Effects of Biotite V Supplementation on Growth Performance, Nutrients Digestibility and Serum and Meat Cholesterol in Broiler Chickens

Biotite V의 급여가 육계의 성장 능력, 영양소 소화율, 혈청 및 육내 콜레스테롤 함량에 미치는 영향

  • Chen Y.J. (Department of Animal Resource & Science, Dankook University) ;
  • Kim J.D. (CJ Feed Co. Inc.) ;
  • Min B.J. (Department of Animal Resource & Science, Dankook University) ;
  • Cho J.H. (Department of Animal Resource & Science, Dankook University) ;
  • Kim I.H. (Department of Animal Resource & Science, Dankook University)
  • 진영걸 (단국대학교 동물자원과학과) ;
  • 김진동 ((주)CJ 사료) ;
  • 민병준 (단국대학교 동물자원과학과) ;
  • 조진호 (단국대학교 동물자원과학과) ;
  • 김인호 (단국대학교 동물자원과학과)
  • Published : 2006.06.01

Abstract

This study was conducted to investigate the effects of dietary supplementation of Biotite V on growth performance, nutrients digestibility and serum and meat cholesterol in broiler chickens. A total of four hundred and eighty Arbor Acre broilers (male, 2-d-old) were used in current feeding trial for 5 weeks. Broilers were allocated to three dietary treatments with eight replications per treatment and twenty broilers per pen according to a randomized complete block design. Dietary treatments included: 1) CON (basal diet), 2) BV200 (basal diet+200 mesh Biotite V 1.5%) and 3) BV325 (basal diet+325 mesh Biotite V 1.5%). During the first week of experiment, Biotite V increased weight gain in treatment groups compared to CON treatment (P<0.05). Through the entire experimental period, weight gain, feed intake and feed/gain had no significant differences among the treatments (P>0.05). Digestibilities of DM and N were also not affected when diets included Biotite V (P>0.05). No effects were observed in Biotite V supplemented treatments compared to CON treatment on abdominal fat weight, meat and serum cholesterol concentrations (P>0.05). In conclusion, supplementation of Biotite V in broiler diets has no influence on growth performance, nutrients digestibility and can not decrease the cholesterol concentrations in meat and serum.

본 시험은 육계 사료내 Biotite V의 첨가가 육계의 성장 능력, 영양소 소화율, 혈청 및 육내 콜레스테롤 함량에 미치는 영향을 조사하기 위하여 실시하였다. 총 480수의 2 일령된 Arbor Acre Broiler(male) 병아리를 공시하였고 사양시험은 5주간 실시하였다. 시험 설계는 육계 전기 사료로서 1) CON (basal diet), 2) BV200 (basal diet+200 mesh Biotite V 1.5%) 및 3) BV325 (basal diet+325 mesh Biotite V 1.5%) 를 첨가하여 제조하였다. 처리당 8반복, 반복당 20수씩 완전 임의 배치하였다. 개시시부터 1주까지의 증체량에서는 Biotite V를 첨가한 처리구가 대조구에 비하여 유의적인 증가를 보였다(P<0.05). 전체 시험기간 동안의 증체율, 사료 섭취량과 사료효율에 있어서는 Biotite V 를 첨가한 처리구간에 유의적인 차이를 보이지 않았다(P>0.05). 건물과 질소 소화율에서는 처리구간의 차이를 보이지 않았다(P>0.05). Biotite V 첨가구에서 복강내 지방 무게, 혈청과 육내 콜레스테롤 함량이 대조구에 비해 유의적인 차이는 없었다(P>0.05). 결론적으로, 육계 사료내 Biotite V의 첨가는 성장율, 영양소 소화율, 혈청 및 육내 콜레스테롤 함량에 영향을 미치지 않았다.

Keywords

References

  1. Allain CC, Poon LS, Chan CSG, Richmond W, Fu PC 1974 Enzymatic determination of total serum cholesterol. Clin Chem 20:470-475
  2. Alzueta C, Ortiz LT, Rebole A, Rodriguez ML, Centeno C, Trevino J 2002 Effects of removal of mucilage and enzyme or sepiolite supplement on the nutrient digestibility and metabolyzable energy of a diet containing linseed in broiler chickens. Anim Feed Sci Technol 97:169-181 https://doi.org/10.1016/S0377-8401(02)00030-5
  3. Amon MM, Dobeic RW, Sneath VR, Phillips TH, Misselbrook, Pain BF 1997 A farm-scale study on the use of clinoptilolite zeolite and de-odorase for reducing odour and ammonia emissions from broiler houses. Biores Tec 61: 229-237 https://doi.org/10.1016/S0960-8524(97)00005-9
  4. AOAC 1995 Official method of analysis. 16th Edition. Association of Official Analytical Chemists. Washington DC
  5. Bernal MP, Lopez-Real JM 1993 Natural zeolites and sepiolite as ammonium and ammonia adsorbent materials. Bioresource Technol 43:27-33 https://doi.org/10.1016/0960-8524(93)90078-P
  6. Bligh EG, Dyer WJ 1959 A rapid method of total lipid extraction and purification. Can J Biochem Physiol 37:911-917 https://doi.org/10.1139/o59-099
  7. Cabuk M, Alcicek A, Bozkurt M, Akkan S 2004 Effect of Yucca schidigera and natural zeolite on broiler performance. International J Poult Sci 3:651-654 https://doi.org/10.3923/ijps.2004.651.654
  8. Chen YJ, Kwon OS, Min BJ, Shon KS, Cho JH, Hong JW, Kim IH 2005b The effects of dietary Biotite V supplementation as an alternative substance to antibiotics in growing pigs. Asian-Aust J Anim Sci 18:1642-1645 https://doi.org/10.5713/ajas.2005.1642
  9. Chen YJ, Kwon OS, Min BJ, Shon KS, Cho JH, Kim IH 2005a The effects of dietary Biotite V supplementation on growth performance, nutrients digestibility and fecal noxious gas content in finishing pigs. Asian-Aust J Anim Sci 18:1147- 1152 https://doi.org/10.5713/ajas.2005.1147
  10. Chobanian AV, Hollander W 1962 Body cholesterol metabolism in man. I. The equilibration of serum and tissue cholesterol. J Clin Invest 41:1732 https://doi.org/10.1172/JCI104631
  11. Coffey MT, Pilkington DW 1989 Effect of feeding zeolite-A on the performance and carcass quality of swine. J Anim Sci 67 (Suppl.2):36 (Abstr.)
  12. Davidson JN, Babish JG, Delaney KA, Taylor DR, Phillips TD 1987 Hydrated sodium calcium aluminosilicate decreases the bioavailability of aflatoxin in the chicken. Poult Sci 66(Suppl. 1):89 (Abstr.)
  13. Donaldson WE, Tung HT, Hamilton PB 1972 Depression of fatty acid synthesis in chick liver (Gallus domesticus) by aflatoxin. Compendium of Biochemical Physiology 41:843-847 https://doi.org/10.1016/0300-9629(72)90346-5
  14. Edrington TS, Sarr AB, Kubena LF, Harvey RB, Phillips TD 1996 Hydrated sodium calcium aluminosilicate (HSCAS), acidic HSCAS and activated charcoal reduce urinary excretion of aflatoxin M1 in turkey poults. Lack of effect by activated charcoal on aflatoxicosis. Toxicology Letters 89:115-122 https://doi.org/10.1016/S0378-4274(96)03795-2
  15. Elliot, MA, Edwards Jr HM 1991 Comparison of the effects of synthetic and natural zeoliteon laying hen and broiler chicken performance. Poult Sci 70:2115-2130 https://doi.org/10.3382/ps.0702115
  16. Field H, Swell Jr L, Schools Jr PE, Treadwell CR 1960 Dynamic aspects of cholesterol metabolism in different areas of the aorta and other tissues in man and their relationship to atherosclerosis. Circulation 22:547-558 https://doi.org/10.1161/01.CIR.22.4.547
  17. Huff WE, Kubena LF, Harvey RB, Corrier D, Hollenhauer HH 1986 Progression of aflatoxicosis in broiler chickens. Poult Sci 65:1891-1899 https://doi.org/10.3382/ps.0651891
  18. Konjufca VH, Pesti GM, Bakalli RI 1997. Modulation of cholesterol levels in broiler meat by dietary garlic and copper. Poult Sci 76:1264-1271 https://doi.org/10.1093/ps/76.9.1264
  19. Kubena LF, Harvey RB, Bailey RH, Buckley SA, Rottinghaus GE 1998 Effects of a hydrated sodium calcium aluminosilicate (T-BindTM) on mycotoxicosis in young broiler chickens. Poult Sci 77:1502-1509 https://doi.org/10.1093/ps/77.10.1502
  20. Kwon OS, Kim IH, Hong JW, Lee SH, Jung YK, Min BJ, Lee WB 2003 Effects of dietary germanium biotite in weaned, growing and finishing pigs. J Anmi Sci & Technol (Kor.) 45:355-368 https://doi.org/10.5187/JAST.2003.45.3.355
  21. Lee WB, Kim IH, Hong JW, Kwon OS, Min BJ, Shon KS, Jung YK 2003 Effects of feeding levels and particle size of germanium biotite on pig performance. J Anmi Sci & Technol (Kor.) 45:787-796 https://doi.org/10.5187/JAST.2003.45.5.787
  22. Moon YY, Namkung H, Chang MB, Paik IK 1991 The effects of zeolite supplementation on the performance of broilers fed diets containing moldy corn. Korea J Anim Nutr Feed 15: 170-175
  23. NRC 1994 Nutrient Requirements of Poultry. 9th rev ed National Academy Press, Washington DC
  24. Ouhida I, Perez JF, Piedrafita J, Gasa J 2000 The effects of sepiolite in broiler chicken diets of high, medium and low viscosity. Productive performance and nutritive value. Anim Feed Sci Technol 85:183-194 https://doi.org/10.1016/S0377-8401(00)00148-6
  25. Phillips TD, Kubena LF, Harvey RB, Taylor DR, Heidelbaugh ND 1988 Hydrated sodium calcium aluminosilicate: a high affinity sorbent for aflatoxin. Poult Sci 67:243-247 https://doi.org/10.3382/ps.0670243
  26. Ponte PIP, Mendes I, Quaresma M, Aguiar MNM, Lemos JPC, Ferreira LMA, Soares MAC, Alfaia CM, Prates JAM, Fontes CMGA 2004 Cholesterol levels and sensory characteristics of meat from broilers consuming moderate to high levels of alfalfa. Poult Sci 83:810-814 https://doi.org/10.1093/ps/83.5.810
  27. Ramos AJ, Finkgremmels SJ, Hernandez E 1996 Prevention of toxic effect of mycotoxins by means of nonnutritive absorbent compounds. J Food Protection 59:631-641 https://doi.org/10.4315/0362-028X-59.6.631
  28. Ramos AJ, Hernandez E 1997 Prevention of aflatoxicosis in farm animals by means of hydrated sodium calcium aluminosilicate addition to feedstuffs: a review. Anim Feed Sci Technol 65:197-206 https://doi.org/10.1016/S0377-8401(96)01084-X
  29. Sale FO, Marchesini S, Fishman PH, Berra B 1984 A sensitive enzymatic assay for determination of cholesterol in lipid extracts. Anal Biochem 142:347-350 https://doi.org/10.1016/0003-2697(84)90475-5
  30. SAS 1996 SAS user's guide. Release 6.12 edition. SAS Institude. Inc Cary NC USA
  31. Shurson GC, Ku PK, Miller ER, Yokoyama MT 1984 Effects of zeolite or clinoptilolite in diets of growing swine. J Anim Sci 59: 1536-1545 https://doi.org/10.2527/jas1984.5961536x
  32. Teleb HM, Hegazy AA, Hussein YA 2004 Efficiency of kaolin and activated charcoal to reduce the toxicity of low level of aflatoxin in broilers. Scientific J of King Faisal University 5:1425
  33. Thacker PA 2003 Performance of growing-finishing pigs fed diets containing graded levels of biotite, an alumninosilicate clay. Asian-Aust J Anim Sci 16:1666-1672 https://doi.org/10.5713/ajas.2003.1666
  34. Tung HT, Donaldson WE, Hamilton PB 1972 Altered lipid transport during aflatoxicosis. Toxicology and Applied Pharmacology 22:97-104 https://doi.org/10.1016/0041-008X(72)90229-3
  35. Ward TL, Watkins KL, Southern LL, Hoyt PG, French DD 1991 Interactive effects of sodium zeolite-A and copper in growing swine: growth and bone and tissue mineral concentrations. J Anim Sci 69:726-733 https://doi.org/10.2527/1991.692726x
  36. Xia MS, Hu CH, Xu ZR 2004 Effects of copper-bearing montmorillonite on growth performance, digestive enzyme activities, and intestinal microflora and morphology of male broilers. Poult Sci 83:1868-1875 https://doi.org/10.1093/ps/83.11.1868