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Unexpected patterns of fisheries collapse in the world's oceans
Authors:Pinsky Malin L  Jensen Olaf P  Ricard Daniel  Palumbi Stephen R
Affiliation:aHopkins Marine Station, Department of Biology, Stanford University, Pacific Grove, CA 93950;;bInstitute of Marine and Coastal Sciences, Rutgers University, New Brunswick, NJ 08901; and;cDepartment of Biological Sciences, Dalhousie University, Halifax, NS, Canada, B3H 4J1
Abstract:Understanding which species are most vulnerable to human impacts is a prerequisite for designing effective conservation strategies. Surveys of terrestrial species have suggested that large-bodied species and top predators are the most at risk, and it is commonly assumed that such patterns also apply in the ocean. However, there has been no global test of this hypothesis in the sea. We analyzed two fisheries datasets (stock assessments and landings) to determine the life-history traits of species that have suffered dramatic population collapses. Contrary to expectations, our data suggest that up to twice as many fisheries for small, low trophic-level species have collapsed compared with those for large predators. These patterns contrast with those on land, suggesting fundamental differences in the ways that industrial fisheries and land conversion affect natural communities. Even temporary collapses of small, low trophic-level fishes can have ecosystem-wide impacts by reducing food supply to larger fish, seabirds, and marine mammals.
Keywords:body size   ecosystem-based management   food webs   life-history theory   marine conservation
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