Geographic clines in wing morphology relate to colonization history in New World but not Old World populations of yellow dung flies |
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Authors: | Martin A Schäfer David Berger Patrick T Rohner Anders Kjaersgaard Stephanie S Bauerfeind Frédéric Guillaume Charles W Fox Wolf U Blanckenhorn |
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Affiliation: | 1. Department of Evolutionary Biology and Environmental Studies, University of Zurich, CH‐8057 Zurich, Switzerland;2. Animal Ecology at Department of Ecology and Genetics, Evolutionary Biology Centre, Uppsala University, SE‐75236 Uppsala, Sweden;3. Department of Entomology, University of Kentucky, Lexington, Kentucky 40506 |
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Abstract: | Geographic clines offer insights about putative targets and agents of natural selection as well as tempo and mode of adaptation. However, demographic processes can lead to clines that are indistinguishable from adaptive divergence. Using the widespread yellow dung fly Scathophaga stercoraria (Diptera: Scathophagidae), we examine quantitative genetic differentiation (QST) of wing shape across North America, Europe, and Japan, and compare this differentiation with that of ten microsatellites (FST). Morphometric analyses of 28 populations reared at three temperatures revealed significant thermal plasticity, sexual dimorphism, and geographic differentiation in wing shape. In North America morphological differentiation followed the decline in microsatellite variability along the presumed route of recent colonization from the southeast to the northwest. Across Europe, where S. stercoraria presumably existed for much longer time and where no molecular pattern of isolation by distance was evident, clinal variation was less pronounced despite significant morphological differentiation (QST>FST). Shape vector comparisons further indicate that thermal plasticity (hot‐to‐cold) does not mirror patterns of latitudinal divergence (south‐to‐north), as might have been expected under a scenario with temperature as the major agent of selection. Our findings illustrate the importance of detailed phylogeographic information when interpreting geographic clines of dispersal traits in an adaptive evolutionary framework. |
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Keywords: | Allometry biogeography developmental canalization dispersal gene flow insect flight |
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