Feeding ecology of Brevoortia aurea larvae (Clupeidae, Alosinae) from Río de la Plata estuary off Uruguay

Authors

  • Laura Rodríguez-Graña
  • Danilo Calliari
  • Guillermo Cervetto

DOI:

https://doi.org/10.1590/

Keywords:

Fish larval feeding, Larval morphometry, Brazilian menhaden, Lacha, Acartia tonsa

Abstract

This study analyses the feeding ecology of Brevortia aurea (Brazilian menhaden) larvae during a reproductive season in the Río de la Plata estuary (RPE), and explores its changes along larval development. Data were obtained from stomach content analyses of 205 individuals collected with a Bongo net during spring 2001. Larvae were discriminated into preflexion (PF), flexion (F) and post-flexion (PsF) stages. Feeding was described using complementary metrics like Feeding incidence (FI), the Relative Importance of different prey types consumed (IRI), the Degree of prey digestion (E) and Diet overlap (D), which were estimated and compared between stages. Also, larval morphometric relationships (body length, BL vs mouth width, MW) and between MW and maximum prey width (Wmax) were established for the range of observed larval sizes. The overall FI was 46.3% and increased with the development stage: 40.4% PF, 63.3% F, 78.6% PsF. Feeding occurred mainly during sunlit hours but no clear daily cycle could be established. Copepods and in particular Acartia tonsa were well represented among ingested preys, followed by invertebrate eggs and nauplii. Prey diversity and overlap between stages tended to decrease as development progressed. B. aurea exhibited isometric growth of MW in relation to BL. Average Wmax was 222.5 µm ± 100.9 SD, and increased non-linearly with both BL and MW. Gape size alone did not seem to be the limiting factor for prey choice (size), and we hypothesize that factors involved in the feeding mechanism other than mouth gape and linked with capture performance substantially influence the feeding ecology of this species in the RPE.

References

ACHA, E. M. & MACCHI, G. J. 2000. Spawning of Brazilian menhaden, Brevoortia aurea, in the Río de la Plata estuary off Argentina and Uruguay. Fishery Bulletin US, 98(2), 227-235.

ARTHUR, D. K. 1976. Food and feeding of larvae of three fishes occurring in the California Current, Sardinops sagax, Engraulis mordax and Trachurus symmetricus Fishery Bulletin US, 74, 517-530.

BERASATEGUI, A. D., ACHA, E. M. & FERNÁNDEZ ARAOZ, N. C. 2004. Spatial patterns of ichthyoplankton assemblages in the Río de la Plata Estuary (Argentina-Uruguay). Estuarine, Coastal and Shelf Science, 60(4), 599-610.

BESSONART, M., IZQUIERDO, M. S., SALHI, M., HERNÁNDEZ-CRUZ, C. M. & FERNÁNDEZ-PALACIOS, H. 1999. Effect of dietary arachidonic acid levels on growth and survival of gilthead seabream (Sparus aurata) larvae. Aquaculture, 179(1-4), 265-276.

BIOLÉ, F. G., VOLPEDO, A. V. & THOMPSON, G. A. 2020. Length-weight and length-length relationship for three marine fish species of commercial importance from southwestern Atlantic Ocean coast. Latin American Journal of Aquatic Research, 48(3), 506-513.

BONECKER, A. C. T. & CASTRO, M. S. 2006. Atlas de larvas de peixes da regiao central da Zona Econômica Exclusiva Brasileira - Série Livros no. 19. Rio de Janeiro: Museu Nacional Rio de Janeiro.

BONETTI, A. P. P., GONÇALVES, P. R., ANDERSON, J. D., ROCHA, L. A., DÍAZ DE ASTARLOA, J. M. & DI DARIO, F. 2021 Phylogenetic relationships, genetic diversity and biogeography of menhadens, genus Brevoortia (Clupeiformes, Clupeidae). Molecular Phylogenetics and Evolution, 160, 107108.

BOSCHI, E. E. 1988. El ecosistema estuarial del Río de la Plata (Argentina y Uruguay). Anales del Instituto de Ciencias del Mar y Limnologia, Universidad Nacional Autónoma de México, 15, 159-182.

BRAVERMAN, M. S., ACHA, M., GAGLIARDINI, D. A. & RIVAROSSA M. 2009. Distribution of whitemouth croaker (Micropogonias furnieri Desmarest 1823) larvae in the Río de la Plata estuarine front. Estuarine Coastal Shelf Science, 82(4), 557-565.

BRUNO, D. O. 2014. Patrones de utilización de la laguna Mar Chiquita (Buenos Aires, Argentina) y área costera adyacente por parte de los primeros estadios ontogénicos de peces DSc. Buenos Aires: Universidad Nacional de Mar del Plata, DOI: https://doi.org/10.13140/2.1.3208.7043

» https://doi.org/10.13140/2.1.3208.7043

BRUNO, D. O., COUSSEAU, M. B., DÍAZ DE ASTARLOA, J. M. & ACHA, E. M. 2015. Recruitment of juvenile fishes into a small temperate choked lagoon (Argentina) and the influence of environmental factors during the process. Scientia Marina, 79(1), 43-55.

BURNHAM, K. P. & ANDERSON, D. R. 2002. Model selection and multimodel inference. A practical information-theoretic approach. 2nd ed. New York: Springer.

BUSCH, A. 1996. Transition from endogenous to exogenous nutrition: larval size parameters determining the start of external feeding and size of prey ingested by Ruegen spring herring Clupea harengus Marine Ecology Progress Series, 130, 39-46.

CALLIARI, D., CERVETTO, G. & CASTIGLIONI, R. 2004. Summertime herbivory and egg production by Acartia tonsa at the Montevideo coast – Rio de la Plata. Ophelia, 58(2), 115-128.

CALLIARI, D., GÓMEZ-ERACHE, M., VIZZIANO CANTONNET, D. & ALONSO, C. 2018. Near-surface biogeochemistry and phytoplankton carbon assimilation in the Rio de la Plata Estuary. In: SABATINI, M. E., BRANDINI, F., CALLIARI, D. & SANTINELLI, N. (eds.). Plankton ecology of the Southwestern Atlantic - from the subtropical to the subantarctic realm. Part IV. Plankton of Coastal Systems. New York: Springer, pp. 289-306.

CALLIARI, D., ESPINOSA, N., MARTÍNEZ, M. & RODRÍGUEZ-GRAÑA, L. 2019. Salinity regulation of copepod egg production in a large microtidal estuary. Brazilian Journal of Oceanography, 67, e19267.

CANINO, M. F. & BAILEY, K. M. 1995. Gut evacuation of walleye pollock larvae in response to feeding conditions. Journal of Fish Biology, 46(3), 389-403.

CASSIA, M. C. & GARCÍA DE LA ROSA, S. B. 1993. Características diferenciales del desarrollo larval de Brevoortia aurea en el Atlántico Sudoccidental. Frente Marítimo, 14(A), 63-69.

COUSSEAU, M. B. 1985. Los peces del Río de la Plata y su Frente Marítimo. In: YÁNEZ-ARANCIBIA, A. (ed.). Fish community ecology in estuaries and coastal lagoons: towards an ecosystem integration México: UNAM Press, pp. 515-534.

COUSSEAU, M. B. & DÍAZ DE ASTARLOA, J. M. 1993. El género Brevoortia en la costa Atlántica sudamericana. Frente Maritimo, 14(1), 49-57.

CUTTS, C. J., SAWANBOONCHUN, J., MAZORRA DE QUERO, C. & BELL, J. G. 2006. Diet-induced differences in the essential fatty acid (EFA) compositions of larval Atlantic cod (Gadus morhua L.) with reference to possible effects of dietary EFAs on larval performance. ICES Journal of Marine Science, 63(2), 302-310.

DE CIECHOMSKI, J. D. 1968. Huevos y larvas de tres especies de peces marinos, Anchoa marinii, Brevoortia aurea y Prionotus nudigula del Atlántico Sudoccidental. Boletín del Instituto de Biología Marina, 17, 1-28.

DERISIO, C., BRAVERMAN, M., GAITÁN, E., HOZBOR, C., RAMÍREZ, F. C., CARRETO, J., BOTTO, F., GAGLIARDINI, D. A., ACHA, M. E. & MIANZAN, H. 2014. The turbidity front as a habitat for Acartia tonsa (Copepoda) in the Río de la Plata, Argentina-Uruguay. Journal of Sea Research, 85, 197-204.

DE WYSIECKI, A. M., MILESSI, A. C., WIFF, R. & JAUREGUIZAR, A. J. 2018. Highest catch of the vulnerable broadnose sevengill shark Notorynchus cepedianus in the south-west Atlantic. Journal of Fish Biology, 92(2), 543-548.

EVANS, B. I. & BROWMAN, H. I. 2004. Variation in the development of the fish Retina. American Fisheries Society Symposium, 40, 145-166.

FERRARI, G. & PEREZ, M. C. 2002. Fitoplancton de la costa platense y Atlántica del Uruguay (1993-1994). Iheringia Serie Botanica, 57(2), 263-278.

FUIMAN, L. A. & WERNER, R. G. 2000. Fishery science: the unique contributions of early life stages. Oxford: Wiley-Blackwell.

GARCÍA, G., VERGARA, J. & GUTIÉRREZ, V. 2008. Phylogeography of the Southwestern Atlantic menhaden genus Brevoortia (Clupeidae, Alosinae). Marine Biology, 155(3), 325-336.

GIANGIOBBE, A. & SÁNCHEZ, F. 1993. Alimentación de la Saraca. Frente Marítimo, 14(A), 71-80.

GONÇALVES, A. M. M., AZEITEIRO, U. M., PARDAL, M. A. & DE TROCH, M. 2012. Fatty acid profiling reveals seasonal and spatial shifts in zooplankton diet in a temperate estuar y. Estuarine Coastal and Shelf Science, 109, 70-80.

GONZÁLEZ-QUEIROZ, R. & ANADÓN, R. 2001. Diet breadth variability in larval blue whiting as a response to plankton size structure. Journal of Fish Biology, 59(5), 1111-1125.

GOVONI, J. J., HOSS, D. E. & CHESTER, A. J. 1983. Comparative feeding of three species of larval fishes in the northern Gulf of Mexico: Brevoortia patronus, Leiostomus xanthurus, and Micropogonias undulatus Marine Ecology Progress Series, 13(2-3), 189-199.

GURDEK, R. & ACUÑA-PLAVAN, A. 2016. Temporal dynamics of a fish community in the lower portion of a tidal creek, Pando sub-estuarine system, Uruguay. Iheringia, Série Zoologia, 107, e2017003.

GURDEK, R., DE LA ROSA, A., CORRALES, D., CANAVESE, R., GUTIERREZ, J. M., STEBNIKI, S., MUÑOZ, N., SEVERI, V. & ACUÑA-PLAVAN, A. 2016. Estuarine use and composition of fish species in the Solís Grande sub-estuary, Uruguay. Pan-American Journal of Aquatic Sciences, 11(1), 82-86.

HIGGS, D. M. & FUIMAN, L. A. 1996. Ontogeny of visual and mechanosensory structure and function in Atlantic menhaden Brevoortia tyrannus Journal of Experimental Biology, 199, 2619-2629.

HOFFMAYER, M. S., MENÉNDEZ, M. C., BIANCALANA, F., NIZOVOY, A. M. & TORRES, E. R. 2009. Ichthyoplankton spatial pattern in the inner shelf off Bahía Blanca Estuary, SW Atlantic Ocean. Estuarine, Coastal and Shelf Science, 84(3), 383-392.

HUNT VON HERBING, I. 2001. Development of feeding structures in larval fish with different life histories: winter flounder and Atlantic cod. Journal of Fish Biology, 59(4), 767-782.

HUNTER, J. R. 1972. Swimming and feeding behavior of larval anchovy Engraulis mordax Fishery Bulletin, 70(3), 821-838.

HYSLOP, E. J. 1980. Stomach contents analysis. A review of methods and their application. Journal of Fish Biology, 17, 411-429.

KAINZ, M., ARTS, M. T. & MAZUMDER, A. 2004. Essential fatty acids in the Planktonic food web and their ecological role for higher trophic levels. Limnology and Oceanography, 49(5), 1784-1793.

KREBS, J. M. & TURINGAN, R. G. 2003. Intraspecific variation in gape–prey size relationships and feeding success during early ontogeny in red drum, Sciaenops ocellatus Environmental Biology of Fishes, 66, 75-84.

KURTZ, F. W. & MATSUURA, Y. 2001. Food and feeding ecology of Brazilian sardine (Sardinella brasiliensis) larvae from the southeastern Brazilian Bight. Revista Brasilera de Oceanografía, 49(1-2), 61-74.

LAJUD, N. A., DÍAZ DE ASTARLOA, J. M. & GONZÁLEZ-CASTRO, M. 2016. Reproduction of Brevoortia aurea (Spix & Agassiz, 1829) (Actinopterygii: Clupeidae) in the Mar Chiquita Coastal Lagoon, Buenos Aires, Argentina. Neotropical Ichthyology, 14(1), e150064.

LASKER, R. 1984. The role of a stable ocean in larval fish survival and subsequent recruitment. In: LASKER, R. (ed.). Marine fish larvae. Morphology, Ecology and relation to fisheries Washington, DC: Washington Sea Grant Program/University of Washington Press, pp. 80-88.

LEU, E., DAASE, M., SCHULZ, K. G., STUHR, A. & RIEBESELL, U. 2013. Effect of ocean acidification on the fatty acid composition of a natural plankton community. Biogeosciences, 10(2), 1143-1153.

LLOPIZ, J. K. 2013. Latitudinal and taxonomic patterns in the feeding ecologies of fish larvae: a literature synthesis. Journal of Marine Systems, 109, 69-77.

LOPEZ-CAZORLA, A. & FORTE, S. 2005. Food and feeding habits of flounder Paralichthys orbignyanus (Jenyns, 1842) in Bahía Blanca Estuary, Argentina. Hydrobiologia, 549, 251-257.

LORENZO, M. I., DEFEO, O., MONIRIC, N. R. & ZYLICHC, K. 2015. Fisheries catch statistics for Uruguay. Fisheries Centre - The University of British Columbia Working Paper, 25, 1-6.

MACHADO, I., CALLIARI, D., DENICOLA, A. & RODRÍGUEZ-GRAÑA, L. 2017. Coupling suitable prey field to in situ fish larval condition and abundance in a subtropical estuary. Estuarine, Coastal and Shelf Science, 187, 31-42.

MACHADO, I., CONDE, D. & RODRÍGUEZ-GRAÑA, L. 2011. Composition and spatial distribution of the ichthyoplankton in intermittently-open coastal lagoons off Uruguay. Panamerican Journal of Aquatic Sciences, 6(3), 237-243.

MACHADO, I., RODRÍGUEZ-GALLEGO, L., LESCANO, C. & CALLIARI, D. 2021. Species-specific traits and the environment drive ichthyoplankton fluxes between an intermittently closed-open lagoon and adjacent coastal waters. Estuarine, Coastal and Shelf Science, 261(1), 107549.

MARRARI, M., VIÑAS, M. D., MARTOS, P. & HERNÁNDEZ, D. 2004. Spatial patterns of mesozooplankton distribution in the Southwestern Atlantic Ocean (34°-41° S) during austral spring: relationship with the hydrographic conditions. ICES Journal of Marine Science, 61(4), 667-679.

MAUCO, L. & FAVERO, M. 2004. Diet of the common tern (Sterna hirundo) during the non breeding season in mar chiquita lagoon, Buenos Aires, Argentina. Ornitologia Neotropical, 15, 121-131.

NORBIS, W. & GALLI, O. 2004. Feeding habits of the flounder Paralichthys orbignyanus (Valenciennes, 1842) in a shallow coastal lagoon of the southern Atlantic Ocean: Rocha, Uruguay. Ciencias Marinas, 30(4), 619-626.

PEPIN, P. & PENNEY, R. W. 1997. Patterns of prey size and taxonomic composition in larval fish: are there general size-dependent models? Journal of Fish Biology, 51(SA), e84-e100.

PEPIN, P. & PENNEY, R. W. 2000. Feeding by a larval fish community: impact on zooplankton. Marine Ecology Progress Series, 204, 199-212.

PEPIN, P., ROBERT, D., BOUCHARD, C., DOWER, J. F., FALARDEAU, M., FORTIER, L., JENKINS, G. P., LECLERC, V., LEVESQUE, K., LLOPIZ, J. K., MEEKAN, M. G., MURPHY, H. M., RINGUETTE, M., SIROIS, P. & SPONAUGLE, S. 2015. Once upon a larva: revisiting the relationship between feeding success and growth in fish larvae. ICES Journal of Marine Sciences, 72(2), 359-373.

PINKAS, L., OLIPHANT, M. S. & IVERSON, I. L. K. 1971. Food habits of albacore, bluefin tuna and bonito in Californian waters. Fishery Bulletin, 152, 1-150.

R CORE TEAM. 2020. R: A language and environment for statistical computing [online]. Vienna: R Foundation for Statistical Computing. Available at: https://www.R-project.org [Accessed: 2020 Oct 20].

» https://www.R-project.org

RIVERA-PRISCO, A., GARCÍA DE LA ROSA, S. B. & DÍAZ DE ASTARLOA, J. M. 2001. Feeding ecology of flatfish juveniles (Pleuronectiformes) in Mar Chiquita Coastal Lagoon (Buenos Aires, Argentina). Estuaries, 24(6A), 917-925.

ROBERT, D., LEVESQUE, K., GAGNÉ, J. & FORTIER, L. 2011. Change in prey selectivity during the larval life of Atlantic cod in the southern Gulf of St Lawrence. Journal of Plankton Research, 33(1), 195-200.

RODRÍGUEZ, C. 2016. Ciclo gonadal y Potencial Reproductivo de la lacha (Brevoortia aurea) en la Laguna de Rocha MSc. Uruguay: Universidad de la República.

RODRÍGUEZ-GRAÑA, L., CASTRO, L., LOUREIRO, M. GONZÁLEZ, H. E. & CALLIARI, D. 2005. Feeding ecology of dominant larval myctophids in an upwelling area of the Humboldt Current. Marine Ecology Progress Series, 290, 119-134.

RODRÍGUEZ-GRAÑA, L., VERA, M., CERVETTO, G. & CALLIARI, D. 2018. Trophic Ecology of white croacker (Micropogonias furnieri Desmarest 1823) and rough scad (Trachurus lathami Nichols 1920) larvae in Río de la Plata Estuary. In: SABATINI, M. E., BRANDINI, F., CALLIARI, D. & SANTINELLI, N. (eds.). Plankton ecology of the Southwestern Atlantic - From the subtropical to the subantarctic realm. Part IV. Plankton of Coastal Systems New York: Springer, pp. 349-371.

SALHI, M., IZQUIERDO, M. S., HERNÁNDEZ-CRUZ, C. M., SOCORRO, J. & FERNÁNDEZ-PALACIOS, H. 1997. The improved incorporation of polyunsaturated fatty acids and changes in liver structure in larval gilthead seabream fed on microdiets. Journal of Fish Biology, 51(5), 869-879.

SÁNCHEZ, M. F. 1989. Características morfológicas del aparato digestivo y espectro trófico de la Saraca (Brevoortia aurea, Clupeiformes, Pisces). Physis, 47(112), 21-33.

SANTANA, O. & FABIANO, G. 1999. Medidas y mecanismos de administración de los recursos de las lagunas costeras del litoral Atlántico del Uruguay (lagunas José Ignacio, Garzón, de Rocha y de Castillos). In: REY, M., AMESTOY, F. & ARENA, G. (eds.). Plan de investigación pesquera INAPE – PNUD URU/92/003, pp. 1-34.

SCHOENER, T. 1968. The Anolis lizards of Bimini: resource partitioning in a complex fauna. Ecology, 49, 704-726.

SIMIONATO, C. G., BERASATEGUI, A., MECCIA, V. L., ACHA, M. & MIANZAN, H. 2008. On the short time-scale wind forced variability in the Río de la Plata Estuary and its role on ichthyoplankton retention. Estuarine Coastal and Shelf Sciences, 76(2), 211-226.

TEMPERONI, B. & VIÑAS, M. D. 2013. Food and feeding of Argentine hake (Merluccius hubbsi) larvae in the Patagonian nursery ground. Fishery Research, 148, 47-55.

TISELIUS, P., HANSEN, B. W. & CALLIARI, D. 2012. Fatty acid transformation in zooplankton: from seston to benthos. Marine Ecology Progress Series, 446, 131-144.

UEBERSCHÄR, B. 1995. The use of tryptic enzyme activity measurement as a nutritional condition index: laboratory calibration data and field application. ICES Marine Science Symposium, 201, 119-129.

VALIÑAS, M. S., MOLINA, L. C., ADDINO, M., MONTEMAYOR, D. I., ACHA, E. M. & IRIBARNE, O. O. 2012. Biotic and environmental factors affect Southwest Atlantic saltmarsh use by juvenile fishes. Journal of Sea Research, 68, 49-56.

VON SPIX, J. B. & AGASSIZ, L. 1829. Selecta genera et species piscium quos in itinere per Brasiliam annos MDCCCXVII-MDCCCXX jussu et auspiciis Maximiliani Josephi I. colleget et pingendso curavit Dr J. B. de Spix. Monachii, 9-101.

WALLACE JUNIOR, R. K. 1981. An assessment of diet-overlap indexes. Transactions of the American Fisheries Society, 110(1), 72-76.

WEISS, G. 1981. Ictioplancton del estuario de Lagoa Dos Patos, Brasil DSc. La Plata: Universidad Nacional de La Plata.

Downloads

Published

2023-01-11

How to Cite

Feeding ecology of Brevoortia aurea larvae (Clupeidae, Alosinae) from Río de la Plata estuary off Uruguay. (2023). Ocean and Coastal Research, 71. https://doi.org/10.1590/