Vet Med - Czech, 2015, 60(12):675-682 | DOI: 10.17221/8581-VETMED

Evaluation of effect of supplementation of extruded rice as a substitute for dried whey in the diet of weanling pigsOriginal Paper

S. Mohana Devi, S.C. Kim, I.H. Kim
Department of Animal Resource and Science, Dankook University, Cheonan, Chungnam, Republic of Korea

A total of 120 weanling pigs [(Landrace × Yorkshire) × Duroc], 21 days of age with an average initial body weight (BW) of 6.52 ± 0.22 (SE) kg were selected to investigate the effects of extruded rice product as a replacement for dried whey on growth performance, coefficient of total tract apparent digestibility (CATTD), blood profiles, faecal shedding of Lactobacillus and Escherichia coli (the microbial counts of digesta were expressed as log10 colony forming units per gram), and faecal scores of weanling pigs. Pigs were randomly allocated to one of four dietary treatments, with six replicates per treatment and five pigs per pen. Pigs in the control group were fed a diet based on corn, soybean, and 20% dried whey. Experimental groups received the same diet as the control group, but dried whey was replaced by 3%, 6%, and 9% extruded rice. Throughout the experimental period (six weeks), no differences were observed in the average daily gain, average daily feed intake, and gain/feed ratio. Pigs fed 6% and 9% extruded rice had a lower (P < 0.05) CATTD than pigs fed the control diet on Day 14. The blood creatinine concentration of pigs fed 9% extruded rice was higher (P < 0.05) than that of pigs in the control group on Day 14. Pigs fed the diets containing 6% and 9% extruded rice had decreased (P < 0.05) faecal E. coli counts on Day 14 compared with pigs fed the control diet. The current results indicate that feeding extruded rice can decrease faecal E. coli counts without negative effects on growth performance in weanling pigs.

Keywords: extruded rice; weanling pigs; microflora; digestibility

Published: December 31, 2015  Show citation

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Mohana Devi S, Kim SC, Kim IH. Evaluation of effect of supplementation of extruded rice as a substitute for dried whey in the diet of weanling pigs. Vet Med - Czech. 2015;60(12):675-682. doi: 10.17221/8581-VETMED.
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References

  1. Alcantara PE, Cordova ED, Villeta MO, Naldo ME (1989): Substitution value of rice bran (D1) and rough rice (Palay) for corn in growing finishing swine rations. Phillipine Journal of Veterinary and Animal Sciences 15, 1-22.
  2. Amornthewaphat N, Attamangkune S (2008): Extrusion and animal performance effects of extruded maize quality on digestibility and growth performance in rats and nursery pigs. Animal Feed Science and Technology 144, 292-305. Go to original source...
  3. AOAC (1997): Official Methods of Analysis. 16th ed. Association of Official Analytical Chemists, Arlington, VA.
  4. Cera KR, Mahan DC, Reinhart GA (1988): The effect of dried whey and corn oil on weanling pig performance and apparent fat digestibility and nitrogen utilization. Journal of Animal Science 61 (Abstr.), 299. Go to original source... Go to PubMed...
  5. Choct M (2002): Non-starch polysaccharides: Effect on nutritive value. In: McNab JM, Boorman NK (eds.): Poultry Feedstuffs. CABI Publishing, Wallingford, UK. 221- 235. Go to original source...
  6. Giuberti G, Gallo A, Masoero F, Ferraretto LF, Hoffman PC, Shaver RD (2014): Factors affecting starch utilization in large animal food production system: A review. Starch/ Starke 66, 72-90. Go to original source...
  7. Gomez G, Valdivieso M (1983): Cassava meal for baby pig feeding. Nutrition Reports International, 28, 547-558.
  8. Hongtrakul K, Goodband RD, Behnke KC, Nelssen JL, Tokach MD, Bergström JR, Nessmith Jr. WB, Kim IH (1998): The effects of extrusion processing of carbohydrate sources on weanling pig performance. Journal of Animal Science 76, 3034-3042. Go to original source... Go to PubMed...
  9. Hu CH, Gu LY, Luan ZS, Song J, Zhu K 2012: Effects of montmorillonite-zinc oxide hybrid on performance, diarrhea, intestinal permeability and morphology of weanling pigs. Animal Feed Science and Technology 177, 103-115. Go to original source...
  10. Kim JC, Hansen CF, Mullana BP, Pluske JR (2012): Nutrition and pathology of weaner pigs: nutritional strategies to support barrier function in the gastrointestinal tract. Animal Feed Science and Technology 173, 3-16. Go to original source...
  11. Mahan DC (1992): Efficacy of dried whey and its lactalbumin and lactose components at two dietary lysine levels on postweaning pig performance and nitrogen balance. Journal of Animal Science 70, 2182-2187. Go to original source... Go to PubMed...
  12. Mateos GG, Martín F, Latorre MA, Vicente B, Lazaro R (2006): Inclusion of oat hulls in diets for young pigs based on cooked maize or cooked rice. Animal Science 82, 57-63. Go to original source...
  13. Mathews CJ, MacLeod RJ, Zheng SX, Hanrahan JW, Bennett HP, Hamilton JR (1999): Characterization of the inhibitory effect of boiled rice on intestinal chloride secretion in guinea pig crypt cells. Gastroenterology 116, 1342-1347. Go to original source... Go to PubMed...
  14. Mikkelsen L, Bendixen C, Jakobsen M, Jensen B (2003): Enumeration of bifidobacteria in gastrointestinal sample from piglets. Applied and Environmental Microbiology 69, 654-658. Go to original source... Go to PubMed...
  15. Miller R (1990): Unit operations and equipment. IV. Extrusion and extruders. In: Fast RB, Caldwell EF (eds.): Breakfast Cereals and How they are Made. 2nd ed. AACC Press, Washington, DC. 135-194.
  16. Owsley WF, De Jr Orr, Tribble LF (1986): Effect of nitrogen and energy source on the nutrient digestibility in the young pin. Journal of Animal Science 63, 492-496. Go to original source... Go to PubMed...
  17. Pluske JR, Black B, Pethick DW, Mullan BP, Hampson DJ (2003): Effects of different sources and levels of dietary fibre in diets on performance, digesta characteristics and antibiotic treatment of pigs after weaning. Animal Feed Science and Technology107, 129-142. Go to original source...
  18. SAS Institute (1996): SAS User's Guide: Statistics. Version 7.0.SAS Institute, Cary, NC.
  19. Sauer WC, de Lange K (1992): Novel methods for determining protein and amino acid digestibilities in feed stuffs. In: Nissen S (ed.): Modern Methods in Protein Nutrition and Metabolism. Academic Press, San Diego, CA. 87-120. Go to original source...
  20. Vandeputte GE, Delcour JA (2004): From sucrose to starch granule to starch physical behavior: a focus on rice starch. Carbohydrate Polymers 58, 245-266. Go to original source...
  21. Vicente B, Valencia DG, Perez-Serrano M, Lazaro R Mateos GG (2008): The effects of feeding rice in substitution of corn and the degree of starch gelatinization of rice on the digestibility of dietary components and productive performance of young pigs. Journal of Animal Science 86, 119-126. Go to original source... Go to PubMed...
  22. Williams BA, Verstegen MWA, Tamminga S (2001): Fermentation in the large intestine of single-stomached animals and its relationship to animal health. Nutrition Research reviews 14, 207-227. Go to original source... Go to PubMed...
  23. Yan L, Hong SM, Kim IH (2012): Effect of bacteriophage supplementation on the growth performance, nutrient digestibility, blood characteristics, and fecal microbial shedding in growing pigs. Asian-Australasian Journal of Animal Sciences 25, 1451-1456. Go to original source... Go to PubMed...
  24. Zhao PY, Baek HY, Kim IH (2012): Effects of bacteriophage supplementation on egg performance, egg quality, excreta microflora, and moisture content in laying hens. Australasian Journal of Animal Sciences 25, 1015-1020. Go to original source... Go to PubMed...

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