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A spatially-explicit, individual-based demogenetic simulation framework for evaluating hybridization dynamics.

Authors :
Nathan, Lucas R.
Mamoozadeh, Nadya
Tumas, Hayley R.
Gunselman, Samuel
Klass, Keren
Metcalfe, Anya
Edge, Chris
Waits, Lisette P.
Spruell, Paul
Lowery, Erin
Connor, Ed
Bearlin, Andrew R.
Fortin, Marie-Josée
Landguth, Erin
Source :
Ecological Modelling. Jun2019, Vol. 401, p40-51. 12p.
Publication Year :
2019

Abstract

Highlights • CDMetaPOP now allows spatially-explicit, individual-based simulations of two species. • A hybrid index distinguishes parental species and their hybrids. • Species-specific growth relationships and mating behaviors are now possible. • Temperature-based fitness and selection relationships can be implemented. • CDMetaPOP is a valuable tool for exploring hybridization dynamics in diverse systems. Abstract Spatially-explicit individual-based simulation models provide a valuable tool for exploring complex ecological and evolutionary processes that are not easily empirically measured. Here, we present modifications of a spatially-explicit individual-based simulation model (CDMetaPOP) to accommodate a two-species system and simulations involving interspecific hybridization. We first describe how a hybrid (H) index is used to distinguish individuals of interspecific descent from those of either parental species. User-defined thresholds provide flexibility in the degree of admixture tolerated for classifying 'pure' individuals. We then detail relationships further informed by the H index, including individual growth, temperature-based fitness and selection, and mate preference behavior. Empirically derived species- and system-specific information can be incorporated into these relationships, for example, to produce differential growth among hybrids and parental species. Lastly, we demonstrate an application of this simulation framework by exploring the relative effects of temperature-based selection, mate preference behavior, and hybrid fitness on the rate and spatial extent of sympatric hybridization between two native riverine fish species, bull trout (Salvelinus confluentus) and Dolly Varden (Salvelinus malma), in the upper Skagit River system (United States and Canada). Results from this demonstration provide guidance for future empirical studies of bull trout, a federally threatened species. Understanding factors that contribute to the initiation and maintenance of hybridization, as well as the ecological and evolutionary consequences of this phenomenon, is of increasing importance given shifting species ranges due to large-scale landscape modification and a changing global climate. Our framework can be used to study a wide range of hybridization dynamics in any terrestrial or aquatic system, including comparisons of distinct environmental conditions or potential management responses. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03043800
Volume :
401
Database :
Academic Search Index
Journal :
Ecological Modelling
Publication Type :
Academic Journal
Accession number :
135929000
Full Text :
https://doi.org/10.1016/j.ecolmodel.2019.03.002