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Trace elements in camel tissues from a semi-arid region

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Abstract

Trace and minor element concentrations differ in animal tissues as the result of the surrounding environment (feeding plants, soil contaminated with food and drinking water) and animal absorption of these elements. Concentrations of Ag, Au, Ca, Co, Cr, Cu, Fe, K, Mg, Mn, Na, Ni, and Zn were determined from different tissues of camel (inter-costal, scapula, sirloin, flank, front knuckle and front limb) from the semi-arid areas of the Aswan desert (Wadi El-Allaqi) and from Aswan city, Egypt. The study included an assessment of these same elements in the desert and city plants used as food by the camels and in soils from the study areas. The results reveal that camel tissues from the desert areas exhibited higher concentrations of Na, Mg, K, Au, Ag, Cu, Co and Zn than in those of the city camels. These higher levels of element are because of the high concentrations of the same elements in the desert plants and soil of the desert area. This, in turn, depends upon the geological formation differences between the desert area and the city area. Camel tissues appear to concentrate high levels of Mn, Ni, Co and Mg in the scapula while flank portions concentrate high levels of Mg and K. The levels of elements in the camel tissues under study were within the recommended safety baseline levels for camel health and human use, as well as within the appropriate limits in the desert and city plants for camel use.

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References

  • Abd-El Gawad, M.H. (1995) Effect of salinity of drinking water on feed utilization in camels and small ruminants. CamelNewsletter, ACSAD, Syria 11, 19–24.

    Google Scholar 

  • Abdelaziz, M.T. (1984) Fundamentals of Medical Biochemistry. Egypt: Cairo UniversityPress.

    Google Scholar 

  • Abu-Lehia, I.H. (1987) Composition ofcamel milk. Milchwiss 42(6), 368–71.

    Google Scholar 

  • Allen, S.S. (1989) Chemical Analysisof Ecological Materials, 2nd edition. London: Blackwell Scientific Publishers.

    Google Scholar 

  • Amin, K.A. (1993) Some biochemical studies on bloodof camels in relation to seasonal variations. MVSci Thesis, Suez Canal University, Egypt.

    Google Scholar 

  • Barrett M.A. and Larkinc, P.J. (1974) Milk andBeef Production in the Tropic. London: Oxford University Press.

    Google Scholar 

  • Bengoumi, M.B., Faye, K.E. and Kasmi, J.C. (1995) Variability factorsin trace elements nutritional status by plasmatic indicators in camel (camels, dromedaries). In Morocco. I: normal value and physiological variability. Rev. Elev. Vet. Pays. Trop. 48(3), 271–6.

    Google Scholar 

  • Bowen, H.J.M. (1979) Environmental Chemistry of the Elements. London: AcademicPress.

    Google Scholar 

  • El-Iragi, S.M. (1970) Chemical studies on camel meat. M.Sc. Thesis, Faculty Science Agriculture, Assuit University, Egypt.

    Google Scholar 

  • Faye, B. and Bengiumi, M. (1994) Trace elements status in camels: A review. Biological Trace Element Research 41, 1–11.

    Google Scholar 

  • Hassan, W.A. and Musa, M. (1998) Utilization and marketing ofcamel and it' product in semi-arid zone of Nigeria. Camel Newsletter, ACSAD, Syria 14, 46–52.

    Google Scholar 

  • Hoekstra, W.G., Suttie, J.W. and Gauther, H.E. (1970) Trace Element Metabolism in Animals.UK: University Park Press.

    Google Scholar 

  • Hume, W.F. (1934) Geology of Egypt II: The Fundamental Pre-Cambrian Rocks of Egypt and the Sudan.Egypt: Egyptian Geological Survey.

    Google Scholar 

  • Hunting, G.L. (1964) Assessment of Mineral Potential of Aswan Region, United Nation DevelopmentProgram. UAR: Geology and Geophysics Ltd.

  • Mohamed, A.M. and Awadallah, R.M. (1985) Determination oftrace elements in some medicinalplants by atomic absorption spectrophotometric analysis. Aswan Science Technology Bulletin 10, 225–30.

    Google Scholar 

  • National Research Council(1980) Mineral Tolerance of Domestic Animals, 421 pp. Washington: National Academy of Science.

    Google Scholar 

  • Newman, A.G. (1979) The Camel inHealth and Disease. London: Bailliere Tindall Press.

    Google Scholar 

  • Oser, B.L. (1979) Hawak Physiological Chemistry, 14th edition. New Delhi: Tata McGraw Hill Publishing Co. Ltd.

    Google Scholar 

  • Rashed, M.N. (1994) Trace elements in camel' milk from Aswan city and desert (Egypt). InWorkshop on Dromedaries and Camels, Milking Animals. Nauakchott, Meuritanie.

  • Rashed, M.N. (1995) Trace elements in some wild plantsfrom the shores ofthe High Dam Lake and the adjacent desert, as determined by atomic absorption spectroscopy. J. Arid Environment 29, 185–97.

    Google Scholar 

  • Sawaga, W.N., Khalill, J.K., Al-Shalhat, A. and Mohamed, H. (1984) Chemical composition and nutritional quality of camelmilk. J.F ood Science 49(3), 744–7.

    Google Scholar 

  • Shankall, S., Abu-Kudr, S. and Dappak, N. (1998) Mineral concentration in camel bloodserum in Serea. Camel Newsletter, ACSAD, Syria 14, 47–55.

    Google Scholar 

  • Soryal, K.A. (1996) Composition and processing of camel milk. InWorkshop on the Development of Animal Production in the Desert and Reclaimed Areas. Cario, Egypt.

  • Underwood, E.J. (1973) TraceElements: Toxicans Occurring Naturally in Foods. Washington: National Academy of Science.

    Google Scholar 

  • Underwood, E.J. (1979) Trace Elements inHuman and Animal Nutrition, 4th edition. New York: Academic Press.

    Google Scholar 

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Rashed, M. Trace elements in camel tissues from a semi-arid region. The Environmentalist 22, 111–118 (2002). https://doi.org/10.1023/A:1015352828894

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  • DOI: https://doi.org/10.1023/A:1015352828894

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