267
Views
6
CrossRef citations to date
0
Altmetric
Reviews

Scientometric Analysis of the Fisheries Science for the Species of Cynoscion (Sciaenidae: Perciformes) from the Western Atlantic, with Emphasis in the Comparison of the North American and Brazilian Fisheries Catch Data

&

References

  • Abdallah, P. R. and U. R. Sumaila. An historical account of Brazilian public policy on fisheries subsidies. Mar. Pol., 31: 444–450 (2007).
  • Alves, D. C. and C. V. Minte-Vera. Scientometric analysis of freshwater fisheries in Brazil: repeating past errors? Rev. Fish Biol. Fish., 23: 113–126 (2013).
  • Ayala-Pérez, L. A., O. A. Avilés-Alatriste, and J. L. Rojas-Galaviz. Estructura de la comunidad de peces en el sistema Candelaria-Panlau, Campeche, México. Revista de Biología Trop., 46(3): 763–774 (1998).
  • Ayala-Pérez, L. A., J. R. Miranda, and D. F. Hernández. La comunidad de peces de la Laguna de Términos: estructura actual comparada. Revista de Biología Trop., 51(3–4): 783–794 (2003).
  • Barletta, M., A. Barletta-Bergan, U. Saint-Paul, and G. Hubold. The role of salinity in structuring the fish assemblages in a tropical estuary. J. Fish Biol., 66(1): 45–72 (2005).
  • Barletta-Bergan, A., M. Barletta, and U. Saint-Paul. Community structure and temporal variability of ichthyoplankton in North Brazilian mangrove creeks. J. Fish Biol., 61(Supplement sA): 33–51 (2002).
  • Béarez, P. Description of a new weakfish, Cynoscion nortoni, from Ecuador with a note on the distribution of Umbrina bussingi (Perciformes: Sciaenidae). Revista de Biología Trop., 49(1): 59–65 (2001).
  • Béné, C. Small-scale fisheries: assessing their contribution to rural livelihoods in developing countries. FAO Fish. Circ., 1008: 46 (2006).
  • Bohnsack, J. A. Impacts of Florida coastal protected areas on recreational world records for spotted seatrout, red drum, black drum and common snook. Bull. Mar. Sci., 87(4): 939–970 (2011).
  • Brito, M. A., H. Schneider, I. Sampaio, and S. Santos. DNA barcoding reveals high substitution rate and mislabeling in croaker fillets (Sciaenidae) marketed in Brazil: The case of “pescada branca” (Cynoscion leiarchus and Plagioscion squamosissimus). Food Res. Int., 70: 40–46 (2015).
  • Burger, J. and M. Gochfeld. Mercury and selenium levels in 19 species of saltwater fish from New Jersey as a function of species, size and season. Sci. Total Environ., 409(8): 1418–1429 (2011).
  • Butchart, S. H. M., H. R. Akcakaya, E. Kennedy, and C. Hilton-Taylor. Biodiversity indicators based on trends in Conservation status: Strengths of the IUCN Red List Index. Conserv. Biol., 20(2): 579–581 (2006).
  • Camilo-Alejandro, P., L. F. J. Beléndez-Moreno, C. Q. Brahms, P. Carrillo-Alejandro, L. F. J. Beléndez-Moreno, C. Q. Brahms, A. González-Cruz, M. G. Gómez-Ortiz, M. Medellín-Ávila, A. S. Leo-Peredo, E. Márquez-García, J. J. Villanueva-Fortanelli, M. R. Castañeda-Chávez, F. Lango-Reynoso, I. Galaviz-Villa, J. M. Soto-Alva, A. D. Ríos-Massé, O. Palomino-Ramírez, G. Martínez-Pérez, B. Y. Rangel-Arteaga, G. Pantoja-Yepez, L. García-Solorio, G. Acosta-Barbosa, J. Balderas-Téllez, R. Arteaga-Peña, J. A. González-Rangel, J. L. Gómez-Jiménez, E. Conde-Galaviz, L. E. Martínez-Cruz, and L. M. Pantoja-González. Laguna de Pueblo Viejo, Vera Cruz, pp. 279–358. In: Sustentabilidad y Pesca Responsable en México: Evaluación y Manejo. SAGARPA (Beléndez-Moreno, L. F. J., E. E. Barr, G. G. Cortes, M. T. Gaspar-Dillanes, L. H. Campos, and E. M. Bojórquez eds.), Guadalajara, México: Instituto Nacional de Pesca (2014).
  • Carneiro, C. S., E. T. Mársico, R. O. R. Ribeiro, and E. F. O. Jesus. Total mercury bioaccumulation in tissues of carnivorous fish (Micropogonias furnieri and Cynoscion acoupa) and oysters (Crassostrea brasiliana) from Sepetiba Bay, Brazil. J. Aquat. Food Product Technol., 22(1): 96–102 (2013).
  • Carvalho, D. C., R. M. Palhares, M. G. Drummond, and T. B. Frigo. DNA barcoding identification of commercialized seafood in South Brazil: A governmental regulatory forensic program. Food Control, 50: 784–788 (2015).
  • Carvalho-Filho, A., S. Santos, and I. Sampaio. Macrodon atricauda (Günther, 1880) (Perciformes: Sciaenidae), a valid species from the southwestern Atlantic, with comments on its conservation. Zootaxa, 2519: 48–58 (2010).
  • Cazorla, A. L., J. M. Molina, and C. Ruarte. The artisanal fishery of Cynoscion guatucupa in Argentina: Exploring the possible causes of the collapse in Bahía Blanca estuary. J. Sea Res., 88: 29–35 (2014).
  • Chadegani, A. A., H. Salehi, M. M. Yunus, H. Farhadi, M. Fooladi, M. Farhadi, and N. A. Ebrahim. A comparison between two main academic literature collections: Web of Science and Scopus databases. Asian Soc. Sci., 9(5): 18–26 (2013).
  • Chao, L. N. A basis for classifying western atlantic sciaenidae (Teleostei: Perciformes). NOAA Tech. Report NMFS Circ., 415: 64 (1978).
  • Chao, L. N. Taxonomy of the seatrout, genus Cynoscion (Pisces, Sciaenidae), with Artificial Keys to the species, pp. 5–15. In: Biology of the Spotted Seatrout (Bortone, S. A. Ed.) Boca Raton, FL: CRC Press (2002a).
  • Chao, L. N. Sciaenidae: Croakers (drums), pp. 1583–1653. In: The Living Marine Resources of the Western Central Atlantic Volume 3: Bony fishes part 2 (Opistognathidae to Molidae), Sea Turtles and Marine Mammals (Carpenter, K. E. Ed.). Rome: FAO (2002b).
  • Chao, N. L., F. L. Frédou, M. Haimovici, M. B. Peres, B. Polidoro, M. Raseira, R. Subirá, and K. Carpenter. A popular and potentially sustainable fishery resource under pressure-extinction risk and conservation of Brazilian Sciaenidae (Teleostei: Perciformes). Global Ecol. Conserv., 4: 117–126 (2015).
  • Christensen, V. Indicators for marine ecosystems affected by fisheries. Mar. Freshwater Res., 51: 447–450 (2000).
  • Chute, W. H., W. A. Bailey, J. R. Dymond, S. F. Hildebrand, G. S. Myers, and L. P. Schultz. Q list of common and scientific names of the better known fishes of the United States and Canada. Am. Fish. Soc. Spec. Pub. n°1 (1948).
  • Costello, C., D. Ovando, R. Hilborn, S. D. Gaines, O. Deschenes, and S. E. Lester. Status and solutions for the world's unassessed fisheries. Science, 338: 517–520 (2012).
  • Defeo, O., P. Puig, S. Horta, and A. Álava. Coastal Fisheries of Uruguay, pp. 357–384. In: Coastal Fisheries of Latin America and the Caribbean (Salas, S., Chuenpagdee, R., Charles, A., and Seijo, J. C. eds). FAO Fisheries and Aquaculture Technical Paper 544 (2011).
  • Espinosa-Pérez, H., L. T. Findley, C. R. Gilbert, R. N. Lea, N. E. Mandrak, R. L. Mayden, J. S. Nelson, and L. M. Page. Common and Scientific Names of Fishes from the United States, Canada and Mexico. 7th edition. American Fisheries Society, 243 (2013).
  • Fable, W. A. Jr, T. D. Williams, and C. R. Arnold. Description of reared eggs and young larvae of the spotted seatrout, Cynoscion nebulosus. Fishery Bull., 76: 65–71 (1978).
  • Fernández Iriarte, P. J., M. P. Alonso, D. E. Sabadin, P. A. Arauz, and C. M. Iudica. Phylogeography of weakfish Cynoscion guatucupa (Perciformes: Sciaenidae) from the southwestern Atlantic. Scientia Marina, 75(4): 701–706 (2011).
  • Figueiredo, J. L. Sobre a aplicação dos nomes Cynoscion striatus (Cuvier, 1829) e Cynoscion guatucupa (Cuvier, 1830) (Teleostei: Sciaenidae). Comunicações do Museu de Ciências de PUCRS, 5(8): 117–121 (1992).
  • Fischer, J. (Ed.). Fish Identification Tools for Biodiversity and Fisheries Assessment: Review and Guidance for Decision-Makers. FAO Fisheries and Aquaculture Technical Paper N° 585. Rome: FAO, 107 (2013).
  • Fodrie, F. J. and K. L. Heck Jr. Response of coastal fishes to the Gulf of Mexico oil disaster. PLoS One, 6(7): e21609 (2011).
  • Food and Agriculture Organization – FAO. Review of the State of World Marine Fishery Resources. FAO Fisheries Technical Paper 457. Rome: FAO, 235 (2005).
  • Food and Agriculture Organization – FAO. Review of the State of World Marine Fishery Resources. FAO Fisheries Technical Paper 569. Rome: FAO, 334 (2011).
  • Food and Agriculture Organization – FAO. The State of World Fisheries and Aquaculture 2014. Rome: FAO, 223 (2014).
  • Freire, K. M. F. and D. Pauly. Richness of common names of the Brazilian marine fishes and its effect on catch statistics. J. Ethnobiology, 25(2): 279–296 (2005).
  • Freire, K. M. F. and D. Pauly. Fishing down Brazilian marine food webs, with emphasis on the east Brazil large marine ecosystem. Fish. Res., 105(1): 57–62 (2010).
  • Froehner, S., M. Maceno, and K. S. Machado. Predicting bioaccumulation of PAHs in the trophic chain in the estuary region of Paranagua, Brazil. Environ. Monit. Assess., 174(1): 135–145 (2011).
  • Garcia, S. M., A. Zerbi, C. Aliaume, T. Do Chi, and G. Lasserre. The Ecosystem Approach to Fisheries. Issues, Terminology, Principles, Institutional Foundations, Implementation and Outlook. FAO Fisheries Technical Paper 443. Rome: FAO, 71 (2003).
  • Günther, A. Report on the shore fishes procured during the voyage of H.M.S. Challenger in the years 1873–1876. 1–82, pls. 1–32. In. Report on the scientific results of the voyage of H. M. S. Challenger during the years 1873–76. Zoology, 1(6) (1880).
  • Hansen, A. Communication, media and environment: Towards reconnecting research on the production, content and social implications of environmental communication. Int. Commun. Gazette, 73(1–2): 7–25 (2011).
  • Howells, R. G. and G. P. Garrett. Status of some exotic sport fishes in Texas waters. Texas. J. Sci., 44: 317–324 (1992).
  • Instituto Brasileiro do Meio Ambiente e dos Recursos Naturais Renováveis – IBAMA. Estatística da pesca 2001—Brasil: Grandes regiões e unidades da federação. 97 (2003).
  • Instituto Brasileiro do Meio Ambiente e dos Recursos Naturais Renováveis – IBAMA. Estatística da pesca 2007—Brasil: Grandes regiões e unidades da federação. 113 (2007).
  • Isaac, V. J., R. V. E. Santo, B. Bentes, F. L. Frédou, K. R. M. Mourão, and T. Frédou. An interdisciplinary evaluation of fishery production systems off the state of Pará in North Brazil. J. Appl. Ichthyology, 25(3): 244–255 (2009).
  • IUCN. The IUCN Red List of Threatened Species. Version 2015–4. www.iucnredlist.org. Acessado em 30 de novembro de 2015 (2015).
  • James, J. T., G. W. Stunz, D. A. McKee, and R. R. Vega. Catch-and-release mortality of spotted seatrout in Texas: effects of tournaments, seasonality, and anatomical hooking location. N. Amer. J. Fish. Manage., 27: 900–907 (2007).
  • Jaric, I., G. Cvijanovic, J. Knezevic-Jaric, and M. Lenhardt. Trends in fisheries science from 2000 to 2009: A bibliometric study. Rev. Fish. Sci., 20(2): 70–79 (2012).
  • Jiao, Y., E. P. Smith, R. O'Reilly, and D. J. Orth. Modelling non-stationary natural mortality in catch-at-age models. ICES J. Mar. Sci., 69(1): 105–118 (2012).
  • Khaksar, R., T. Carlson, D. W. Schaffner, M. Ghorashi, D. Best, S. Jandhyala, J. Traverso, and S. Amini. Unmasking seafood mislabeling in U.S. markets: DNA barcoding as a unique technology for food authentication and quality control. Food Control, 56: 71–76 (2015).
  • Levy, J. A. and V. P. F. Cassano. Biochemical-genetic comparison of Cynoscion jamaicensis and Cynoscion striatus (Teleostei: Perciformes: Sciaenidae) in South Brazil. Comp. Biochem., 107(4): 515–517 (1994).
  • Llompart, F. M., D. C. Colautti, and C. R. M. Baigún. Assessment of a major shore-based marine recreational fishery in the southwest Atlantic, Argentina. NZ J. Mar. Freshwater Res., 46(1): 57–70 (2012).
  • Lucena, F. and C. M. O'Brien. The consequences of different scenarios in the management of the gillnet and purse-seine fisheries targeting Pomatomus saltatrix and Cynoscion guatucupa in southern Brazil: a bio-economic approach. ICES J. Mar. Sci., 62(2): 201–213 (2005).
  • Mabragaña, E., J. M. Díaz de Astarloa, R. Hanner, J. Zhang, and M. G. Castro. DNA barcoding identifies argentine fishes from marine and brackish waters. PloS ONE, 6(12): e28655 (2011).
  • Mahon, R. Does fisheries science serve the needs of managers of small stocks in developing countries? Can. J. Fish. Aquat. Sci., 54: 2207–2213 (1997).
  • McBride, R. S. Managing a marine stock portfolio: Stock identification, structure, and management of 25 fishery species along the Atlantic coast of the United States. N. Amer. J. Fish. Manage., 34: 710–734 (2014).
  • McDonald, D. L., J. D. Anderson, B. W. Bumguardner, F. Martinez-Andrade, and J. O. Harper. Spatial and seasonal abundance of sand seatrout (Cynoscion arenarius) and silver seatrout (C. nothus) off the coast of Texas, determined with twenty years of data (1987–2006). Fishery Bull., 107: 24–35 (2009).
  • McEachran, J. D. and J. D. Fechhelm. Fishes of the Gulf of Mexico Volume 2. 1st ed. Austin: University of Texas Press, 2005, 1004 (2005).
  • McGoodwin, J. R. Understanding the cultures of fishing communities: A key to fisheries management and food security. FAO Fisheries Technical Paper 401, 287 (2001).
  • Menezes, N. A. and J. L. Figueiredo. Manual de Peixes Marinhos do Sudeste do Brasil IV. Teleostei (3). São Paulo: MZUSP, 1980. 96 (1980).
  • Mercer, L. P. A biological and fisheries profile of spotted seatrout, Cynoscion nebulosus. North Carolina Department of Natural Resources and Community Development, Special Science Report N°40:1–87. (1984).
  • Ministério da Pesca e Aquacultura – MPA. Boletim Estatístico da Pesca e Aquicultura – 2011. Brasília, 60 (2012).
  • Miranda, L. V. M. and M. Haimovici. Changes in the population structure, growth and mortality of striped weakfish Cynoscion guatucupa (Sciaenidae,Teleostei) of southern Brazil between 1976 and 2002. Hydrobiologia, 589: 69–78 (2007).
  • Mol, J. H., J. S. Ramlal, C. Lietar, and M. Verloo. Mercury contamination in freshwater, estuarine, and marine fishes in relation to small-scale gold mining in Suriname, South America. Environ. Res. Section A, 86: 183–197 (2001).
  • Mourão, K. R. M., F. L. Frédou, R. V. Espírito-Santo, M. C. Almeida, B. B. Silva, and T. Frédou. Sistema de produção pesqueira pescada amarela – Cynoscion acoupa Lacèpede (1802): Um estudo de caso no litoral nordeste do Pará – Brasil. Boletim do Instituto de Pesca, 35(3): 497–511 (2009).
  • National Marine Fisheries Service - NMFS. Fisheries of the United States, 2001. U.S. Department of Commerce. 126 (2002).
  • National Marine Fisheries Service - NMFS. Fisheries of the United States, 2011. U.S. Department of Commerce, NOAA Current Fishery Statistics N° 2011. 124 pp. (2012).
  • National Marine Fisheries Service - NMFS. Fisheries of the United States, 2014. U.S. Department of Commerce, NOAA Current Fishery Statistics N° 2014. 135 pp. (2015).
  • Nelson, J. S. Fishes of the World 4th Edition. Hoboken, New Jersey, USA: John Wiley & Sons, Inc., 601 (2006).
  • Nguyen, T. V. Ecosystem-based fishery management: A review of concepts and ecological economic models. J. Ecosyst. Manage., 13(2): 1–14 (2012).
  • Norbis, W. and O. Galli. Spatial co-occurrence of two sciaenid species (Micropogonias furnieri and Cynoscion guatucupa) subject to fishing in the Río de La Plata and oceanic coast of Uruguay: Ecological or technological interdependence? Boletim do Instituto de Pesca, 39(2): 137–148 (2013).
  • Ogden, R. Fisheries forensics: the use of DNA tools for improving compliance, traceability and enforcement in the fishing industry. Fish Fish., 9: 462–472 (2008).
  • Patrick, W. S. and J. S. Link. Myths that continue to impede progress in ecosystem-based fisheries management. Fisheries, 40(4): 155–160 (2015).
  • Pauly, D. and R. Watson. Background and interpretation of the “Marine Trophic Index” as a measure of biodiversity. Philos. Trans. Royal Soc., 360: 415–423 (2005).
  • Pauly, D. and K. I. Stergiou. Equivalence of results from two citation analyses: Thomson ISI's Citation Index and Google's Scholar service. Ethics Sci. Environ. Polit., 2005: 33–35 (2005).
  • Pauly, D., V. Christensen, J. Dalsgaard, R. Froese, and F. Torres Jr. Fishing down marine food webs. Science, 279: 860–863 (1998).
  • Pauly, D., A. Ulman, C. Piroddi, E. Bultel, and M. Coll. “Reported” versus “likely” fisheries catches of four Mediterranean countries. Scientia Marina, 78S1: 11–17 (2014).
  • Pikitch, E. K., C. Santora, E. A. Babcock, A. Bakun, R. Bonfil, D. O. Conover, P. Dayton, P. Doukakis, D. Fluharty, B. Heneman, E. D. Houde, J. Link, P. A. Livingston, M. Mangel, M. K. McAllister, J. Pope, and K. J. Sainsbury. Ecosystem-based fishery management. Science, 305: 346–347 (2004).
  • Previero, M., C. V. Minte-Vera, and R. L. Moura. Fisheries monitoring in Babel: Fish ethnotaxonomy in a hotspot of common names. Neotrop. Ichthyology, 11(2): 467–476 (2013).
  • Rego, A. A., J. C. Santos, and P. P. Silva. Estudos de cestóides de peixes do Brasil. Memórias do Instituto Oswaldo Cruz, 72(3–4): 187–204 (1974).
  • Richardson, I. D. and E. P. Santos. Note on the selectivity of meshes used by the Santos fishing fleet. Boletim do Instituto Oceanográfico, 12(1): 33–52 (1962).
  • Rodrigues, R., H. Schneider, S. Santos, M. Vallinoto, U. Sain-Paul, and I. Sampaio. Low levels of genetic diversity depicted from mitochondrial DNA sequences in a heavily exploited marine fish (Cynoscion acoupa, Sciaenidae) from the Northern coast of Brazil. Genet. Mol. Biol., 31(2): 487–492 (2008).
  • Rodrigues-Filho, J. L., J. O. Branco, H. S. Monteiro, J. R. Verani, and J. P. Barreiros. Seasonality of Ichthyofauna Bycatch in Shrimp Trawls from Different Depth Strata in the Southern Brazilian Coast. J. Coastal Res., 31(2): 378–389 (2015).
  • Ryan, T., R. Watson, and D. Pauly. Key features of commercial and recreational fisheries statistics from the US Atlantic Coast, pp. 225–227. In: Fisheries Impacts on North Atlantic Ecosystems: Catch, Effort and National/Regional Data Sets (Zeller, D., R. Watson and D. Pauly eds.). Fisheries Centre Research Reports 9(3): 254 pp (2001).
  • Sabadin, D. E., M. González-Castro, C. Iudica, J. M. Díaz-de-Astarloa, and P. J. Fernández-Iriarte. Morphometric and genetic assessment of the Cynoscion guatucupa population structure from Buenos Aires coast, Argentine Sea. Revista de Biología Marina y Oceanografía, 45(3): 513–517 (2010).
  • Salas, S., R. Chuenpagdee, A. Charles, and J. C. Seijo. Coastal fisheries of Latin America and the Caribbean: issues and trends, pp. 1–12. In: Coastal fisheries of Latin America and the Caribbean (Salas, S., R. Chuenpagdee, A. Charles and J. C. Eds.). FAO Fisheries and Aquaculture Technical Paper 544 (2011).
  • Santos, E. P. Estudo populacional do goete, Cynoscion petranus (Ribeiro, 1915). Boletim do Instituto Oceanográfico, 17(1): 17–31 (1968).
  • Santos, S., T. Hrbek, I. P. Faria, H. Schneider, and I. Sampaio. Population genetic structuring of the king weakfish, Macrodon ancylodon (Sciaenidae), in the Atlantic coastal waters of South America: Deep genetic divergence without morphological change. Mol. Ecol., 15: 4361–4373 (2006).
  • Santos, S., H. Schneider, and I. Sampaio. Genetic differentiation of Macrodon ancylodon (Sciaenidae: Perciformes) populations in Atlantic coastal waters of South America revealed by mtDNA analysis. Genet. Mol. Biol., 26(2): 151–161 (2003).
  • Sartor, S. M. Incidência de isópodes parasitas (Cymothoidae) em peixes da plataforma continental brasileira. São Paulo: Boletim do Instituto Oceanográfico, 34: 1–12 (1986).
  • Sasaki, K. Phylogeny of the family Sciaenidae, with notes on its zoogeography (Teleostei, Perciformes). Memories Fac. Fish. Hokkaido Univ., 36: 1–37 (1989).
  • Saunders, D. C. A new haemogregarine reported from the spotted squeteague, Cynoscion nebulosus in Florida. J. Parasitol., 40(6): 699–700 (1954).
  • Schirripa, M. J. and P. Goodyear. Simulation modeling of conservation standards for spotted seatrout (Cynoscion nebulosus) in Everglades National Park. Bull. Mar. Sci., 54(3): 1019–1035 (1994).
  • Stallings, C. D., J. P. Brower, J. M. H. Loch, and A. Mickle. Commercial trawling in seagrass beds: Bycatch and long-term trends in effort of a major shrimp fishery. Mar. Ecol. Prog. Ser., 513: 143–153 (2014).
  • Stein, E. D., M. C. Martinez, S. Stiles, P. E. Miller, and E. V. Zakharov. Is DNA Barcoding actually cheaper and faster than traditional morphological methods: Results from a survey of freshwater bioassessment efforts in the United States? PLoS ONE, 9(4): e95525 (2014).
  • Stergiou, K. I. and A. C. Tsikliras. Underrepresentation of regional research output by bibliometric indices. Ethics Sci. Environ. Polit., 2006: 15–17 (2006).
  • Tabb, D. C. The estuary as a habitat for spotted seatrout, Cynoscion nebulosus. Am. Fish. Soc. Spec. Pub., 3: 59–67 (1966).
  • Teletchea, F. After 7 years and 1000 citations: Comparative assessment of the DNA barcoding and the DNA taxonomy proposals for taxonomists and non-taxonomists. Mitochondrial DNA, 21(6): 206–226 (2010).
  • Thomson Reuters. Web of Science 8.0: Science Citation Index Expanded, Social Sciences Citation Index, Arts & Humanities Citation Index. New York, NY: The Thomson Reuters Corporation, 58 pp (2009).
  • Timi, J. T., J. L. Luque, and N. H. Sardella. Parasites of Cynoscion guatucupa along South American Atlantic coasts: evidence for stock discrimination. J. Fish Biol., 67(6): 1603–1618 (2005).
  • VanderKooy, S. J. and R. G. Muller. Management of spotted seatrout and fishery participants in the U.S., pp. 227–245. In: Biology of the Spotted Seatrout (Bortone, S. A. Ed.). Boca Raton, FL: CRC Press (2002).
  • Vasconcellos, M., A. C. Diegues, and R. R. Sales. Limites e possibilidades na gestão da pesca artesanal costeira, pp. 15–63. In: Nas redes da pesca artesanal. Brasília, Programa das Nações Unidas para o Desenvolvimento (Costa, A. L. Ed.), PNUD (2007).
  • Viana, F., R. Huertas, and E. Danulat. Heavy metal levels in fish from coastal waters of Uruguay. Arch. Environ. Contam. Toxicol., 48(4): 530–537 (2005).
  • Vianna, M. and T. Almeida. Bony fish bycatch in the southern Brazil pink shrimp (Farfantepenaeus brasiliensis and F. paulensis) Fishery. Braz. Arch. Biol. Technol., 48(4): 611–623 (2005).
  • Vinson, C., G. Gomes, H. Schneider, and I. Sampaio. Sciaenidae fish of the Caeté river estuary, Northern Brazil: Mitochondrial DNA suggests explosive radiation for the Western Atlantic assemblage. Genet. Mol. Biol., 27(2): 174–180 (2004).
  • Warner, D. A., A. L. McMillen-Jackson, T. M. Bert, and C. R. Crawford. The efficiency of a bycatch reduction device used in skimmer trawls in the Florida shrimp fishery. N. Amer. J. Fish. Manage., 24(3): 853–864 (2004).
  • Weigt, L. A., C. C. Baldwin, A. Driskell, D. G. Smith, A. Ormos, and E. A. Reyier. Using DNA barcoding to assess Caribbean reef fish biodiversity: Expanding taxonomic and geographic coverage. PLoS ONE, 7(7): e41059 (2012).
  • Wong, E. H.-K. and R. H. Hanner. DNA barcoding detects market substitution in North American seafood. Food Res. Int., 41: 828–837 (2008).
  • Xia, K., G. Hagood, C. Childers, J. Atkins, B. Rogers, L. Ware, K. Armbrust, J. Jewell, D. Diaz, N. Gatian, and H. Folmer. Polycyclic Aromatic Hydrocarbons (PAHs) in Mississippi seafood from areas affected by the Deepwater Horizon oil spill. Environ. Sci. Technol., 46: 5310–5318 (2012).
  • Yancy, H. F., T. S. Zemlak, J. A. Mason, J. D. Washington, B. J. Tenge, N.-L. T. Nguyen, J. D. Barnett, W. E. Savary, W. E. Hill, M. M. Moore, F. S. Fry, S. C. Randolph, P. L. Rogers, and P. D. N. Hebert. Potential use of DNA barcodes in regulatory science: Applications of the regulatory fish encyclopedia. J. Food Prot., 71(1): 210–217 (2008).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.