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      The Developmental, Physiological, Neural, and Genetical Causes and Consequences of Frequency-Dependent Selection in the Wild

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      Annual Review of Ecology, Evolution, and Systematics
      Annual Reviews

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          The Measurement of Selection on Correlated Characters

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            Widespread parallel evolution in sticklebacks by repeated fixation of Ectodysplasin alleles.

            Major phenotypic changes evolve in parallel in nature by molecular mechanisms that are largely unknown. Here, we use positional cloning methods to identify the major chromosome locus controlling armor plate patterning in wild threespine sticklebacks. Mapping, sequencing, and transgenic studies show that the Ectodysplasin (EDA) signaling pathway plays a key role in evolutionary change in natural populations and that parallel evolution of stickleback low-plated phenotypes at most freshwater locations around the world has occurred by repeated selection of Eda alleles derived from an ancestral low-plated haplotype that first appeared more than two million years ago. Members of this clade of low-plated alleles are present at low frequencies in marine fish, which suggests that standing genetic variation can provide a molecular basis for rapid, parallel evolution of dramatic phenotypic change in nature.
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              The genetical theory of natural selection.

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                Author and article information

                Journal
                Annual Review of Ecology, Evolution, and Systematics
                Annu. Rev. Ecol. Evol. Syst.
                Annual Reviews
                1543-592X
                1545-2069
                December 2006
                December 2006
                : 37
                : 1
                : 581-610
                Article
                10.1146/annurev.ecolsys.37.091305.110128
                9ed72cca-317f-438f-960a-2c0fba94fbed
                © 2006
                History

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