Predicting human height by Victorian and genomic methods
Top Cited Papers
- 18 February 2009
- journal article
- research article
- Published by Springer Nature in European Journal of Human Genetics
- Vol. 17 (8), 1070-1075
- https://doi.org/10.1038/ejhg.2009.5
Abstract
In the Victorian era, Sir Francis Galton showed that ‘when dealing with the transmission of stature from parents to children, the average height of the two parents, … is all we need care to know about them’ (1886). One hundred and twenty-two years after Galton's work was published, 54 loci showing strong statistical evidence for association to human height were described, providing us with potential genomic means of human height prediction. In a population-based study of 5748 people, we find that a 54-loci genomic profile explained 4–6% of the sex- and age-adjusted height variance, and had limited ability to discriminate tall/short people, as characterized by the area under the receiver-operating characteristic curve (AUC). In a family-based study of 550 people, with both parents having height measurements, we find that the Galtonian mid-parental prediction method explained 40% of the sex- and age-adjusted height variance, and showed high discriminative accuracy. We have also explored how much variance a genomic profile should explain to reach certain AUC values. For highly heritable traits such as height, we conclude that in applications in which parental phenotypic information is available (eg, medicine), the Victorian Galton's method will long stay unsurpassed, in terms of both discriminative accuracy and costs. For less heritable traits, and in situations in which parental information is not available (eg, forensics), genomic methods may provide an alternative, given that the variants determining an essential proportion of the trait's variation can be identified.Keywords
This publication has 18 references indexed in Scilit:
- Loci influencing lipid levels and coronary heart disease risk in 16 European population cohortsNature Genetics, 2008
- Identification of ten loci associated with height highlights new biological pathways in human growthNature Genetics, 2008
- Genome-wide association analysis identifies 20 loci that influence adult heightNature Genetics, 2008
- Three Genome-wide Association Studies and a Linkage Analysis Identify HERC2 as a Human Iris Color GeneAmerican Journal of Human Genetics, 2008
- The Rotterdam Study: objectives and design updateEuropean Journal of Epidemiology, 2007
- Assumption-Free Estimation of Heritability from Genome-Wide Identity-by-Descent Sharing between Full SiblingsPLoS Genetics, 2006
- The Effect of Genetic Drift in a Young Genetically Isolated PopulationAnnals of Human Genetics, 2005
- Linkage disequilibrium in young genetically isolated Dutch populationEuropean Journal of Human Genetics, 2004
- Initial sequencing and analysis of the human genomeNature, 2001
- XV.—The Correlation between Relatives on the Supposition of Mendelian Inheritance.Transactions of the Royal Society of Edinburgh, 1919