GENETIC DRIFT AND COLLECTIVE DISPERSAL CAN RESULT IN CHAOTIC GENETIC PATCHINESS
Article first published online: 16 NOV 2012
DOI: 10.1111/j.1558-5646.2012.01826.x
© 2012 The Author(s).
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How to Cite
Broquet, T., Viard, F. and Yearsley, J. M. (2012), GENETIC DRIFT AND COLLECTIVE DISPERSAL CAN RESULT IN CHAOTIC GENETIC PATCHINESS. Evolution. doi: 10.1111/j.1558-5646.2012.01826.x
Publication History
- Article first published online: 16 NOV 2012
- Accepted manuscript online: 22 OCT 2012 08:45AM EST
- Received March 28, 2012 Accepted September 25, 2012 Data Archived: Dryad doi:10.5061/dryad.612g8
- Abstract
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- Supporting Information
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Figure S1. Coancestry Q2 expected at equilibrium in an infinite island model with collective dispersal when migration rate m is below 1.
Figure S2. Within-deme gene diversity (Hs) at mutation-migration-drift equilibrium in individual-based simulations (100 replicates) of a structured population (nd = 1000, N = 10) with extinction and/or collective dispersal.
Figure S3. Number of alleles (k) per microsatellite locus and per deme observed at mutation-migration-drift equilibrium in individual-based simulations (100 replicates) of a structured population (nd = 1000, N = 10) with extinction and/or collective dispersal.
Figure S4. Distribution of "temporal" FSS estimates (i.e., differentiation between two samples taken from within the same breeding group at one generation interval, eq. (7)) in individual-based simulations of a structured population (nd = 1000, N = 10) with extinction and/or collective dispersal.
Figure S5. Effect of migration rate on the distribution of spatial pairwise FST (panel a) and temporal FSS estimates (panel b) in individual-based simulations of a structured population (nd = 1000, N = 10) with extinction (e = 0.5) and collective dispersal (ψ = 0.5).
| Filename | Format | Size | Description |
|---|---|---|---|
| EVO_1826_sm_SuppMat.pdf | 614K | Supporting info item |
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