Stability of ecosystem: global properties of a general predator-prey model

被引:46
作者
Korobeinikov, Andrei [1 ]
机构
[1] Univ Limerick, MACSI, Dept Math & Stat, Limerick, Ireland
来源
MATHEMATICAL MEDICINE AND BIOLOGY-A JOURNAL OF THE IMA | 2009年 / 26卷 / 04期
基金
爱尔兰科学基金会;
关键词
ecosystem; coexistence; global stability; non-linear attack rate; non-linear incidence rate; infectious disease; mass action; endemic equilibrium state; direct Lyapunov method; Lyapunov function; SIR model; chemostat model; compartment model; consumer-supplier model; prey-predator model; Lotka-Volterra model; NONLINEAR INCIDENCE; LYAPUNOV FUNCTIONS; EPIDEMIOLOGIC MODELS; DYNAMICS; REPRODUCTION; SIR; ENRICHMENT; SEIR;
D O I
10.1093/imammb/dqp009
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Establishing the conditions for the stability of ecosystems and for stable coexistence of interacting populations is a problem of the highest priority in mathematical biology. This problem is usually considered under specific assumptions made regarding the functional forms of non-linear feedbacks. However, there is growing understanding that this approach has a number of major deficiencies. The most important of these is that the precise forms of the functional responses involved in the model are unknown in detail, and we can hardly expect that these will be known in feasible future. In this paper, we consider the dynamics of two species with interaction of consumer-supplier (prey-predator) type. This model generalizes a variety of models of population dynamics, including a range of prey-predator models, SIR and SIRS epidemic models, chemostat models, etc. We assume that the functional responses that are usually included in such models are given by unspecified functions. Using the direct Lyapunov method, we derive the conditions which ensure global asymptotic stability of this general model. It is remarkable that these conditions impose much weaker constraints on the system properties than that are usually assumed. We also identify the parameter that allows us to distinguish between existence and non-existence of the coexisting steady state.
引用
收藏
页码:309 / 321
页数:13
相关论文
共 50 条
[21]   Global asymptotic stability of a predator-prey model with general functional response and including recruitment and capture in both species [J].
Hoang, Manh Tuan ;
Valverde, Jose C. .
FILOMAT, 2025, 39 (12) :4117-4135
[22]   GLOBAL STABILITY FOR A CLASS OF PREDATOR-PREY SYSTEMS [J].
HSU, SB ;
HUANG, TW .
SIAM JOURNAL ON APPLIED MATHEMATICS, 1995, 55 (03) :763-783
[23]   STABILITY OF A PREDATOR-PREY SYSTEM WITH PREY TAXIS IN A GENERAL CLASS OF FUNCTIONAL RESPONSES [J].
Yousefnezhad, M. ;
Mohammadi, S. A. .
ACTA MATHEMATICA SCIENTIA, 2016, 36 (01) :62-72
[24]   STABILITY OF A PREDATOR-PREY SYSTEM WITH PREY TAXIS IN A GENERAL CLASS OF FUNCTIONAL RESPONSES [J].
M.YOUSEFNEZHAD ;
S.A.MOHAMMADI .
Acta Mathematica Scientia, 2016, (01) :62-72
[25]   Global Stability of a Predator-Prey System with Stage Structure for the Predator [J].
Yan Ni XIAO Department of Mathematical SciencesThe University of LiverpoolLiverpool L ZLUK and Academy of Mathematics System SciencesChinese Academy of ScienceBeijing PRChinaLan Sun CHEN Academy of Mathematics System SciencesChinese Academy of ScienceBeijing PRChina .
ActaMathematicaSinica(EnglishSeries), 2004, 20 (01) :63-70
[26]   Global stability of a predator-prey system with stage structure for the predator [J].
Xiao, YN ;
Chen, LS .
ACTA MATHEMATICA SINICA-ENGLISH SERIES, 2004, 20 (01) :63-70
[27]   Global Stability of a Predator-Prey System with Stage Structure for the Predator [J].
Yan Ni Xiao ;
Lan Sun Chen .
Acta Mathematica Sinica, 2004, 20 :63-70
[28]   On the global asymptotic stability of a predator-prey model with Crowley-Martin function and stage structure for prey [J].
Hoang, Manh Tuan .
JOURNAL OF APPLIED MATHEMATICS AND COMPUTING, 2020, 64 (1-2) :765-780
[29]   Global Dynamics of a Predator-Prey Model with a General Growth Rate Function and Carrying Capacity [J].
Chen, Miqin ;
Yang, Wensheng .
COMMUNICATIONS ON APPLIED MATHEMATICS AND COMPUTATION, 2024,
[30]   Global stability in stochastic difference equations for predator-prey models [J].
Choo, Sangmok ;
Kim, Young-Hee .
JOURNAL OF COMPUTATIONAL ANALYSIS AND APPLICATIONS, 2017, 23 (03) :462-486