Published August 20, 2015 | Version v1
Dataset Open

Data from: Analysis of inbreeding depression in mixed-mating plants provides evidence for selective interference and stable mixed mating

  • 1. Florida State University
  • 2. Simon Fraser University
  • 3. University of Pittsburgh
  • 4. Centre d'Ecologie Fonctionnelle et Evolutive
  • 5. Queen's University
  • 6. East Carolina University
  • 7. Dalhousie University
  • 8. University of Minnesota
  • 9. Field Museum of Natural History
  • 10. University of Ottawa
  • 11. University of Stirling

Description

Hermaphroditic individuals can produce both selfed and outcrossed progeny, termed mixed mating. General theory predicts that mixed-mating populations should evolve quickly toward high rates of selfing, driven by rapid purging of genetic load and loss of inbreeding depression (ID), but the substantial number of mixed-mating species observed in nature calls this prediction into question. Greater average ID reported for selfing than for outcrossing populations is consistent with purging and suggests that mixed-mating taxa in evolutionary transition will have intermediate ID. We compared the magnitude of ID from published estimates for highly selfing (r > 0.8), mixed-mating (0.2 < r > 0.8), and highly outcrossing (r < 0.2) plant populations across 58 species. We found that mixed-mating and outcrossing taxa have equally high average lifetime ID (d = 0.58 and 0.54, respectively) and similar ID at each of four life-cycle stages. These results are not consistent with evolution toward selfing in most mixed-mating taxa. We suggest that prevention of purging by selective interference could explain stable mixed mating in many natural populations. We identify critical gaps in the empirical data on inbreeding depression and outline key approaches to filling them.

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