4.5 Article

Expression of additive genetic variance for fitness in a population of partridge pea in two field sites

Journal

EVOLUTION
Volume 72, Issue 11, Pages 2537-2545

Publisher

WILEY
DOI: 10.1111/evo.13614

Keywords

Adaptation; aster models; breeding values; Chamaecrista fasciculata; G x E; quantitative genetics

Funding

  1. National Science Foundation [DEB 1257462]
  2. NSF [DBI-1523866]
  3. USDA National Institute of Food and Agriculture Hatch project [1016272]

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Despite the importance of adaptation in shaping biological diversity over many generations, little is known about populations' capacities to adapt at any particular time. Theory predicts that a population's rate of ongoing adaptation is the ratio of its additive genetic variance for fitness, VA(W), to its mean absolute fitness, W over bar . We conducted a transplant study to quantify W over bar and standing VA(W) for a population of the annual legume Chamaecrista fasciculata in one field site from which we initially sampled it and another site where it does not currently occur naturally. We also examined genotype-by-environment interactions, G x E, as well as its components, differences between sites in VA(W) and in rank of breeding values for fitness. The mean fitness indicated population persistence in both sites, and there was substantial VA(W) for ongoing adaptation at both sites. Statistically significant G x E indicated that the adaptive process would differ between sites. We found a positive correlation between fitness of genotypes in the home and away environments, and G x E was more pronounced as the life-cycle proceeds. This study exemplifies an approach to assessing whether there is sufficient VA(W) to support evolutionary rescue in populations that are declining.

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