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Tidal and Diel Patterns in Abundance and Feeding of a Marine-Estuarine-Dependent Fish from Macrotidal Mangrove Creeks in the Tropical Eastern Pacific (Colombia)

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Abstract

Mangrove ecosystems are nursery habitats for several snapper species worldwide. Yet the short-term dynamics in nursery habitat use of Lutjanidae remain poorly understood, with knowledge biased toward clear water, nonestuarine mangroves. Here, we document the effects of tidal-diel cycles and salinity on patterns in abundance and feeding of the yellow snapper, Lutjanus argentiventris, using samples collected from intertidal creeks in a macrotidal estuarine mangrove during 2009–2010 from Colombia, in the Tropical Eastern Pacific (TEP) region. Abundance and biomass were significantly higher in medium salinity versus low salinity creeks. Contrasting tidal-diel patterns of abundance-densities versus catch mass-biomass were due to a size-based intraspecific variation in mangrove use: fish <10 cm visited intertidal creeks mainly during daytime at neap tides, whereas fish >20 cm entered at night during both spring and neap tides. L. argentiventris had a generalist diet (mainly fish and porcellanid crabs). Fish <10 cm displayed a narrower diet breadth than larger size classes, with decreasing importance of fish size during ontogeny. The highest stomach fullness index values (especially of individuals <20 cm) during neap tide-daytime inundations contradicted the common assumption that snappers are nocturnal feeders and highlight the role of tidal-diel cycles in determining fish feeding preferences in macrotidal mangrove systems. Comparisons with other studies showed that habitat use and feeding patterns of this and other Lutjanids vary significantly according to size, tidal-diel dynamics, and mangrove settings, e.g., marine microtidal versus estuarine macrotidal systems. Therefore, generalized conclusions derived from a single mangrove setting should be drawn with caution.

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References

  • Abrantes, K.G., R. Johnston, R.M. Connolly, and M. Sheaves. 2015. Importance of mangrove carbon for aquatic food webs in wet–dry tropical estuaries. Estuaries and Coasts 38(1): 383–399.

    Article  CAS  Google Scholar 

  • Aburto-Oropeza, O., I. Dominguez-Guerrero, J. Cota-Nieto, and T. Plomozo-Lugo. 2009. Recruitment and ontogenetic habitat shifts of the yellow snapper (Lutjanus argentiventris) in the Gulf of California. Marine Biology 156: 2461–2472. doi:10.1007/s00227-009-1271-5.

    Article  Google Scholar 

  • Amundsen, P.A., H.M. Gabler, and F.J. Staldvik. 1996. A new approach to graphical analysis of feeding strategy from stomach contents data modification of the Costello (1990) method. Journal of Fish Biology 48: 607–614. doi:10.1111/j.1095-8649.1996.tb01455.x.

    Google Scholar 

  • Beck, M.W., K.L. Heck, K.W. Able, D.L. Childers, D.B. Eggleston, B.M. Gillanders, B. Halpern, C.G. Hays, K. Hoschino, T.J. Minello, R.J. Orth, P.F. Scheridan, and M.P. Weinstein. 2001. The identification, conservation, and management of estuarine and marine nurseries for fish and invertebrates: a better understanding of the habitats that serve as nurseries for marine species and the factors that create site-specific variability in nursery quality will improve conservation and management of these areas. Bioscience 51: 633–641. doi:10.1641/0006-3568(2001)051[0633:TICAMO]2.0.CO;2.

    Article  Google Scholar 

  • Berkström, C., T.L. Jörgensen, and M. Hellström. 2013. Ecological connectivity and niche differentiation between two closely related fish species in the mangrove–seagrass–coral reef continuum. Marine Ecology Progress Series 477: 201–215.

    Article  Google Scholar 

  • Bird, E.C.F. 2010. Encyclopedia of the world’s coastal landforms. Dordrecht: Springer 1493pp.

  • Bonilla-Gómez, J.L., Y.A. Robles, and A.J. Vega. 2014. Length-weight relationship and biological information of the yellow snapper Lutjanus argentiventris from a tropical estuary: Río Caté, Gulf of Montijo, Panama. Journal of Applied Ichthyology 30: 227–229.

    Article  Google Scholar 

  • Cantera, J.R., R. Neira, and C. Ricaurte. 1998. Bioerosión en la costa pacífica colombiana: un estudio sobre la biodiversidad, la ecología y el impacto de los animales destructores de los acantilados rocosos. Fondo FEN Colombia, Bogota 133pp.

  • Cantera, J.R., B. Thomassin, and P. Arnaud. 1999. Faunal zonation and assemblages in the Pacific Colombian mangroves. Hydrobiologia 413: 17–33. doi:10.1023/A:1003890826741.

    Article  Google Scholar 

  • Castellanos-Galindo, G.A., and U. Krumme. 2013. Tidal, diel and seasonal effects on intertidal mangrove fish in a high-rainfall area of the Tropical Eastern Pacific. Marine Ecology Progress Series 494: 249–265.

    Article  Google Scholar 

  • Claro, R., and K.C. Lindeman. 2003. Spawning aggregation sites of snapper and grouper species (Lutjanidae and Serranidae) on the insular shelf of Cuba. Gulf and Caribbean Research 14(2): 91–106.

    Google Scholar 

  • Cocheret de la Morinière, E., B.J.A. Pollux, I. Nagelkerken, M.A. Hemminga, A.H.L. Huiskes, and G. Van Der Velde. 2003. Ontogenetic dietary changes of coral reef fishes in the mangrove-seagrass-reef continuum: stable isotopes and gut-content analysis. Marine Ecology Progress Series 246: 279–289. doi:10.3354/meps246279.

    Article  Google Scholar 

  • Connell, S.D. 1998. Patterns of piscivory by resident predatory reef fish at One Tree Reef, Great Barrier Reef. Marine and Freshwater Research 49: 25–30. doi:10.1071/MF97034.

    Article  Google Scholar 

  • Costello, M.J. 1990. Predator feeding strategy and prey importance: a new graphical analysis. Journal of Fish Biology 36: 261–263. doi:10.1111/j.1095-8649.1990.tb05601.x.

    Article  Google Scholar 

  • Díaz-Uribe, J.G. 1994. Análisis trofodinámico del huachinango, Lutjanus peru, en las bahías de la Paz y la Ventana., B.C.S., México. Tesis de maestría. Ensenada B.C: CICESE. 57 pp.

    Google Scholar 

  • Erisman, B., I. Mascarenas, G. Paredes, Y. Sadovy de Mitcheson, O. Aburto-Oropeza, and P. Hastings. 2010. Seasonal, annual, and long-term trends in commercial fisheries for aggregating reef fishes in the Gulf of California, Mexico. Fisheries Research 106: 279–288. doi:10.1016/j.fishres.2010.08.007.

    Article  Google Scholar 

  • Faunce, C.H., and C.A. Layman. 2009. Sources of variation that affect perceived nursery function of mangroves. In Ecological connectivity among tropical coastal ecosystems, ed. I. Nagelkerken, 401–422. Dordrecht: Springer. doi:10.1007/s00442-010-1833-8.

    Chapter  Google Scholar 

  • Fischer, W., F. Krupp, W. Schneider, C. Sommer, K.E. Carpenter, and V.H. Niem. 1995. Guía FAO para la identificación de especies para los fines de la pesca. Pacífico centro-oriental. Volumen I. Plantas e invertebrados. Roma: FAO. 646pp.

    Google Scholar 

  • Giarrizzo, T., R. Schwamborn, and U. Saint-Paul. 2011. Utilization of carbon sources in a northern Brazilian mangrove ecosystem. Estuarine, Coastal and Shelf Science 95: 447–457.

    Article  CAS  Google Scholar 

  • Gibson, R.N. 2003. Go with the flow: tidal migration in marine animals. Hydrobiologia 503: 153–161. doi:10.1023/B:HYDR.0000008488.33614.62.

    Article  Google Scholar 

  • Guevara, E., H. Álvarez, M. Mascaró, C.A. Rosas, and A. Sánchez. 2007. Hábitos alimenticios y ecología trófica del pez Lutjanus griseus (Pisces: Lutjanidae) asociado a la vegetación sumergida en la Laguna de Términos, Campeche, México. Revista de Biología Tropical 55: 989–1004. doi:10.15517/rbt.v55i3-4.5972.

    Article  Google Scholar 

  • Hendrickx, M. 1997. Los cangrejos braquiuros (Crustacea: Brachyura: Dromiidae hasta Leucosiidae) del Pacífico mexicano. Comisión Nacional para el conocomiento y uso de la biodiversidad. Instituto de Ciencias del Mar y Limnologia-Universidad Nacional Autonoma de México, 248pp.

  • Hendrickx, M. 1999. Los cangrejos braquiuros (Crustacea: Brachyura: Majoidea y Parthenopoidea) del Pacífico mexicano. Comisión Nacional para el conocimiento y uso de la biodiversidad. Instituto de Ciencias del Mar y Limnología-Universidad Nacional Autónoma de México, 125pp.

  • Hobson, E.S. 1965. Diurnal-nocturnal activity of some inshore fishes in the Gulf of California. Copeia 3: 291–302.

  • Hulbert, S.H. 1978. The measurement of the niche overlap and some relatives. Ecology 59(1): 67–77. doi:10.2307/1936632.

    Article  Google Scholar 

  • Igulu, M.M., I. Nagelgerken, G. van der Velde, and Y.D. Mgaya. 2013. Mangrove fish production is largely fuelled by external food sources: a stable isotope analysis of fishes at the individual, species, and community level from across the globe. Ecosystems 16: 1336–1352. doi:10.1007/s10021-013-9687-7.

    Article  CAS  Google Scholar 

  • Jetz, W., C. Carbone, J. Fulford, and J.H. Brown. 2004. The scaling of animal space use. Science 306: 266–268. doi:10.1126/science.1102138.

    Article  CAS  Google Scholar 

  • Kamukuru, A.T., and Y.D. Mgaya. 2004. The food and feeding habits of blackspot snapper, Lutjanus fulviflamma (Pisces: Lutjanidae) in shallow waters of Mafia Island, Tanzania. African Journal of Ecology 42: 49–58. doi:10.1111/j.0141-6707.2004.00487.x.

    Article  Google Scholar 

  • Krumme, U., and U. Saint-Paul. 2010. Dynamics in mangrove fish assemblages on a macrotidal coast. In Mangrove dynamics and management in North Brazil. Ecological Studies 211, ed. U. Saint-Paul and H. Schneider, 189–208. Berlin: Springer.

    Chapter  Google Scholar 

  • Krumme, U., M. Brenner, and U. Saint-Paul. 2008. Spring-neap cycle as a major driver of temporal variations in feeding of intertidal fishes: evidence from the sea catfish Sciades herzbergii (Ariidae) of equatorial west Atlantic mangrove creeks. Journal of Experimental Marine Biology and Ecology 367: 91–99. doi:10.1016/j.jembe.2008.08.020.

    Article  Google Scholar 

  • Krumme, U., K. Ginvalds, M. Zagars, D. Elferts, K. Ikejima, and P. Tongnunui. 2015. Tidal, diel and lunar patterns in intertidal and subtidal mangrove creek fish assemblages from southwest Thailand. Environmental Biology of Fishes 1–23. doi: 10.1007/s10641-015-0393-5.

  • Lessios, H. 2008. The great American schism: divergence of marine organisms after the rise of the Central American Isthmus. Annual Review of Ecology, Evolution, and Systematics 39: 63–91. doi:10.1146/annurev.ecolsys.38.091206.095815.

    Article  Google Scholar 

  • Ley, J.A., L. Montague, and C.C. McIvor. 1994. Food habits of mangrove fishes: a comparison along estuarine gradients in northeastern Florida Bay. Bulletin of Marine Science 54: 881–899.

    Google Scholar 

  • Martínez, J.O., and E. López-Ramos. 2011. High-resolution seismic stratigraphy of the late Neogene of the central sector of the Colombian Pacific continental shelf: a seismic expression of an active continental margin. Journal of South American Earth Science 31: 28–44. doi:10.1016/j.jsames.2010.09.003.

    Article  Google Scholar 

  • McMahon, K.W., M.L. Berumen, I. Mateo, T.S. Elsdon, and S.R. Thorrold. 2011. Carbon isotopes in otolith amino acids identify residency of juvenile snapper (family: Lutjanidae) in coastal nurseries. Coral Reefs 30: 1135–1145. doi:10.1007/s00338-011-0816-5.

    Article  Google Scholar 

  • Monteiro, D.P., T. Giarrizzo, and V. Isaac. 2009. Feeding ecology of juvenile dog snapper Lutjanus jocu (Bloch and Shneider, 1801) (Lutjanidae) in intertidal mangrove creeks in Curuça Estuary (northern Brazil). Brazilian Archives of Biology and Technology 52: 1421–1430. doi:10.1590/S1516-89132009000600014.

    Article  Google Scholar 

  • Nagelkerken, I., and G. van der Velde. 2004. Relative importance of interlinked mangroves and seagrass beds as feeding habitats for juvenile reef fish on a Caribbean island. Marine Ecology Progress Series 274: 153–159. doi:10.3354/meps274153.

    Article  Google Scholar 

  • Nagelkerken, I., M. Dorenbosch, W.C.E.P. Verberk, E. Cocheret de la Morinière, and G. van der Velde. 2000. Day-night shifts of fishes between shallow-water biotopes of a Caribbean bay, with emphasis on the nocturnal feeding of Haemulidae and Lutjanidae. Marine Ecology Progress Series 194: 55–64. doi:10.3354/meps194055.

    Article  Google Scholar 

  • Nagelkerken, I., S.J.M. Blaber, S. Bouillon, P. Green, M. Haywood, L.G. Kirton, J.O. Meynecke, J. Pawlik, H.M. Penrose, A. Sasekumar, and P.J. Somerfield. 2008. The habitat function of mangroves for terrestrial and marine fauna: a review. Aquatic Botany 89: 155–185. doi:10.1016/j.aquabot.2007.12.007.

    Article  Google Scholar 

  • Norton, S.F., and A.E. Cook. 1999. Predation by fishes in the intertidal. In Intertidal fishes, life in two worlds, ed. M.H. Horn, K.L.M. Martin, and M.A. Chotkowski, 223–263. San Diego: Academic.

    Chapter  Google Scholar 

  • Ouzts, A.C., and S.T. Szedlmayer. 2003. Diel feeding patterns of red snapper on artificial reefs in the North-Central Gulf of Mexico. Transactions of the American Fisheries Society 32: 1186–1193. doi:10.1577/T02-085.

    Article  Google Scholar 

  • Parrish, J.D. 1987. The trophic biology of snappers and groupers. In Tropical snappers and groupers: biology and fisheries management, eds. J.J. Polovina, and S. Ralston, 405–463. Westview Press, Boulder.

  • Pimentel, C.R., and J.C. Joyeux. 2010. Diet and food partitioning between juveniles of mutton Lutjanus analis, dog Lutjanus jocu, and lane Lutjanus synagris snappers (Perciformes: Lutjanidae) in a mangrove-fringed estuarine environment. Journal of Fish Biology 76: 2299–2317. doi:10.1111/j.1095-8649.2010.02586.x.

    Article  CAS  Google Scholar 

  • Pinkas, L., M.S. Oliphant, and I.L.K. Iverson. 1971. Food habits of albacore, bluefin tuna and bonito in Californian waters. California Fish and Game 152: 1–105.

    Google Scholar 

  • Randall, J.E. 1967. Food habits of reef fishes of the West Indies. Studies in Tropical Oceanography 5: 655–847.

    Google Scholar 

  • Restrepo, J.D., and B. Kjerfve. 2002. The San Juan Delta, Colombia: tides, circulations, and salt dispersion. Continental Shelf Research 22: 1249–1267. doi:10.1016/S0278-4343(01)00105-4.

    Article  Google Scholar 

  • Riascos, J.M. 2006. Effects of El Niño-Southern Oscillation on the population dynamics of the tropical bivalve Donax dentifer from Málaga Bay, Colombian Pacific. Marine Biology 148: 1283–1293. doi:10.1007/s00227-005-0165-4.

    Article  Google Scholar 

  • Robertson, D.R., and G.R. Allen. 2008. Shorefishes of the Tropical Eastern Pacific: online information system, version 1.0. Smithsonian Tropical Research Institute, Balboa. http://biogeodb.stri.si.edu/sftep/

  • Rooker, J.R. 1995. Feeding ecology of the schoolmaster snapper Lutjanus apodus (Walbaum), from south-western Puerto Rico. Bulletin of Marine Science 56: 881–894.

    Google Scholar 

  • Rooker, J.R., and G.D. Dennis. 1991. Diel, lunar and seasonal changes in a mangrove fish assemblage off southwestern Puerto Rico. Bulletin of Marine Science 49: 684–698.

    Google Scholar 

  • Root, R.B. 1967. The niche exploitation pattern of the blue-gray gnatcatcher. Ecological Monographs 37:317–350.

  • Rubio, E.A. 1988. Peces de importancia comercial para el Pacífico colombiano. Cali: CIME. Universidad del Valle. 499pp.

    Google Scholar 

  • Santamaría-Miranda, A., M. Saucedo, M.N. Herrera, and J.P. Apún. 2005. Hábitos alimentarios del pargo amarillo Lutjanus argentiventris y del pargo rojo Lutjanus colorado (Pisces: Lutjanidae) en el norte de Sinaloa, México. Revista de Biología Marina y Oceanografía 40(1): 33–34. doi:10.4067/S0718-19572005000100004.

    Article  Google Scholar 

  • Serrano-Pinto, V., and J. Caraveo-Patiño. 1999. Survival of amarillo snapper Lutjanus argentiventris (Peters 1869) at different salinities in captivity. Aquaculture Research 30: 467–470. doi:10.1046/j.1365-2109.1999.00352.x.

    Article  Google Scholar 

  • Sheaves, M. 1995. Large lutjanid and serranid fishes in tropical estuaries: are they adults or juveniles? Marine Ecology Progress Series 129: 31–41. doi:10.3354/meps129031.

    Article  Google Scholar 

  • Sheaves, M. 2005. Nature and consequences of biological connectivity in mangrove systems. Marine Ecology Progress Series 302: 293–305. doi:10.3354/meps302293.

    Article  Google Scholar 

  • Sheaves, M., and B. Molony. 2000. Short-circuit in the mangrove food chain. Marine Ecology Progress Series 199: 97–109. doi:10.3354/meps199097.

    Article  Google Scholar 

  • Vázquez, R.I., J. Rodríguez, L.A. Abitia, and F. Galván. 2008. Food habits of the yellow snapper Lutjanus argentiventris (Peters, 1869) (Percoidei: Lutjanidae) in La Paz Bay, Mexico. Revista de Biología Marina y Oceanografía 43: 295–302. doi:10.4067/S0718-19572008000200008.

    Article  Google Scholar 

  • Zagars, M., K. Ikejima, N. Arai, H. Mitamura, K. Ichikawa, T. Yokota, and P. Tongnunui. 2012. Migration patterns of juvenile Lutjanus argentimaculatus in a mangrove estuary in Trang province, Thailand, as revealed by ultrasonic telemetry. Environmental Biology of Fishes 94: 377–388. doi:10.1007/s10641-011-9954-4.

    Article  Google Scholar 

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Acknowledgments

Funding was provided by the Rufford Small Grants Foundation and the Conservation Leadership Programme (CLP) to GAC. We are grateful to Universidad del Valle (Professor Efrain Rubio) and the Marine Program of World Wildlife Fund (WWF Colombia) for logistical support. We are much indebted to Willington Aguirre, Ricaurte, and Domingo for guiding us through the mangroves of Bahía Málaga during the sampling campaigns. Two anonymous reviewers provided useful comments on a previous version of the manuscript.

Author Contributions

UK and GAC conceived and designed the experiments. GAC, GR, and UK collected the data. GR and GAC analyzed the data. GAC drafted the manuscript and GR and UK improved previous versions.

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Correspondence to Gustavo A. Castellanos-Galindo.

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Communicated by Nadine A. Strydom

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Ramirez-Martínez, G.A., Castellanos-Galindo, G.A. & Krumme, U. Tidal and Diel Patterns in Abundance and Feeding of a Marine-Estuarine-Dependent Fish from Macrotidal Mangrove Creeks in the Tropical Eastern Pacific (Colombia). Estuaries and Coasts 39, 1249–1261 (2016). https://doi.org/10.1007/s12237-016-0070-8

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