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Within-sibship genome-wide association analyses decrease bias in estimates of direct genetic effects

delete2022-05-09
delete141
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OA
AI
L
Laurence J Howe
N
Nivard, Michel G.
T
Tim Morris
H
Hansen, Ailin F.
H
Humaira Rasheed
Y
Yoonsu Cho
G
Geetha Chittoor
R
Rafael Ahlskog
P
Penelope A. Lind
T
Teemu Palviainen
M
Matthijs D. van der Zee
C
Cheesman, Rosa
M
Massimo Mangino
Y
Yunzhang Wang
S
Shuai Li
L
Lucija Klarić
R
Ratliff, Scott M.
L
Lawrence F. Bielak
M
Marianne Nygaard
A
Alexandros Giannelis
E
Emily A. Willoughby
C
Chandra A. Reynolds
J
Jared V. Balbona
O
Ole A. Andreassen
H
Helga Ask
A
Aris Baras
C
Christopher R. Bauer
D
Dorret I. Boomsma
A
Archie Campbell
C
Campbell, Harry
Z
Zhengming Chen
P
Paraskevi Christofidou
E
Elizabeth C. Corfield
D
Dahm, Christina C.
D
Deepika Dokuru
L
Luke M. Evans
D
de Geus, Eco J. C.
G
Giddaluru, Sudheer
S
Scott D. Gordon
K
K. Paige Harden
W
W. David Hill
A
Amanda Hughes
S
Shona M. Kerr
Y
Yongkang Kim
H
Hyeokmoon Kweon
L
Latvala, Antti
D
Debbie A. Lawlor
L
Li, Liming
K
Kuang Lin
P
Per Magnus
P
Patrik K. E. Magnusson
T
Travis T. Mallard
P
Pekka Martikainen
M
Mills, Melinda C.
P
Pål R. Njølstad
J
John D. Overton
N
Nancy L. Pedersen
D
David J. Porteous
J
Jeffrey G. Reid
S
Silventoinen, Karri
M
Melissa C. Southey
C
Camilla Stoltenberg
E
Elliot M. Tucker–Drob
M
Margaret J. Wright
K
Kweon, Hyeokmoon
J
John K. Hewitt
M
Matthew C. Keller
M
Michael C. Stallings
J
James J. Lee
K
Kaare Christensen
K
Kardia, Sharon L. R.
P
Patricia A. Peyser
J
Jennifer A. Smith
J
James F. Wilson
J
John L. Hopper
S
Sara Hägg
T
Tim D. Spector
J
Jean‐Baptiste Pingault
R
Robert Plomin
A
Alexandra Havdahl
M
Meike Bartels
N
Nicholas G. Martin
S
Sven Oskarsson
A
Anne E. Justice
M
Millwood, Iona Y.
H
Hveem, Kristian
Ø
Øyvind Næss
C
Cristen J. Willer
B
Bjørn Olav Åsvold
P
Philipp Koellinger
J
Jaakko Kaprio
S
Sarah E. Medland
R
Robin Walters
D
Daniel J. Benjamin
T
Turley, Patrick
D
David M. Evans
G
George Davey Smith
C
Caroline Hayward
B
Ben Brumpton *
G
Gibran Hemani
N
Neil M Davies *
DOI:10.1038/s41588-022-01062-7delete
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Abstract

Abstract

En 中文
Estimates from genome-wide association studies (GWAS) of unrelated individuals capture effects of inherited variation (direct effects), demography (population stratification, assortative mating) and relatives (indirect genetic effects). Family-based GWAS designs can control for demographic and indirect genetic effects, but large-scale family datasets have been lacking. We combined data from 178,086 siblings from 19 cohorts to generate population (between-family) and within-sibship (within-family) GWAS estimates for 25 phenotypes. Within-sibship GWAS estimates were smaller than population estimates for height, educational attainment, age at first birth, number of children, cognitive ability, depressive symptoms and smoking. Some differences were observed in downstream SNP heritability, genetic correlations and Mendelian randomization analyses. For example, the within-sibship genetic correlation between educational attainment and body mass index attenuated towards zero. In contrast, analyses of most molecular phenotypes (for example, low-density lipoprotein-cholesterol) were generally consistent. We also found within-sibship evidence of polygenic adaptation on taller height. Here, we illustrate the importance of family-based GWAS data for phenotypes influenced by demographic and indirect genetic effects. Within-sibship genome-wide association analyses using data from 178,076 siblings illustrate differences between population-based and within-sibship GWAS estimates for phenotypes influenced by demographic and indirect genetic effects.
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Journal

Nature Reviews Endocrinology cover
Nature Reviews Endocrinology
IF:
40
Papers:
1.0W
Citations:
10.5W

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