出遗传成分。因此,所有这些性状都代表了定量性状连锁分析的候选者。

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