Signatures of negative selection in the genetic architecture of human complex traits

Признаки негативного отбора в генетической архитектуре сложных признаков человека
Grant W. Montgomery, Jian Yang, Naomi R. Wray, Peter M. Visscher, Greg Gibson, Loïc Yengo, Allan F. McRae, Andres Metspalu, Matthew R. Robinson, Joseph E. Powell, Tõnu Esko, Julia Sidorenko, Jian Zeng, Ronald de Vlaming, Yang Wu, Luke R. Lloyd‐Jones, Chloe X. Yap, Angli Xue
2018-04-13

Bayesian mixed linear modelSNP-based heritabilityeffect size–minor allele frequency relationshipnegative selectionpolygenicity
We develop a Bayesian mixed linear model that simultaneously estimates single-nucleotide polymorphism (SNP)-based heritability, polygenicity (proportion of SNPs with nonzero effects), and the relationship between SNP effect size and minor allele frequency for complex traits in conventionally unrelated individuals using genome-wide SNP data. We apply the method to 28 complex traits in the UK Biobank data (N = 126,752) and show that on average, 6% of SNPs have nonzero effects, which in total explain 22% of phenotypic variance. We detect significant (P < 0.05/28) signatures of natural selection in the genetic architecture of 23 traits, including reproductive, cardiovascular, and anthropometric traits, as well as educational attainment. The significant estimates of the relationship between effect size and minor allele frequency in complex traits are consistent with a model of negative (or purifying) selection, as confirmed by forward simulation. We conclude that negative selection acts pervasively on the genetic variants associated with human complex traits. BayesS estimates SNP-based heritability, polygenicity, and the relationship between effect size and minor allele frequency using genome-wide SNP data. Applying BayesS to UK Biobank data identifies signatures of natural selection for 23 complex traits.
1
Applied BayesS to 28 complex traits in UK Biobank (N = 126,752), finding on average 6% of SNPs have nonzero effects that together explain 22% of phenotypic variance.
2
Concluded that negative selection pervasively acts on genetic variants associated with human complex traits.
3
Detected significant signatures of natural selection (P < 0.05/28) in the genetic architecture of 23 traits, including reproductive, cardiovascular, anthropometric traits, and educational attainment.
4
Developed BayesS, a Bayesian mixed linear model estimating SNP-based heritability, polygenicity, and relationship between SNP effect size and minor allele frequency from genome-wide SNP data.
5
Estimated relationships between effect size and minor allele frequency are consistent with negative (purifying) selection, a conclusion supported by forward simulations.

Genetic architecture of human complex traits as measured by genome-wide SNP data in UK Biobank individuals

Signatures and effects of negative (purifying) selection on SNP-based parameters: heritability, polygenicity (proportion of causal SNPs), and the relationship between SNP effect size and minor allele frequency

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2018-04-13
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Authors
Grant W. Montgomery
Jian Yang
Naomi R. Wray
Peter M. Visscher
Greg Gibson
Loïc Yengo
Allan F. McRae
Andres Metspalu
Matthew R. Robinson
Joseph E. Powell
Tõnu Esko
Julia Sidorenko
Jian Zeng
Ronald de Vlaming
Yang Wu
Luke R. Lloyd‐Jones
Chloe X. Yap
Angli Xue
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