Vet Med - Czech, 2008, 53(10):550-554 | DOI: 10.17221/1965-VETMED

Long-term application of clinoptilolite via the feed of layers and its impact on the chemical composition of long bones of pelvic limb (femur and tibiotarsus) and egg cortex

I. Herzig, E. Strakova, P. Suchy
Faculty of Veterinary Hygiene and Ecology, University of Veterinary and Pharmaceutical Sciences, Brno, Czech Republic

Selected 120 layers, hybrid breed Bovans Goldline, were divided into two balanced groups: control (C) and experimental (E) group. The layers were raised in three-floor cage technology with automatic watering, manual feeding, in the environment with regulated lighting and thermal schedule. The actual experimental period started in the 22nd week and ended in the 68th week of age of the layers. In the period following the filling of the cages the layers received complete feed mixture N1, subsequently, until the end of the experiment, they received feed mixture N2. The feed mixtures for Group C and E were of the same composition, with the only difference that the feed mixture designed for the experimental group contained 1% of clinoptilolite (commercial additive ZeoFeed) as a substitute for the same portion of wheat.. The layers consumed the feed mixtures and drinking water ad libitum. In the layers of Group E the intensity of egg laying increased by 1.1%, which corresponds to an increased number of laid eggs 3.08 per layer. The average weight of laid eggs was 66.3 ± 6.25 g in the layers of Group C, 65.6 ± 5.44 g (P ≤ 0.05) in the experimental layers of Group E. In Group E the consumption of feed mixture per one egg was 4.1 g lower when compared to the control. In 100% dry matter the eggshell of layers that received clinoptilolite (Group E), as opposed to Group C, had a statistically significantly higher (P ≤ 0.01) content of crude protein, calcium and magnesium. Almost the same and insignificant difference in values was found in ash and phosphorus. The values of the same indicators were statistically significantly higher in both monitored bones (femur and tibiotarsus) (P ≤ 0.05; P ≤ 0.01) during the application of clinoptilolite (Group E), with the exception of P in femur, where an insignificant rise in the level of P occurred. The rise in the concentration of Mg in Group E was of particular importance: in femur by 50.4%, in tibiotarsus by 32.4%. If we compare the monitored values in femur and tibiotarsus, we can see that the levels of ash, Ca and P are higher in tibiotarsus, and the levels of crude protein and Mg are lower. The long-term application of clinoptilolite favourably influenced the lodgement of Ca, P, Mg and crude protein in the eggshell as well as in the bones (femur, tibiotarsus), increased the egg production and reduced the consumption of feed mixture per one egg, while the good productive health of the layers was maintained.

Keywords: Zeofeed; crude protein, ash; Ca; P; Mg; egg yield; consumption of feed mixtures

Published: October 31, 2008  Show citation

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Herzig I, Strakova E, Suchy P. Long-term application of clinoptilolite via the feed of layers and its impact on the chemical composition of long bones of pelvic limb (femur and tibiotarsus) and egg cortex. Vet Med - Czech. 2008;53(10):550-554. doi: 10.17221/1965-VETMED.
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References

  1. Amon M., Dobeic M., Sneath R.W., Philips V.R., Misselbrook T.H., Pain B.F. (1997): A farm-scale study on the use of clinoptilolite zeolite and De-Odorase(R) for reducing odour and ammonia emissions from broiler houses. Bioresource Technology, 61, 229-237. Go to original source...
  2. AOAC (2001): Association of Official Analytical Chemists. Horwitz W (ed.): International Official Methods of Analysis. 17th ed. AOAC Inc., Arlington, USA. 2000 pp.
  3. Bain M.M. (1991): A reinterpretation of eggshellstrenght. In: Salomon S.E. (ed.): Egg and Eggshell Quality. Manson, London. 131-142.
  4. Gezen S.S., Balc F., Eren M., Orhan F. (2004): The effect of clinoptilolite supplementation to laying hen on egg performance and quality. Veteriner Fakultesi Dervisi, Uludag Universitesi, 23, 1-8.
  5. Guinotte F., Nys Y. (1991): The effects of a particulate calcium source in broiler breeder hens upon their egg quality, reproductive traits, bone reserves, chick weight and tibia strength characteristics. Archiv fur Geflugelkunde, 55, 170-175.
  6. Hernandez-Sanchez J., Cuca-Garcia M., Pro-Martinez A., Gonzales-Alcorta M., Becerril-Perez C. (2006): Biological and economic optimum level of calcium in white Leghorn of second cycle laying hens. Agrociencia, 40, 49-57.
  7. Keshavarz K., McCormick C.C. (1991): Effect of sodium aluminosilicate, oyster shell, and their combinations on acid-base-balance and eggshell quality. Poultry Science, 70, 313-325. Go to original source... Go to PubMed...
  8. Koreleski J., Swiatkiewicz S. (2004): Calcium from limestone meal and grit in laying hen diets - effect on performance, eggshell and bone quality. Journal of Animal and Feed Science, 13, 635-645. Go to original source...
  9. Lichovnikova M. (2007): The effect of dietary calcium source, concentration and particle size on calcium retention, eggshell quality and overall calcium requirement in laying hens. British Poultry Science, 48, 71-75. Go to original source... Go to PubMed...
  10. Meisinger J.J., Lefcourt A.M., Van Kessel J.A., Wilkerson V. (2001): Managing ammonia emissions from dairy cows by amending slurry with alum or zeolite or by diet modification. Scientific World Journal, 27, 860-865. Go to original source... Go to PubMed...
  11. Melenova L., Ciahotny K., Jirglova H., Kusa H., Ruzek P. (2003): Removal of ammonia from waste gas by absorption on zeolites and their utilization in agriculture (in Czech). Chemické Listy, 97, 562-568.
  12. Nys Y. (1999): Nutritional factors affecting eggshell quality. Czech Journal of Animal Science, 44, 135-143.
  13. Olver M.D. (1997): Effect of feeding clinoptilolite (zeolite) on the performance of three strains of laying hens. British Poultry Science, 38, 220-222. Go to original source... Go to PubMed...
  14. Ortatatli M., Oguz H. (2001): Ameliorative effects of dietary clinoptilolite on pathological changes in broiler chickens during aflatoxicosis. Research in Veterinary Science, 71, 59-66. Go to original source... Go to PubMed...
  15. Parlat S.S., Yildiz A.O., Oguz H. (1999): Effect of clinoptilolite on performance of Japanese quail (Coturnix coturnix japonica) during experimental aflatoxicosis. British Poultry Science, 40, 495-500. Go to original source... Go to PubMed...
  16. Rabon H.W., Roland D.A., Bryant M., Barnes D.G., Laurent S.M. (1991): Influence of sodium zeolite-A with and without pullet-sized limestone or oyster shell on eggshell quality. Poultry Science, 70, 1943-1947. Go to original source... Go to PubMed...
  17. Rizzi L., Simioli M., Roncada P., Zaghini A. (2003): Aflatoxin B1 and clinoptilolite in feed for laying hens: effects on egg quality, mycotoxin residues in livers, and hepatic mixed-function oxygenase activities. Journal of Food Protection, 66, 860-865. Go to original source... Go to PubMed...
  18. Roland D.A., Laurent S.M., Orloff H.D. (1985): Shell quality as influenced by zeolite with high ion-exchange capability. Poultry Science, 64, 1177-1187. Go to original source... Go to PubMed...
  19. Roland D.A, Rabon H.W, Rao K.S, Smith R.C., Miller J.W., Barnes D.G., Laurent S.M. (1993): Evidence for absorption of silicon and aluminium by hens fed sodium zeolite-A. Poultry Science, 72, 447-455. Go to original source... Go to PubMed...
  20. Skalicka M., Makoova Z. (1999): Elimination of aflatoxin B-1 in broiler chicks by clinoptilolite. Bulletin of the Veterinary Institute in Pulawy, 43, 211-219. Go to original source...
  21. Skalicka M., Jaklova Z., Korenekova, B. (2000): The influence of aflatoxin B-1 on activity of alkaline phosphatase and body weight of broiler chicks. Trace Elements and Electrolytes, 17, 146-142.
  22. Tepe Y., Akyurt I., Ciminli C., Mutlu E., Caliskan M (2004): Protective effect of clinoptilolite on lead toxicity in common carp Cyprinus carpio. Fresenius Environmental Bulletin, 13, 639-642.
  23. Watkins K. L., Southern L. L. (1991): Effect of dietary sodium zeolite A and graded levels of calcium on growth, plasma, and tibia characteristics of chicks. Poultry Science, 70, 2295-2302. Go to original source... Go to PubMed...
  24. Wu-Haan W., Powers W. J., Angel C. R., Hale C. E., Applegate T. J. (2007): Effect of an acidifying diet combined with zeolite and slight protein reduction on air emissions from laying hens of different agents. Poultry Science, 86, 182-190. Go to original source... Go to PubMed...
  25. Zar J.H. (1999): Biostatistical analysis. Prentice Hall, Uppwer Saddle River, N.J.
  26. ZeoFeed: http://www.ekozym.cz/fileadmin/pdf/datasheety/ZeoFeed.pdf.

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