Corte Lucia, Liou Lathan, O'Reilly Paul F, García-González Judit
Department of Genetics and Genomic Sciences, Icahn School of Medicine at Mount Sinai, New York City, NY 10029, USA.
Center for Excellence in Youth Education, Icahn School of Medicine at Mount Sinai, New York City, NY 10029, USA.
GigaByte. 2023 Sep 1;2023:gigabyte89. doi: 10.46471/gigabyte.89. eCollection 2023.
Recent advances in genome-wide association and sequencing studies have shown that the genetic architecture of complex traits and diseases involves a combination of rare and common genetic variants distributed throughout the genome. One way to better understand this architecture is to visualize genetic associations across a wide range of allele frequencies. However, there is currently no standardized or consistent graphical representation for effectively illustrating these results. Here we propose a standardized approach for visualizing the effect size of risk variants across the allele frequency spectrum. The proposed plots have a distinctive trumpet shape: with the majority of variants having high frequency and small effects, and a small number of variants having lower frequency and larger effects. To demonstrate the utility of trumpet plots in illustrating the relationship between the number of variants, their frequency, and the magnitude of their effects in shaping the genetic architecture of complex traits and diseases, we generated trumpet plots for more than one hundred traits in the UK Biobank. To facilitate their broader use, we developed an R package, 'TrumpetPlots' (available at the Comprehensive R Archive Network) and R Shiny application, 'Shiny Trumpets' (available at https://juditgg.shinyapps.io/shinytrumpets/) that allows users to explore these results and submit their own data.
全基因组关联研究和测序研究的最新进展表明,复杂性状和疾病的遗传结构涉及分布于整个基因组的罕见和常见遗传变异的组合。更好地理解这种结构的一种方法是直观呈现广泛等位基因频率范围内的遗传关联。然而,目前尚无用于有效展示这些结果的标准化或一致的图形表示方法。在此,我们提出一种标准化方法,用于直观呈现风险变异在等位基因频率谱上的效应大小。所提出的图表呈独特的喇叭形状:大多数变异频率高但效应小,少数变异频率低但效应大。为证明喇叭图在阐释变异数量、频率及其效应大小在塑造复杂性状和疾病遗传结构中的关系方面的效用,我们为英国生物银行中的一百多个性状生成了喇叭图。为便于更广泛地使用,我们开发了一个R包“TrumpetPlots”(可从综合R存档网络获取)和一个R Shiny应用程序“Shiny Trumpets”(可从https://juditgg.shinyapps.io/shinytrumpets/获取),用户可以探索这些结果并提交自己的数据。