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Skip to Search Results- 3range expansion
- 2neutral genetic diversity
- 1biological invasion
- 1climate change
- 1diffusion model
- 1dispersal evolution
- 3Biological Sciences, Department of
- 3Biological Sciences, Department of/Journal Articles (Biological Sciences)
- 1Mathematical and Statistical Sciences, Department of
- 1Mathematical and Statistical Sciences, Department of/Research Publications (Mathematical and Statistical Sciences)
- 1The NSERC TRIA Network (TRIA-Net)
- 1The NSERC TRIA Network (TRIA-Net)/Journal Articles (TRIA-Net)
- 1ALLISON K. SHAW
- 1AMY L. ANGERT
- 1BRETT A. MELBOURNE
- 1CARISSA D. BROWN
- 1CHRISTOPHERWEISS-LEHMAN
- 1FRITHJOF LUTSCHER
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2020-01-01
TOM E. X. MILLER, AMY L. ANGERT, CARISSA D. BROWN, JULIE A. LEE-YAW, MARK LEWIS, FRITHJOF LUTSCHER, NATHAN G. MARCULIS, BRETT A. MELBOURNE, ALLISON K. SHAW, MARIANNA SZ}UCS, OLIVIA TABARES, TAKUJI USUI, CHRISTOPHERWEISS-LEHMAN, JENNIFER L. WILLIAMS
Understanding the movement of species’ ranges is a classic ecological problem that takes on urgency in this era of global change. Historically treated as a purely ecological process, range expansion is now understood to involve eco-evolutionary feedbacks due to spatial genetic structure that...
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2016-01-01
Range expansion and range shifts are crucial population responses to climate change. Genetic consequences are not well understood but are clearly coupled to ecological dynamics that, in turn, are driven by shifting climate conditions. We model a population with a deterministic reaction– diffusion...
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2020-01-14
Nathan G. Marculis, Mark A. Lewis
The method of inside dynamics provides a theory that can track the dynamics of neutral gene fractions in spreading populations. However, the role of mutations has so far been absent in the study of the gene flow of neutral fractions via inside dynamics. Using integrodifference equations, we...