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REGRESSION ANALYSIS OF NATURAL SELECTION: STATISTICAL INFERENCE AND BIOLOGICAL INTERPRETATION

Evolution · 1987 · Vol. 41(6) · pp. 1149–1161
Thomas Mitchell‐OldsRuth G. Shaw

Abstract

Recent theoretical work in quantitative genetics has fueled interest in measuring natural selection in the wild. We discuss statistical and biological issues that may arise in applications of Lande and Arnold's (1983) multiple-regression approach to measuring selection. We review assumptions involved in estimation and hypothesis testing in regression problems, and we note difficulties that frequently arise as a result of violation of these assumptions. In particular, multicollinearity (extreme intercorrelation of characters) and extrinsic, unmeasured factors affecting fitness may seriously complicate inference regarding selection. Further, violation of the assumption that residuals are normally distributed vitiates tests of significance. For this situation, we suggest applications of recently developed jackknife tests of significance. While fitness regression permits direct assessment of selection in a form suitable for predicting selection response, we suggest that the aim of inferring causal relationships about the effects of phenotypic characters on fitness is greatly facilitated by manipulative experiments. Finally, we discuss alternative definitions of stabilizing and disruptive selection.

Genetic and phenotypic traits in livestockGenetic diversity and population structureAnimal Behavior and ReproductionSelection (genetic algorithm)Natural selectionBiologyMulticollinearityRegressionInferenceStatistical inferenceStatistical hypothesis testingRegression analysisJackknife resampling

Funding

  • National Science Foundation
  • National Institutes of Health
Citations
898
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References
THE GENETIC BASIS OF EVOLUTIONARY CHANGE
Evolution · 1975 · 3,553 citations
Ecological Adaptations for Breeding in Birds
Journal of Animal Ecology · 1970 · 3,879 citations
Jackknife, Bootstrap and Other Resampling Methods in Regression Analysis
The Annals of Statistics · 1986 · 1,744 citations
Introduction to Quantitative Genetics.
Biometrics · 1982 · 21,753 citations
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