The population ecology of contemporary adaptations: What empirical studies reveal about the conditions that promote adaptive evolution

被引:629
作者
Reznick D.N. [1 ]
Ghalambor C.K. [1 ]
机构
[1] Department of Biology, University of California, Riverside, CA
基金
美国国家科学基金会;
关键词
Colonization; Fossil record; Heavy metal tolerance; Industrial melanism; Insecticide resistance; Local adaptation; Metapopulation; Rapid evolution;
D O I
10.1023/A:1013352109042
中图分类号
学科分类号
摘要
Under what conditions might organisms be capable of rapid adaptive evolution? We reviewed published studies documenting contemporary adaptations in natural populations and looked for general patterns in the population ecological causes. We found that studies of contemporary adaptation fall into two general settings: (1) colonization of new environments that established newly adapted populations, and (2) local adaptations within the context of a heterogeneous environments and metapopulation structure. Local ecological processes associated with colonizations and introductions included exposure to: (1) a novel host or food resource; (2) a new biophysical environment; (3) a new predator community; and (4) a new coexisting competitor. The new environments that were colonized often had depauperate communities, sometimes because of anthropogenic disturbance. Local adaptation in heterogeneous environments was also often associated with recent anthropogenic changes, such as insecticide and herbicide resistance, or industrial melanism. A common feature of many examples is the combination of directional selection with at least a short-term opportunity for population growth. We suggest that such opportunities for population growth may be a key factor that promotes rapid evolution, since directional selection might otherwise be expected to cause population decline and create the potential for local extinction, which is an ever-present alternative to local adaptation. We also address the large discrepancy between the rate of evolution observed in contemporary studies and the apparent rate of evolution seen in the fossil record.
引用
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页码:183 / 198
页数:15
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  • [1] Able K.P., Belthoff J.R., Rapid evolution of migratory behavior in the introduced house finch of eastern North America, Proc. Royal Soc. London, Series B, (1998)
  • [2] Antonovics J., Bradshaw A.D., Turner R.G., Heavy metal tolerance in plants, Adv. Ecol. Res., 7, pp. 1-85, (1971)
  • [3] Baker A.J., Morphometric differentiation in New Zealand populations of the house sparrow, Evolution, 34, pp. 638-653, (1980)
  • [4] Barton N., Partridge L., Limits to natural selection, BioEssays, 22, pp. 1075-1084, (2000)
  • [5] Bell M.A., Baumgartner J.V., Olson E.C., Patterns of temporal change in single morphological characters of a Miocene stickleback fish, Paleobiology, 11, pp. 258-271, (1985)
  • [6] Berry R.J., The evolution of an island population of the house mouse, Evolution, 18, pp. 468-483, (1964)
  • [7] Berthold P., Helbig A.J., Mohr G., Querner U., Rapid microevolution of migratory behaviour in a wild bird species, Nature, 360, pp. 668-670, (1992)
  • [8] Bookstein F.L., Gingerich P.D., Kluge A.G., Hierarchical linear modeling of the tempo and mode of evolution, Paleobiology, 4, pp. 120-134, (1978)
  • [9] Bradshaw A.D., The importance of evolutionary ideas in ecology - And vice versa, Evolutionary Ecology, pp. 1-26, (1984)
  • [10] Burger R., Lynch M., Evolution and extinction in a changing environment: A quantitative-genetic analysis, Evolution, 49, pp. 151-163, (1995)