Published October 26, 2017 | Version v1
Dataset Open

Data from: Evolutionary consequences of ecological factors: pollinator reliability predicts mating-system traits of a perennial plant

  • 1. Norwegian University of Science and Technology
  • 2. University of Alaska System
  • 3. University of Portsmouth
  • 4. University of Tehran

Description

The reproductive-assurance hypothesis predicts that mating-system traits will evolve towards increased autonomous self-pollination in plant populations experiencing unreliable pollinator service. We tested this long-standing hypothesis by assessing geographic covariation among pollinator reliability, outcrossing rates, heterozygosity, and relevant floral traits across populations of Dalechampia scandens in Costa Rica. Mean outcrossing rates ranged from 0.16 to 0.49 across four populations, and covaried with the average rates of pollen arrival on stigmas, a measure of pollinator reliability. Across populations, genetically based differences in herkogamy (anther-stigma distance) were associated with variation in stigmatic pollen loads, outcrossing rates, and heterozygosity. These observations are consistent with the hypothesis that, when pollinators are unreliable, floral traits promoting autonomous selfing evolve as a mechanism of reproductive assurance. Extensive covariation between floral traits and mating system among closely related populations further suggests that floral traits influencing mating systems track variation in adaptive optima generated by variation in pollinator reliability.

Notes

Files

Opedal_etal_2016_bisexual_phase_data_Dryad.txt

Files (38.9 kB)

Name Size Download all
md5:b22caac7c427aa96fd481916a9344eaf
19.7 kB Preview Download
md5:5b79d84b07173b53da8b41835862e43f
19.1 kB Preview Download

Additional details

Related works

Is cited by
10.1111/ele.12701 (DOI)