World Aquaculture Magazine - June 2013

WWW.WAS.ORG • WORLD AQUACULTURE • JUNE 2013 43 References Ban, S. 1994. Effect of temperature and food concentration on postembryonic development, egg production and adult body size of the calanoid copepod Eurytemora affinis. Journal of Plankton Research 16:721-735. Calbet, A. and M. Alcaraz. 1996. Effects of constant and fluctuating food supply on egg production rates of Acartia grani (Copepoda: Calanoida). Marine Ecology Progress Series 140:33-39. Calbet, A. and M. Alcaraz. 1997. Growth and survival rates of early developmental stages of Acartia grani (Copepoda: Calanoida) in relation to food concentration and fluctuations in food supply. Marine Ecology Progress Series 147:181-186. Chinnery, F.E. and J.A. Williams. 2004. The influence of temperature and salinity on Acartia (Copepoda: Calanoida) nauplii survival. Marine Biology. 145:733-738. Corral, J. 1970. Contribución al conocimiento del Plankton de Canaria. Facultad de Ciencias. Tesis doctoral 129:1-280. Costa, R.M. and F. Fernández. 2002. Feeding and survival rates of the copepods Euterpina acutifrons Dana and Acartia grani Sars on the dinoflagellates Alexandrium minutum Balech and Gyrodinium corsicum Paulmier and the Chryptophyta Rhodomonas baltica Karsten. Journal Experimental Marine Biology and Ecology 273:131-142. Cunha, E., B. Silva, A. Plirú and F. Pousão. 2007. The potential of Acartia grani SARS as live feed in aquaculture. World Aqua 2007, 26 February – 2 March 2007, San Antonio, EUA, Books of Abstracts, pp. 217. DeYoung B., M. Heath, F. Werner, F. Chai, B. Megrey and P. Monfray. 2004. Challenges of modeling ocean basin ecosystems. Science 304:1463-1466. Drillet, G., M.H. Iversen and T.F. Sørensen. 2006. Effect of cold storage upon eggs of a calanoid copepod, Acartia tonsa (Dana) and their offspring. Aquaculture 254:714-729. Gonzalez, C.R.M. and B.P. Bradley. 1994. Salinity stress proteins in Eurytemora affinis. Hydrobiologia 292/293:461-469. Guerrero, F. and V. Rodríguez. 1998. Existence and significance of Acartia grani resting eggs (Copepoda: Calanoida) in sediments of a coastal station in the Alboran Sea (SE Spain). Journal of Plankton Research 20: 305-314. Hansen, B.W., G. Drillet, A. Kozmér, K.V. Madsen, M.F. Pedersen and T.F. Sørensen. 2010. Temperature effects on copepod egg hatching: does acclimatization matter? Journal of Plankton Research 32:305-315. Holste, L. and M.A. Peck. 2006. The effects of temperature and salinity on egg production and hatching success of Baltic Acartia tonsa (Copepoda: Calanoida): a laboratory investigation. Marine Biology 148:1061-1070. Ianora, A., M.G. Mazzocchi and R. Grottoli. 1992. Seasonal fluctuations in fecundity and hatching success in the planktonic copepod Centropages typicus. Journal of Plankton Research 14:1483-1494. Knuckey, R.M., G.L. Semmens, R.J. Mayer and M.A. Rimmer. 2005. Development of an optimal microalgal diet for the culture of the calanoid copepod Acartia sinjiensis: effect of algal species and feed concentration on copepod development. Aquaculture 249:339-351. Kleppel, G.S., S.E. Hazzard and C.A. Bukart. 2005. Maximazing the nutritional values of copepods in aquaculture. In: C.S. Lee, P.J. O’Bryen and N.H. Marcus, editors. Copepods in Aquaculture. Blackwell Publishing, Ames,Iowa. Landry, M.R. 1975. The relationship between temperature and the development of life stages of the marine copepod Acartia clausi. Limnology and Oceanography 20: 854-857. McLaren, I.A. 1966. Predicting development rate of copepod eggs. Biological Bulletin 131:457-469. Milione, M. and C. Zeng. 2007. The effects of algal diets on population growth and egg hatching success of the tropical calanoid copepod, Acartia sinjiensis. Aquaculture 271:656-664. Molejón, O.G.H. and L. Alvarez-Lajonchère. 2003. Culture experiments with Oithona oculata Farran, 1913 (Copepoda: Cyclopoida), and its advantages as food for marine fish larvae. Aquaculture 219:471-483. Ohman, M.D. and H.J. Hirche. 2001. Density-dependent mortality in an oceanic copepod population. Nature 412: 638-641. Saiz, E., A. Calbet and A. Fara. 1998. RNA content of copepods as a tool for determining adult growth rates in the field. Limnology and Oceanography 43:465-470. Schipp, G.R. 2006. The use of Calanoid copepods in semi-intensive, tropical marine fish larviculture. Pages 84-94 In: C.L.E. Suarez, D.R. Marie, M.T. Salazar, N.M.G. Lopez, V.D.A. Cavazos, and A.G. Ortega, editors. Avances en Nutricion Acuicola VIII. VIII Simposium Internacional de Nutrición Acuicola, Mexico. Shansudin, L., M. Yusof, A. Azis and Y. Shukri. 1997. The potential of certain indigenous copepod species as live food for commercial fish larval rearing. Aquaculture 151:351-356. Støttrup, J.G. 2000. The elusive copepods: their production and suitability in marine aquaculture. Aquaculture Research 31:703711. Tester, P.A. and J.T. Turner. 1991. Why is Acartia tonsa restricted to estuarine habitats? In: 4th International Copepod Conference, Bulletin of Plankton Society of Japan. Vol: 603–611. Toledo, J.D., M.S. Golez, M. Doi and A. Ohno. 1999. Use of copepod nauplii during early feeding stage of grouper Epinephelus coioides. Fisheries Science 65:390-397. Uye, S.I. and A. Fleminger. 1976. Effects of environmental factors on egg development of several species of Acartia in southern California. Marine Biology 38:253-262. Vilela, M.H. 1972. The development stages of the marine calanoid copepod Acartia grani Sars bred in the laboratory. Notas de Estudos do Instituto de Biologia Marinha. 40:38. Vives, F. 1982. Sur les copepods de la region CINECA (Parties nord et centrale). Rapports et Procès-Verbaux des Réunions Conseil International pour L´Exploration de la Mer. 180:289-296. Watanabe, T. 1979. Nutritional quality of living feeds used in seed production of fish. Proc. 7th. Japan-Soviet Joint Symposium Aquaculture, September, 1978. Tokai University Press, Tokyo. pp. 49-57. Watanabe, T., C. Kitajima and S. Fujita. 1983. Nutritional values of live organisms used in Japan for mass propagation of fish: a review. Aquaculture. 34:115-143. Witt, U., G. Quantz, D. Kuhlmann and G. Kattner. 1984. Survival and growth of turbot larvae Scophthalmus maximus L. reared on different food organisms with special regard to long chain polyunsaturated fatty acids. Aquacultural Engineering. 3:177-190.

RkJQdWJsaXNoZXIy MjExNDY=