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Population genetics meets ecology: a guide to individual-based simulations in continuous landscapes.


ABSTRACT: Individual-based simulation has become an increasingly crucial tool for many fields of population biology. However, implementing realistic and stable simulations in continuous space presents a variety of difficulties, from modeling choices to computational efficiency. This paper aims to be a practical guide to spatial simulation, helping researchers to implement realistic and efficient spatial, individual-based simulations and avoid common pitfalls. To do this, we delve into mechanisms of mating, reproduction, density-dependent feedback, and dispersal, all of which may vary across the landscape, discuss how these affect population dynamics, and describe how to parameterize simulations in convenient ways (for instance, to achieve a desired population density). We also demonstrate how to implement these models using the current version of the individual-based simulator, SLiM. Since SLiM has the capacity to simulate genomes, we also discuss natural selection - in particular, how genetic variation can affect demographic processes. Finally, we provide four short vignettes: simulations of pikas that shift their range up a mountain as temperatures rise; mosquitoes that live in rivers as juveniles and experience seasonally changing habitat; cane toads that expand across Australia, reaching 120 million individuals; and monarch butterflies whose populations are regulated by an explicitly modeled resource (milkweed).

SUBMITTER: Chevy ET 

PROVIDER: S-EPMC11291129 | biostudies-literature | 2024 Jul

REPOSITORIES: biostudies-literature

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Population genetics meets ecology: a guide to individual-based simulations in continuous landscapes.

Chevy Elizabeth T ET   Min Jiseon J   Caudill Victoria V   Champer Samuel E SE   Haller Benjamin C BC   Rehmann Clara T CT   Smith Chris C R CCR   Tittes Silas S   Messer Philipp W PW   Kern Andrew D AD   Ramachandran Sohini S   Ralph Peter L PL  

bioRxiv : the preprint server for biology 20250213


Individual-based simulation has become an increasingly crucial tool for many fields of population biology. However, continuous geography is important to many applications, and implementing realistic and stable simulations in continuous space presents a variety of difficulties, from modeling choices to computational efficiency. This paper aims to be a practical guide to spatial simulation, helping researchers to implement individual-based simulations and avoid common pitfalls. To do this, we delv  ...[more]

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