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Tytuł artykułu

Analysis of hydrobiological responses to anthropogenic and natural influences in a lagoon system in the Gulf of California

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The hydrological characteristics and the rate of organic matter supply from coastal lagoons help to understand their responses to nutrient input by anthropogenic and natural sources. The aim of this study was to determine the hydrologic and trophic status of the El Rancho-Empalme lagoon system in a semiarid region in the Gulf of California, Mexico. This lagoon system consists of two geomorphological subsystems which are affected by nutrient inputs from shrimp farm effluents and coastal upwelling. Sampling was conducted over the course of one year and included measurements of temperature, salinity, and dissolved oxygen, surface water grab samples to analyze nitrite, nitrate, ammonia, orthophosphate, and chlorophyll a. The trophic status was assessed using the TRophic IndeX (TRIX). The subsystems El Rancho and Empalme had a similar hydrological behavior throughout the year, reflecting a good exchange of water, materials and energy. The TRIX index showed oligotrophic state during spring, summer and autumn, and a mesotrophic state in winter. Nutrient inputs from shrimp farm effluents were not responsible for trophic status increases, however, coastal upwelling in the region plays an important role in the growing rate of seasonal supply of organic matter to these coastal lagoons.
Rocznik
Strony
112--120
Opis fizyczny
Bibliogr. 35 poz., rys., tab., wykr.
Twórcy
  • Centro de Investigaciones Biologicas del Noroeste, Km 2.3 carr. a las tinajas predio el tular s/n, 85454 Sonora, Mexico
  • Centro de Investigaciones Biologicas del Noroeste, Km 2.3 carr. a las tinajas predio el tular s/n, 85454 Sonora, Mexico
  • Centro de Investigaciones Biologicas del Noroeste, Km 2.3 carr. a las tinajas predio el tular s/n, 85454 Sonora, Mexico
  • Centro de Investigaciones Biologicas del Noroeste, Km 2.3 carr. a las tinajas predio el tular s/n, 85454 Sonora, Mexico
  • Centro de Investigaciones Biologicas del Noroeste, Km 2.3 carr. a las tinajas predio el tular s/n, 85454 Sonora, Mexico
  • Centro de Investigaciones Biologicas del Noroeste, Km 2.3 carr. a las tinajas predio el tular s/n, 85454 Sonora, Mexico
Bibliografia
  • [1]. Andersen, J.H. & Conley, D.J. (2009). Eutrophication in coastal marine ecosystems: towards better understanding and management strategies. Hydrobiologia 629: 1-4. DOI: 10.1007/s13280-014-0514-y.
  • [2]. Arreola-Lizarraga, J.A., Padilla-Arredondo, G. & Ortega-Rubio, A. (2004). Experiencias de manejo en la zona costera del Pacifico: la bahia de Guaymas, un caso especifico, Cap. 25. p. 375-386. In: E. Rivera Arriaga, G.J. Villalobos, I. Azuz Adeath, & F. Rosado May (Eds.). El Manejo Costero en México (654 p). Universidad Autónoma de Campeche, SEMARNAT, CETYS-Universidad, Universidad de Quintana Roo.
  • [3]. Cloern, J.E. (2001). Our evolving conceptual model of the coastal eutrophication problem. Mar. Ecol. Prog. Ser. 210: 223-253. DOI: 10.3354/meps210223.
  • [4]. Barraza-Guardado, R.H., Arreola-Lizarraga, J.A., López-Torres, M.A., Casillas-Hernandez, R., Miranda-Baeza, A. et al. (2013). Effluents of shrimp farms and its influence on the coastal ecosystems of Bahia de Kino, Mexico. The Scientific World Journal DOI: 10.1155/2013/306370.
  • [5]. CivilCAD. (2012). Reference manual. Sivan Design, 437 p.
  • [6]. Colbert, D.& McManus, J. (2003). Nutrient Biogeochemistry in an Upwelling-Influenced Estuary of the Pacific Northwest (Tillamook Bay, Oregon, USA). Estuaries 26(5): 1205-1219.
  • [7]. Duarte, C.M. (2009). Coastal eutrophication research: a new awareness. Hydrobiologia 629: 263-269. DOI: 10.1007/978- 90-481-3385-7_22. 263.
  • [8]. Eyre, B. (1998). Transport, Retention, and Transformation of material in Australian estuaries. Estuaries 1: 540-551.
  • [9]. Farfan, B.C. & Alvarez-Borrego, S. (1983). Variablility and fluxes of nitrogen and organic carbon at the mouth of a coastal lagoon. Estuar. Coast. Shelf S. 17: 599-612. DOI: 10.1016/0272-7714(83)90029-X.
  • [10]. Garcia, E. (1988). Modificaciones al sistema de clasificación climâtica de Köppen (Adaptaciones a las condiciones de la repüblica mexicana). Instituto de Geografia, Universidad Nacional Autónoma de México, D. F., 243 p.
  • [11]. Garmendia, M., Bricker, S., Revilla, M., Borja, A., Franco, J. et al. (2012). Eutrophication Assessment in Basque Estuaries: Comparing a North American and a European Method. Estuar. Coast. 35:1-16. DOI: 10.1007/s12237-012-9489-8.
  • [12]. Gilmartin, M. & Revelante, N. (1978). The phytoplankton characteristics of the barrier island lagoons of the Gulf of California. Estuar. Coast. Mar. Sci. 7: 29-47. DOI: 10.1016/0302-3524(78)90055-5.
  • [13]. Giordani, G., Zaldivar, J.M. & Viaroli, P. (2009). Simple tools for assessing water quality and trophic status transitional waters ecosystems. Ecol. Indic. 9: 982-991. DOI: 10.1016/j. ecolind.2008.11.007.
  • [14]. Gordon, D.C., Boudreau, P.R., Mann, K.H., Ong, J.E., Silvert, W.L. et al. (1996). LOICZ Biogeochemical Modelling Guidelines. LOICZ Reports & Studies 5.
  • [15]. Hernandez-Ibarra, A. (1999). Comportamiento de la calidad del agua en una granja camarorncola del Noroeste de México (Behavior of water quality in a shrimp farm at northwestern of Mexico). Bachelor thesis, Instituto Tecnológico del Mar, Guaymas, Sonora, 56 p.
  • [16]. Howarth, W.R. & Marino, R. (2006). Nitrogen as the limiting for eutrophication in coastal marine ecosystems: Evolving views over three decades. Limnol. Oceanogr. 51: 364-376.
  • [17]. Lluch-Cota, S. (2000). Coastal upwelling in the eastern Gulf of California. Oceanol. Acta 23: 731-740.
  • [18]. Magallón-Barajas, F.J., Arreola-Lizarraga, J. A., Portillo- Clark, G., Casillas- Hernandez, R. Lechuga-Deveze, C. et al. (2009). Capacidad de Carga y Capacidad ambiental en la Camaronciultura.. In L.R. Martmez-Côrdova (Ed.). Camaronicultura Sustentable (pp. 51-109). Editorial Trillas. México, D.F.
  • [19]. Monbet, Y. (1992). Control of phytoplankton biomass in estuaries: a comparative analysis of microtidal and macrotidal estuaries. Estuaries 14: 563-571. DOI: 10.2307/1352398.
  • [20]. Nixon, W (1995). Coastal marine eutrophication: a definition, social causes, and future concerns. Ophelia 41: 199-219. DO I:/10.1080/00785236.1995.10422044.
  • [21]. Nixon, S.W. (2009). Eutrophication and the macroscope. Hydrobiologia 629: 5-19.
  • [22]. Paez-Osuna, F. (2001). The environmental impact of shrimp aquaculture: causes, effects, and mitigating alternatives. Environ. Manage. 28(1): 131-140.
  • [23]. Painting, S.J., Devlin, M.J., Malcom, S.J., Parker, E.R., Mills, D.K. et al. (2007). Assessing the impact of nutrient enrichment in estuaries: Susceptibility to eutrophication. Mar. Pollut. Bull. 55: 74-90.
  • [24]. Parson, T.R., Maitia, Y. & Lalli, C.M. (1984). A manual of Chemical and Biological Methods for Sea Water Analysis. Pergamonn Press, Oxford.
  • [25]. Roden, G.I. & Emilsson, I. (1980). Oceanografia fisica del Golfo de California. Centro de Ciencias del Mar y Limnolog^a, UNAM, 90: 1- 67.
  • [26]. Scavia, D. & Liu, Y. (2006). Exploring estuarine nutrient susceptibility. Environ. Sci. Technol. 43: 3474-3479. DOI: 10.1021/es803401y.
  • [27]. SEMARNAT. (2006). Programa de Ordenamiento Ecológico Marino del Golfo de California. Secretana de Medio Ambiente y Recursos Naturales, México, D.F., 138 p.
  • [28]. Smith, S.V. & Atkinson, M. (1983). Mass balance of carbón and phosphorus in Shark Bay, Western Australia. Limnol. Oceanogr. 28: 625-639.
  • [29]. Strickland, J.D.H. & Parsons, T.R. (1972). A Practical Handbook of Seawater Analysis. Fisheries Research Board of Canada, Bulletin 167 (Second Edition), Ottawa, 310 p.
  • [30]. Valdez- Holgum, J.E. (1994). Variaciones Diarias de Temperatura, Salinidad, Ox^geno Disuelto y Clorofila “a”, en una Laguna Hipersalina del Golfo de California (Daily variations of temperature, salinity, dissolved oxygen, and chlorophyll a in a hypersaline lagoon of the Gulf of California). Cienc. Mar. 20: 123-137.
  • [31]. Valenzuela-Siu, M., Arreola-Lizarraga J.A., Sanchez-Carrillo S. & Padilla-Arredondo, G. (2007). Flujos de nutrientes y metabolismo neto de la laguna costera Lobos, México (Nutrient fluxes and net metabolism in Lobos coastal lagoon, México). Hidrobiológica 17(3): 193-208.
  • [32]. Valle-Levinson, A., Delgado, J.A. & Atkinson, L.P. (2001). Reversing Water Exchange Patterns at the Entrance to a Semiarid Coastal Lagoon. Estuar. Coast. Shelf S. 53:825-838. DOI: 10.1006/ecss.2000.0813.
  • [33]. Vollenweider, R.A., Giovanardi, F., Montanari, G. & Rinaldi, A. (1998). Characterization of the trophic conditions of marine coastal waters with special reference to the NW Adriatic Sea: proposal for a Trophic Scale, Turbidity and generalized Water Quality Index. Environmetrics 9: 329-357. DOI: 10.1002/(SICI)1099-095X(199805/06)9:3<329::AID- ENV308>3.0.CO;2-9.
  • [34]. Whitall, D., Bricker, S., Ferreira, J., Nobre, A.M., Simas, T. et al. (2007). Assessment of Eutrophication in Estuaries: Pressure-State-Response and Nitrogen Source Apportionment. Environ. Manage. 40: 678-690. DOI: 10.1007/s00267-005-0344-6.
  • [35]. Wolfe, D.A. & Kjerfve, B. (1986). Estuarine variability: an overview. In D.A. Wolfe (Ed.), Estuarine variability (pp. 3-17). Academic Press, San Diego, California, USA.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e3a76ca5-0e13-4fbd-a932-a7d6d3b39f3c
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