Rare mutations in the spatial Lambda-Fleming-Viot model in a fluctuating environment and SuperBrownian Motion
Abstract
We investigate the behaviour of an establishing mutation which is subject to rapidly fluctuating selection under the Lambda-Fleming-Viot model and show that under a suitable scaling it converges to the Feller diffusion in a random environment. We then extend to a population that is distributed across a spatial continuum. In this setting the scaling limit is the SuperBrownian motion in a random environment.The scaling results for the behaviour of the rare allele are achieved via particle representations which belong to the family of `lookdown constructions'. This generalises the results obtained for the neutral version of the model by Chetwynd-Diggle and Etheridge (2018), which was proved using a duality argument. To our knowledge this is the first instance of the application of the lookdown approach in which other techniques seem unavailable.
Cite
@article{arxiv.1901.04374,
title = {Rare mutations in the spatial Lambda-Fleming-Viot model in a fluctuating environment and SuperBrownian Motion},
author = {Jonathan Chetwynd-Diggle and Aleksander Klimek},
journal= {arXiv preprint arXiv:1901.04374},
year = {2019}
}
Comments
60 pages