A Symmetric Intraguild Predation Model for the Invasive Lionfish and Native Grouper

Friday, October 28, 2011
Hall 1-2 (San Jose Convention Center)
Margaret-Rose Leung , Oregon State University, Corvallis, OR
Dustin Padilla , Arizona State University, Tempe, AZ
Noah Shemer , Arizona State University, Tempe, AZ
Juan Vinagera , South Mountain Community College, Phoenix, AZ
Baojun Song, PhD , Department of Mathematical Sciences, Montclair State University, Montclair, NJ
Lionfish are top-level venomous predators native to the Indo-Pacific Ocean. Over the past decade, the species Pterois volitans and P. miles have become established throughout most of the western Atlantic Ocean, where they drastically impact coral reef communities. Overfishing of native species, such as grouper, who share their niche may be the reason for the lionfish's success; research has suggested that at high density, groupers can act as a lionfish biocontrol. To determine if competition or predation is the mechanism behind lionfish suppression, we construct a symmetric intraguild predation model of lionfish, grouper, and prey. Thus, we assume lionfish and grouper compete for prey in addition to consuming each other. Holling type I functional responses are used to represent fecundity and predation. We conduct an equilibrium stability analysis of the general model. After estimating parameter ranges, simulations and a sensitivity analysis indicate the parameters most influential to lionfish growth rate. The implied control strategies are then tested by varying harvesting and predation rates.