Abstract
The genetic structure of a metapopulation of the weedy plant, Silene alba, was quantified by calculating FST, Wright's measure of the among-deme component of genetic variance, for seven polymorphic allozyme loci and a chloroplast DNA (cpDNA) polymorphism. Specifically, FST was estimated separately for 12 recently founded demes and 11 demes that had been established in the same area for at least six years, in order to assess the influence of founding events on genetic structure. The FST value for the recently established populations was the larger of the two estimates for six of the seven allozyme polymorphisms and for the cpDNA polymorphism, showing that the metapopulation dynamics of extinction and colonization enhance genetic structure. Combined with an estimate of k, the size of colonizing groups, the FST values were also used to estimate φ, the probability that two alleles found in a colonizing group originated in the same source population. Information from allozymes and cpDNA resulted in estimates of φ of 0.73 and 0.89, respectively, suggesting that relatively little mixing of individuals from diverse source populations occurs during colonization.
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Acknowledgements
The authors wish to thank M. Whitlock, M. Wade, P. Thrall and C. Richards for their advice on various aspects of this project. Logistical support was provided by the Mountain Lake Biological Station. Financial support was provided by National Science Foundation Award DEB-9221175.
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McCauley, D., Raveill, J. & Antonovics, J. Local founding events as determinants of genetic structure in a plant metapopulation. Heredity 75, 630–636 (1995). https://doi.org/10.1038/hdy.1995.182
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DOI: https://doi.org/10.1038/hdy.1995.182
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