Literature DB >> 33031635

Tracking the response of industrial fishing fleets to large marine protected areas in the Pacific Ocean.

Timothy D White1, Tiffany Ong1, Francesco Ferretti1,2, Barbara A Block1, Douglas J McCauley3,4, Fiorenza Micheli1,5, Giulio A De Leo1.   

Abstract

Large marine protected areas (MPAs) of unprecedented size have recently been established across the global oceans, yet their ability to meet conservation objectives is debated. Key areas of debate include uncertainty over nations' abilities to enforce fishing bans across vast, remote regions and the intensity of human impacts before and after MPA implementation. We used a recently developed vessel tracking data set (produced using Automatic Identification System detections) to quantify the response of industrial fishing fleets to 5 of the largest MPAs established in the Pacific Ocean since 2013. After their implementation, all 5 MPAs successfully kept industrial fishing effort exceptionally low. Detected fishing effort was already low in 4 of the 5 large MPAs prior to MPA implementation, particularly relative to nearby regions that did not receive formal protection. Our results suggest that these large MPAs may present major conservation opportunities in relatively intact ecosystems with low immediate impact to industrial fisheries, but the large MPAs we considered often did not significantly reduce fishing effort because baseline fishing was typically low. It is yet to be determined how large MPAs may shape global ocean conservation in the future if the footprint of human influence continues to expand. Continued improvement in understanding of how large MPAs interact with industrial fisheries is a crucial step toward defining their role in global ocean management.
© 2020 Society for Conservation Biology.

Entities:  

Keywords:  commercial fishing; fisheries; manejo espacial; marine protected areas; pesca comercial; pesquerías; rastreo de navíos; spatial management; vessel tracking; áreas marinas protegidas

Year:  2020        PMID: 33031635     DOI: 10.1111/cobi.13584

Source DB:  PubMed          Journal:  Conserv Biol        ISSN: 0888-8892            Impact factor:   6.560


  1 in total

1.  High levels of connectivity over large distances in the diadematid sea urchin Centrostephanus sylviae.

Authors:  David Veliz; Noemi Rojas-Hernández; Pablo Fibla; Boris Dewitte; Sebastián Cornejo-Guzmán; Carolina Parada
Journal:  PLoS One       Date:  2021-11-04       Impact factor: 3.240

  1 in total

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