DOI QR코드

DOI QR Code

Oligosaccharides are a key factor in prediction of amino acid digestibility in soybean meal of different origins when fed to growing pigs

  • Li, Zhongchao (State Key Laboratory of Animal Nutrition, Ministry of Agriculture Feed Industry Centre, China Agricultural University) ;
  • Wang, Qiuyun (State Key Laboratory of Animal Nutrition, Ministry of Agriculture Feed Industry Centre, China Agricultural University) ;
  • Xie, Fei (State Key Laboratory of Animal Nutrition, Ministry of Agriculture Feed Industry Centre, China Agricultural University) ;
  • Liu, Dewen (The College of Agriculture, Dezhou University) ;
  • Li, Yakui (State Key Laboratory of Animal Nutrition, Ministry of Agriculture Feed Industry Centre, China Agricultural University) ;
  • Lyu, Zhiqian (State Key Laboratory of Animal Nutrition, Ministry of Agriculture Feed Industry Centre, China Agricultural University) ;
  • Lai, Changhua (State Key Laboratory of Animal Nutrition, Ministry of Agriculture Feed Industry Centre, China Agricultural University)
  • 투고 : 2017.02.09
  • 심사 : 2017.04.17
  • 발행 : 2017.12.01

초록

Objective: The objective of this experiment was to determine apparent ileal digestibility (AID) and standardized ileal digestibility (SID) of crude protein (CP) and amino acid (AA) in 15 sources of soybean meal (SBM) produced from soybeans from different countries and subsequently to establish equations for predicting the AID and SID in SBM based on their chemical composition. Methods: Eighteen barrows ($57.9{\pm}6.1kg$) fitted with a simple T-cannula were allotted into three $6{\times}6$ Latin square designs. Each period comprised a 6-d adaption period followed by a 2-d collection of ileal digesta. The 15 test diets included SBM as a sole source of AA in the diet. Another nitrogen-free diet was used to measure basal endogenous losses of CP and AA. Chromic oxide (0.3%) was used as an inert marker in each diet. Results: The AID of lysine in SBM from China and USA tended to be greater than in SBM from Brazil (p<0.10). The SID of valine and proline in SBM from China was greater than in SBM from Brazil (p<0.05). The SID of lysine, threonine, cysteine and glycine in SBM from China tended to be greater than in SBM from Brazil (p<0.10). From a stepwise regression analysis, a series of AID and SID prediction equations were generated. The best fit equations for lysine in SBM were: AID lysine = 1.16 sucrose-1.81 raffinose+82.10 ($R^2=0.69$, p<0.01) and SID lysine = 1.14 sucrose-1.93 raffinose-0.99 ether extract (EE)+85.26 ($R^2=0.77$, p<0.01). Conclusion: It was concluded that under the conditions of this experiment, the oligosaccharides (such as sucrose and raffinose) can be used to predict the AID and SID of AA in SBM with reasonable accuracy.

키워드

참고문헌

  1. Sotak-Peper KM, Gonzalez-Vega JC, Stein HH. Concentrations of digestible, metabolizable, and net energy in soybean meal produced in different areas of the United States and fed to pigs. J Anim Sci 2015;93:5694-701. https://doi.org/10.2527/jas.2015-9281
  2. Li ZC, Wang XX, Guo PP, et al. Prediction of digestible and metabolisable energy in soybean meal produced from soybeans of different origins fed to growing pigs. Arch Anim Sci 2015;69:473-86.
  3. Frikha M, Serrano MP, Valencia DG, et al. Correlation between ileal digestibility of amino acids and chemical composition of soybean meals in broilers at 21 days of age. Anim Feed Sci Technol 2012;178:103-14. https://doi.org/10.1016/j.anifeedsci.2012.09.002
  4. Veldman A, Veen WAG, Barug D, Paridon PA. Effect of ${\alpha}$-galactosides and ${\alpha}$‐galactosidase in feed on ileal piglet digestive physiology. J Anim Physiol Anim Nutr 1993;69:57-65. https://doi.org/10.1111/j.1439-0396.1993.tb00790.x
  5. Smiricky MR, Grieshop CM, Flickinger EA, Bauer LL, Fahey GC. Dietary galactooligosaccharides affect ileal and total-tract nutrient digestibility, ileal and fecal bacterial concentrations, and ileal fermentative characteristics of growing pigs. J Anim Sci 2003;81:2535-45. https://doi.org/10.2527/2003.81102535x
  6. Pangeni DP. Dietary evaluation of low-oligosaccharide soybean meal in pigs [PhD. Thesis]. St. Paul, MN, USA: University of Minnesota; 2012.
  7. Smiricky MR, Grieshop CM, Albin DM, et al. The influence of soy oligosaccharides on apparent and true ileal amino acid digestibilities and fecal consistency in growing pigs. J Anim Sci 2002;80:2433-41.
  8. Baker KM, Stein HH. Amino acid digestibility and concentration of digestible and metabolizable energy in soybean meal produced from high protein or low oligosaccharide varieties of soybeans and fed to growing pigs. J Anim Sci 2009;87:2282-90. https://doi.org/10.2527/jas.2008-1414
  9. Baker KM, Liu YH, Stein HH. Nutritional value of soybean meal produced from high protein, low oligosaccharide, or conventional varieties of soybeans and fed to weanling pigs. Anim Feed Sci Technol 2014;188:64-73. https://doi.org/10.1016/j.anifeedsci.2013.10.018
  10. Stein HH, Shipley CF, Easter RA. Technical note: A technique for inserting a T-cannula into the distal ileum of pregnant sows. J Anim Sci 1998;76:1433-6. https://doi.org/10.2527/1998.7651433x
  11. Fan MZ, Sauer WC, Hardin RT, Lien KA. Determination of apparent ileal amino acid digestibility in pigs: effect of dietary amino acid level. J Anim Sci 1994;72:2851-9. https://doi.org/10.2527/1994.72112851x
  12. Committee on Nutrient Requirements of Swine, National Research Council. Nutrient requirements of swine. 11th ed. Washington, DC: National Academy Press; 2012.
  13. AOAC International. Official methods of analysis. 18th ed. Arlington, VA: Association of Official Analytical Chemists; 2007.
  14. Thiex NJ, Anderson S, Gildemeister B. Crude fat, diethyl exther extraction in feed, cereal grains, and forge: collaborative study. J AOAC Int 2003;86:888-98.
  15. Van Soest PJ, Robertson JB, Lewis BA. Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition. J Dairy Sci 1991;74:3583-97. https://doi.org/10.3168/jds.S0022-0302(91)78551-2
  16. Cervantes-Pahm SK, Stein HH. Ileal digestibility of amino acids in conventional, fermented, and enzyme-treated soybean meal and in soy protein isolate, fish meal, and casein fed to weanling pigs. J Anim Sci 2010;88:2674-83. https://doi.org/10.2527/jas.2009-2677
  17. Stein HH, Sève B, Fulle MF, Moughan PJ, De Lange CFM. Invited review: Amino acid bioavailability and digestibility in pig feed ingredients: Terminology and application. J Anim Sci 2007;85:172-80. https://doi.org/10.2527/jas.2005-742
  18. Maison T, Liu Y, Stein HH. Digestibility of energy and detergent fiber and digestible and metabolizable energy values in canola meal, 00-rapeseed meal, and 00-rapeseed expellers fed to growing pigs. J Anim Sci 2015;93:652-60. https://doi.org/10.2527/jas.2014-7792
  19. Li S, Sauer WC, Fan MZ. The effect of dietary crude protein level on amino acid digestibility in early-weaned pigs. J Anim Physiol Anim Nutr 1993;70:26-37. https://doi.org/10.1111/j.1439-0396.1993.tb00303.x
  20. Zhang HL, Qiao SY, Chen XJ, et al. Effects of graded levels of soyabean protein on endogenous ileal lysine loss and amino acid digestibility in growing pigs. Anim Sci 2005;81:257-64.
  21. Zhai H, Adeola O. Apparent and standardized ileal digestibilities of amino acids for pigs fed corn-and soybean meal-based diets at varying crude protein levels. J Anim Sci 2011;89:3626-33. https://doi.org/10.2527/jas.2010-3732
  22. Sauvant D, Perez JM, Tran G. Tables of composition and nutritional value of feed materials: pigs, poultry, cattle, sheep, goats, rabbits, horses and fish. Paris, France: Wageningen Academic Publishers; 2004.
  23. Sotak-Peper KM. Effects of origin on the nutritional value of soybean meal [PhD. Thesis]. Urbana, IL, USA: University of Illinois; 2015.
  24. Green S, Bertrand SL, Duron MJ, Maillard R. Digestibility of amino acids in soya-bean, sunflower and groundnut meal, measured in pigs with ilea-rectal anastomosis and isolation of the large intestine. J Sci Food Agric 1988;42:119-28. https://doi.org/10.1002/jsfa.2740420204
  25. Li QY, Piao XS, Liu JD, et al. Determination and prediction of the energy content and amino acid digestibility in peanut meals fed to growing pigs. Arch Anim Nutr 2014;68:196-210. https://doi.org/10.1080/1745039X.2014.910970
  26. Knabe DA, LaRue DC, Gregg EJ, Martinez GM, Tanksley TJ. Apparent digestibility of nitrogen and amino acids in protein feedstuffs by growing pigs. J Anim Sci 1989;67:441-58. https://doi.org/10.2527/jas1989.672441x
  27. Dilger RN, Sands JS, Ragland D, Adeola O. Digestibility of nitrogen and amino acids in soybean meal with added soyhulls. J Anim Sci 2004;82:715-24. https://doi.org/10.2527/2004.823715x
  28. Ji Y, Zuo L, Wang FL, Li DF, Lai CH. Nutritional value of 15 corn gluten meals for growing pigs: Chemical composition, energy content and amino acid digestibility. Arch Anim Nutr 2012;66: 283-302. https://doi.org/10.1080/03235408.2012.702466
  29. Liu JD, Li QY, Zeng ZK, et al. Determination and prediction of the amino acid digestibility of sunflower seed meals in growing pigs. Asian-australas J Anim Sci 2015;28:86-94.
  30. Li PL, Wang FL, Wu F, et al. Chemical composition, energy and amino acid digestibility in double-low rapeseed meal fed to growing pigs. J Anim Sci Biotechnol 2015;6:37-47. https://doi.org/10.1186/s40104-015-0033-0
  31. Wiggins HS. Nutritional value of sugars and related compounds undigested in the small gut. Proc Nutr Soc 1984;43:69-75. https://doi.org/10.1079/PNS19840029
  32. Leske KL, Akavanichan O, Cheng TK, Coon CN. Effect of ethanol extract on nitrogen corrected true metabolizable energy for soybean meal with broilers and roosters. Poult Sci 1991;70:892-5. https://doi.org/10.3382/ps.0700892