Fear-driven extinction and (de)stabilization in a predator-prey model incorporating prey herd behavior and mutual interference

Author:

Antwi-Fordjour Kwadwo1,Parshad Rana D.2,Thompson Hannah E.3,Westaway Stephanie B.1

Affiliation:

1. Department of Mathematics and Computer Science, Samford University, Birmingham, AL 35229, USA

2. Department of Mathematics, Iowa State University, Ames, IA 50011, USA

3. Department of Biological and Environmental Sciences, Samford University, Birmingham, AL 35229, USA

Abstract

<abstract><p>The indirect effect of predation due to fear has proven to have adverse effects on the reproductive rate of the prey population. Here, we present a deterministic two-species predator-prey model with prey herd behavior, mutual interference, and the effect of fear. We give conditions for the existence of some local and global bifurcations at the coexistence equilibrium. We also show that fear can induce extinction of the prey population from a coexistence zone in finite time. Our numerical simulations reveal that varying the strength of fear of predators with suitable choice of parameters can stabilize and destabilize the coexistence equilibrium solutions of the model. Further, we discuss the outcome of introducing a constant harvesting effort to the predator population in terms of changing the dynamics of the system, in particular, from finite time extinction to stable coexistence.</p></abstract>

Publisher

American Institute of Mathematical Sciences (AIMS)

Subject

General Mathematics

Reference69 articles.

1. A. J. Lotka, Elements of physical biology, Williams and Wilkins, Baltimore. Reprinted as Elements of mathematical biology, Dover, New York, 1925.

2. V. Volterra, Variazioni e fluttuazioni del numero d'individui in specie animali conviventi, Mem. R. Accad. Naz. Lincei, 2 (1926), 31–113.

3. G. F. Gause, The struggle for existence, Williams & Wilkins, Baltimore, Maryland, USA, 1934.

4. J. R. Beddington, Mutual interference between parasites or predators and its effect on searching efficiency, J. Animal Ecol., 44 (1975), 331–340. https://doi.org/10.2307/3866

5. D. L. DeAngelis, R. A. Goldstein, R. V. ONeill, A model for trophic interaction, Ecology, 56 (1975), 881–892. https://doi.org/10.2307/1936298

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