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Research Review: Polygenic methods and their application to psychiatric traits

Journal of Child Psychology and Psychiatry · 2014 · Vol. 55(10) · pp. 1068–1087
Naomi R. WraySang LeeDivya MehtaAnna A. E. VinkhuyzenFrank DudbridgeChristel M. Middeldorp

Abstract

Increasing the sample size for genome wide association studies of psychiatric disorders will lead to the identification of more associated genetic variants, as already found for schizophrenia. These loci provide the starting point of functional analyses that might eventually lead to new prevention and treatment options and to improved biological validity of diagnostic constructs. Polygenic analyses will contribute further to our understanding of complex genetic traits as sample sizes increase and as sample resources become richer in phenotypic descriptors, both in terms of clinical symptoms and of nongenetic risk factors.

Genetic Associations and EpidemiologyGenetic Mapping and Diversity in Plants and AnimalsGenomic variations and chromosomal abnormalitiesHeritabilityGenetic architectureMissing heritability problemGenetic associationGenome-wide association studyEndophenotypePsychiatric geneticsPopulationSchizophrenia (object-oriented programming)Psychology

MeSH terms

Mental DisordersGenetic TechniquesHumansRisk FactorsGenetic Predisposition to DiseaseMultifactorial InheritancePolymorphism, Single NucleotideGenome-Wide Association Study

Funding

  • ZonMw
  • Medical Research Council
  • Australian Research Council
Citations
706
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References
130
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References
Schizophrenia as a Complex Trait
Archives of General Psychiatry · 2003 · 2,359 citations
Improved Heritability Estimation from Genome-wide SNPs
The American Journal of Human Genetics · 2012 · 834 citations
Estimating Missing Heritability for Disease from Genome-wide Association Studies
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PLoS Genetics · 2013 · 1,622 citations
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The American Journal of Human Genetics · 2010 · 9,109 citations
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