Dynamics of an LPAA model for Tribolium Growth: Insights into Population Chaos

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Main Authors: Brozak, Samantha J., Peralta, Sophia, Phan, Tin, Nagy, John D., Kuang, Yang
Format: Preprint
Published: 2024
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author Brozak, Samantha J.
Peralta, Sophia
Phan, Tin
Nagy, John D.
Kuang, Yang
author_facet Brozak, Samantha J.
Peralta, Sophia
Phan, Tin
Nagy, John D.
Kuang, Yang
contents Flour beetles (genus Tribolium) have long been used as a model organism to understand population dynamics in ecological research. A rich and rigorous body of work has cemented flour beetles' place in the field of mathematical biology. One of the most interesting results using flour beetles is the induction of chaos in a laboratory beetle population, in which the well-established LPA (larvae-pupae-adult) model was used to inform the experimental factors which would lead to chaos. However, whether chaos is an intrinsic property of flour beetles remains an open question. Inspired by new experimental data, we extend the LPA model by stratifying the adult population into newly emerged and mature adults and considering cannibalism as a function of mature adults. We fit the model to longitudinal data of larvae, pupae, and adult beetle populations to demonstrate the model's ability to recapitulate the transient dynamics of flour beetles. We present local and global stability results for the trivial and positive steady states and explore bifurcations and limit cycles numerically. Our results suggest that while chaos is a possibility, it is a rare phenomenon within realistic ranges of the parameters obtained from our experiment, and is likely induced by environmental changes connected to media changes and population censusing.
format Preprint
id arxiv_https___arxiv_org_abs_2411_14603
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dynamics of an LPAA model for Tribolium Growth: Insights into Population Chaos
Brozak, Samantha J.
Peralta, Sophia
Phan, Tin
Nagy, John D.
Kuang, Yang
Populations and Evolution
Dynamical Systems
37N25, 92B05
Flour beetles (genus Tribolium) have long been used as a model organism to understand population dynamics in ecological research. A rich and rigorous body of work has cemented flour beetles' place in the field of mathematical biology. One of the most interesting results using flour beetles is the induction of chaos in a laboratory beetle population, in which the well-established LPA (larvae-pupae-adult) model was used to inform the experimental factors which would lead to chaos. However, whether chaos is an intrinsic property of flour beetles remains an open question. Inspired by new experimental data, we extend the LPA model by stratifying the adult population into newly emerged and mature adults and considering cannibalism as a function of mature adults. We fit the model to longitudinal data of larvae, pupae, and adult beetle populations to demonstrate the model's ability to recapitulate the transient dynamics of flour beetles. We present local and global stability results for the trivial and positive steady states and explore bifurcations and limit cycles numerically. Our results suggest that while chaos is a possibility, it is a rare phenomenon within realistic ranges of the parameters obtained from our experiment, and is likely induced by environmental changes connected to media changes and population censusing.
title Dynamics of an LPAA model for Tribolium Growth: Insights into Population Chaos
topic Populations and Evolution
Dynamical Systems
37N25, 92B05
url https://arxiv.org/abs/2411.14603