Spatial distribution of zooplankton in the salinity gradient between the Dos Bocas port and the Mecoacan lagoon, Tabasco

Authors

  • Elton Adair García-Córdova Departamento de Recursos del Mar, Cinvestav.
  • María Teresa Herrera-Dorantes Departamento de Recursos del Mar, Cinvestav.
  • Marco Antonio May-Kú Departamento de Recursos del Mar, Cinvestav.
  • Pedro Luis Ardisson Herrera Cinvestav, Departamento de Recursos del Mar

Keywords:

Abundance, Gulf of Mexico, Holoplankton, Meroplankton, Salinity gradient

Abstract

Background: The importance of the port of Dos Bocas, Tabasco, for the oil industry in the southern Gulf of Mexico, contrasts with the scarce information on the zooplankton community in its surroundings. Objectives: Generate baseline information on the spatial distribution of richness, abundance and holoplankton/meroplankton (H/M) ratio of zooplankton groups (ZG) along the salinity gradient. Methods: In October 2016, one sampling was conducted at 17 sites in the coastal area adjacent to the Dos Bocas port and the Mecoacan Lagoon. The biological samples were obtained using a plankton net with a 300 μm filtering mesh, recording water salinity and temperature. Results: The richness, abundance, and H/M ratio decreased with salinity. The coastal zone was characterized as a euhaline environment, where 26 ZG were recorded, with a mean abundance of 3,880 ind 100 m-3 and H/M ratio = 11.3, with copepods being the dominant group, which is indicative of the secondary productivity associated with the coastal environment. In the Mecoacan Lagoon, a meso-polyhaline environment predominated, where 17 ZG were recorded, with a mean abundance of 409 ind 100 m-3 and H/M ratio = 1.8, with fish eggs being the dominant group, which is indicative of the importance of the Mecoacan Lagoon for species with commercial or ecological importance, before their adult stage. Conclusions: The changes in the richness and abundance of zooplankton taxa along the salinity gradient provide baseline information on the differential use of the Mecoacan Lagoon and the adjacent coast by ZG with distinct life cycles, representing the first contribution to the knowledge of zooplankton in the study area.

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Author Biography

Pedro Luis Ardisson Herrera, Cinvestav, Departamento de Recursos del Mar

Profesor Investigador; Editor asociado

References

Álvarez-Cadena, J. N., U. Ordóñez-López, D. Valdés-Lozano, A. R. Almaral-Mendívil & A. Uicab-Sabido. 2007. Estudio anual del zooplancton: composición, abundancia, biomasa e hidrología del norte de Quintana Roo, mar Caribe de México. Revista Mexicana de Biodiversidad 78: 421-430. DOI:10.22201/ib.20078706e.2007.002.405

Álvarez-Cadena, J. N., U. Ordóñez-López, A. R. Almaral-Mendivil & A. Uicab-Sabido. 2009. Composition and abundance of zooplankton groups from a coral reef lagoon in Puerto Morelos, Quintana Roo, Mexico, during an annual cycle. Revista de Biología Tropical 57(3): 647-658. DOI:10.15517/rbt.v57i3.5481

Boltovskoy, D. 1999. South Atlantic Zooplankton. Backhuys Publishers, Leiden. 1705 p.

Carrillo-Laguna, J., S. R. Mille-Pagaza & R. Guadarrama-Granados. 1995. La Comunidad zooplanctónica de la sonda de Campeche en dos temporadas: verano de 1980 y primavera de 1986. Anales de la Escuela Nacional de Ciencias Biológicas 40: 153-171.

Cohen, J. H. & R. B. Forward. 2009. Zooplankton diel vertical migration – a review of proximate control. In: Gibson, R. N., R. J. A. Atkinson & J. D. M. Gordon (eds.). Oceanography and Marine Biology an Annual Review Volume 47. CRS Press, Taylor & Francis Group, pp. 77-110. DOI:10.1201/9781420094220.ch2

Conway, D. V. P. 2012. Marine zooplankton of southern Britain. Part 1: Radiolaria, Heliozoa, Foraminifera, Ciliophora, Cnidaria, Ctenophora, Platyhelminthes, Nemertea, Rotifera and Mollusca. A. W. G. John (ed.). Occasional Publications. Marine Biological Association of the United Kingdom, No. 25. Plymouth, United Kingdom. 138 p. DOI:10.13140/2.1.4704.4800

Cruz-Rosado, L., W. M. Contreras-Sánchez, U. Hernández-Vidal, J. Gómez-Gutiérrez, M. J. Contreras-García & A. Mcdonal-Vera. 2020. Seasonal variability of near-surface zooplankton community structure in the southern Gulf of Mexico. Latin American Journal of Aquatic Research 48(4): 649-661. DOI:10.3856/vol48-issue4-fulltext-2503

De Jesús-Carrillo, R. M., F. A. Ocaña, I. Hernández-Ávila, M. Mendoza-Carranza, A. J. Sánchez & E. Barba-Macías. 2020. Mollusk distribution in four habitats along a salinity gradient in a coastal lagoon from the Gulf of Mexico. Journal of Natural History 54(19-20): 1257-1270. DOI:10.1080/00222933.2020.1785030

Deepwater Horizon Natural Resource Damage Assessment Trustees. 2016. Deepwater Horizon Oil Spill: Final Programmatic Damage Assessment and Restoration Plan and Final Programmatic Environmental Impact Statement. IV. Injury to Natural Resources. Available online at: http://www.gulfspillrestoration.noaa.gov/restoration-planning/gulf-plan (downloaded October 4, 2023).

Del Ángel, E., A. H. Rubio, D. M. Frías & D. Laguna. 2009. Health risks due to the presence of lead (Pb) and copper (Cu) in a coastal area of Tabasco, Mexico. In: Brebia, C. A. (ed.). Environmental Health Risk V. Witt Press, pp. 125-132. DOI:10.2495/EHR090121

Díaz-González, G., A. Vázquez-Botello & G. Ponce-Vélez. 1994. Contaminación por hidrocarburos aromáticos (HAP’S) disueltos en la laguna Mecoacán, Tabasco, México. Hidrobiológica 4(1-2): 21-27.

Domínguez, J. C. A. J. Sánchez, R. Florido & E. Barba. 2003. Distribución de macrocrustáceos en la laguna Mecoacán, al sur del Golfo de México. Hidrobiológica 13(2): 127-136.

Escribano, R., & L. Castro. 2004. Plancton y productividad. In: Werlinger. C. (ed.). Biología Marina y Oceanografía: Conceptos y Procesos. Universidad de Concepción. Trama impresiones S.A. Chile, pp. 289-312.

Espinoza-Tenorio, A., J. A. Zepeda-Domínguez, J. C. Núñez-Gómez, M. Mendoza-Carranza & E. Barba-Macías. 2015. ¿De la intuición al conocimiento científico? Publicaciones sobre las lagunas costeras de Tabasco, México. Interciencia 40(7): 448-456.

Galavíz-Solis, A., M. Gutiérrez-Estrada & A. Castro del Río. 1987. Morfología, sedimentos e hidrodinámica de las lagunas Dos Bocas y Mecoacán, Tabasco, México. Anales del Instituto de Ciencias del Mar y Limnología, UNAM 14(2): 109-123.

Gasca, R. & I. Castellanos. 1993. Zooplancton de la Bahía de Chetumal, Mar Caribe, México. Revista de Biología Tropical 41(3): 619-625.

Hernández-Ojendi, R., L. A. Ayala-Pérez, A. Esquivel-Herrera & B. I. Vega-Rodríguez. 2020. Estructura de la comunidad de peces de la Laguna Mecoacán, Tabasco, México. JAINA Costas y Mares ante el Cambio Climático 2(1): 1-18. DOI:10.26359/52462.0120

Mecalco-Hernández, A. & M. Castillo-Rivera. 2020. Riqueza zooplanctónica en la boca de la Laguna La Mancha, durante muestreos mensuales y nictímeros. Hidrobiológica 30(2): 143-153. DOI:10.24275/uam/izt/dcbs/hidro/2020v30n2/Castillo

Ocaña-Luna, A. & M. Sánchez-Ramírez. 2016. Estructura de la comunidad ictioplanctónica en la laguna de Tamiahua, Veracruz, México. Revista Mexicana de Biodiversidad 87: 123-132. DOI:10.1016/j.rmb.2016.01.018

Prairie, J.C., K. R. Sutherland, K. J. Nickols & A. M. Kaltenberg. 2012. Biophysical interactions in the plankton: A cross-scale review. Limnology and Oceanography Fluids & Environments 2: 121-145. DOI:10.1215/21573689-1964713

Roura, Á., X. A. Álvarez-Salgado, F. González Ángel, M. Gregori, G. Rosón & Á. Guerra. 2013. Short-term meso-scale variability of mesozooplankton communities in a coastal upwelling system (NW Spain). Progress in Oceanography 109: 18-32. DOI:10.1016/j.pocean.2012.09.003

Sanvicente-Añorve, L., M. Sánchez-Campos, M. Alatorre-Mendieta, E. Lemus-Santana & E. Guerra-Castro. 2022. Zooplankton functional traits in a tropical estuarine system: Are lower and upper estuaries functionally different? Frontiers in Marine Science 9: 1004193. DOI:10.3389/fmars.2022.1004193

Sarma, S. S. S., S. Nandini, P. Ramírez-García & J. E. Cortés-Muñoz. 2000. New records of brackish water Rotifera and Cladocera from Mexico. Hidrobiológica 10(2): 121-124.

Suárez-Morales, E., U. Ordóñez-López & L. Vásquez-Yeomans. 2013. Las investigaciones de zooplancton marino en el sureste de México (1985-2010): logros y perspectivas institucionales. Sociedad y Ambiente1(1): 96-112. DOI:10.31840/sya.v0i1.5

Torres, J.R., A. J. Sánchez & E. Barba. 2020. Spatial and temporal habitat use by penaeid shrimp (Decapoda: Penaeidae) in a coastal lagoon of the southwestern Gulf of Mexico. Regional Studies in Marine Science 34: 101052. DOI:10.1016/j.rsma.2020.101052

Whitfield, A. K., M. Elliott, A. Basset, S. J. M. Blaber & R. J. West. 2012. Paradigms in estuarine ecology – A review of the Remane diagram with a suggested revised model for estuaries. Estuarine, Coastal and Shelf Science 97: 78e90. DOI:10.1016/j.ecss.2011.11.026

Zavala-García, F., C. Flores-Coto & M. L. Espinosa-Fuentes. 2016. Relationship between zooplankton biomass and continental water discharges in the southern Gulf of Mexico (1984-2001). Revista de Biología Marina y Oceanografía 51(1): 21-31. DOI:10.4067/S0718-19572016000100003.

Published

2023-11-27

How to Cite

García-Córdova, E. A., Herrera-Dorantes, M. T., May-Kú , M. A., & Ardisson Herrera, P. L. (2023). Spatial distribution of zooplankton in the salinity gradient between the Dos Bocas port and the Mecoacan lagoon, Tabasco. HIDROBIOLÓGICA, 34(1). Retrieved from https://hidrobiologica.izt.uam.mx/index.php/revHidro/article/view/1751

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