Spatio-temporal distribution of the swordfish Xiphias gladius (Linnaeus, 1758) caught by the Brazilian longline fleet

Authors

  • Antônia Duciene Feitosa Lima
  • Humberto Gomes Hazin
  • Guelson Batista da Silva
  • Marcelo Augusto Bezerra

DOI:

https://doi.org/10.1590/

Keywords:

Industrial fishing, Generalized additive mixed models, Migration pattern, Pelagic fisheries, South atlantic

Abstract

Studies relating the populational structure of target species to operational and environmental variables contribute
directly to the management of the fisheries in these resources. Therefore, this study aimed to provide data
on fishing and ecology of the swordfish (Xiphias gladius) caught by the Brazilian longline fleet operating in
the western Atlantic between 2010 and 2016. Generalized additive mixed models were used to evaluate the
relationship between explanatory variables and responses based on Catch Per Unit of Effort (CPUE) data.
Results show that the Brazilian longline fleet catches the swordfish mostly between latitudes of 5°N to 30°S and
longitudes of 20° to 50°W and that the swordfish prefers temperatures under 25°C at depths below 60 meters.
The species showed a tendency toward intermediate light intensity, predominating in the crescent moon phase,
and a preference for areas with low chlorophyll concentrations. Our findings on operational and environmental
interactions with swordfish CPUE suggest areas and times that can be used by fishing fleets and government
institutions as a starting point for swordfish management strategies.

References

REFERENCES

Amorim, A. F. 1976. O que teria acontecido às pescarias

de atuns?. a pesca do atum no Sudeste e Sul do Brasil.

Pesca Em Revista, (7), 18–25.

Amorim, A. F. & Arfelli, C. A. 1988. Description of the

Brazilian swordfish fishery in Santos. Collective Volume

of Scientific Papers ICCAT, 27(1), 315–317.

Augustin, N., Trenkel, V., Wood, S. & Lorance, P. 2013.

Space-time modelling of blue ling for fisheries stock

management. Environmetrics (London, Ont.), 24(2),

–119. DOI: https://doi.org/10.1002/env.2196

Azevedo, V. G. 2003. Aspectos biológicos e dinâmica

das capturas do tubarão-azul (Prionace glauca)

realizadas pela frota espinheleira de Itajaí - SC, Brasil

(Dissertação de Mestrado). Universidade de São Paulo,

São Paulo, 160 pp. https://doi.org/10.11606/d.21.2003.

tde-13082004-111652

Bach, P., Dagorn, L., Bertrand, A., Josse, E. & Misselis, C.

Acoustic telemetry versus monitored longline

fishing for studying the vertical distribution of

pelagic fish. Bigeye tuna (Thunnus obesus) in French

Polynesia. Fisheries Research, 60(2), 281–292. DOI:

https://doi.org/10.1016/s0165-7836(02)00180-7

Bigelow, K. A., Boggs, C. H. & He, X. 1999. Environmental

effects on swordfish and blue shark catch rates in the US

North Pacific longline fishery. Fisheries Oceanography,

(3), 178–198. DOI: https://doi.org/10.1046/j.1365-2419.

00105.x

Brill, R. W., Lowe, T. E. & Cousins, K. L. 1998. How water

temperature really limits the vertical movements of

tunas and billfishes. It’s the Heart Stupid. International

congress on biology of fish. Baltimore, MD.

Carey, F. & Robison, B. 1981. Daily patterns in the activities

of swordfish, Xiphias gladius, observed by acoustic

telemetry. Fishery Bulletin, 79, 277–292.

Castrejón, M. & Charles, A. 2013. Improving fisheries

co-management through ecosystem-based spatial

management. The Galapagos Marine Reserve. Marine

Policy, 38, 235–245. DOI: https://doi.org/10.1016/

j.marpol.2012.05.040

Coelho, R. & Muñoz-Lechuga, R. 2019. Hooking mortality

of swordfish in pelagic longlines. Comments on the

efficiency of minimum retention sizes. Reviews in Fish

Biology and Fisheries, 29, 453–463. DOI: https://doi.org/

1007/s11160-018-9543-0

Collette, B. 1995. Xiphiidae. Peces espada. Guia FAO para

identificación de especies para los fines de la pesca

(Vol. 3, pp. 1651–1652). Roma: FAO.

Cosgrove, R., Arregi, I. & Arrizabalaga, H. 2006. Archival

tagging of albacore tuna (Thunnus alalunga) in the

North Atlantic. A pilot study. Collective Volume of

Scientific Papers ICCAT, 59(3), 923–927.

Dagorn, L., Holland, K., Hallier, J.-P., Taquet, M., Moreno, G.,

Sancho, G., Itano, D., Aumeeruddy, R., Girard, C.,

Million, J. & Fonteneau, A. 2006. Deep diving behavior

observed in yellowfin tuna (Thunnus albacares).

Aquatic Living Resources, 19(1), 85–88. DOI: https://

doi.org/10.1051/alr:2006008

Dagorn, L., Josse, E. & Bach, P. 2000. Individual

differences in horizontal movements of yellowfin tuna

(Thunnus albacares) in nearshore areas in French

Polynesia, determined using ultrasonic telemetry.

Aquatic Living Resources, 13(4), 193–202. DOI:

https://doi.org/10.1016/s0990-7440(00)01063-9

Dunn, P. & Smyth, G. 2005. Series evaluation of Tweedie

exponential dispersion model densities. Statistics

and Computing, 15(4), 267–280. DOI: https://doi.org/

1007/s11222-005-4070-y

Gaertner, J., Poisson, F. & Taquet, M. 2001. Analyse des

interactions entre les captures de grands pélagiques de

la flottille palangrière réunionnaise et les conditions de

pêche (caractéristiques techniques, environnement).

L’espadon: de la recherche à l’exploitation durable

(pp. 106–127). Paris: Ifremer. Accessed: https://archimer.

ifremer.fr/doc/2001/rapport-6427.pdf#page=63

Guitart-Manday, G. 1964. Biología pesquera del emperador

o pez de espada, Xiphias gladius Linnaeus (Teleostomi:

Xiphiidae) en las aguas de cuba. Poeyana, 1, 3–37.

Haimovici, M., Santos, R., Bainy, M., Fischer, L. & Cardoso, L.

Abundance, distribution and population dynamics

of the short fin squid Illex argentinus in Southeastern

and Southern Brazil. Fisheries Research, 152, 1–12.

DOI: https://doi.org/10.1016/j.fishres.2013.09.007

Hazin, F. H. V. 1994. Fisheries-oceanographical study

on tunas, billfishes and sharks in the southwestern

equatorial Atlantic ocean (Tese de doutorado).

東京水産大学 (Universidade de Pesca de Tóquio),

Tokyo, 217 pp. https://doi.org/10.11501/3076461

Distribution of swordfish caught by the Brazilian fleet

Ocean and Coastal Research 2023, v71:e23023 10

Lima et al.

Hazin, F. H. V., Hazin, H. G., Boeckmann, C. & Travassos,

P. 2001. La reproduction de l’espadon (Xiphias gladius)

dans l‘atlantique sud-ouest equatorial: la ponte et la

fecondité. Collective Volume of Scientific Papers ICCAT,

(4), 1233–1240.

Hazin, H. G. 2006. Influência das variáveis oceanográficas

na dinâmica populacional e pesca do espadarte,

Xiphias gladius Linnaeus 1758, capturados pela

frota brasileira (Tese de Doutorado). Universidade do

Algarve, Faro, 202 pp.

Hazin, H. G. & Erzini, K. 2008. Assessing swordfish

distribution in the South Atlantic from spatial predictions.

Fisheries Research, 90(1), 45–55. DOI: https://doi.org/

1016/j.fishres.2007.09.010

Hazin, H. G., Vieira, F. H. & Travassos, P. 2002. Analyse

de la distribution de frequence de taille des espadons

(Xiphias gladius, Linnaeus 1758) capturés dans

l’atlantique sud-ouest equatorial. Collective Volume of

Scientific Papers ICCAT, 54(5), 1579–1585.

Hyrenbach, K., Forney, K. & Dayton, P. 2000. Marine

protected areas and ocean basin management. Aquatic

Conservation, 10(6), 437–458. DOI: https://doi.org/

1002/1099-0755

Itoh, T. & Tsuji, S. 2003. Migration patterns of Young Pacific

bluefin tuna (Thunnus orientalis) determined with

archival tags. Fishery Bulletin, 101(3), 514–534.

Lazaridis, E. 2022. lunar. Lunar Phase & Distance,

Seasons and Other Environmental Factors. Available

at: https://cran.r-project.org/package=lunar. Acessed:

October 2022.

Lira, M. G. 2016. Pesca de atuns e afins no Oceano Atlântico.

interações oceanográficas, implicações socioeconômicas

e tecnológicas. Natal: Universidade Federal do Rio

Grande do Norte. Available at: https://repositorio.ufrn.br/

bitstream/123456789/22112/1/MarceloGomesDeLira_

DISSERT.pdf Acessed: 16 June 2019.

Marra, G. & Wood, S. 2011. Practical variable selection for

Generalized Additive Models. Computational Statistics &

Data Analysis, 55(7), 2372–2387. DOI: https://doi.org/

1016/j.csda.2011.02.004

Maury, O., Gascuel, D., Marsac, F., Fonteneau, A. &

Rosa, A.-L. D. 2001. Hierarchical interpretation of nonlinear

relationships linking yellowfin tuna (Thunnus albacares)

distribution to the environment in the Atlantic Ocean.

Canadian Journal of Fisheries and Aquatic Sciences,

(3), 458–469. DOI: https://doi.org/10.1139/f00-261

Molina, A., Molina, R., Santana, J. & Ariz, J. 2004. Marcado de

patudo em las islas Canarias dentro del betyp. Collective

Volume of Scientific Papers ICCAT, 56(2), 769–772.

Poisson, F., Bargain, R. M. & Taquet, M. 2001. Premiers

essais de marquages d’espadon (Xiphias gladius)

a l’aide de marques intelligentes archives de type

‘pop up’. IOTC proceedings (pp. 245–254). Available at:

https://archimer.ifremer.fr/doc/00129/24049/22013.pdf.

Accessed: 25 February 2022.

Poisson, F. & Guyomard, D. 2001. Description de la

technique et des stratégies de pêche de la flottille

palangrière réunionnaise. L’espadon (pp. 61–78). Paris:

Ifremer. Available at: https://archimer.ifremer.fr/doc/2001/

rapport-6427.pdf#page=63. Accessed: 25 February 2022.

Prates, A. P. L., Gonçalves, M. A. & Rosa, M. R. 2012. Panorama

da conservação dos ecossistemas costeiros e marinhos

no brasil (2nd ed.). Brasília: MMA. Available at: https://

www.terrabrasilis.org.br/ecotecadigital/images/abook/

pdf/2016/15-PanoramadaConservao.pdf. Accessed:

June 2020.

Ricker, W. E. 1975. Computation and interpretation of

biological statistics of fish populations. Bulletin of the

Fisheries Research Board of Canada, 191, 1–382.

Ricklefs, R. 2011. A economia da natureza (6th ed.). Rio de

Janeiro: Guanabara Koogan.

Santos, M. & Guarcia, A. 2005. The influence of the moon

phase on the CPUEs for the Portuguese swordfish

(Xiphias gladius L. 1758) fishery. Collective Volume of

Scientific Papers ICCAT, 8(4), 1466–1469.

Schick, R., Goldstein, J. & Lutcavage, M. 1994. Bluefin tuna

(Thunnus thynnus) distribution in relation to sea surface

temperature fronts in the Gulf of Maine (1994–96).

Fisheries Oceanography, 13(4), 225–238. DOI:

https://doi.org/10.1111/j.1365-2419.2004.00290.x

Swain, D. & Sinclair, A. 1994. Fish distribution and

catchability: What is the appropriate measure of

distribution? Canadian Journal of Fisheries and Aquatic

Sciences, 51(5), 1046–1054. DOI: https://doi.org/

1139/f94-104

Tweedie, M. 1984. An index which distinguishes between

some important exponential families. Proceedings of the

Indian Statistical Institute Golden Jubilee International

Conference. Statistics (pp. 579–604). Calcutta: Indian

Statistical Institute and Statistical Pub. Society.

Vaske Júnior, T. & Lessa, R. 2005. Estratégia alimentar

do espadarte (Xiphias gladius) no Atlântico Equatorial

Sudoeste. Tropical Oceanography, 33(2), 219–227.

DOI: https://doi.org/10.5914/tropocean.v33i2.5064

Vignaux, M. 1996. Analysis of spatial structure in fish

distribution using commercial catch and effort data

from the New Zealand hoki fishery. Canadian Journal of

Fisheries and Aquatic Sciences, 53(5), 963–973. DOI:

https://doi.org/10.1139/f96-035

Wood, S. N. 2008. Fast stable direct fitting and smoothness

selection for generalized additive models. Journal of

the Royal Statistical Society, 70(3), 495–518. DOI:

https://doi.org/10.1111/j.1467-9868.2007.00646.x

Zagaglia, C. R., Lorenzzetti, J. A. & Stech, J. L. 2004a.

Remote sensing data and longline catches of yellowfin

tuna (Thunnus albacares) in the equatorial Atlantic.

Remote Sensing of Environment, 93(1–2), 267–281.

DOI: https://doi.org/10.1016/j.rse.2004.07.015

Zavala-Camin, L. 1982. Distribucion vertical y estacional de

tunideos y otras espécies pelágicas en el suoeste y sur

del Brasil, obtenida por médio de analysis de contenido

estomacal. Collective Volume of Scientific Papers

ICCAT, 17, 439–443.

Zavala-Camin, L. A. 1987. Ocorrência de peixes,

cefalópodos e crustáceos em estômagos de atuns

e espécies afins, capturadas com espinhel no Brasil

(23o

S-34o

S) 1972-1985. Boletim Do Instituto de Pesca,

, 93–102.

Zheng, X. 2002. Does the North Atlantic current affect

spatial distribution of whiting? Testing environmental

hypotheses using statistical and GIS techniques.

ICES Journal of Marine Science, 59(2), 239–253. DOI:

https://doi.org/10.1006/jmsc.2001.1131

Downloads

Published

2024-04-10

How to Cite

Spatio-temporal distribution of the swordfish Xiphias gladius (Linnaeus, 1758) caught by the Brazilian longline fleet. (2024). Ocean and Coastal Research, 71. https://doi.org/10.1590/