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Effects of Dietary Animunin Powder® on Growth Performance and Blood Components in Nursery and Growing Pigs

Animunin Powder®의 첨가가 자돈 및 육성돈의 성장과 혈액성상에 미치는 영향

  • Shon, K.S. (Department of Animal Resource & Science, Dankook University) ;
  • Hong·, J.W. (Department of Animal Resource & Science, Dankook University) ;
  • Kwon, O.S. (Department of Animal Resource & Science, Dankook University) ;
  • Min, B.J. (Department of Animal Resource & Science, Dankook University) ;
  • Lee, W.B. (Department of Animal Resource & Science, Dankook University) ;
  • Kim, J.H. (Agribrands Purina Korea, Inc.) ;
  • Kim, I.H. (Department of Animal Resource & Science, Dankook University) ;
  • Kim, H.S. (Department of Animal Resource & Science, Dankook University)
  • 손경승 (단국대학교 동물자원과학과) ;
  • 홍종욱 (단국대학교 동물자원과학과) ;
  • 권오석 (단국대학교 동물자원과학과) ;
  • 민병준 (단국대학교 동물자원과학과) ;
  • 이원백 (단국대학교 동물자원과학과) ;
  • 김지훈 ((주) 애그리브랜드 퓨리나코리아) ;
  • 김인호 (단국대학교 동물자원과학과) ;
  • 김흥수 (단국대학교 동물자원과학과)
  • Published : 2004.06.30

Abstract

Two experiments were conducted to investigate the effects of Animunin Powder${\circledR}$ supplementation on the growth perfonnance and blood components in nursery and growing pigs. In Exp. 1, ninety six pigs(initial mean live weights 27,6 ${\pm}$ 2.63kg) were randomly allocated into four treatments with six replications per each treatment. Four treatments were control(CON), control + 0.1% Antibiotics(AB), control + 0.1% Animunin Powder${\circledR}$(AM), and control + 0.1% Antibiotics + 0.1% Animunin Powder${\circledR}$(ABM). During 4 weeks experiment, ADG of pigs was significantly(p < 0.05) higher in ABM treatment compared with CON and AB treatments, Serum IgG concentration was higher(P < 0.05) in AM and ABM treatments than CON. Serum from treated pigs ABM had higher(P < 0.05) albumin concentration in comparison to CON and AB treatments. In addition, higher (p < 0.05) serum lymphocyte concentration was found in ABM treatment compared with CON and AM treatments. Digestibility of dry matter was higher(P < 0.05) in ABM treatment compared with AB and AM treatments. However, no statistical differences(P > 0.05) were found in total protein content of serum and crude protein digestibility of diets. In Exp. 2, seventy five pigs(initial mean live weights 40.22 ${\pm}$ 2.82kg) were randomly allocated into three treatments with 5 replicates per each treatment for 29 days. Three treatments were control(CON), control + 0.1% Animunin Powder${\circledR}$(AM1) and control + 0.2% Animunin Powder${\circledR}$(AM2). During the whole experiment, pigs fed AM1 and AM2 diets were shown higher ADG than pigs fed CON diet. The ADFI of AM1 diet is higher(P < 0.05) compared to that of CON diet. Serum IgG and albumin concentration of AM1 and AM2 treatments were greater than those of CON treatment(p < 0.05). Lymphocyte was highest for AM1 and lowest for CON, with intermediate for AM2(P < 0.05). In conclusion, Animunin Powder${\circledR}$ was effective for improving growth performance and to increase the concentrations of blood IgG, albumin, total protein and lymphocyte in nursery and growing pigs.

본 연구는 인도산 허브를 이용하여 제조한 Animunin Powder${\circledR}$를 자돈 및 육성돈에 첨가 급여시 그 성장과 혈액내의 면역반응을 알아보고자 실시하였다. 시험 1은 3원 교잡종(Landrace ${\times}$ Yorkshire ${\times}$ Duroc) 자돈 96두를 공시하였으며 시험개시시의 체중은 평균 20.72 ${\pm}$ 2.63kg이었고 1) Con(Control),2) AB(Control + 0.1% Antibiotics), 3) AM(Control + 0.1% Animunin Powder${\circledR}$)로 4개 처리를 하여 처리당 6반복 반복당 4두씩 임의 배치하여 4주간 실시하였다. 전체 사양시험기간동안 ABM 처리구가 대조구에 비해 유의적으로 ADG와 ADFI가 높았다(P < 0.05). IgG에서는 AM 처리구와 ABM 처리구가 AB 처리구에 비해 유의적으로 높았다(P < 0.05). Albumin에서는 ABM 처리구가 CON과 AM처리구에 비해 유의적으로 높았으며(P < 0.05) lymphocyte에서는 AB 처리구와 ABM 처리구가 CON과 AM 처리구에 비해 유의적으로 높은 결과를 나타냈다(P < 0.05). 건물의 소화율에서는 ABM 처리구가 AB와 AM 처리구에 비해 유의하게 높은 결과를 보였다(P < 0.05). 시험 2는 3원 교잡종 (Landrace ${\times}$ Yorkshire ${\times}$ Duroc) 육성돈 75두를 공시하였으며 시험개시시의 체중은 평균 40.22 ${\pm}$ 2.82kg이었고 1) CON(Control), 2) AM1(Control + 0.1% Animunin Powder${\circledR}$), 3) AM2(Control + 0.2% Animunin Powder${\circledR}$)으로 3개 처리를 하여 처리당 5반복 반복당 5두씩 임의 배치하여 29일간 실시하였다. 전체 사양시험기간 동안 AM1과 AM2 처리구가 CON 처리구에 비해 ADG가 유의하게 높았고(P < 0.05) ADFI에서는 AM1 처리구가 CON 처리구에 비해 유의하게 높은 값을 보였다(P < 0.05). Total protein에서는 AM2 처리구가 CON과 AM1 처리구 보다 유의하게 높았으며(P < 0.05) lymphocyte에서는 AM1, AM2, CON순으로 유의적인 차를 나타내었다(P < 0.05). 결론적으로 사료 내 Animunin Powder${\circledR}$의 첨가는 성장과 혈액 내 면역반응에 효과적인 것으로 사료된다.

Keywords

References

  1. AOAC. 1995. Official method of analysis.(16th Ed.). Association of official Analtical Chemists. Washington, D.C.
  2. Balmer, J. and Zilversmit, D. B. 1974. Effects of dietary roughage on cholesterol absorption, cholesterol tumover and steroid excretion in the rat. J. Nutr. 104:1319-1328. https://doi.org/10.1093/jn/104.10.1319
  3. Bay, R. and Linares, E. 1999. Medicinal plant diversity of Mexico and its potential for animal health sciences. In: Proceedings of the 15th Annual Biotechnology in the Feed Industry Symposia (Ed. T, P, Lyons). Alltech Technical Publications. pp. 265-294.
  4. Buchbauer, G. 1991. Aromatherapy: evidence for sedative effects of the essential oil of lavender after inhalation. Z. Naturforschc. 46:1067-1072.
  5. Chainani-Wu N. 2003. Safety and anti-inflarmnatory activity of curcumin: a component of tumeric (Curcuma tonga). J. Altern Complement Med. 9(1):161-168.
  6. Chopra, R. N. 1982. Indigenous Drugs of India. Academic Publisher. Calcutta.
  7. Chopra, R. N., Nayar, S. L. and Chopra, I. C. 1986. Glossary of Indian Medical Plants. Council of Scientific and Industrial Reserch, New Delhi.
  8. Duncan, D. B. 1955. Multiple range and multiple F tests. Biometrics. 11, 1.
  9. Govindan, S., Viswanathan, S., Vijayasekaran, V. and Alagappan, R. 1999. A pilot study on the clinical efficacy of Solanum xanthocarpum and Solanum trilobatum in bronchial asthma Ethnopharmacol. 66(2):205-210.
  10. Jain, J. P. 1980. J. Res. Ayur. Siddha. 1:1.
  11. Miquel, J., Brend, A., Semepere, JM., Diaz-Alperi, J. and Ramirez, A. 2002. The curcuma antioxidants: pharmacological effects and prospects for future clinical use. Arch Gerontol Geriatr. 34(1): 37-46. https://doi.org/10.1016/S0167-4943(01)00194-7
  12. Nadkarni, K. M. 1976. India Materia Medica. Popular prakashan, Bombay. p. 861.
  13. NRC. 1998. Nutrient Requirements of Swine. National Research Council, Academy Press.
  14. Park, K. M., Han, Y. K. and Park, K. W. 2000. Effect of herb-mix supplementation on the growth performance and serum growth hormone in weaned pigs. Asian-Aust. J. Anim. Sci. Vol. 13, No. 6:791-794. https://doi.org/10.5713/ajas.2000.791
  15. SAS. 1996. SAS user's guide: Statisics, SAS Inst, Inc., Cary, NC.
  16. Schultz, T. P., Boldin, W. D., Fisher, T. H., Nicholas, D. D., Mcmurtrey, K. D. and Pobanz, K. 1992. Structure fungicidal properties of some 3-and 4-hydroxylated stilbenses and bibenzyl analogues. Phytochemistry. 31(1l): 3801-3806.
  17. Singh, Y. N. 1992. Kava an overview. J. Ethanopharmacology. 37:18-45.
  18. Sunila, E. S. and Kuttan, G. 2004. Immunomodulatory and antitumor activity of Piper longum Linn. and piperine. J. Ethanopharmacology. 90: 339-346.
  19. Wenk, Casper. 2003. Herbs and botanicals as feed additives in monogastric animals. Asian-Aust. J. Anim. Sci. Vol. 16, No. 2:262-289.
  20. Yang, C. J., Yang, I. Y., Oh, D. H., Bae, I. H., Cho, S. Goo, Kong, I. G., Uunganbayer, D., Nou, I. S. and Choi, K. S. 2003. Effect of green tea by-product on performance and body composition in broiler chick. Asian-Aust. J. Anim. Sci. Vol. 16, No. 6:789-938. https://doi.org/10.5713/ajas.2003.789
  21. Zaika, L. L. 1998. Spices and herbs: their antimicrobial activity and its determination. J. Food Safety. 9:97-101. https://doi.org/10.1111/j.1745-4565.1988.tb00511.x
  22. 김봉환, 탁영빈, 조길재, 장희경. 1991. 돼지 전염성 위축성 비염의 임상학적 및 세균학적 연구. 한국수의학회지. 31(4):457-469.
  23. 김봉환, 1998. 돼지 흉막폐렴의 진단을 위한 효소면역법의 개발. 한국수의공중보건학회지. 22(1):57-63.
  24. 석종찬, 임희석, 백인기. 2003. 생약제제(미라클$^{\circledR}$) 첨가가 이유 자돈의 성장률, 영양소 이용률, 분내 미생물균총 및 면역기능에 미치는 영향. 한국동물자원과학회지. 45(5):767-776.
  25. 신나리, 김종만, 유한상. 2002. 돼지 위축성 비염, 파스튜렐라 폐렴 및 흉막폐렴 원인균의 주요 항원에 대한 IgG와 IgY의 상관관계 분석. 대한수의학회지. 42(3):371-376.
  26. 오덕환, 함승시, 박부길, 안 철, 유진영. 1998. 식품 부패 및 병원성 미생물에 대한 천연약용 식물 추출물의 향균효과. 한국식품과학회지. 30(4):957-963.
  27. 최진호, 김동우, 문영실, 장동석. 1996. 한약재 부산물 투여가 돈육의 기능성에 미치는 영향. 한국식품영양학회지. 25(1):110-117.
  28. 홍성진, 남궁환, 백인기. 2002. 생약제제(Meracle20)가 육계의 생산성과 영양소. 이용률, 소장 내 미생물 균총 및 면역기능에 미치는 영향. 한국동물자원과학회지. 43(5):671-680.