Physiological and sanitary condition of the white clam Dosinia ponderosa collected from a coastal area impacted by shrimp farm effluent
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  • 作者:Marcel Martínez-Porchas ; Susana Maria Scheuren-Acevedo…
  • 关键词:Aquaculture effluents ; Aquaculture pollution ; Environmental impact ; Sanitary condition ; Physiological status ; Stress indicators
  • 刊名:Aquaculture International
  • 出版年:2016
  • 出版时间:February 2016
  • 年:2016
  • 卷:24
  • 期:1
  • 页码:243-256
  • 全文大小:678 KB
  • 参考文献:Anestis A, Lazou A, Pörtner HO, Michaelidis B (2007) Behavioral, metabolic, and molecular stress responses of marine bivalve Mytilus galloprovincialis during long-term acclimation at increasing ambient temperature. Am J Physiol Regul Integr Comp Physiol 293:R911–R921PubMed CrossRef
    APHA (1992) Standard methods for the examination of water and wastewater, 16th edn. American Public Health Association, New York
    Banerjee S, Ooi MC, Shariff M, Khatoon H (2012) Antibiotic resistant Salmonella and Vibrio associated with farmed Litopenaeus vannamei. Sci World J 2012:6. doi:10.​1100/​2012/​130136
    Barraza-Guardado RH, Arreola-Lizárraga JA, López-Torres MA, Casillas-Hernández R, Miranda-Baeza A, Magallón-Barrajas F, Ibarra-Gámez C (2013) Effluents of shrimp farms and its influence on the coastal ecosystems of Bahía de Kino, Mexico. Sci World J 2013:8. http://​www.​hindawi.​com/​journals/​tswj/​2013/​306370/​
    Boutet I, Tanguy A, Rousseau S, Auffret M, Moraga D (2003) Molecular identification and expression of heat shock cognate 70 (hsc70) and heat shock protein 70 (hsp70) genes in the Pacific oyster Crassostrea gigas. Cell Stress Chaperones 8:76–85PubMed PubMedCentral CrossRef
    Cárdenas EB, Aranda DA (2000) A review of reproductive patterns of bivalve mollusks from Mexico. Bull Mar Sci 66:13–27
    Chetty A, Indira K (1994) Alterations in the tissue lipid profiles of Lamellidens marginalis under ambient ammonia stress. Bull Environ Contam Toxicol 53:693–698PubMed CrossRef
    Clark MS, Fraser KP, Peck LS (2008) Lack of an HSP70 heat shock response in two Antarctic marine invertebrates. Polar Biol 31:1059–1065CrossRef
    COSAES (2014) Informe final ciclo 2014: Seguimiento a los cultivos de camarón del Estado de Sonora. Final report 2014. COSAES, Sonora
    De Zwaan A, Cortesi P, Cattani O (1995) Resistance of bivalves to anoxia as a response to pollution-induced environmental stress. Sci Total Environ 171:121–125CrossRef
    Deutsch L, Gräslund S, Folke C, Troell M, Huitric M, Kautsky N, Lebel L (2007) Feeding aquaculture growth through globalization: exploitation of marine ecosystems for fishmeal. Glob Environ Chang 17:238–249CrossRef
    Di Celma C, Ragaini L, Cantalamessa G, Curzio P (2002) Shell concentrations as tools in characterizing sedimentary dynamics at sequence-bounding unconformities: examples from the lower unit of the Canoa Formation (Late Pliocene, Ecuador). Geobios 35:72–85CrossRef
    Farcy E, Serpentini A, Fiévet B, Lebel J-M (2007) Identification of cDNAs encoding HSP70 and HSP90 in the abalone Haliotis tuberculata: transcriptional induction in response to thermal stress in hemocyte primary culture. Comp Biochem Physiol B Biochem Mol Biol 146:540–550PubMed CrossRef
    FDA (1992) Bacteriological analytical manual: AOAC international. Official methods manual protocols
    Hach CC, Brayton SV, Kopelove AB (1985) A powerful Kjeldahl nitrogen method using peroxymonosulfuric acid. J Agric Food Chem 33:1117–1123CrossRef
    Hernandez-Sandoval FE, Lopez-Cortes DJ, Band-Schmidt CJ, Garate-Lizarraga I, Nunez-Vazquez EJ, Bustillos-Guzman JJ (2009) Paralytic toxins in bivalve mollusks during a proliferation of Gymodinium catenatum Graham in Bahía de La Paz, Mexico. Hidrobiológica 19:245–256
    Livak KJ, Schmittgen TD (2001) Analysis of relative gene expression data using real-time quantitative PCR and the \({2^{ - \Delta \Delta {C_{\text{t}}}}}\) method. Methods 25:402–408
    Martínez-Córdova LR, Martínez-Porchas M, Cortés-Jacinto E (2009) Camaronicultura mexicana y mundial:¿ actividad sustentable o industria contaminante? Rev Int Contam Ambient 25:181–196
    Moreno-Báez M, Cudney-Bueno R, Orr BJ, Shaw WW, Pfister T, Torre-Cosio J, Loaiza R, Rojo M (2012) Integrating the spatial and temporal dimensions of fishing activities for management in the Northern Gulf of California, Mexico. Ocean Coast Manag 55:111–127CrossRef
    Nolan T, Hands RE, Bustin SA (2006) Quantification of mRNA using real-time RT-PCR. Nat Protoc 1:1559–1582PubMed CrossRef
    Páez-Osuna F (2001) The environmental impact of shrimp aquaculture: a global perspective. Environ Pollut 112:229–231PubMed CrossRef
    Parsons T, Maita Y, Lalli C (1984) A manual of chemical and biological methods for seawater analysis. Pergamon, Oxford, p 173
    Primpas I, Karydis M (2011) Scaling the trophic index (TRIX) in oligotrophic marine environments. Environ Monit Assess 178:257–269PubMed CrossRef
    Ragaini L, Di Celma C, Cantalamessa G (2008) Warm-water mollusc assemblages from northern Chile (Mejillones Peninsula): new evidence for permanent El Niño-like conditions during Pliocene warmth? J Geol Soc 165:1075–1084CrossRef
    Ramos-Corella K, Martínez-Córdova LR, Enríquez-Ocaña LF, Miranda-Baeza A, López-Elías JA (2014) Bio-filtración, consumo de oxígeno y excreción amoniacal de Dosinia ponderosa y Chione gnidia (Veneroida: Veneridae), en áreas impactadas y no impactadas por efluentes de granjas camaroneras. Rev Biol Trop 62:969–976PubMed CrossRef
    Salas F, Teixeira H, Marcos C, Marques JC, Pérez-Ruzafa A (2008) Applicability of the trophic index TRIX in two transitional ecosystems: the Mar Menor lagoon (Spain) and the Mondego estuary (Portugal). ICES J Mar Sci J Cons 65:1442–1448CrossRef
    Sarkar A, Ray D, Shrivastava AN, Sarker S (2006) Molecular biomarkers: their significance and application in marine pollution monitoring. Ecotoxicology 15:333–340PubMed CrossRef
    Smith MD, Roheim CA, Crowder LB, Halpern BS, Turnipseed M, Anderson JL, Asche F, Bourillón L, Guttormsen AG, Khan A (2010) Sustainability and global seafood. Science 327:784–786PubMed CrossRef
    Strickland J, Parsons T (1972) A practical handbook of seawater analysis. Fisheries Research Board of Canada, Ottawa, p 310
  • 作者单位:Marcel Martínez-Porchas (1)
    Susana Maria Scheuren-Acevedo (1)
    Luis Rafael Martínez-Córdova (2)
    Teresa Gollas-Galvan (1)
    Ramon H. Barraza-Guardado (2)
    Fernando Enríquez-Ocaña (2)
    Edilmar Cortés-Jacinto (3)
    Marco A. Porchas-Cornejo (3)

    1. Coordinación de Tecnología de Alimentos de Origen Animal, Centro de Investigación en Alimentación y Desarrollo, Km 0.6 Carretera a la Victoria, Hermosillo, Sonora, Mexico
    2. Departamento de Investigaiones Científicas y Tecnológicas de la Universidad de Sonora, Universidad de Sonora, Hermosillo, Sonora, Mexico
    3. Centro de Investigaciones Biologicas del Noroeste, Calle IPN #195, 23096, La Paz, B.C.S., Mexico
  • 刊物类别:Biomedical and Life Sciences
  • 刊物主题:Life Sciences
    Hydrobiology
  • 出版者:Springer Netherlands
  • ISSN:1573-143X
文摘
White clams (Dosinia ponderosa) were collected near an effluent outlet of shrimp farms to measure the impact of the discharge. Clams were collected at 50, 150, and 300 m from the discharge area. Environmental parameters at each sampling site were determined and the physiological, stress, and health conditions of the clams were recorded. Water and sediment qualities were negatively affected by effluent discharge at 50 and 150 m. Similarly, physiological and stress conditions of clams from the impacted areas were impaired at 50 and 150 m from the discharge zone. Glucose, lactate, cholesterol, and alanine aminotransferase levels were altered and transcription of heat shock proteins 70 and 90 were over-expressed in these clams. The health condition of clams was not affected: bacterial loads of aerobic mesophiles, fecal coliforms, Staphylococcus aureus, Salmonella sp., and Vibrio cholerae remained below international safety levels. No effects of effluents were detected on most of the parameters at 300 m. In summary, discharge of effluents by shrimp farms had a negative impact on environmental quality and on physiological conditions of white clams within a radius of at least 150 m from the outlet. Keywords Aquaculture effluents Aquaculture pollution Environmental impact Sanitary condition Physiological status Stress indicators

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