Simulation of Finnish Population History, Guided by Empirical Genetic Data, to Assess Power of Rare-Variant Tests in Finland
Author(s) -
Sophie R. Wang,
Vineeta Agarwala,
Jason Flannick,
Charleston W. K. Chiang,
David Altshuler,
Jason Flannick,
Alisa Manning,
Christopher Hartl,
Vineeta Agarwala,
Pierre Fontanillas,
Todd Green,
Eric Banks,
Mark A. DePristo,
Ryan Poplin,
Khalid Shakir,
Timothy R. Fennell,
Jacquelyn Murphy,
Noël P. Burtt,
Stacey Gabriel,
David Altshuler,
Christian Fuchsberger,
Hyun Min Kang,
Xueling Sim,
Clement Ma,
Adam E. Locke,
Thomas W. Blackwell,
Anne Jackson,
Tanya M. Teslovich,
Heather M. Stringham,
Peter S. Chines,
Phoenix Kwan,
Jeroen R. Huyghe,
Adrian Y. Tan,
Goo Jun,
Michael L. Stitzel,
Richard N. Bergman,
Lori L. Bonnycastle,
Jaakko Tuomilehto,
Francis S. Collins,
Laura J. Scott,
Karen L. Mohlke,
Gonçalo R. Abecasis,
Michael Boehnke,
Tim M. Strom,
Christian Gieger,
Martina MüllerNurasyid,
Harald Grallert,
Jennifer Kriebel,
Janina S. Ried,
Martin Hrabě de Angelis,
Cornelia Huth,
Christa Meisinger,
Annette Peters,
Wolfgang Rathmann,
Konstantin Strauch,
Thomas Meitinger,
Jasmina Kravić,
Claes Ladenvall,
Tiinamaija Toumi,
Bo Isomaa,
Leif Groop,
Kyle J. Gaulton,
Loukas Moutsianas,
Manny Rivas,
Richard D. Pearson,
Anubha Mahajan,
Inga Prokopenko,
Ashish Kumar,
John R. B. Perry,
Jeff Chen,
Bryan Howie,
Martijn van de Bunt,
Kerrin S. Small,
Cecilia M. Lindgren,
Gerton Lunter,
Neil Robertson,
Will Rayner,
Andrew P. Morris,
David Buck,
Andrew T. Hattersley,
Tim D. Spector,
Gil McVean,
Timothy M. Frayling,
Peter Donnelly,
Mark I. McCarthy,
Joel N. Hirschhorn
Publication year - 2014
Publication title -
the american journal of human genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.661
H-Index - 302
eISSN - 1537-6605
pISSN - 0002-9297
DOI - 10.1016/j.ajhg.2014.03.019
Subject(s) - exome sequencing , biology , genotyping , genetics , founder effect , exome , genetic association , genetic architecture , population , genome wide association study , evolutionary biology , computational biology , single nucleotide polymorphism , quantitative trait locus , genotype , mutation , gene , demography , haplotype , sociology
Finnish samples have been extensively utilized in studying single-gene disorders, where the founder effect has clearly aided in discovery, and more recently in genome-wide association studies of complex traits, where the founder effect has had less obvious impacts. As the field starts to explore rare variants' contribution to polygenic traits, it is of great importance to characterize and confirm the Finnish founder effect in sequencing data and to assess its implications for rare-variant association studies. Here, we employ forward simulation, guided by empirical deep resequencing data, to model the genetic architecture of quantitative polygenic traits in both the general European and the Finnish populations simultaneously. We demonstrate that power of rare-variant association tests is higher in the Finnish population, especially when variants' phenotypic effects are tightly coupled with fitness effects and therefore reflect a greater contribution of rarer variants. SKAT-O, variable-threshold tests, and single-variant tests are more powerful than other rare-variant methods in the Finnish population across a range of genetic models. We also compare the relative power and efficiency of exome array genotyping to those of high-coverage exome sequencing. At a fixed cost, less expensive genotyping strategies have far greater power than sequencing; in a fixed number of samples, however, genotyping arrays miss a substantial portion of genetic signals detected in sequencing, even in the Finnish founder population. As genetic studies probe sequence variation at greater depth in more diverse populations, our simulation approach provides a framework for evaluating various study designs for gene discovery.
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