Effects of habitat modifications on the movement behavior of animals: the case study of Fish Aggregating Devices (FADs) and tropical tunas.

Acoustic tagging Associative behavior Density of floating objects Movement behavior Tropical tuna

Journal

Movement ecology
ISSN: 2051-3933
Titre abrégé: Mov Ecol
Pays: England
ID NLM: 101635009

Informations de publication

Date de publication:
10 Nov 2020
Historique:
received: 29 06 2020
accepted: 22 10 2020
entrez: 9 12 2020
pubmed: 10 12 2020
medline: 10 12 2020
Statut: epublish

Résumé

Aggregation sites represent important sources of environmental heterogeneity and can modify the movement behavior of animals. When these sites are artificially established through anthropogenic actions, the consequent alterations to animal movements may impact their ecology with potential implications for their fitness. Floating objects represent important sources of habitat heterogeneity for tropical tunas, beneath which these species naturally aggregate in large numbers. Man-made floating objects, called Fish Aggregating Devices (FAD), are used by fishers on a massive scale to facilitate fishing operations. In addition to the direct impacts that fishing with FADs has on tuna populations, assessing the effects of increasing the numbers of FADs on the ecology of tuna is key for generating sound management and conservation measures. This study investigates the effects of increasing numbers of FADs (aggregation sites) on the movements of tunas, through the comparison of electronic tagging data recorded from 146 individuals tunas (yellowfin tuna, Thunnus albacares, and skipjack tuna, Katsuwonus pelamis) tagged in three instrumented anchored FAD arrays (Mauritius, Oahu-Hawaii and Maldives), that differed according to their distances among neighboring FADs. The effect of increasing inter-FAD distances is studied considering a set of indices (residence times at FADs and absence (travel) times between two visits at FADs) and their trends. When inter-FAD distances decrease, tuna visit more FADs (higher connectivity between FADs), spend less time travelling between FADs and more time associated with them. The trends observed for the absence (travel) times appear to be compatible with a random-search component in the movement behaviour of tunas. Conversely, FAD residence times showed opposite trends, which could be a result of social behavior and/or prey availability. Our results provide the first evidence of changes in tuna associative behavior for increasing FAD densities. More generally, they highlight the need for comparing animal movements in heterogeneous habitats in order to improve understanding of the impacts of anthropogenic habitat modifications on the ecology of wild animals.

Sections du résumé

BACKGROUND BACKGROUND
Aggregation sites represent important sources of environmental heterogeneity and can modify the movement behavior of animals. When these sites are artificially established through anthropogenic actions, the consequent alterations to animal movements may impact their ecology with potential implications for their fitness. Floating objects represent important sources of habitat heterogeneity for tropical tunas, beneath which these species naturally aggregate in large numbers. Man-made floating objects, called Fish Aggregating Devices (FAD), are used by fishers on a massive scale to facilitate fishing operations. In addition to the direct impacts that fishing with FADs has on tuna populations, assessing the effects of increasing the numbers of FADs on the ecology of tuna is key for generating sound management and conservation measures.
METHODS METHODS
This study investigates the effects of increasing numbers of FADs (aggregation sites) on the movements of tunas, through the comparison of electronic tagging data recorded from 146 individuals tunas (yellowfin tuna, Thunnus albacares, and skipjack tuna, Katsuwonus pelamis) tagged in three instrumented anchored FAD arrays (Mauritius, Oahu-Hawaii and Maldives), that differed according to their distances among neighboring FADs. The effect of increasing inter-FAD distances is studied considering a set of indices (residence times at FADs and absence (travel) times between two visits at FADs) and their trends.
RESULTS RESULTS
When inter-FAD distances decrease, tuna visit more FADs (higher connectivity between FADs), spend less time travelling between FADs and more time associated with them. The trends observed for the absence (travel) times appear to be compatible with a random-search component in the movement behaviour of tunas. Conversely, FAD residence times showed opposite trends, which could be a result of social behavior and/or prey availability.
CONCLUSION CONCLUSIONS
Our results provide the first evidence of changes in tuna associative behavior for increasing FAD densities. More generally, they highlight the need for comparing animal movements in heterogeneous habitats in order to improve understanding of the impacts of anthropogenic habitat modifications on the ecology of wild animals.

Identifiants

pubmed: 33292617
doi: 10.1186/s40462-020-00230-w
pii: 10.1186/s40462-020-00230-w
pmc: PMC7654007
doi:

Types de publication

Journal Article

Langues

eng

Pagination

47

Références

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Integr Comp Biol. 2019 Oct 1;59(4):1049-1058
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PLoS One. 2014 May 15;9(5):e95049
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Auteurs

Géraldine Pérez (G)

MARBEC, Univ Montpellier, CNRS, Ifremer, IRD, Sète, France. geraldine.perez@ntymail.com.

Laurent Dagorn (L)

MARBEC, Univ Montpellier, CNRS, Ifremer, IRD, Sète, France.

Jean-Louis Deneubourg (JL)

Unit of Social Ecology, Université Libre de Bruxelles (ULB), Bruxelles, Belgium.

Fabien Forget (F)

MARBEC, Univ Montpellier, CNRS, Ifremer, IRD, Sète, France.

John D Filmalter (JD)

South African Institute for Aquatic Biodiversity, Grahamstown, South Africa.

Kim Holland (K)

Hawai'i Institute of Marine Biology at University of Hawai'i, Kane'ohe, Hawai'i, USA.

David Itano (D)

Institute for Marine and Atmospheric Reserch at University of Hawai'i, Mānoa, Hawai'i, USA.

Shiham Adam (S)

International Pole and Line Foundation, 1 London Street, Reading, RG1 4QW, UK.

Riyaz Jauharee (R)

MARBEC, Univ Montpellier, CNRS, Ifremer, IRD, Sète, France.

Sunil P Beeharry (SP)

Ministry of Ocean Economy, Marine Resources, Fisheries and Shipping, Port Louis, Mauritius.

Manuela Capello (M)

MARBEC, Univ Montpellier, CNRS, Ifremer, IRD, Sète, France.

Classifications MeSH