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Computer Research and Modeling, 2020, Volume 12, Issue 5, Pages 1165–1190
DOI: https://doi.org/10.20537/2076-7633-2020-12-5-1165-1190
(Mi crm841)
 

ANALYSIS AND MODELING OF COMPLEX LIVING SYSTEMS

Dynamics regimes of population with non-overlapping generations taking into account genetic and stage structures

G. P. Neverovaa, E. Ya. Frismanb

a Institute of Automation and Control Processes, Far Eastern Branch of RAS, 5 Radio st., Vladivostok, 690041, Russia
b Institute for Complex Analysis of Regional Problems, Far Eastern Branch of RAS, 4 Sholom-Aleikhem st., Birobidzhan, 679016, Russia
References:
Abstract: This paper studies a model of a population with non-overlapping generations and density-dependent regulation of birth rate. The population breeds seasonally, and its reproductive potential is determined genetically. The model proposed combines an ecological dynamic model of a limited population with non-overlapping generations and microevolutionary model of its genetic structure dynamics for the case when adaptive trait of birth rate controlled by a single diallelic autosomal locus with allelomorphs A and a. The study showed the genetic composition of the population, namely, will it be polymorphic or monomorphic, is mainly determined by the values of the reproductive potentials of heterozygote and homozygotes. Moreover, the average reproductive potential of mature individuals and intensity of self-regulation processes determine population dynamics. In particularly, increasing the average value of the reproductive potential leads to destabilization of the dynamics of age group sizes. The intensity of self-regulation processes determines the nature of emerging oscillations, since scenario of stability loss of fixed points depends on the values of this parameter. It is shown that patterns of occurrence and evolution of cyclic dynamics regimes are mainly determined by the features of life cycle of individuals in population. The life cycle leading to existence of non-overlapping generation gives isolated subpopulations in different years, which results in the possibility of independent microevolution of these subpopulations and, as a result, the complex dynamics emergence of both stage structure and genetic one. Fixing various adaptive mutations will gradually lead to genetic (and possibly morphological) differentiation and to differences in the average reproductive potentials of subpopulations that give different values of equilibrium subpopulation sizes. Further evolutionary growth of reproductive potentials of limited subpopulations leads to their number fluctuations which can differ in both amplitude and phase.
Keywords: population dynamics, stage and genetic structures, density-dependent regulation, dynamic modes, multistability, genetic diversity, shifting dynamic modes, change in direction of evolution.
Funding agency Grant number
Ministry of Science and Higher Education of the Russian Federation
The work was performed within the scope of the state tasks of the Institute of Automation and Control Processes FEB RAS, and the Institute for Complex Analysis of Regional Problems FEB RAS.
Received: 14.05.2020
Revised: 17.06.2020
Accepted: 29.06.2020
Document Type: Article
UDC: 51-76:574.34
Language: Russian
Citation: G. P. Neverova, E. Ya. Frisman, “Dynamics regimes of population with non-overlapping generations taking into account genetic and stage structures”, Computer Research and Modeling, 12:5 (2020), 1165–1190
Citation in format AMSBIB
\Bibitem{NevFri20}
\by G.~P.~Neverova, E.~Ya.~Frisman
\paper Dynamics regimes of population with non-overlapping generations taking into account genetic and stage structures
\jour Computer Research and Modeling
\yr 2020
\vol 12
\issue 5
\pages 1165--1190
\mathnet{http://mi.mathnet.ru/crm841}
\crossref{https://doi.org/10.20537/2076-7633-2020-12-5-1165-1190}
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