A framework for mapping small-scale coastal fisheries using fishers' knowledge

Author:

Léopold Marc12,Guillemot Nicolas134,Rocklin Delphine1,Chen Cheryl5

Affiliation:

1. IRD (Institut de Recherche pour le Développement), U227 COREUS2, BP A5, 98848 Nouméa Cedex, New Caledonia

2. Fisheries Department of Vanuatu, Private Bag 9045, Port-Vila, Vanuatu

3. Université Européenne de Bretagne, UMR 985 Agrocampus Ouest/INRA, 65 rue de Saint-Brieuc, CS 84215, 35042 Rennes, France

4. Koniambo Nickel SAS, Environment Department, BP 679, 98860 Koné, New Caledonia

5. Ecotrust, Marine Planning Program, 721 NW 9th Avenue, Suite 200, Portland, Oregon 97211, USA

Abstract

Abstract Collecting spatial information on fisheries catch and effort is essential to understanding the spatial processes of exploited population dynamics and to manage heterogeneously distributed resources and uses. The use of fishers' knowledge through geographical information systems (GISs) is increasingly considered as a promising source of local information on small-scale coastal fisheries. In this paper we describe the first framework for mapping entire small-scale coastal fisheries using fishers' knowledge on catch size and fishing effort. Four mangrove and coral reef fisheries targeting invertebrates or finfish in New Caledonia (southwest Pacific) were mapped following a five-step framework: (i) stratified random sampling of regular fishers; (ii) collection of fishers' knowledge of fishing areas, fishing effort, and catch size through map-based interviews; (iii) data integration into a spatial geodatabase; (iv) statistical extrapolation of fisher data to the fishery scale; and (v) mapping of catch, effort, and catch per unit effort (CPUE) for each fishery using a GIS overlay procedure. We found evidence that fishers' knowledge supplied precise and accurate quantitative and spatial information on catch size, fishing effort and CPUE for entire fisheries. Fisheries maps captured the fine-scale spatial distribution of fishing activities in a variety of ways according to target taxa, gear type, and home ports. Applications include area-based marine conservation planning and fishery monitoring, management, and governance. This integrated framework can be generalized to a large range of data-poor coastal and inland small-scale fisheries.

Publisher

Oxford University Press (OUP)

Subject

Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics,Oceanography

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