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Fish population studies using parasites from the Southeastern Pacific Ocean: considering host population changes and species body size as sources of variability of parasite communities

Published online by Cambridge University Press:  15 August 2014

MARIO GEORGE-NASCIMENTO*
Affiliation:
Departamento de Ecología, Facultad de Ciencias, Universidad Católica de la Santísima Concepción, Concepción, Chile
MARCELO OLIVA
Affiliation:
Instituto de Ciencias Naturales Alexander von Humboldt, Facultad de Ciencias del Mar y Recursos Biológicos, Universidad de Antofagasta, Antofagasta, Chile
*
* Corresponding author: Departamento de Ecología, Facultad de Ciencias, Universidad Católica de la Santísima Concepción, Concepción, Chile. E-mail: [email protected]

Summary

Research using parasites in fish population studies in the South Eastern Pacific (SEP) is summarized. There are 27 such studies (snapshots mainly) in single host species sampled at different geographic localities and at somewhat similar times. They have been devoted mainly to economically important species, though others on coastal and intertidal fish or on less- or non-commercial species provide insights on scales of temporal and spatial variation of parasite infracommunities. Later, we assess whether the probability of harbouring parasites depends on the host species body size. Our results indicate that a stronger tool for fish population studies may be developed under regular (long term) scrutiny of parasite communities, especially of small fish host species, due to their larger variability in richness, abundance and total biomass, than in large fish species. Finally, it might also be necessary to consider the effects of fishing on parasite communities as well as the natural oscillations (coupled or not) of host and parasite populations.

Type
Fisheries
Copyright
Copyright © Cambridge University Press 2014 

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References

REFERENCES

Abaunza, P., Murta, A. G., Campbell, N., Cimmaruta, R., Comesaña, A. S., Dahle, G., Garcfa-Santamaria, M. T., Gordo, L. S., Iversen, S. A., MacKenzie, K., Magoulas, A., Mattiucci, S., Molloy, J., Nascetti, G., Pinto, A. L., Quinta, R., Ramos, P., Sanjuan, A., Santos, A. T., Stransky, C. and Zimmermann, C. (2008). Stock identity of horse mackerel Trachurus trachurus in the Northeast Atlantic and Mediterranean Sea: integrating the results from different stock identification approaches. Fisheries Research 89, 196209.CrossRefGoogle Scholar
Aldana, M., Oyarzún, J. and George-Nascimento, M. (1995). Isópodos parásitos como indicadores poblacionales del jurel Trachurus symmetricus murphyi (Nichols, 1920) (Pisces: Carangidae) frente a las costas de Chile. Biología Pesquera (Chile) 24, 2332.Google Scholar
Ashford, J., Serra, R., Saavedra, J. C. and Letelier, J. (2011). Otolith chemistry indicates large-scale connectivity in Chilean jack mackerel (Trachurus murphyi), a highly mobile species in the Southern Pacific Ocean. Fisheries Research 107, 291299.CrossRefGoogle Scholar
Avdeyev, V. V. (1992). On the migratory routes of horse mackerels in the Pacific Ocean. Zoologicheski Zhurnal 71, 5865.Google Scholar
Balboa, L. and George-Nascimento, M. (1998). Variaciones ontogenéticas y entre años en las infracomunidades de parásitos metazoos de dos especies de peces marinos en Chile. Revista Chilena de Historia Natural 71, 2737.Google Scholar
Begg, G. A. and Waldman, J. R. (1999). An holistic approach to fish stock identification. Fisheries Research 43, 3544.CrossRefGoogle Scholar
Camus, P. (2001). Biogeografía marina de Chile continental. Revista Chilena de Historia Natural 74, 587617.CrossRefGoogle Scholar
Ceballos, S. G., Lessa, E. P., Victorio, M. F. and Fernández, D. A. (2012). Phylogeography of the sub-Antarctic notothenioid fish Eleginops maclovinus: evidence of population expansion. Marine Biology 159, 499505.CrossRefGoogle Scholar
Chávez, R. A., Valdivia, I. M. and Oliva, M. E. (2007). Local variability in metazoan parasites of the pelagic fish species, Engraulis ringens: implications for fish stock assessment using parasites as biological tags. Journal of Helminthology 81, 113116.CrossRefGoogle ScholarPubMed
Cortés, N., Oyarzún, C. and Galleguillos, R. (1996). Diferenciación poblacional en sardina común Strangomera bentincki (Norman, 1936). II: Análisis multivariado de morfometría y merística. Revista de Biologia Marina 31, 91105.Google Scholar
Cubillos, L., Ruiz, P., Claramunt, G., Gacitúa, S., Núñez, S., Castro, L., Riquelme, K., Alarcón, C., Oyarzún, C. and Sepúlveda, A. (2007). Spawning, daily egg production, and spawning stock biomass estimation for common sardine (Strangomera bentincki) and anchovy (Engraulis ringens) off central southern Chile in 2002. Fisheries Research 86, 228240.CrossRefGoogle Scholar
Curin-Osorio, S., Cubillos, L. and Chong, J. (2012). On the intraspecific variation in morphometry and shape of sagittal otoliths of common sardine, Strangomera bentincki, off central-southern Chile. Scientia Marina 76, 659666.Google Scholar
Díaz, F. and George-Nascimento, M. (2002). Estabilidad temporal de las infracomunidades de parásitos en la borrachilla Scartichthys viridis (Valenciennes, 1836) (Pisces: Blenniidae) en la costa central de Chile. Revista Chilena de Historia Natural 75, 641649.CrossRefGoogle Scholar
Ferrada, S., Hernández, K., Montoya, R. and Galleguillos, R. (2002). Estudio poblacional del recurso anchoveta (Engraulis ringens Jenyns 1842) (Clupeiformes, Engraulidae), mediante análisis de ADN. Gayana (Concepción, Chile) 66, 243248.Google Scholar
Flores, K. and George-Nascimento, M. (2009). Las infracomunidades de parásitos de dos especies de Scartichthys (Pisces: Blenniidae) en localidades cercanas del norte de Chile. Revista Chilena de Historia Natural 82, 6371.CrossRefGoogle Scholar
Galleguillos, R., Troncoso, L., Monsalves, J. and Oyarzún, C. (1997). Diferenciación poblacional en la sardina chilena Strangomera bentincki (Pisces: Clupeidae) análisis genético de variabilidad proteínica. Revista Chilena de Historia Natural 70, 351361.Google Scholar
Galleguillos, R., Troncoso, L., Oyarzún, C., Astorga, M. and Peñaloza, M. (2000). Genetic differentiation in Chilean hake Merluccius gayi gayi (Pisces: Merlucciidae). Hydrobiologia 420, 4954.CrossRefGoogle Scholar
Garcías, F., Mendoza, R. and George-Nascimento, M. (2001).Variación entre años de las infracomunidades de parásitos metazoos de la corvina Cilus gilberti (Pisces: Sciaenidae) en Chile. Revista Chilena de Historia Natural 74, 833840.CrossRefGoogle Scholar
George-Nascimento, M. (1996). Populations and assemblages of metazoan parasites in the hake Merluccius gayi (Guichenot) (Gadiformes: Merluccidae) from the Southeastern Pacific Ocean: stock implications. Journal of Fish Biology 48, 557568.CrossRefGoogle Scholar
George-Nascimento, M. (2000). Geographical variations in the jack mackerel, Trachurus symmetricus murphyi populations in the southeastern Pacific ocean as evidenced from the associated parasite communities. Journal of Parasitology 86, 929932.CrossRefGoogle ScholarPubMed
George-Nascimento, M. and Arancibia, H. (1992). Stocks ecológicos del jurel (Trachurus symmetricus murphyi Nichols) en tres zonas de pesca frente a Chile, detectados mediante comparación de su fauna parasitaria y morfometría. Revista Chilena de Historia Natural 65, 453470.Google Scholar
George-Nascimento, M. and Arancibia, H. (1994). La fauna parasitaria y la morfometría de la merluza austral Merluccius australis (Hutton) y su aporte a la distinción de unidades de stock. Biología Pesquera (Chile) 23, 3147.Google Scholar
George-Nascimento, M. and Moscoso, D. (2013). Variación local y geográfica de lãs infracomunidades de parásitos de la anchoveta Engraulis ringens en Chile. Revista de Biología Marina y Oceanografía 48, 207212.CrossRefGoogle Scholar
George-Nascimento, M., Garcías, F. and Muñoz, G. (2002). Parasite body volume and infracommunity patterns in the southern pomfret Brama australis (Pisces: Bramidae). Revista Chilena de Historia Natural 75, 835839.CrossRefGoogle Scholar
George-Nascimento, M., Lobos, V., Torrijos, C. and Khan, R. A. (2004 a). Species composition of assemblages of Ceratomyxa (Myxozoa), parasites of lings Genypterus (Ophidiidae) in the Southeastern Pacific Ocean: an ecomorphometric approach. Journal of Parasitology 90, 13521355.CrossRefGoogle ScholarPubMed
George-Nascimento, M., Muñoz, G., Marquet, P. and Poulin, R. (2004 b). Testing the energetic equivalence rule with helminth endoparasites of vertebrates. Ecology Letters 7, 527531.CrossRefGoogle Scholar
George-Nascimento, M., Mellado, A., Saavedra, S. and Carvajal, J. (2009). Variabilidad de las comunidades de parásitos metazoos del róbalo Eleginops maclovinus (Cuvier & Valenciennes 1830) (Pisces: Eleginopidae) en Chile. Revista Chilena de Historia Natural 82, 199207.CrossRefGoogle Scholar
George-Nascimento, M., Moscoso, D., Niklitschek, E. and González, K. (2011). Variación geográfica de las comunidades de parásitos de la merluza de tres aletas Micromesistius australis al sur de Sudamérica. Revista de Biología Marina y Oceanografía 46, 5358.CrossRefGoogle Scholar
Gerlotto, F., Gutiérrez, M. and Bertrand, A. (2012). Insight on population structure of the Chilean jack mackerel (Trachurus murphyi). Aquatic Living Resources 25, 341355.CrossRefGoogle Scholar
González, L. and Carvajal, J. (1994). Estudio parasitológico de Merluccius australis (Hutton, 1872) del mar interior de Aysén. Investigación Pesquera (Chile) 38, 7585.Google Scholar
González, M. T. and Acuña, E. (1998). Metazoan parasites of the red rockfish Sebastes capensis off Northern Chile. Journal of Parasitology 84, 783788.CrossRefGoogle ScholarPubMed
González, M. T. and Acuña, E. (2000). Influence of host size and sex on the endohelminth infracommunities of the red rockfish Sebastes capensis off northern Chile. Journal of Parasitology 86, 854857.CrossRefGoogle ScholarPubMed
González, M. T. and Moreno, C. A. (2005). The distribution of the ectoparasite fauna of Sebastes capensis from the southern hemisphere does not correspond with zoogeographical provinces of free-living marine animals. Journal of Biogeography 32, 15391547.CrossRefGoogle Scholar
González, M. T. and Poulin, R. (2005). Spatial and temporal predictability of the parasite community structure of a benthic marine fish along its distributional range. International Journal for Parasitology 35, 13691377.CrossRefGoogle ScholarPubMed
González, M. T., Barrientos, C. and Moreno, C. A. (2006). Biogeographical patterns in endoparasite communities of a marine fish (Sebastes capensis Gmelin) with extended range in the southern Hemisphere. Journal of Biogeography 33, 10861095.CrossRefGoogle Scholar
Hechinger, R. F. (2013). A metabolic and body-size scaling framework for parasite within-host abundance, biomass, and energy flux. American Naturalist 182, 234248.CrossRefGoogle ScholarPubMed
Henríquez, V. P., González, M. T., Licandeo, R. and Carvajal, J. (2011). Metazoan parasite communities of rock cod Eleginops maclovinus along southern Chilean coast and their use as biological tags at a local spatial scale. Journal of Fish Biology 79, 18511865.CrossRefGoogle Scholar
Iannacone, J., Morón, L. and Guizado, S. (2010). Variación entre años de la fauna de parásitos metazoos de Sciaena deliciosa (Tschudi, 1846) (Perciformes: Sciaenidae) en Lima, Perú. Latin American Journal of Aquatic Research 38, 218226.CrossRefGoogle Scholar
Kalavati, C., Longshaw, M. and MacKenzie, K. (1995). Two species of protozoan parasites (Myxosporea: Bivalvulida), one new, from Merluccius australis and M. hubbsi (Pisces: Teleostei) in the southwest Atlantic and southeast Pacific. Journal of Natural History 29, 865870.CrossRefGoogle Scholar
Lehodey, P., Alheit, J., Barange, M., Baumgartner, T., Beaugrand, G., Drinkwater, K., Fromentin, M., Hare, S. R., Ottersen, G., Perry, R. I., Roy, C., van der Lingen, C. D. and Werner, F. (2006). Climate variability, fish, and fisheries. Journal of Climate 19, 50095030.CrossRefGoogle Scholar
Lester, R. J. G. and MacKenzie, K. (2009). The use and abuse of parasites as stock markers for fish. Fisheries Research 97, 12.CrossRefGoogle Scholar
Licandeo, R. R., Barrientos, C. A. and González, M. T. (2006). Age, growth rates, sex change and feeding habits of notothenioid fish Eleginops maclovinus from the central-southern Chilean coast. Environmental Biology of Fishes 77, 5161.CrossRefGoogle Scholar
Llanos-Rivera, A. and Castro, L. R. (2004). Latitudinal and seasonal egg size variation of the anchoveta (Engraulis ringens) off the Chilean coast. Fishery Bulletin 102, 207212.Google Scholar
MacKenzie, K. and Longshaw, M. (1995). Parasites of the hakes Merluccius australis and M. hubbsi in the waters around the Falkland Islands, southern Chile, and Argentina, with an assessment of their potential value as biological tags. Canadian Journal of Fisheries and Aquatic Sciences 52, 213224.CrossRefGoogle Scholar
Mackenzie, K., Brickle, P., Hemmingsen, W. and George-Nascimento, M. (2013). Parasites of hoki, Macruronus magellanicus, in the Southwest Atlantic and Southeast Pacific Oceans, with an assessment of their potential value as biological tags. Fisheries Research 145, 15.CrossRefGoogle Scholar
Mouillot, D., George-Nascimento, M. and Poulin, R. (2005). Richness, structure and functioning of metazoan parasite communities. Oikos 109, 447460.CrossRefGoogle Scholar
Muñoz, G., Valdebenito, V. and George-Nascimento, M. (2002). La dieta y la fauna de parásitos metazoos del torito Bovichthys chilensis Regan 1914 (Pisces: Bovichthydae) en la costa de Chile centro-sur: variaciones geográficas y ontogenéticas. Revista Chilena de Historia Natural 75, 661671.CrossRefGoogle Scholar
Niklitschek, E. J., Secor, D. H., Toledo, P., Lafon, A. and George-Nascimento, M. (2010). Segregation of SE Pacific and SW Atlantic southern blue whiting stocks: integrating evidence from complementary otolith microchemistry and parasite assemblage approaches. Environmental Biology of Fishes 89, 399413.CrossRefGoogle Scholar
Ojeda, F. P. and Fariña, J. M. (1996). Temporal variations in the intensity, activity, and trophic patterns of the rockfish Sebastes capensis, off central Chilean coast. Revista Chilena de Historia Natural 69, 205211.Google Scholar
Oliva, M. E. (1994). Parasites of the Chilean jack mackerel Trachurus symmetricus murphyi (Pisces: Carangidae). Memorias do Instituto Oswaldo Cruz 89, 363364.CrossRefGoogle Scholar
Oliva, M. E. (1999). Metazoan parasites of the jack mackerel Trachurus murphyi (Teleostei, Carangidae) in a latitudinal gradient from South America (Chile and Peru). Parasite (Paris, France) 6, 223230.CrossRefGoogle Scholar
Oliva, M. E. (2001). Metazoan parasites of Macruronus magellanicus from southern Chile as biological tags. Journal of Fish Biology 58, 16171622.CrossRefGoogle Scholar
Oliva, M. E. (2013) Is Anisakis simplex s.l. a biological marker for stock identification of Strangomera bentincki from Chile? Journal of Fish Biology 83, 412416.CrossRefGoogle Scholar
Oliva, M. E. and Ballón, I. (2002). Metazoan parasites of the Chilean hake Merluccius gayi gayi as a tool for stock discrimination. Fisheries Research 56, 313320.CrossRefGoogle Scholar
Oliva, M. E. and González, M. T. (2004). Metazoan parasites of Sebastes capensis from two localities in northern Chile as tools for stock identification. Journal of Fish Biology 64, 170175.CrossRefGoogle Scholar
Oliva, M. E., González, M. T. and Acuña, E. (2004). Metazoan parasite fauna as a biological tag for the habitat of the flounder Hippoglossina macrops from northern Chile, in a depth gradient. Journal of Parasitology 90, 13741377.CrossRefGoogle Scholar
Oliva, M. E., Fernández, I., Oyarzún, C. and Murillo, C. (2008 a). Metazoan parasites of the stomach of Dissostichus eleginoides Smitt 1898 (Pisces: Nototheniidae) from southern Chile: a tool for stock discrimination? Fisheries Research 91, 119122.CrossRefGoogle Scholar
Oliva, M. E., Valdivia, I. M., Costa, G., Freitas, N., Pinheiro de Carvalho, M. A., Sánchez, L. and Luque, J. L. (2008 b). What can metazoan parasites reveal about the taxonomy of Scomber japonicus Houttuyn in the coast of South America and Madeira Islands? Journal of Fish Biology 72, 545554.CrossRefGoogle Scholar
Pardo-Gandarillas, M. C., Garcías, F. and George-Nascimento, M. (2004). La dieta y la fauna de parásitos del pejesapo Gobiesox marmoratus Jenyns, 1842 (Pisces: Gobiesocidae) en el litoral centro – sur de Chile: dos procesos concatenados pero no correlacionados. Revista Chilena de Historia Natural 77, 627637.CrossRefGoogle Scholar
Pino, C., Cubillos, L. A., Araya, M. and Sepúlveda, A. (2004). Otolith weight as an estimator of age in the Patagonian grenadier, Macruronus magellanicus, in central-south Chile. Fisheries Research 66, 145156.CrossRefGoogle Scholar
Poulin, R. (2004). Macroecological patterns of species richness in parasite assemblages. Basic and Applied Ecology 5, 423434.CrossRefGoogle Scholar
Poulin, R. and George-Nascimento, M. (2007). The scaling of total parasite biomass with host body mass. International Journal for Parasitology 37, 359364.CrossRefGoogle ScholarPubMed
Rodríguez, L. and George-Nascimento, M. (1996). La fauna de endoparásitos metazoos del bacalao de profundidad Dissostichus eleginoides Smitt, 1898 (Pisces: Nototheniidae) en Chile central: aspectos taxonómicos, ecológicos y zoogeográficos. Revista Chilena de Historia Natural 69, 2133.Google Scholar
Salinas, X., González, M. T. and Acuña, E. (2008). Metazoan parasites of the thumb grenadier Nezumia pulchella, from the south-eastern Pacific, off Chile, and their use for discrimination of host populations. Journal of Fish Biology 73, 683691.CrossRefGoogle Scholar
Takeshima, H., Hatanaka, A., Yamada, S. I., Yamazaki, Y., Kimura, I. and Nishida, M. (2011). Low genetic differentiation between two geographically separated populations of demersal gadiform fishes in the southern hemisphere. Genes and Genetic Systems 86, 339349.CrossRefGoogle ScholarPubMed
Timi, J. T. (2007). Parasites as biological tags for stock discrimination in marine fish from South American Atlantic waters. Journal of Helminthology 81, 107111.CrossRefGoogle ScholarPubMed
Valdivia, I., Chávez, R. and Oliva, M. E. (2007). Metazoan parasites of Engraulis ringens as tools for stock discrimination along the Chilean coast. Journal of Fish Biology 70, 15041511.CrossRefGoogle Scholar
Vidal, R. R., Carson, E. W. and Gold, J. R. (2012). Population structure in Chilean hake Merluccius gayi as revealed by mitochondrial DNA sequences. Journal of Fish Biology 81, 17631772.CrossRefGoogle ScholarPubMed
Williams, H. H., MacKenzie, K. and McCarthy, A. M. (1992). Parasites as biological indicators of the population biology, migrations, diet, and phylogenetics of fish. Reviews in Fish Biology and Fisheries 2, 144176.CrossRefGoogle Scholar
Wood, C., Lafferty, K. and Micheli, F. (2010). Fishing out marine parasites? Impacts of fishing on rates of parasitism in the ocean. Ecology Letters 13, 761775.CrossRefGoogle ScholarPubMed