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ESTIMATING RELATEDNESS USING GENETIC MARKERS

Evolution · 1989 · Vol. 43(2) · pp. 258–275
David C. QuellerKeith F. Goodnight

Abstract

A new method is described for estimating genetic relatedness from genetic markers such as protein polymorphisms. It is based on Grafen's (1985) relatedness coefficient and is most easily interpreted in terms of identity by descent rather than as a genetic regression. It has several advantages over methods currently in use: it eliminates a downward bias for small sample sizes; it improves estimation of relatedness for subsets of population samples; and it allows estimation of relatedness for a single group or for a single pair of individuals. Individual estimates of relatedness tend to be highly variable but, in aggregate, can still be very useful as data for nonparametric tests. Such tests allow testing for differences in relatedness between two samples or for correlating individual relatedness values with another variable.

Genetic and phenotypic traits in livestockPlant and animal studiesGenetic diversity and population structureBiologyIdentity by descentStatisticsRegressionNonparametric statisticsPopulationGeneticsEvolutionary biologyEstimationGenetic similarity

Funding

  • National Science Foundation
Citations
2,858
FWCI
5.77
field-weighted impact
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61
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96%
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References
The genetical evolution of social behaviour. I
Journal of Theoretical Biology · 1964 · 15,807 citations
Introduction to Quantitative Genetics.
Biometrics · 1982 · 21,753 citations
The genetical evolution of social behaviour. II
Journal of Theoretical Biology · 1964 · 4,082 citations
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