The Nutrient Evaluation of Fermented Rice Bran as Poultry Feed
DOI:
https://doi.org/10.3923/ijps.2010.152.154Keywords:
Aspergillus niger, fermentation, rice branAbstract
This research was conducted to find out the effect of fermentation of rice bran by Aspergillus niger in term of nutrient content. Rice bran was incubated with different length of time period of incubation; 0, 24, 48 and 72h. Parameter observed included the content of dry matter, organic matter, crude protein, soluble protein, NPN (non protein nitrogen), reducing sugar and nitrogen retention. Data obtained were subjected into analysis of variance of the completely randomized design. The result showed that incubation period gave the different significant effect (p<0.01) on the content of dry matter, organic matter, crude protein, diluted protein and nitrogen retention. But there was no significant effect (p>0.05) on the crude protein. By 72h incubation time, the fermented rice bran containing the highest nutritive value.
References
AOAC., 1990. Official Methods of Analysis. 14th Edn., Association of Official Analytical Chemists, Washington, DC., USA.
Djunaidi, I.H. and M.H. Nasir, 2001. Rekayasa Pemanfaatan Limbah Garut dan Udang Sebagai Pakan Unggas Melalui Peningkatan Kualitas Nutrisi Dengan Aspergillus niger. Faculty of Animal Science, Brawijaya University Malang, Malang, Indonesia.
Griffin, D.H., 1991. Fungal Physiology. John Wiley and Sons Inc., New York.
Hamada, J.S., 1999. Characterization and functional properties of rice bran proteins modified by commercial exoprotease and endoproteases. J. Food Sci., 65: 305-310.
Hardjo, S., N.S. Indrasti and T. Bantacut, 1989. Biokonversi: Pemanfaatan Limbah Industri Pertanian. PAU Pangan dan Gizi, IPB Bogor, Bogor, Indonesia.
Ingold, C.T., 1984. The Biology of Fungi. Hutchingson, London.
Luh, B.S., 1991. Rice Utilization. Vol. II, Van Nostrand Reinhold, New York.
Martin, E.A., J.V. Nolan, Z. Nitsan and D.J. Farrel, 1998. Strategies to improve the nutritive value of rice bran in poultry diets. IV: The effect of addition of fish meal and a microbial phytase to duckling diets on bird performance and amino acid digestibility. Br. Poult. Sci., 39: 612-621.
Pasaribu, T., A.P. Sinurat, T. Purwadaria, Supriyati and H. Hamid, 1998. Peningkatan nilai gizi lumpur sawit melalui fermentasi: Pengaruh jenis kapang, suhu dan lama proses enzimatis J. Ilmu Ternak dan Veteriner, 3: 237-242.
Purnomo and Adiono, 1987. Ilmu Pangan. UI Press, Jakarta.
Purwadaria, T., A.P. Sinurat, T. Haryati, I. Sutikno, Supriyati and J. Darma, 1998. Korelasi antara aktivitas enzim mananase dan selulase terhadap kadar serat lumpur sawit hasil fermentasi dengan Aspergillus niger. J. Ilmu. Ternak Vet., 3: 230-236.
Rahman, A., 1992. Teknologi Fermentasi. PAU Pangan Gizi IPB, Bogor.
Shin, H.T., 1988. The Effects of Yeast Culture in Swine and Poultry Ration. College of Agriculture, Sung Kyun Kwan University, Korea.
Stainer, R.Y., E.A. Adelberg and J.L. Ingraham, 1984. Dunia Mikroba II. Bharata Karya Aksara, Jakarta.
Kamidjo, S.R., Sudarmadji, Sardjono, D. Wibowo, S. Margino and S.R. Endang, 1989. Mikrobiologi Pangan. UGM Press, Yogyakarta.
Supriyati, T. Pasaribu, H. Hamid and A. Sinurat, 1998. Fermentasi bungkil inti sawit secara substrat padat dengan menggunakan Aspergillus niger. J. Ilmu ternak dan Vet., 3: 165-170.
Winarno, F.G. and S. Fardiaz, 1980. Pengantar Teknologi Pangan. Gramedia Utama Ltd., Jakarta.
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