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Practical starter pig amino acid requirements in relation to immunity,gut health and growth performance 被引量:8

Practical starter pig amino acid requirements in relation to immunity,gut health and growth performance
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摘要 Immune system activation begins a host of physiological responses. Infectious agents are recognized by monocytes and macrophages which in turn stimulate cytokine production. It is the hormone-like factors called cytokines that orchestrate the immune response. The classic responses observed with immune system activation and cytokine production include: anorexia, fever, lethargy, recruitment of other immune cells, and phagocytosis. While production of immune system components is known to require some amino acids, increases in amino acid requirements are more than offset by the associated decrease in protein accretion and increased muscle protein degradation that also accompanies immune system activation. However, the biggest impact of cytokine production is a decrease in feed intake. Therefore, as feed intake decreases, the energy needed to drive protein synthesis is also decreased. This suggests that diets should still be formulated on a similar calorie:lysine ratio as those formulated for non-immune challenged pigs. The evidence is sparse or equivocal for increasing nutrient requirements during an immune challenge. Nutritionists and swine producers should resist the pressure to alter the diet, limit feed, or add expensive feed additives during an immune challenge. While immune stimulation does not necessitate changes in diet formulation, when pigs are challenged with non-pathogenic diarrhea there are potential advantages on gut health with the increased use of crystalline amino acids rather than intact protein sources (i.e., soybean meal). This is because reducing crude protein decreases the quantity of fermentable protein entering the large intestine, which lowers post weaning diarrhea. It also lowers the requirement for expensive specialty protein sources or other protein sources such as soybean meal that present immunological challenges to the gut. The objective of this review is two-fold. The first is to discuss immunity by nutrition interactions, or lack thereof, and secondly, to review amino acid requirement estimates for nursery pigs. Immune system activation begins a host of physiological responses. Infectious agents are recognized by monocytes and macrophages which in turn stimulate cytokine production. It is the hormone-like factors called cytokines that orchestrate the immune response. The classic responses observed with immune system activation and cytokine production include: anorexia, fever, lethargy, recruitment of other immune cells, and phagocytosis. While production of immune system components is known to require some amino acids, increases in amino acid requirements are more than offset by the associated decrease in protein accretion and increased muscle protein degradation that also accompanies immune system activation. However, the biggest impact of cytokine production is a decrease in feed intake. Therefore, as feed intake decreases, the energy needed to drive protein synthesis is also decreased. This suggests that diets should still be formulated on a similar calorie:lysine ratio as those formulated for non-immune challenged pigs. The evidence is sparse or equivocal for increasing nutrient requirements during an immune challenge. Nutritionists and swine producers should resist the pressure to alter the diet, limit feed, or add expensive feed additives during an immune challenge. While immune stimulation does not necessitate changes in diet formulation, when pigs are challenged with non-pathogenic diarrhea there are potential advantages on gut health with the increased use of crystalline amino acids rather than intact protein sources (i.e., soybean meal). This is because reducing crude protein decreases the quantity of fermentable protein entering the large intestine, which lowers post weaning diarrhea. It also lowers the requirement for expensive specialty protein sources or other protein sources such as soybean meal that present immunological challenges to the gut. The objective of this review is two-fold. The first is to discuss immunity by nutrition interactions, or lack thereof, and secondly, to review amino acid requirement estimates for nursery pigs.
出处 《Journal of Animal Science and Biotechnology》 SCIE CAS 2014年第3期251-261,共11页 畜牧与生物技术杂志(英文版)
关键词 Amino acids IMMUNITY PIGS Requirements Amino acids, Immunity, Pigs, Requirements
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  • 1Kalsing KC: Nutritional aspects of leukocytic cytokines. J Nutr 1988, 118:1436-1446.
  • 2Williams NH, Stahly TS, Zimmerman DR: Effect of chronic immune system activation on the rate, efficiency, and composition of growth and lysine needs of pigs fed from 6 to 27 kg. J Anita Sci 1997, 75:2463-2471.
  • 3Williams NH, Stahly TS, Zimmerman DR: Effect of chronic immune system activation on body nitrogen retention, partial efficiency of lysine utilization, and lysine needs of pigs. J Anita Sci 1997, 75:2472-2480.
  • 4Dritz SS, Owen KQ, Goodband RD, Nelssen JL, Tokach MD, Chengappa MM, Blecha F: Influence of lipopolysaccharide-induced immune challenge and diet complexity on growth performance and acute-phase protein production in segregated early-weaned pigs. J Anita Sci 1996, 74:1620-1628.
  • 5Shelton NW, Tokach MD, Dritz SS, Goodband RD, Nelssen JL DeRouchey JM, Usry JL: Effects of porcine circovirus type 2 vaccine and increasing standardized ileal digestible lysine:ME ratio on growth performance and carcass composition of growing and finishing pigs. J Anim Sd 2012, 90:361-372.
  • 6Montagne L, Le Floc'h N, Arturo-Schaan M, Foret R, Urdaci MC, Le Gall M: Comparative effects of level of dietary fiber and sanitary condition on the growth and health of weanling pigs. J Anim Sci 2012, 90:2556-2569.
  • 7Pastorelli H, Le Floc'h N, Merlot E, Meunier-Salaon MC, van Milgen J, Montagne L: Feed restriction applied after weaning has different effects on pig performance and health depending on the sanitary conditions. J Anim Sci 2012, 90:4866-4875.
  • 8Klassing KC, Barns DM: Decreased amino acid requirements of growing chicks due to immunologic stress. J Nutr 1988, 118:1158-1164.
  • 9Pastorelli H, van Milgen J, Lovatto P, Montagne L: Meta-analysis of feed intake and growth responses of growing pigs after a sanitary challenge. Animal 2012, 6(6):952-961.
  • 10Heo JM, Opapeju FO, Pluske JR, Kim JC, Hampson D J, Nyachoti CM: Gastrointestinal health and function in weaned pigs: a review of feeding strategies to control post-weaning diarrhoea without using in-feed antimicrobial compounds, J Anita Physiol Nutr 2013, 97:207-237. doi:10.1111/j.1439- 0396.2012.01284.x.

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