The impact of environmental variation on demographic convergence of Leslie matrix population models:An assessment using Lyapunov characteristic exponents

Grant, Alastair ORCID: https://orcid.org/0000-0002-1147-2375 and Benton, Timothy G. (1996) The impact of environmental variation on demographic convergence of Leslie matrix population models:An assessment using Lyapunov characteristic exponents. Theoretical Population Biology, 50 (1). pp. 18-30. ISSN 0040-5809

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Abstract

In a constant environment, the rate of convergence of a density- independent Leslie matrix model to stable age distribution is determined by the damping ratio (the ratio of the absolute magnitudes of the first and second eigenvalues of the projection matrix). In a stochastic environment, the difference between the first two Lyapunov exponents is known to be analogous to the logarithm of the damping ratio, but there has been no systematic investigation of the consequences of environmental variation on convergence rates. In this study, the Lyapunov spectrum has been calculated for a wide variety of density-independent projection matrices subject to random variations in vital rates. This allows the impact of these random variations on convergence rates to be assessed. For rapidly convergent life histories, stochastic variation leads to a decrease in convergence rate. For life histories which are slow to converge, stochastic variation speeds up convergence. These effects are, however, relatively minor, and the value of the damping ratio for the mean matrix is a good predictor of the damping ratio in a stochastic environment. Consequently, when only an approximate indication of convergence rates is needed, the damping ratio for the mean projection matrix gives a very good guide. Detailed calculations of the Lyapunov spectrum would only be necessary to make comparisons between similar life histories or if very precise information on convergence rates were needed.

Item Type: Article
Additional Information: Funding Information: This work was funded in part by the UK Natural Environment Research Council (Grant GR3 8331).
Uncontrolled Keywords: ecology, evolution, behavior and systematics ,/dk/atira/pure/subjectarea/asjc/1100/1105
Faculty \ School: Faculty of Science > School of Environmental Sciences
UEA Research Groups: Faculty of Science > Research Centres > Centre for Ecology, Evolution and Conservation
Faculty of Science > Research Groups > Environmental Biology
Faculty of Science > Research Groups > Centre for Ocean and Atmospheric Sciences
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Depositing User: LivePure Connector
Date Deposited: 16 Jul 2022 17:30
Last Modified: 23 Oct 2022 03:59
URI: https://ueaeprints.uea.ac.uk/id/eprint/86416
DOI: 10.1006/tpbi.1996.0021

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