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本文引用的文献

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On the replication of genetic associations: timing can be everything!关于基因关联的复制:时机至关重要!
Am J Hum Genet. 2008 Apr;82(4):849-58. doi: 10.1016/j.ajhg.2008.01.018.
2
A second generation human haplotype map of over 3.1 million SNPs.一张包含超过310万个单核苷酸多态性的第二代人类单倍型图谱。
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Genomewide weighted hypothesis testing in family-based association studies, with an application to a 100K scan.基于家系的关联研究中的全基因组加权假设检验及其在100K扫描中的应用。
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Two-stage association tests for genome-wide association studies based on family data with arbitrary family structure.基于具有任意家庭结构的家庭数据的全基因组关联研究的两阶段关联测试。
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Adaptive two-stage analysis of genetic association in case-control designs.病例对照设计中基因关联的适应性两阶段分析。
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The chips are down.情况危急。
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Whole-genome genotyping of haplotype tag single nucleotide polymorphisms.单倍型标签单核苷酸多态性的全基因组基因分型
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Family-based designs in the age of large-scale gene-association studies.大规模基因关联研究时代的基于家系的设计。
Nat Rev Genet. 2006 May;7(5):385-94. doi: 10.1038/nrg1839.
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A common genetic variant is associated with adult and childhood obesity.一种常见的基因变异与成人和儿童肥胖有关。
Science. 2006 Apr 14;312(5771):279-83. doi: 10.1126/science.1124779.
10
Joint analysis is more efficient than replication-based analysis for two-stage genome-wide association studies.对于两阶段全基因组关联研究,联合分析比基于重复的分析更有效。
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使用相同数据集进行筛查和复制:针对所有先证者均患病的家系研究的检验策略。

Screening and replication using the same data set: testing strategies for family-based studies in which all probands are affected.

作者信息

Murphy Amy, Weiss Scott T, Lange Christoph

机构信息

Channing Laboratory, Brigham and Women's Hospital, Boston, Massachusetts, United States of America.

出版信息

PLoS Genet. 2008 Sep 19;4(9):e1000197. doi: 10.1371/journal.pgen.1000197.

DOI:10.1371/journal.pgen.1000197
PMID:18802462
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2529406/
Abstract

For genome-wide association studies in family-based designs, we propose a powerful two-stage testing strategy that can be applied in situations in which parent-offspring trio data are available and all offspring are affected with the trait or disease under study. In the first step of the testing strategy, we construct estimators of genetic effect size in the completely ascertained sample of affected offspring and their parents that are statistically independent of the family-based association/transmission disequilibrium tests (FBATs/TDTs) that are calculated in the second step of the testing strategy. For each marker, the genetic effect is estimated (without requiring an estimate of the SNP allele frequency) and the conditional power of the corresponding FBAT/TDT is computed. Based on the power estimates, a weighted Bonferroni procedure assigns an individually adjusted significance level to each SNP. In the second stage, the SNPs are tested with the FBAT/TDT statistic at the individually adjusted significance levels. Using simulation studies for scenarios with up to 1,000,000 SNPs, varying allele frequencies and genetic effect sizes, the power of the strategy is compared with standard methodology (e.g., FBATs/TDTs with Bonferroni correction). In all considered situations, the proposed testing strategy demonstrates substantial power increases over the standard approach, even when the true genetic model is unknown and must be selected based on the conditional power estimates. The practical relevance of our methodology is illustrated by an application to a genome-wide association study for childhood asthma, in which we detect two markers meeting genome-wide significance that would not have been detected using standard methodology.

摘要

对于基于家系设计的全基因组关联研究,我们提出了一种强大的两阶段检验策略,该策略可应用于有亲子三联体数据且所有后代都受所研究性状或疾病影响的情况。在检验策略的第一步中,我们在完全确定的受影响后代及其父母样本中构建遗传效应大小的估计量,这些估计量在统计上独立于在检验策略第二步中计算的基于家系的关联/传递不平衡检验(FBATs/TDTs)。对于每个标记,估计遗传效应(无需估计SNP等位基因频率)并计算相应FBAT/TDT的条件功效。基于功效估计,加权邦费罗尼程序为每个SNP分配一个单独调整的显著性水平。在第二阶段,使用FBAT/TDT统计量在单独调整的显著性水平下对SNP进行检验。通过对多达1,000,000个SNP、不同等位基因频率和遗传效应大小的模拟研究,将该策略的功效与标准方法(例如,经过邦费罗尼校正的FBATs/TDTs)进行比较。在所有考虑的情况下,即使真实遗传模型未知且必须根据条件功效估计进行选择,所提出的检验策略也比标准方法显示出显著的功效提升。我们通过将其应用于儿童哮喘的全基因组关联研究来说明我们方法的实际相关性,在该研究中,我们检测到两个达到全基因组显著性的标记,而使用标准方法则无法检测到。