Large-scale GWAS of food liking reveals genetic determinants and genetic correlations with distinct neurophysiological traits

被引:0
|
作者
Sebastian May-Wilson
Nana Matoba
Kaitlin H. Wade
Jouke-Jan Hottenga
Maria Pina Concas
Massimo Mangino
Eryk J. Grzeszkowiak
Cristina Menni
Paolo Gasparini
Nicholas J. Timpson
Maria G. Veldhuizen
Eco de Geus
James F. Wilson
Nicola Pirastu
机构
[1] University of Edinburgh,Centre for Global Health Research, Usher Institute
[2] University of North Carolina at Chapel Hill,Department of Genetics
[3] University of North Carolina at Chapel Hill,UNC Neuroscience Center
[4] University of Bristol,Population Health Sciences, Bristol Medical School
[5] Medical Research Council (MRC) Integrative Epidemiology Unit (IEU) at the University of Bristol,Dept of Biological Psychology, FGB
[6] Vrije Universiteit Amsterdam,Department of Twin Research and Genetic Epidemiology
[7] Institute for Maternal and Child Health—IRCCS,Department of Medicine, Surgery and Health Sciences
[8] Burlo Garofolo,Department of Anatomy, Faculty of Medicine
[9] King’s College London,MRC Human Genetics Unit, Institute of Genetics and Cancer
[10] NIHR Biomedical Research Centre at Guy’s and St Thomas’ Foundation Trust,undefined
[11] University of Trieste,undefined
[12] Mersin University,undefined
[13] Amsterdam Public Health research institute,undefined
[14] University of Edinburgh,undefined
[15] Human Technopole,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
We present the results of a GWAS of food liking conducted on 161,625 participants from the UK-Biobank. Liking was assessed over 139 specific foods using a 9-point scale. Genetic correlations coupled with structural equation modelling identified a multi-level hierarchical map of food-liking with three main dimensions: “Highly-palatable”, “Acquired” and “Low-caloric”. The Highly-palatable dimension is genetically uncorrelated from the other two, suggesting that independent processes underlie liking high reward foods. This is confirmed by genetic correlations with MRI brain traits which show with distinct associations. Comparison with the corresponding food consumption traits shows a high genetic correlation, while liking exhibits twice the heritability. GWAS analysis identified 1,401 significant food-liking associations which showed substantial agreement in the direction of effects with 11 independent cohorts. In conclusion, we created a comprehensive map of the genetic determinants and associated neurophysiological factors of food-liking.
引用
收藏
相关论文
共 50 条
  • [31] Targeted resequencing of GWAS loci reveals novel genetic variants for milk production traits
    Jiang, Li
    Liu, Xuan
    Yang, Jie
    Wang, Haifei
    Jiang, Jicai
    Liu, Lili
    He, Sang
    Ding, Xiangdong
    Liu, Jianfeng
    Zhang, Qin
    BMC GENOMICS, 2014, 15
  • [32] Targeted resequencing of GWAS loci reveals novel genetic variants for milk production traits
    Li Jiang
    Xuan Liu
    Jie Yang
    Haifei Wang
    Jicai Jiang
    Lili Liu
    Sang He
    Xiangdong Ding
    Jianfeng Liu
    Qin Zhang
    BMC Genomics, 15
  • [33] A large-scale mutation search reveals genetic heterogeneity in 3M syndrome
    Céline Huber
    Anee-Lise Delezoide
    Fabien Guimiot
    Clarisse Baumann
    Valérie Malan
    Martine Le Merrer
    Daniela Bezerra Da Silva
    Dominique Bonneau
    Pierre Chatelain
    Carol Chu
    Robin Clark
    Helen Cox
    Patrick Edery
    Thomas Edouard
    Virginia Fano
    Kate Gibson
    Gabriele Gillessen-Kaesbach
    Maria-Luisa Giovannucci-Uzielli
    Luitgard Margarete Graul-Neumann
    Johana-Maria van Hagen
    Liselot van Hest
    Dafne Horovitz
    Judith Melki
    Carl-Joachim Partsch
    Henry Plauchu
    Anna Rajab
    Massimiliano Rossi
    David Sillence
    Elisabeth Steichen-Gersdorf
    Helen Stewart
    Sheila Unger
    Martin Zenker
    Arnold Munnich
    Valérie Cormier-Daire
    European Journal of Human Genetics, 2009, 17 : 395 - 400
  • [34] Large-scale SNP analysis reveals clustered and continuous patterns of human genetic variation
    Shriver M.D.
    Mei R.
    Parra E.J.
    Sonpar V.
    Halder I.
    Tishkoff S.A.
    Schurr T.G.
    Zhadanov S.I.
    Osipova L.P.
    Brutsaert T.D.
    Friedlaender J.
    Jorde L.B.
    Watkins W.S.
    Bamshad M.J.
    Gutierrez G.
    Loi H.
    Matsuzaki H.
    Kittles R.A.
    Argyropoulos G.
    Fernandez J.R.
    Akey J.M.
    Jones K.W.
    Human Genomics, 2 (2) : 81 - 89
  • [35] A large-scale mutation search reveals genetic heterogeneity in 3M syndrome
    Huber, Celine
    Delezoide, Anee-Lise
    Guimiot, Fabien
    Baumann, Clarisse
    Malan, Valerie
    Le Merrer, Martine
    Da Silva, Daniela Bezerra
    Bonneau, Dominique
    Chatelain, Pierre
    Chu, Carol
    Clark, Robin
    Cox, Helen
    Edery, Patrick
    Edouard, Thomas
    Fano, Virginia
    Gibson, Kate
    Gillessen-Kaesbach, Gabriele
    Giovannucci-Uzielli, Maria-Luisa
    Graul-Neumann, Luitgard Margarete
    van Hagen, Johana-Maria
    van Hest, Liselot
    Horovitz, Dafne
    Melki, Judith
    Partsch, Carl-Joachim
    Plauchu, Henry
    Rajab, Anna
    Rossi, Massimiliano
    Sillence, David
    Steichen-Gersdorf, Elisabeth
    Stewart, Helen
    Unger, Sheila
    Zenker, Martin
    Munnich, Arnold
    Cormier-Daire, Valerie
    EUROPEAN JOURNAL OF HUMAN GENETICS, 2009, 17 (03) : 395 - 400
  • [36] Large-scale genetic study of risk tolerance and risky behaviors identifies new loci and reveals shared genetic influences
    Linner, Richard Karlsson
    Biroli, Pietro
    Fontana, Mark
    Hammerschlaag, Anke
    Kong, Edward
    Lebreton, Mael
    Meddens, Fleur
    Nivard, Michel
    Okbay, Aysu
    Rietveld, Niels
    Taskesen, Erdogan
    Turley, Patrick
    De Vlaming, Ronald
    Wedow, Robbee
    Abdellaoui, Abdel
    Bao, Yanchun
    Buzdugan, Laura
    Chen, Chiayen
    Eibich, Peter
    Fontanillas, Pierre
    Joshi, Peter
    Karhunen, Ville
    Lill, Christina
    Meddens, Gerardus
    Muntane, Gerard
    Sanchez-roige, Sandra
    Van Rooij, Frank
    Stein, Murray
    Auton, Adam
    Clark, David
    Conlin, Andrew
    Dolan, Conor
    Fischbacher, Urs
    Groenen, Patrick
    Hasler, Gregor
    Hofman, Albert
    Ikram, M. Arfan
    Jain, Sonia
    Karlsson, Robert
    Mackillop, James
    Mannikko, Minna
    Morcillo-suarez, Carlos
    Schmidt, Klaus
    Smart, Melissa
    Sutter, Matthias
    Thurik, Roy
    Uitterlinden, Andre
    White, Jon
    de Wit, Harriet
    Bertram, Lars
    BEHAVIOR GENETICS, 2017, 47 (06) : 651 - 651
  • [37] A Genetic Fuzzy System for Large-scale Regression
    Rodriguez-Fdez, I.
    Mucientes, M.
    Bugarin, A.
    2016 IEEE INTERNATIONAL CONFERENCE ON FUZZY SYSTEMS (FUZZ-IEEE), 2016, : 1421 - 1428
  • [38] Large-scale genetic analysis of stroke in the Japanese
    Inomata, H
    Yanai, K
    Nabika, T
    Nagano, S
    Isobe, M
    Kobayashi, S
    Kato, N
    STROKE, 2006, 37 (02) : 671 - 671
  • [39] GENETIC CLUSTERING FOR LARGE-SCALE ROAD NETWORK
    Wen, Feng
    Lin, Lin
    Gen, Mitsuo
    PROCEEDINGS OF THE 38TH INTERNATIONAL CONFERENCE ON COMPUTERS AND INDUSTRIAL ENGINEERING, VOLS 1-3, 2008, : 2710 - 2714
  • [40] Large-scale inference of human genetic data
    Rivas, M. A.
    EUROPEAN JOURNAL OF HUMAN GENETICS, 2019, 27 : 1064 - 1064