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THE EVOLUTION OF SELF‐FERTILIZATION AND INBREEDING DEPRESSION IN PLANTS. I. GENETIC MODELS

Evolution · 1985 · Vol. 39(1) · pp. 24–40
Russell LandeDouglas W. Schemske

Abstract

The amounts of inbreeding depression upon selfing and of heterosis upon outcrossing determine the strength of selection on the selfing rate in a population when this evolves polygenically by small steps. Genetic models are constructed which allow inbreeding depression to change with the mean selfing rate in a population by incorporating both mutation to recessive and partially dominant lethal and sublethal alleles at many loci and mutation in quantitative characters under stabilizing selection. The models help to explain observations of high inbreeding depression (> 50%) upon selfing in primarily outcrossing populations, as well as considerable heterosis upon outcrossing in primarily selfing populations. Predominant selfing and predominant outcrossing are found to be alternative stable states of the mating system in most plant populations. Which of these stable states a species approaches depends on the history of its population structure and the magnitude of effect of genes influencing the selfing rate.

Plant and animal studiesGenetic diversity and population structurePlant Reproductive BiologySelfingInbreeding depressionOutcrossingBiologyInbreedingOutbreeding depressionPopulationGeneticsMating systemHeterosis

Funding

  • National Science Foundation
  • U.S. Public Health Service
Citations
1,584
FWCI
47.63
field-weighted impact
References
71
Percentile
100%
vs. same field & year
Citations per year
References
THE GENETIC BASIS OF EVOLUTIONARY CHANGE
Evolution · 1975 · 3,553 citations
Self Fertilization and Population Variability in the Higher Plants
The American Naturalist · 1957 · 1,288 citations
THE MEASUREMENT OF SELECTION ON CORRELATED CHARACTERS
Evolution · 1983 · 4,994 citations
The Genetic Basis of Evolutionary Change.
Evolution · 1975 · 1,381 citations
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