首页> 外文期刊>The American Journal of Human Genetics >L-GATOR: Genetic Association Testing for a Longitudinally Measured Quantitative Trait in Samples with Related Individuals
【24h】

L-GATOR: Genetic Association Testing for a Longitudinally Measured Quantitative Trait in Samples with Related Individuals

机译:L-Gator:遗传结合测试在具有相关个人的样本中的纵向测量的定量性状测试

获取原文
获取原文并翻译 | 示例
           

摘要

In complex-trait mapping, when each subject has multiple measurements of a quantitative trait over time, power for detecting genetic association can be gained by the inclusion of all measurements and not just single time points or averages in the analysis. To increase power and control type 1 error, one should account for dependence among observations for a single individual as well as dependence between observations of related individuals if they are present in the sample. We propose L-GATOR, a retrospective, mixed-effects method for association mapping of longitudinally measured traits in samples with related individuals. L-GATOR allows arbitrary time points for different individuals, incorporates both time-varying and static covariates, and properly addresses various types of dependence. In simulations, we show that L-GATOR outperforms existing prospective methods in terms of both type 1 error and power when there is phenotype model misspecification or missing data. Compared with the previously proposed longGWAS method, L-GATOR was more than ten times faster for association testing in our simulations and almost 100 times faster for parameter estimation. L-GATOR is applicable to essentially arbitrary combinations of related and unrelated individuals, including small families as well as large, complex pedigrees. We apply the method to data from the Framingham Heart Study to identify association between longitudinal systolic blood pressure measurements and genome-wide SNPs. Of the smallest p values, one-third occur in or near genes that have been previously identified as associated with pulse pressure (such asPIK3CG) and systolic and diastolic blood pressure (such asC10orf107), showing that L-GATOR is able to prioritize relevant loci in a genome screen.
机译:在复杂性状映射中,当每个受试者随着时间的推移具有多次测量定量性状的测量时,可以通过包含所有测量而不是分析中的单时间点或平均值来获得用于检测遗传关联的动力。为了提高功率和控制类型1错误,应该考虑单个个体的观察结果以及如果样品中存在相关性的观察结果之间的观察结果。我们提出了L-Gator,一种回顾性,混合效应方法,用于纵向测量的样品中纵向测量的具有相关的个体的样本。 L-Gator允许针对不同个体的任意时间点,包括时变和静态协变量,并适当地解决各种类型的依赖性。在仿真中,我们表明L-Gator在存在表型模型拼写或缺失数据时,在1型错误和功率方面优于现有的前瞻性方法。与先前提出的LongGWA方法相比,L-Gator在我们的模拟中的关联测试速度速度速度速度速度,并且参数估计速度速度速度速度速度。 L-Gator适用于相关和无关个人的基本上组合,包括小家庭以及大型复杂的章程。我们将该方法应用于来自Framingham心脏研究的数据,以识别纵向收缩压测量和基因组SNP之间的关联。在最小的p值中,三分之一发生在先前已经被识别为与脉冲压力(例如ASPIK3CG)和收缩压和舒张血压(如ASC10ORF107)相关的基因中,表明L-Gator能够优先考虑相关基因座在基因组屏幕中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号