Author:
Ramírez-Mendoza Zurisaday,Sosa-Nishizaki Oscar,Pardo Mario A.,Herzka Sharon Z.,Wells R. J. David,Rooker Jay R.,Falterman Brett J.,Dreyfus-León Michel J.
Abstract
AbstractYellowfin tuna, Thunnus albacares, represents an important component of commercial and recreational fisheries in the Gulf of Mexico (GoM). We investigated the influence of environmental conditions on the spatiotemporal distribution of yellowfin tuna using fisheries’ catch data spanning 2012–2019 within Mexican waters. We implemented hierarchical Bayesian regression models with spatial and temporal random effects and fixed effects of several environmental covariates to predict habitat suitability (HS) for the species. The best model included spatial and interannual anomalies of the absolute dynamic topography of the ocean surface (ADTSA and ADTIA, respectively), bottom depth, and a seasonal cyclical random effect. High catches occurred mainly towards anticyclonic features at bottom depths > 1000 m. The spatial extent of HS was higher in years with positive ADTIA, which implies more anticyclonic activity. The highest values of HS (> 0.7) generally occurred at positive ADTSA in oceanic waters of the central and northern GoM. However, high HS values (> 0.6) were observed in the southern GoM, in waters with cyclonic activity during summer. Our results highlight the importance of mesoscale features for the spatiotemporal distribution of yellowfin tunas and could help to develop dynamic fisheries management strategies in Mexico and the U.S. for this valuable resource.
Funder
CONAHCYT
Mexican National Council for Science and Technology, Mexican Ministry of Energy, Hydrocarbon Fund
Centro de Investigación Científica y de Educación Superior de Ensenada, Baja California
Publisher
Springer Science and Business Media LLC