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The morphometric characteristics of the adult natural population of the brine shrimp Artemia salina from the saltwork of Sahline were surveyed in order to establish the relationship between morphometry and environmental water parameters. The field work was performed monthly from October 2005 to June 2006. During this period, the variation in water temperature, salinity, pH, and concentrations of dissolved oxygen and nutrients (orthophosphate, nitrite, nitrate and ammonium) were monitored. Adult Artemia samples (male and female) were randomly collected and stored in plastic containers and transferred to the laboratory for morphometric characterisation. Results show that adult specimens appear in the saltwork of Sahline from December through June. The population sampled in June had significantly lower values in all morphometric characters when compared to the other samples. Concerning male specimens, correlation analysis of the morphometric parameters and environmental conditions indicate that the strongest correlations were between temperature and total length (rxy = -0.656), salinity and total length (rxy = -0.558), and between pH and width of head (rxy = 0.559). For female specimens, the strongest correlations were between total length and salinity (rxy = -0.610), total length and temperature (rxy = -0.537) and between total length and pH (rxy = 0.583). No correlations were observed between dissolved oxygen concentrations or ammonium levels and any morphometric parameters. The principal component analysis (PCA) revealed that diameter of compound eyes, width of second abdominal segment and width of third abdominal segment, for male specimens, and total length, abdominal length and width of the ovisac, for female specimens, are the morphometric parameters that show the greatest variation between samples.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
44--51
Opis fizyczny
Bibliogr. 34 poz., tab., wykr.
Twórcy
autor
autor
autor
- Research Unit Ecosystems and Aquatics Resources, National Institute of Agricultural sciences of Tunisia, University of Carthage, 43 Av. Charles Nicolle 1082 Tunis Mahrajéne Tunisia., hachem_b_naceur@yahoo.fr
Bibliografia
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- 3.Aminot A., Kérouel R., 2004. Hydrologie des écosystèmes marins; paramètres et analyses. Edition Ifremer, 336 p, (in Frensh)
- 4.Asem A., Rastegar-Pouyani N., 2008, Morphological differentiation of Artemia urmiana Günther 1899 (Crustacea: Anostraca) in different geographical stations from the Urmia Lake, Iran, Res. J. Biol. Sci., 3: 222-228.
- 5.Ben Abdelkader N., 1985, L'Artemia dans les chotts, les sebkhas et les salines de Tunisie, Bull. Ins. Nat. Sci. Tech. Océanogr. Pêche Salammbô, 12: 87-95, (in Frensh).
- 6.Ben Naceur H., Ben Rejeb Jenhani A., Romdhane M.S., 2008, Valorisation de l'Artemia (Crustacea; Branchiopoda) de la saline de Sahline (Sahel Tunisien), Bull. Soc. Zool. Fr., 133: 181-188, (in French with Engl. summ.).
- 7.Ben Naceur H., Ben Rejeb Jenhani A., Romdhane M.S., 2009a, Ecobiological survey of the brine shrimp Artemia salina from Sabkhet El Adhibet (south-east Tunisia), J. Mar. Biol. Ass. U.K., 89: 1109-1116.
- 8.Ben Naceur H., Ben Rejeb Jenhani A., Romdhane M.S., 2009b, New distribution record of the brine shrimp Artemia (Crustacea, Branchiopoda, Anostraca) in Tunisia, Check List, 5: 281-288.
- 9.Ben Naceur H., Ben Rejeb Jenhani A., Romdhane M.S., (accepted article), Influence of some environmental factors on Artemia salina life cycle and morphology in Sabkhet El Adhibet (southeast Tunisia). Biol. Letter.
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- 12.Camargo W.N., Ely J.S., Sorgeloos P., 2003, Morphometric characterization of thalassohaline Artemia franciscana populations from the Colombian Caribbean, J. Biogeogr., 30: 697-702.
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- 14.Gardolinski P.C.F.C., Worsfold P.J., McKelvie I.D., 2004, Seawater induced release and transformation of organic and inorganic phosphorus from river sediments, Water Res., 38: 688-692.
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- 16.Gilchrist B.M., 1958, The oxygen consumption of Artemia salina (L.), Hydrobiologia, 12: 27-37.
- 17.Hontoria F., Amat F., 1992a, Morphological characterization of adult Artemia (Crustacea, Branchiopoda) from different geographical origin. Mediterranean populations, J. Plankton Res., 14: 949-959.
- 18.Hontoria F., Amat F., 1992b, Morphological characterization of adult Artemia (Crustacea, Branchiopoda) from different geographical origins. American populations, J. Plankton Res., 14: 1461-1471.
- 19.Huang B., Hong H., 1999, Alkaline phosphatase activity and utilization of dissolved organic phosphorus by algae in subtropical coastal waters, Mar. Pollut. Bull., 39: 205-211.
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- 22.Litvinenko L.I., Boyko E.G., 2008, The morphological characteristics of Artemia Shrimps from Siberian Populations, Inland Water Biol., 1: 37-45.
- 23.Litvinenko L.I., Kozlov A.V., Kovalenko A.I., Bauer D.S., 2007, Salinity of water as a factor to determine the development of the brine shrimp Artemia population in Siberian lakes, Hydrobiologia, 576: 95-101.
- 24.Muñoz J., Gómez A., Green A.J., Figuerola J., Amat F., Rico C., 2008, Phylogeography and local endemism of the native Mediterranean brine shrimp Artemia salina (Branchiopoda: Anostraca), Mol. Ecol., 17: 3160-3177.
- 25.Nyonje B.M., Munga D., Radull J., 1995, Benefits of Artemia production in solar saltworks: a case study, Fisheries Congress on Sustainable Development of Fisheries in Africa. Nairobi, Kenya.
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- 27.Romdhane M.S., Ben Naceur H., Hamrouni S., Ben Rejeb Jenhani A., El Cafsi M., 2004, Biological and biochemical characterisation of Artemia from Tunisian wetlands. [In:] INCO-DEV Project on Artemia biodiversity, Eds. Agh N., Sorgeloos P., International workshop on Artemia, Urmia, Iran. Abstracts Book, pp. 89-91.
- 28.Torrentera L., Dodson S.I. 2004. Ecology of the brine shrimp Artemia in the Yucatan, Mexico, Salterns, J. Plankton Res., 26: 617-624.
- 29.Triantaphyllidis G.V., Abatzopoulos T.J., Sorgeloos P., 1998, Review of the biogeography of the genus Artemia (Crustacea, Anostraca), J. Biogeogr., 25: 213-226.
- 30.Triantaphyllidis G.V., Criel G.R.J., Abatzopoulos T.J., Sorgeloos P., 1997, International study on Artemia. LIII. Morphological study of Artemia with emphasis to old world strain. I. Bisexual populations, Hydrobiologia, 357: 139-153.
- 31.Triantaphyllidis G.V., Poulopoulou K., Abatzopoulos T.J., Pérez C.A.P., Sorgeloos P., 1995, Salinity effect on survival, maturity, growth, biometrics, reproductive and lifespan characteristics of a bisexual and parthenogenetic population of Artemia (International Study on Artemia XLIX), Hydrobiologia, 302: 215-227.
- 32.Van Stappen G., 2002, Zoogeography, [In:] Artemia Basic and Applied biology, Eds. Abatzopoulos T.J., Beardmore J.A., Cleeg J.S., Sorgeloos P., Kluwer Academic Publishing, Dordrecht, pp. 171-215.
- 33.Van Wazer J.R., 1973, The Compounds of Phosphorus, [In:] Environmental Phosphorus Handbook, Eds. Griffith J.E., Beeton A., Spencer J.M., Mitchell D.T., John Wiley & Sons, New York, pp. 169-177.
- 34.Xin N., Sun J., Zhang B., Triantaphyllidis G.V., Van Stappen G., Sorgeloos P., 1994, International study on Artemia. LI. New survey of Artemia resources in the People's Republic of China, Int. J. Salt Lake Res., 3: 1-8.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0012-0038