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Effects of Dietary Flammulina velutipes Mycelium on Broiler Chick Performance, Pathogenic Bacterial Counts in Caecal Contents and Amount of NH3 in Excreta

팽이버섯 균사체의 급여가 육계의 생산성, 맹장 내 병원성 미생물 및 배설물 중의 NH3 발생량에 미치는 영향

  • Lee, Sang-Bum (Department of Animal Science, Pusan National University) ;
  • Choi, Young-Ha (Department of Animal Science, Pusan National University) ;
  • Cho, Seong-Keun (Department of Animal Science, Pusan National University) ;
  • Shin, Teak-Soon (Department of Animal Science, Pusan National University) ;
  • Cho, Byung-Wook (Department of Animal Science, Pusan National University) ;
  • Kang, Han-Seok (Department of Animal Science, Pusan National University) ;
  • Kim, Keun-Ki (Department of Animal Science, Pusan National University) ;
  • Kim, Seon-Ku (Department of Animal Science, Pusan National University) ;
  • Lee, Hong-Gu (Department of Animal Science, Pusan National University)
  • 이상범 (부산대학교 생명자원과학대학) ;
  • 최영하 (부산대학교 생명자원과학대학) ;
  • 조성근 (부산대학교 생명자원과학대학) ;
  • 신택순 (부산대학교 생명자원과학대학) ;
  • 조병욱 (부산대학교 생명자원과학대학) ;
  • 강한석 (부산대학교 생명자원과학대학) ;
  • 김근기 (부산대학교 생명자원과학대학) ;
  • 김선구 (부산대학교 생명자원과학대학) ;
  • 이홍구 (부산대학교 생명자원과학대학)
  • Received : 2012.08.26
  • Accepted : 2012.10.29
  • Published : 2012.10.31

Abstract

The purpose of this study was to evaluate the effects of dietary Flammulina velutipes mycelium (FVM) on broiler chick performance, pathogenic bacterial (E. coli, Salmonella) counts in caecal contents and amount of $NH_3$ in excreta. Ninety-six broiler chicks (HanHyup No. 3, Korea) were divided into four groups: 1) Control (basal diet), 2) T1 (supplemented with 1% FVM), 3) T2 (3% FVM), and T3 (5% FVM), and rose for 7 weeks. In results, there were no significant differences among treatments in weight gain, feed intake, feed efficiency and carcass yield. However, giblets were significantly increased in FVM treatments compared with control group (p<0.05). The number of Salmonella in caecum was significantly decreased in FVM treatments compared with control group (p<0.05). The number of E. coli was decreased in T2 but increased in T1 and T3 compared with control group. The emission of fecal $NH_3$ gas was significantly decreased in accordance with increasing the feeding level of FVM (p<0.05). In conclusion, our data indicated that the supplementation of high level of FVM could inhibit the Salmonella in caecum and reduce the emission of fecal $NH_3$ gas. Therefore, FVM at 5% level could be added in the diet of broiler chicks.

팽이버섯 균사체 (FVM)의 급여효과를 검토하기 위하여 육계 병아리 96수를 4개 그룹으로 나누어 대조구는 기초사료(C)만 급여하였고, 시험구는 기초사료에 FVM 1% (T1), 3% (T2) 및 5% (T3)로 하여 7주 동안 급여하였다. FVM을 기초사료에 5%까지 첨가하여 급여하여도 증체, 사료섭취량, 사료요구율은 유의적인 차이가 없었다. 생체중과 도체중은 처리구에서 감소하였으나 (p<0.05), 도체율은 유의적인 차이가 없었으며, 가식내장의 근위와 간은 유의 있게 증가하였다 (p<0.05). FVM의 급여 수준이 높을수록 맹장 내 Salmonella 균수와 계분 내 암모니아가스 발생량이 현저하게 감소하였다 (p<0.05). 따라서 FVM의 육계 사료 내 첨가 실험을 통하여 5% 첨가수준까지 육계용 사료를 대체 첨가하여도 무방함이 확인되었으며, 이는 FVM의 첨가수준 증가와 함께 장내 병원성 미생물인 Salmonella와 계분 내 암모니아 가스 발생 억제 효과가 있는 것으로 밝혀져 육계 사료 내 첨가 이용성이 인정될 것으로 본다.

Keywords

References

  1. AOAC. 1995. Official Methods of Analysis. 16th Ed Association of Official Analysis Chemist Washington DC. USA.
  2. Chai, J. K. 2001. Re-cultivation of Flammulina velutipes from media used for cultivation of Flammulinavelutipes. Mushroom 5:113-124.
  3. Chang, S. T. and Miles, P. G. 1989. Mushroom science. In Edible mushrooms and their cultivation. CRC press, Inc. New York. 3-25.
  4. Cheong, J. C., Jhune, C. S., Kim, S. H., Jang, K. Y., Park, J. S., Na, J. C. and Chun, M. H. 2006. Effect of the adding of Flammulina velutipes cultivation media wastes into chicken feed on the meat quality and production cost of broiler. The Korean Journal of Mycology. Sci. 34(1):29-33. https://doi.org/10.4489/KJM.2006.34.1.029
  5. Choi, S. C. and Chae, B. J. 2003. Effects of feeding mushroom substrate waste and probiotics on productivity, emission of gases and odors in manure for finishing pigs. J. Anim. Sci & Technol (Kor). 45(4):529-536. https://doi.org/10.5187/JAST.2003.45.4.529
  6. Chung, J. C. 1999. Production of liquid type strains of Flammulina velutipes and its technology. Mushroom 3(2):159-178.
  7. Furlani, R. P. Z. and Godoy, H. T. 2007. Vitamins B1 and B2 contains in cultivated mushrooms. Food Chem 106:816-819.
  8. Guo, F. C., Williams, B. A., Kwakkel, R. P., Li, H. S., Li, X. P., Luo, J. Y., Li, W. K. and Verstegen, M, W. 2004. Effects of mushroom and herb polysaccharides, as alternatives for an antibiotic, on the cecal microbial ecosystem in broiler chickens. Poult. Sci. 83:175-182. https://doi.org/10.1093/ps/83.2.175
  9. Hamuro, G. and Wagner, H. 1978. $\beta$-1,3-Glucan mediated augmentation of alloreactive murine cytotoxic T lymphcytes in vivo. Cancer Res 38:3080-3088.
  10. Han, M. J., Bae, E. A., Rhee, Y. K. and Kim, K. H. 1996. Effect of mushrooms on the growth of intestinal lactic acid bacteria. Korean J. Food Sci. Technol. 28(5):947-952.
  11. Hobbs, P. J., Pain, B. F., Kay, R. M. and Lee, P. A. 1996. Reduction of odorous compounds in fresh pig slurry by dietary control of crude protein. J Sci Food and Agric 71:508-514. https://doi.org/10.1002/(SICI)1097-0010(199608)71:4<508::AID-JSFA610>3.0.CO;2-0
  12. Homidan, A., Robertson, J. F. and Petchey, A. M. 2003. The effect of ammonia and dust concentrations on broiler performance. Poultry Sci. 59:340-349.
  13. Hui, Y. F., Den, E. S. and Chi, T. H. 2002. Antioxidant and free radical scavenging activities of edible mushrooms. J Food Lipids 9:35-46. https://doi.org/10.1111/j.1745-4522.2002.tb00206.x
  14. Kim, B. K., Chung, K. S. and Yang, M. S. 1980. Studies on the antinoplastic components of Korean basidiomycetes. Kor J Mycor 8:107-112.
  15. Kim, B. K., Kwun, J. Y., Park, Y. I. and Choi, E. C. 1992. Antitumor component of the cultured mycelia of Calvatiacranifomis. J Kor Cancer Assoc 24:57-63.
  16. Kim, S. H., Kim, H. W., Choi, O. C. and Kim, B. K. 1993. Immunological studies on colluban isolated Collubiaconfluens. J Kor Cancer Assoc 25:288-298.
  17. Kupka, J., Anke, T., Oberwinkler, F., Schramm, G. and Steglich, W. 1979. Antibiotics from basiliomycetes. VII. Crinipellin, a new antibiotic from the basidiomycetous fungus Crinipellisstipitaria (Fr.). Pat J antibiot. 32:130-135. https://doi.org/10.7164/antibiotics.32.130
  18. Lee, S. M., Hwang, J. H., Yoon, Y. B., Kwak, W. S., Kim, Y. I., Moon, S. H. and Jeon, B. T. 2008. Effects of spent mushroom substrates addition on eating behavior of growing hanwoo. J. Kor. Grassl. Forage Sci. 28(2):107-118. https://doi.org/10.5333/KGFS.2008.28.2.107
  19. Midland, S. L., Izac, R. R., Wing, R. M., Zaki, A. I., Munnecke, D. E. and Sims, J. J. 1982. Melleolide, a new Armillariamellea. Tetrahedron. Letters 23: 2515-2518. https://doi.org/10.1016/S0040-4039(00)87383-9
  20. Na, J. C., Jang, B. G., Kim, S. H., Kim, J. H., Kim, S. K, Kang, H. S., Lee, D. S., Lee, S. J., Cheong, J. C. and Lee, J. K. 2005. Influence of feeding Flammulingveluipesmedia on productivity and egg quality in laying hens. Korean J. Poult. Sci. 32(2): 143-147.
  21. Okamoto, K., Shimada, A., Shirai, R., Sakamoto, H., Yoshida, S., Ojima, F., Ishiguro, Y., Sadai, T. and Kawagishi, H. 1993. Antimicrobial chlorinated orchinol derivatives from mycelia of Hericiumerinaceum. Phytochemistry, 34:1445-1446. https://doi.org/10.1016/0031-9422(91)80050-B
  22. Park, J. W., Kim, T., Lim, D. J., Lee, H. B., Joo, Y. S. and Park, Y. I. 2004. Antibacterial activities of mushroom liquid culture extracts against livestock disease-causing bacteria and antibiotic resistant bacteria. The Korean Journal of Mycology. Sci. 32(2): 145-147. https://doi.org/10.4489/KJM.2004.32.2.145
  23. Park, K. R., Lee, W. J., Cho, M. G., Park, E. S., Jeong, J. Y., Kwon, O. S., Yoon, H. S. and Kim, K. Y. 2010. Effects of the extracts from Gyrophoraesculenta and Coriolusversicolorjudae mycelia on the growth of intestinal bacteria. J Korean Soc Food Sci. Nutr. 39(6):820-825. https://doi.org/10.3746/jkfn.2010.39.6.820
  24. Park, S. J. and Yoo, S. O. 1999. Effects of supplementation of Chinese medicine refuse on performance and physiology in broiler chicks. Korean J. Poult. Sci. 26(3):195-201.
  25. SAS program Package. 2008. SAS/STAT. Software for PC, SAS/STAT User's Guide: Statistice. SAS Instiute. Inc., Cary, NC.
  26. Smiderle, F. R., Carbonero, E. R., Mellinger, C. G., Sassaki, G. L., Gorin Philip, A. J. and Iacomini, M. 2006. Structural characterization of a polysaccharide and a $\beta$-glucan isolated from the edible mushroom Flammulina velutipes. Phytochemistry 67: 2189-2196. https://doi.org/10.1016/j.phytochem.2006.06.022
  27. Van Heugten, E. and van Kempen, T. 1999. Methods may exist to reduce nutrient excretion. Feedstuffs. 71(15):12. April 26.
  28. Willis, W. L., Isikhuemhen, O. S. and Ibrahim, S. A. 2007. Performance assessment of broiler chickens given mushroom extract alone or in combination with probiotics. Poult. Sci. 86: 1856-1860. https://doi.org/10.1093/ps/86.9.1856
  29. Willis, W. L., King, K., Iskhuemhen, O. S. and Ibrahim, S. A. 2009. Administration of mushroom extract to broiler chickens for bifidobacteria enhancement and Salmonella reduction. Poult. Sci. 18:658-664.
  30. Yang, J. H., Lin, H. C. and Mau, J. L. 2002. Antioxidant properties of several commercial mushrooms. Food Chem 77:229-235. https://doi.org/10.1016/S0308-8146(01)00342-9
  31. Yoshioka, Y., Tabeta, R. H., Saito, N. and Fukuoka, F. 1985. Antitumor polysaccharides from P. ostrestus (Fr.) Quel: Isolation and structure of $\alpha$-glucan. Carbohydrate Research 140:92-100.

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