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The role of phenotype in gene discovery in the whole genome sequencing era

机译:在整个基因组测序时代,表型在基因发现中的作用

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摘要

As whole genome sequence becomes a routine component of gene discovery studies in humans, we will have an exhaustive catalog of genetic variation and the challenge becomes understanding the phenotypic consequences of these variants. Statistical genetic methods and analytical approaches that are concerned with optimizing phenotypes for gene discovery for complex traits offer two general categories of advantages. They may increase power to localize genes of interest and also aid in interpreting associations between genetic variants and disease outcomes by suggesting potential mechanisms and pathways through which genes may affect outcomes. Such phenotype optimization approaches include use of allied phenotypes such as symptoms or ages of onset to reduce genetic heterogeneity within a set of cases, study of quantitative risk factors or endophenotypes, joint analyses of related phenotypes, and derivation of new phenotypes designed to extract independent measures underlying the correlations among a set of related phenotypes through approaches such as principal components. New opportunities are also presented by technological advances that permit efficient collection of hundreds or thousands of phenotypes on an individual, including phenotypes more proximal to the level of gene action such as levels of gene expression, microRNAs, or metabolic and proteomic profiles.
机译:随着整个基因组序列成为人类基因发现研究的常规组成部分,我们将获得详尽的遗传变异目录,而挑战就在于了解这些变异的表型后果。统计遗传方法和分析方法涉及优化表型以发现复杂性状的基因,提供了两大类优势。它们可以通过暗示基因可能影响结果的潜在机制和途径来增强定位感兴趣的基因的能力,并且还有助于解释遗传变异与疾病结果之间的关联。此类表型优化方法包括使用相关表型(例如症状或发病年龄)以减少一组病例中的遗传异质性,定量风险因素或内表型的研究,相关表型的联合分析以及旨在提取独立措施的新表型的推导通过诸如主成分之类的方法来确定一组相关表型之间的相关性。技术进步也带来了新的机遇,它可以有效地收集个体上成百上千的表型,包括更接近基因作用水平的表型,例如基因表达水平,microRNA或代谢和蛋白质组学谱。

著录项

  • 来源
    《Human Genetics》 |2012年第10期|p.1533-1540|共8页
  • 作者

    Laura Almasy;

  • 作者单位

    Department of Genetics, Texas Biomedical Research Institute, PO Box 760549, San Antonio, TX, 78245-0549, USA;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 01:50:09

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