| Literature DB >> 24639512 |
Rebecca L Lewison1, Larry B Crowder, Bryan P Wallace, Jeffrey E Moore, Tara Cox, Ramunas Zydelis, Sara McDonald, Andrew DiMatteo, Daniel C Dunn, Connie Y Kot, Rhema Bjorkland, Shaleyla Kelez, Candan Soykan, Kelly R Stewart, Michelle Sims, Andre Boustany, Andrew J Read, Patrick Halpin, W J Nichols, Carl Safina.
Abstract
Recent research on ocean health has found large predator abundance to be a key element of ocean condition. Fisheries can impact large predator abundance directly through targeted capture and indirectly through incidental capture of nontarget species or bycatch. However, measures of the global nature of bycatch are lacking for air-breathing megafauna. We fill this knowledge gap and present a synoptic global assessment of the distribution and intensity of bycatch of seabirds, marine mammals, and sea turtles based on empirical data from the three most commonly used types of fishing gears worldwide. We identify taxa-specific hotspots of bycatch intensity and find evidence of cumulative impacts across fishing fleets and gears. This global map of bycatch illustrates where data are particularly scarce--in coastal and small-scale fisheries and ocean regions that support developed industrial fisheries and millions of small-scale fishers--and identifies fishing areas where, given the evidence of cumulative hotspots across gear and taxa, traditional species or gear-specific bycatch management and mitigation efforts may be necessary but not sufficient. Given the global distribution of bycatch and the mitigation success achieved by some fleets, the reduction of air-breathing megafauna bycatch is both an urgent and achievable conservation priority.Entities:
Keywords: fisheries bycatch; gillnets; longlines; trawls; trophic downgrading
Mesh:
Year: 2014 PMID: 24639512 PMCID: PMC3986184 DOI: 10.1073/pnas.1318960111
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205