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Data and Theory Point to Mainly Additive Genetic Variance for Complex Traits

PLoS Genetics · 2008 · Vol. 4(2) · pp. e1000008–e1000008
William G. HillMichael E. GoddardPeter M. Visscher

Abstract

The relative proportion of additive and non-additive variation for complex traits is important in evolutionary biology, medicine, and agriculture. We address a long-standing controversy and paradox about the contribution of non-additive genetic variation, namely that knowledge about biological pathways and gene networks imply that epistasis is important. Yet empirical data across a range of traits and species imply that most genetic variance is additive. We evaluate the evidence from empirical studies of genetic variance components and find that additive variance typically accounts for over half, and often close to 100%, of the total genetic variance. We present new theoretical results, based upon the distribution of allele frequencies under neutral and other population genetic models, that show why this is the case even if there are non-additive effects at the level of gene action. We conclude that interactions at the level of genes are not likely to generate much interaction at the level of variance.

Genetic Mapping and Diversity in Plants and AnimalsEvolution and Genetic DynamicsGenetic diversity and population structureBiologyEpistasisGenetic variationVariance (accounting)Quantitative geneticsAdditive genetic effectsAlleleEvolutionary biologyGeneticsGene

MeSH terms

AllelesAnimalsAnimals, DomesticAnimals, LaboratoryEpistasis, GeneticGene FrequencyGenes, DominantGenetics, PopulationHumansModels, GeneticPhenotypeGenetic VariationTwin Studies as TopicQuantitative Trait Loci

Funding

  • Medical Research Council
  • Australian Research Council
  • National Health and Medical Research Council
Citations
1,104
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References
The Effect of Selection on Genetic Variability
The American Naturalist · 1971 · 1,011 citations
Estimating genetic parameters in natural populations using the ‘animal model’
Philosophical Transactions of the Royal Society B Biological Sciences · 2004 · 1,189 citations
Introduction to Quantitative Genetics.
Biometrics · 1982 · 21,753 citations
EVOLUTION IN MENDELIAN POPULATIONS
Genetics · 1931 · 8,981 citations
The control of flux
Biochemical Society Transactions · 1995 · 592 citations
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Data and Theory Point to Mainly Additive Genetic Variance for Complex Traits · Scinovex