Evolutionary rates for multivariate traits: the role of selection and genetic variation.
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ABSTRACT: A fundamental question in evolutionary biology is the relative importance of selection and genetic architecture in determining evolutionary rates. Adaptive evolution can be described by the multivariate breeders' equation (Δz(-)=Gβ), which predicts evolutionary change for a suite of phenotypic traits (Δz(-)) as a product of directional selection acting on them (β) and the genetic variance-covariance matrix for those traits (G ). Despite being empirically challenging to estimate, there are enough published estimates of G and β to allow for synthesis of general patterns across species. We use published estimates to test the hypotheses that there are systematic differences in the rate of evolution among trait types, and that these differences are, in part, due to genetic architecture. We find
SUBMITTER: Pitchers W
PROVIDER: S-EPMC4084537 | biostudies-literature | 2014 Aug
REPOSITORIES: biostudies-literature
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