Title of article :
Periodic dynamics in a two-stage Allee effect model are driven by tension between stage equilibria
Author/Authors :
Joanna Gascoigne، نويسنده , , Romuald N. Lipcius، نويسنده ,
Issue Information :
دوماهنامه با شماره پیاپی سال 2005
Pages :
5
From page :
237
To page :
241
Abstract :
Single species difference population models can show complex dynamics such as periodicity and chaos under certain circumstances, but usually only when rates of intrinsic population growth or other life history parameter are unrealistically high. Single species models with Allee effects (positive density dependence at low density) have also been shown to exhibit complex dynamics when combined with overcompensatory density dependence or a narrow fertility window. Here we present a simple two-stage model with Allee effects which shows large amplitude periodic fluctuations for some initial conditions, without these requirements. Periodicity arises out of a tension between the critical equilibrium of each stage, i.e. when the initial population vector is such that the adult stage is above the critical value, while the juvenile stage is below the critical value. Within this area of parameter space, the range of initial conditions giving rise to periodic dynamics is driven mainly by adult mortality rates. Periodic dynamics become more important as adult mortality increases up to a certain point, after which periodic dynamics are replaced by extinction. This model has more realistic life history parameter values than most ‘chaotic’ models. Conditions for periodic dynamics might arise in some marine species which are exploited (high adult mortality) leading to recruitment limitation (low juvenile density) and might be an additional source of extinction risk.
Keywords :
Allee effect , critical threshold , matrix , oscillation , Positive density dependence , Unstable equilibrium
Journal title :
Theoretical Population Biology
Serial Year :
2005
Journal title :
Theoretical Population Biology
Record number :
773869
Link To Document :
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