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http://dx.doi.org/10.5187/JAST.2004.46.4.603

Effect of Dietary Bacillus sp. Inoculated Feather Meal on the erformance and Nutrient Utilization in Broiler  

Kim, J.H. (Korea Applied Microorganism Industrial Research)
Kim, S.C. (College of Medicin, Gyeongsang National University)
Ko, Y.D. (College of Agriculture and Life Science, Gyeongsang National University)
Publication Information
Journal of Animal Science and Technology / v.46, no.4, 2004 , pp. 603-612 More about this Journal
Abstract
This study was carried out to investigate the replacing fish meal or soybean meal effect of with feather meal or Bacillus sp. inoculated feather meal in broiler diets on the performances and nutrient utilization. One hundred and eighty broilers were randomly allotted to six dietary treatments(1) control, basal diet; (2) BFMl00, Fish meal replacing at 100% level with bacillus sp. inoculated feather meal; (3) BSM20, Soybean meal replacing at 20% level with bacillus sp. inoculated feather meal; (4) BFMl00+BSM20, Fish meal and soybean meal replacing at 100% level and 20% level with bacillus sp. inoculated feather meal, respectively; (5) GFMl00, Fish meal replacing at 100% level with general feather meal; and (6) GSM20, Soybean meal replacing at 20% level with general feather meal) in a 5 week feeding trial. In overall period, body weight gain of control was the highest(1,623g) and those of BFM 100, BFM 100+ BSM 20 and GFM 100 were 1,572g, 1,564g, and 1,078g, respectively. And that of GFM 100(1,078.3g) was the lowest(p<0.05) among treatments. Digestibility of dry matter for BFM 100+BSM 20(81.46%) was higher(p<0.05) than that for other treatments, and that of crude protein was the lowest (p<0.05). Digestibilities of organic matter were significantly(p<0.05) improved when Bacillus sp. inoculated feather meal was replaced at 100% level with fish meal in the basal diet. Methane and hydrogen sulfide gases from the feces were significantly(p<0.05) decreased in chicks fed the control, BFM 100 and GFM 100 diets, when observed after 3 weeks of feeding trials. Feed costs of the control and BFM 100 were 417 and 384 won, respectively but that of BSM 20 was 558 won. Therefore, replacement of fish meal with Bacillus sp. inoculated feather meal in the diets for chicks could be useful for economic production.
Keywords
Bacillus sp; Inoculated feather meal; Fish meal; Soybean meal; Body weight gain; Digestibility;
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  • Reference
1 KFIA. 2002. A monthly Feed Ingredients Bulletin. Korea Feed Ingredients Association. vol. 475(10).
2 Khajarem, S., Khajarem, J., Phalaraksh, K. and Churasatein, S. 1983. The utilization of hydrolyzed feather meal as a protein source in pig and poultry rations. Depart. of Amin. Sci., Khon Kaen University, Khon Kaen, Thailand.
3 Harms, R. H. and Goff, O. E. 1957. Feather meal in hen nutrition. Poultry Sci. 36:358-361.   DOI
4 Jiang, J. C. and Gietzen, D. W. 1994. Anorectic response to amino acid imbalance : A selective serotonin in 3 effect ?. Pharmacol. Biochem. Behav. 47:59.
5 Stucki, W. P. and Harper, A. E. 1962. Effects of altering the ratio of indispensable to dispensable amino acids in diets for rats. J. Nutr. 78:278.
6 Summers, J. D. 1976. Feather meal and the potential of other keratin proteins for poultry. Feedstuffs. March 29. vol. 48.
7 Barker, J. C. and Zublena, J. P. 1975. Livestock manure nutrient assesment in North Carolina. 7th. International Symposium on Agricultural and Food Processing Wastes. p. 98.
8 Tanaka, H., Shibata, K., Mori, M. and Ogura, M. 1995. Metabolism of essential amino acids in growing rats at graded levels of soybean protein asolate. J. Nutr. Sci. Vitaminol. 41:433.
9 Wessels, J. P. H. 1972. A study of the protein quality of different feather meals. Poultry Sci. 51:537-541.
10 AOAC. 1995. Official method of analysis(15th ed.), Association of Official Analytical Chemist. Washington, DC, USA.
11 Bellinger, L. L., Williams, F. E., Rogers, Q. R. and Gietzen, D. W. 1995. Liver denervation attenuates the hypophagia producted by and imbalanced amino acid diet. Physiol. Behav. 59:925.
12 Bodde, B., Galunski, B. and Muller, R. 1995. Characterization of a keratinolytic serine protease from Streptomyces pactum DSM40530. Applied and Environ. microbiology. 61:3705-3710.
13 Chitte, R. R., Nalawade, V. K. and Dey, S. 1999. Keratinolytic activity from the broth of a feather-degrading thermophilic Streptomyces thermoviolaceus SDS. Lett Appl Microbiol. 28:131-136.
14 Duncan, D. B. 1955. Multiple range and multiple F test. Biometerics. 11:1.
15 Filipello, M. V., Fusconi, A. and Rigo, S. 1994. Keratinolysis and its morphological expression in hair digestion by airborne fungi. Mycopathologia. 127:103-115.
16 Gehle, M. H., Speers, G. M., Miller, D. L. and Balloun, S. L. 1967. Nutritive value of hydrolyzed hog hair as a protein source for chicks and poultry. Poultry Sci. 46:156-164.   DOI
17 Gietzen, D. W., Leung, P. M. B. and Rogers, Q. R 1989. Dietary amino acid imbalance and neurochemical changes in the three hypothalamic areas. Physiol. Behav, 46:503.
18 Gregory, B. R., Wilder, O. H. M. and Ostby, P. C. 1956. Studies on the amino acid and vitamin composition of feather meal. Poultry Sci. 35:234-235.   DOI
19 Kim, C. H., Ra, C. S., Kim, B. Y., Shin, J. S. and Song, Y. H. 1999. Effects of various et ration in dirts on rat's growth, body composition, concentrations of body free amino acid and urinary nitrogen concentration. Korean J. Anim. Nutr. Feed. 23(4):301-310.
20 Kim, C. H., Tanaka, H. and Ogura, M. 1996. Metabolism of lysine, threonine and leucine in growing rats on gluten or zein diets at various dietary protein levels. Biosci. Biotech. Biochem. 60: 1580.
21 Moran, E. T., Jr., Summers, J. D. and Slinger, S. J. 1966. Keratin as a source of protein for the growing chicks. Poultry Sci. 45:1257-1266.   DOI
22 NRC. 1994. Nutrient requirements of poultry. 9th. Revised Edi. National Academy Press. Washington, DC.
23 Paradopoulos, M. C., Boushym, A. R and Ketelaars, E. H. 1985. Effect of different processing conditions on amino acid digestibility of feather meal determined by chicken assay. Poultry Sci. 64:1729.
24 Sangali, S. and Brandelli, A. 2000. Isolation and characterization. Appl. Biochem. Biotechnol. 87:17-24.
25 Santos, R. M. D., Firmino, A. A. P., Sa' Carlos, C. M. and Felix, R. 1996. Keratinolytic activity of Aspergillus fumigatus. Current Microbiology. 33:364-370.
26 SAS. 1990. SAS/STAT$^{\circledR}$ User's Guide, version 6.01, 4th ed.; SAS Institute, Inc., Cary, NC, USA.
27 Shih, J. C. 1993. Recent deveiopment in poultry waste digestion and feather utilization- Review. Poultry Sci. 72:1617.
28 Williams, C. M., Lee, C. G., Garlich, J. D. and Shih, J. C. H. 1991. Evaluation of a bacterial feather fermentation product, feather-lysate, as a feed protein. Poultry Science. 70:85-94.
29 Sibbald, I. R, Slinger, S. L. and Pepper, W. F. 1962. The utilization of hydrolyzed feather meal by growing chicks. Poultry Sci. 41:844-849.   DOI
30 Williams, C. M., Richter, C. S., Machenzie, J. M. and Shih, J. C. H. 1990. Isolation, identification, and characterization of a feather-degrading bacterium. Appl. Environ. Microbiol. 56:1509-1515.
31 Zaghloul, T. I., Al-Bahra, M. and Al-Ameh, H. 1998. Isolation, identification, and keratinolytic activity of several feather-degrading bacterial isolates. Appl. Biochem. Biotechnol. 70-72:207-213.