Satellite telemetry reveals higher fishing mortality rates than previously estimated, suggesting overfishing of an apex marine predator

Author:

Byrne Michael E.1ORCID,Cortés Enric2,Vaudo Jeremy J.1,Harvey Guy C. McN.1,Sampson Mark3,Wetherbee Bradley M.14,Shivji Mahmood1

Affiliation:

1. Guy Harvey Research Institute, Nova Southeastern University, Dania Beach, FL 33004, USA

2. National Marine Fisheries Service, National Oceanic and Atmospheric Administration, Panama City, FL 32408, USA

3. Fish Finder Adventures, Ocean City, MD 21842, USA

4. Department of Biological Sciences, University of Rhode Island, Kingston, RI 02881, USA

Abstract

Overfishing is a primary cause of population declines for many shark species of conservation concern. However, means of obtaining information on fishery interactions and mortality, necessary for the development of successful conservation strategies, are often fisheries-dependent and of questionable quality for many species of commercially exploited pelagic sharks. We used satellite telemetry as a fisheries-independent tool to document fisheries interactions, and quantify fishing mortality of the highly migratory shortfin mako shark ( Isurus oxyrinchus ) in the western North Atlantic Ocean. Forty satellite-tagged shortfin mako sharks tracked over 3 years entered the Exclusive Economic Zones of 19 countries and were harvested in fisheries of five countries, with 30% of tagged sharks harvested. Our tagging-derived estimates of instantaneous fishing mortality rates ( F = 0.19–0.56) were 10-fold higher than previous estimates from fisheries-dependent data (approx. 0.015–0.024), suggesting data used in stock assessments may considerably underestimate fishing mortality. Additionally, our estimates of F were greater than those associated with maximum sustainable yield, suggesting a state of overfishing. This information has direct application to evaluations of stock status and for effective management of populations, and thus satellite tagging studies have potential to provide more accurate estimates of fishing mortality and survival than traditional fisheries-dependent methodology.

Funder

Guy Harvey Ocean Foundation

Virgin Unite

Florida Sea Grant

Swiss Shark Foundation/Hai Stiftung

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Environmental Science,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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