TY - JOUR
T1 - Robust, flexible, and scalable tests for Hardy-Weinberg equilibrium across diverse ancestries
AU - TOPMed Analysis Working Group
AU - NHLBI Trans-Omics for Precision Medicine (TOPMed) Consortium
AU - Kwong, Alan M.
AU - Blackwell, Thomas W.
AU - LeFaive, Jonathon
AU - de Andrade, Mariza
AU - Barnard, John
AU - Barnes, Kathleen C.
AU - Blangero, John
AU - Boerwinkle, Eric
AU - Burchard, Esteban G.
AU - Cade, Brian E.
AU - Chasman, Daniel I.
AU - Chen, Han
AU - Conomos, Matthew P.
AU - Cupples, L. Adrienne
AU - Ellinor, Patrick T.
AU - Eng, Celeste
AU - Gao, Yan
AU - Guo, Xiuqing
AU - Irvin, Marguerite Ryan
AU - Kelly, Tanika N.
AU - Kim, Wonji
AU - Kooperberg, Charles
AU - Lubitz, Steven A.
AU - Mak, Angel C.Y.
AU - Manichaikul, Ani W.
AU - Mathias, Rasika A.
AU - Montasser, May E.
AU - Montgomery, Courtney G.
AU - Musani, Solomon
AU - Palmer, Nicholette D.
AU - Peloso, Gina M.
AU - Qiao, Dandi
AU - Reiner, Alexander P.
AU - Roden, Dan M.
AU - Shoemaker, M. Benjamin
AU - Smith, Jennifer A.
AU - Smith, Nicholas L.
AU - Su, Jessica Lasky
AU - Tiwari, Hemant K.
AU - Weeks, Daniel E.
AU - Weiss, Scott T.
AU - Scott, Laura J.
AU - Smith, Albert V.
AU - Abecasis, Gonçalo R.
AU - Boehnke, Michael
AU - Kang, Hyun Min
N1 - Publisher Copyright:
© The Author(s) 2021. Published by Oxford University Press on behalf of Genetics Society of America. All rights reserved. For permissions, please email: journals.permissions@oup.com.
PY - 2021/5/17
Y1 - 2021/5/17
N2 - Traditional Hardy-Weinberg equilibrium (HWE) tests (the χ2 test and the exact test) have long been used as a metric for evaluating genotype quality, as technical artifacts leading to incorrect genotype calls often can be identified as deviations from HWE. However, in data sets composed of individuals from diverse ancestries, HWE can be violated even without genotyping error, complicating the use of HWE testing to assess genotype data quality. In this manuscript, we present the Robust Unified Test for HWE (RUTH) to test for HWE while accounting for population structure and genotype uncertainty, and to evaluate the impact of population heterogeneity and genotype uncertainty on the standard HWE tests and alternative methods using simulated and real sequence data sets. Our results demonstrate that ignoring population structure or genotype uncertainty in HWE tests can inflate false-positive rates by many orders of magnitude. Our evaluations demonstrate different tradeoffs between false positives and statistical power across the methods, with RUTH consistently among the best across all evaluations. RUTH is implemented as a practical and scalable software tool to rapidly perform HWE tests across millions of markers and hundreds of thousands of individuals while supporting standard VCF/BCF formats. RUTH is publicly available at https://www.github.com/statgen/ruth.
AB - Traditional Hardy-Weinberg equilibrium (HWE) tests (the χ2 test and the exact test) have long been used as a metric for evaluating genotype quality, as technical artifacts leading to incorrect genotype calls often can be identified as deviations from HWE. However, in data sets composed of individuals from diverse ancestries, HWE can be violated even without genotyping error, complicating the use of HWE testing to assess genotype data quality. In this manuscript, we present the Robust Unified Test for HWE (RUTH) to test for HWE while accounting for population structure and genotype uncertainty, and to evaluate the impact of population heterogeneity and genotype uncertainty on the standard HWE tests and alternative methods using simulated and real sequence data sets. Our results demonstrate that ignoring population structure or genotype uncertainty in HWE tests can inflate false-positive rates by many orders of magnitude. Our evaluations demonstrate different tradeoffs between false positives and statistical power across the methods, with RUTH consistently among the best across all evaluations. RUTH is implemented as a practical and scalable software tool to rapidly perform HWE tests across millions of markers and hundreds of thousands of individuals while supporting standard VCF/BCF formats. RUTH is publicly available at https://www.github.com/statgen/ruth.
KW - genotype likelihoods
KW - next-generation sequencing
KW - population structure
KW - principal components analysis
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U2 - 10.1093/genetics/iyab044
DO - 10.1093/genetics/iyab044
M3 - Article
C2 - 33720349
AN - SCOPUS:85107083511
SN - 0016-6731
VL - 218
JO - Genetics
JF - Genetics
IS - 1
ER -