Genetic variation and population structure in central and isolated populations of balsam fir,Abies balsamea(Pinaceae)
- 1 May 2002
- journal article
- Published by Wiley in American Journal of Botany
- Vol. 89 (5) , 783-791
- https://doi.org/10.3732/ajb.89.5.783
Abstract
Genetic variation and spatial genetic structure in balsam fir (Abies balsamea) were examined in two isolated populations in Iowa and Minnesota thought to be paleorefugia and in two ecologically central populations in old-growth forests of Upper Michigan. Overall levels of genetic variability at 22 allozyme loci were lower than that found in most conifer species (Ho values ranged from 0.005 in the isolated populations to 0.025 in the central populations). The mean FIS value (0.154) was larger than usually found in conifers and suggests moderate levels of inbreeding. The mean FST, an estimate of genetic diversity among populations, was 3.7% of the total diversity, a value lower than the mean for conifers. Nm, the number of migrants per generation, was 6.5, suggesting either some gene flow among populations or a lack of genetic differentiation. Spatial autocorrelation analysis revealed a moderately patchy structure, with gene flow distances of 30–70 m in the central populations and at least 10 m in the isolated populations. The future of the ecologically central populations depends on maintenance of an intact forest mosaic. The low genetic variability in the small, isolated populations suggests that habitat fragmentation has led to a reduction in evolutionary potential and that the future viability of these populations will likely require active management in the face of global climate change.Keywords
This publication has 58 references indexed in Scilit:
- ENVIRONMENTAL CORRELATES OF POPULATION DIFFERENTIATION IN ATLANTIC HERRINGEvolution, 2005
- Inbreeding and Extinction: Island PopulationsConservation Biology, 1998
- Factors influencing levels of genetic diversity in woody plant speciesNew Forests, 1992
- Genetic variation between and within populations of Engelmann spruce and subalpine firGenome, 1990
- Consequences of Stochastic Elements in Plant MigrationThe American Naturalist, 1988
- Genetic relationships in Abies (fir) of eastern United States: an electrophoretic studyCanadian Journal of Botany, 1984
- Genetic variation in space and time in a population of ponderosa pineHeredity, 1981
- Spatial autocorrelation in biology: 2. Some biological implications and four applications of evolutionary and ecological interestBiological Journal of the Linnean Society, 1978
- Spatial autocorrelation in biology: 1. MethodologyBiological Journal of the Linnean Society, 1978
- THE GENETICAL STRUCTURE OF POPULATIONSAnnals of Eugenics, 1949