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Convergence of fishers' knowledge with a species distribution model in a Peruvian shark fishery

  • Julia G. Mason(corresponding author)
    ,
  • ,
  • Jeffrey C. Mangel
    ,
  • Stephanie Brodie
    ,
  • Steven J. Bograd
    ,
  • Larry B. Crowder
*Corresponding author for this work
Research Output:
Contribution to journal
Article
Peer-review

Open access

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Article number

e13

Journal (Volume, Issue Number)

Conservation Science and Practice (Volume 1, Issue 4)

Publication milestones

  • Published - 04/2019

Publication status

Published - 04/2019

Publication IDs

  • Scopus: 85074342988

Abstract

Limited data on the spatial, environmental, and human dimensions of small-scale fisheries hinder conservation planning, so the incorporation of fishers' local ecological knowledge may be a valuable way to fill data gaps while legitimizing management decisions. In Peru, vulnerable and poorly assessed juvenile smooth hammerhead sharks (Sphyrna zygaena) are the most commonly caught shark species in a small-scale drift gillnet fishery. We conducted semistructured interviews with 87 hammerhead fishers in three major Peruvian ports to elucidate the spatiotemporal niche of the hammerhead fishery and environmental drivers of juvenile hammerhead catch. We also built a biophysical model of hammerhead distribution that correlated remotely sensed environmental variables with a spatially explicit fishery observer dataset. Overall, we found a consensus between fishers' knowledge and species distribution modeling. Sea surface temperature and chlorophyll-a emerged as important environmental drivers of juvenile hammerhead catch, with both fishers' knowledge and the biophysical model identifying similar habitat preferences (~20–23oC and log chl-a >−1.6 mg/m3). Participatory mapping of fishing grounds also corresponded to the spatiotemporal patterns of predicted hammerhead distribution. This study points to the utility of combining fishers' knowledge and biophysical modeling for spatial, temporal, and/or dynamic management of these sharks in Peru and in other data-poor fisheries globally.

Funding Details

Achievement Rewards for College Scientists Foundation; Nippon Foundation Nereus Program; Society for Conservation Biology, Grant/Award Number: Graduate Student Research Award Deepest thanks to D. Sarmiento Burien, B. Diaz Solano, G. Vela, and participating fishermen for sharing their knowledge and time. We thank A. Gonzalez-Pestana, A. Pásara Polack, N. Acuña, and F. Córdova for input on the interview protocol, S. de la Puente Jeri for assistance with landings data, and J. Selgrath, H. Blondin, and R. Carlson for advice on analyzing the participatory maps. J.G.M. thanks the NF Nereus Program, ARCS Foundation, and SCB for support.
FundersFunding numbers
Nippon Foundation Nereus Program
-
ARCS
-
SCB
-

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  • SDG 14 - Life Below Water
    SDG 14 Life Below Water