Regional heterogeneity and gene flow maintain variance in a quantitative trait within populations of lodgepole pine
- 21 March 2006
- journal article
- research article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 273 (1594) , 1587-1593
- https://doi.org/10.1098/rspb.2006.3498
Abstract
Genetic variation is of fundamental importance to biological evolution, yet we still know very little about how it is maintained in nature. Because many species inhabit heterogeneous environments and have pronounced local adaptations, gene flow between differently adapted populations may be a persistent source of genetic variation within populations. If this migration–selection balance is biologically important then there should be strong correlations between genetic variance within populations and the amount of heterogeneity in the environment surrounding them. Here, we use data from a long-term study of 142 populations of lodgepole pine (Pinus contorta) to compare levels of genetic variation in growth response with measures of climatic heterogeneity in the surrounding region. We find that regional heterogeneity explains at least 20% of the variation in genetic variance, suggesting that gene flow and heterogeneous selection may play an important role in maintaining the high levels of genetic variation found within natural populations.Keywords
This publication has 67 references indexed in Scilit:
- HOW MUCH OF THE VARIATION IN ADAPTIVE DIVERGENCE CAN BE EXPLAINED BY GENE FLOW? AN EVALUATION USING LAKE-STREAM STICKLEBACK PAIRSEvolution, 2004
- Response of forest trees to global environmental changesForest Ecology and Management, 2004
- Geographic pattern of local optimality in natural populations of lodgepole pineForest Ecology and Management, 2004
- Shifting clinal patterns and microsatellite variation in Drosophila serrata populations: a comparison of populations near the southern border of the species rangeJournal of Evolutionary Biology, 2002
- Clines in polygenic traitsGenetics Research, 1999
- Genetic Responses to Climate in Pinus contorta: Niche Breadth, Climate Change, and ReforestationEcological Monographs, 1999
- Latitudinal variation in wild populations of Drosophila melanogaster: heritabilities and reaction normsJournal of Evolutionary Biology, 1999
- Maintenance of Ecologically Significant Genetic Variation in the Tiger Swallowtail Butterfly Through Differential Selection and Gene FlowEvolution, 1995
- Genecology of Douglas‐Fir in a Watershed in the Oregon CascadesEcology, 1979
- Spatial patterns in the distributions of polygenic charactersJournal of Theoretical Biology, 1978