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Food, fibre and pharmaceuticals from animals
RESEARCH ARTICLE

Interactive effects of dietary protein source and exogenous protease on growth performance, immune competence and jejunal health of broiler chickens

A. J. Cowieson A C , H. Lu B , K. M. Ajuwon B , I. Knap A and O. Adeola B
+ Author Affiliations
- Author Affiliations

A DSM Nutritional Products, Wurmisweg 576, Kaiseraugst, Switzerland.

B Department of Animal Sciences, Purdue University, West Lafayette, IN 47907, USA.

C Corresponding author. Email: aaron.cowieson@dsm.com

Animal Production Science 57(2) 252-261 https://doi.org/10.1071/AN15523
Submitted: 31 August 2015  Accepted: 27 October 2015   Published: 5 April 2016

Abstract

A total of 672 male 7-day-old broiler chicks were used in a 14-day cage study to evaluate the interactive effects of dietary protein source and exogenous protease on nutrient digestibility and intestinal physiology. Birds were fed a common starter diet from Days 0 to 7 and switched to experimental diets from Days 7 to 21. Four corn-based dietary treatments were arranged in a 2 × 2 factorial arrangement with factors being two major sources of protein [soybean meal (SBM) or canola meal] and diets offered with or without exogenous protease. Bodyweight gain and gain : feed were higher (P < 0.001) in the diets based on SBM than in the diets based on canola meal and protease was more effective (P < 0.05) in enhancing performance in SBM-based diets. Ileal nitrogen digestibility was increased (P < 0.01) by protease use in diets based on both major protein sources. However, ileal digestible energy was increased (P < 0.05) by protease only in the SBM-based diet resulting in an interaction between diet protein source and exogenous protease. Jejunal villus height tended to be higher (P = 0.07) in birds fed diets based on SBM and protease use increased (P < 0.05) crypt depth only in the SBM-free diets resulting in a significant interaction between protein source and protease use. Patterns of gene expression in jejunal tissue suggested that both dietary protein source and exogenous protease influence the expression of genes responsible for mucin secretion, amino acid transport and immune functionality in an age-dependent manner. It can be concluded that SBM may be a more suitable protein source for young broiler chickens than canola meal and that use of canola meal as a major source of dietary protein may have negative implications for performance, nitrogen digestibility and gut health. However, exogenous protease appears to be more compatible with substrates presented by SBM than is the case for canola meal based on advantages conferred in nutrient digestibility and performance. The beneficial effects of exogenous protease may be linked both to enhanced protein and energy digestibility and improved gut morphological characteristics, secretory and absorptive dynamics and immune resilience.

Additional keywords: canola meal, gut health, protease, soybean meal.


References

Bach Knudsen KE (1997) Carbohydrate and lignin contents of plant materials used in animal feeding. Animal Feed Science and Technology 67, 319–338.
Carbohydrate and lignin contents of plant materials used in animal feeding.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK2sXmtVWitbw%3D&md5=75e4d51cd5d53a744d469d1f9828b657CAS |

Cowieson AJ (2010) Strategic selection of exogenous enzymes for corn/soy-based poultry diets. Japanese Poultry Science 47, 1–7.
Strategic selection of exogenous enzymes for corn/soy-based poultry diets.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3cXis1Wqu74%3D&md5=c2f0932a909ef6b7f4137b81bd4b6700CAS |

Cowieson AJ, Bedford MR (2009) The effect of phytase and carbohydrase on ileal amino acid digestibility in monogastric diets: complementary mode of action? World’s Poultry Science Journal 65, 609–624.
The effect of phytase and carbohydrase on ileal amino acid digestibility in monogastric diets: complementary mode of action?Crossref | GoogleScholarGoogle Scholar |

Cowieson AJ, Roos FF (2014) Bioefficacy of a mono-component protease in the diets of pigs and poultry: a meta-analysis of effect on ileal amino acid digestibility. Journal of Applied Animal Nutrition 2, e13
Bioefficacy of a mono-component protease in the diets of pigs and poultry: a meta-analysis of effect on ileal amino acid digestibility.Crossref | GoogleScholarGoogle Scholar |

Douglas MW, Parsons CM, Bedford MR (2000) Effect of various soybean meal sources and avizyme on chick growth performance and ileal digestible energy. Journal of Applied Poultry Research 9, 74–80.
Effect of various soybean meal sources and avizyme on chick growth performance and ileal digestible energy.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3cXkvFKqtL0%3D&md5=b398864346e7daac1701749081a158f3CAS |

Duan Y, Li F, Li Y, Tang Y, Kong X, Feng Z, Anthony TG, Watford M, Hou Y, Wu G, Yin Y (2015) The role of leucine and its metabolites in protein and energy metabolism. Amino Acids
The role of leucine and its metabolites in protein and energy metabolism.Crossref | GoogleScholarGoogle Scholar | 26573541PubMed |

Ghazi S, Rooke JA, Galbraith H, Bedford MR (2002) The potential for the improvement of the nutritive value of soya-bean meal by different proteases in broiler chicks and broiler cockerels. British Poultry Science 43, 70–77.
The potential for the improvement of the nutritive value of soya-bean meal by different proteases in broiler chicks and broiler cockerels.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD38Xjt1ymtbs%3D&md5=b572fb0e39e149fda84ceb8ceeb29394CAS | 12003341PubMed |

Gopinger E, Xavier EG, Elias MC, Catalan AAS, Castro MLS, Nunes AP, Roll VFB (2014) The effect of different dietary levels of canola meal on growth performance, nutrient digestibility, and gut morphology of broiler chickens. Journal of Applied Poultry Research 93, 1130–1136.

Huisman J, Jansman AJM (1991) Dietary effects and analytical aspects of antinutritional factors in peas (Pisum sativum) and soyabeans (Glycine max L.) in monogastric farm animals. A literature review. Nutrition Abstracts and Reviews 61B, 901–921.

Khajali F, Slominski BA (2012) Factors that affect the nutritional value of canola meal for poultry. Poultry Science 91, 2564–2575.
Factors that affect the nutritional value of canola meal for poultry.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC38Xhs1Wns7vP&md5=9f93c056e9ab5163376b22bff596de91CAS | 22991543PubMed |

Kim SW, Wu G (2004) Dietary arginine supplementation enhances the growth of milk-fed young pigs. The Journal of Nutrition 134, 625–630.

Klasing KC, Maynard PM, Laurin DE (1988) Hypersensitivity to dietary soy protein. Poultry Science 67, 104 [Abstract]

Oppedisano F, Pochini L, Galluccio M, Indiveri C (2007) The glutamine/amino acid transporter (ASCT2) reconstituted in liposomes: transport mechanism, regulation by ATP and characterization of the glutamine/glutamate antiport. Biochimica et Biophysica Acta (BBA) – Biomembranes 1768, 291–298.
The glutamine/amino acid transporter (ASCT2) reconstituted in liposomes: transport mechanism, regulation by ATP and characterization of the glutamine/glutamate antiport.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD2sXhtVKnsrg%3D&md5=9cba9830cbe17abaf47bb2e884ff6fcbCAS |

Rooke JA, Slessor M, Fraser H, Thomson JR (1998) Growth performance and gut function of piglets weaned at four weeks of age and fed protease-treated soya-bean meal. Animal Feed Science and Technology 70, 175–190.
Growth performance and gut function of piglets weaned at four weeks of age and fed protease-treated soya-bean meal.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK1cXhtlOmu74%3D&md5=9631abd9b6c25a9974a2cf5e1f6118acCAS |

Rosen GD (2002) Exogenous enzymes as pro-nutrients in broiler diets. In ‘Recent advances in animal nutrition’. (Eds PC Garnsworthy, J Wiseman) pp. 89–104. (Nottingham University Press: Nottingham, UK)

Rosen GD (2010) Holo-analysis of the efficacy of exogenous enzyme performance in farm animal nutrition. In ‘Enzymes in farm animal nutrition’. 2nd edn. (Eds MR Bedford, GG Partridge) pp. 273–303. (CAB International: Wallingford, UK)

SAS Institute (2009) Users guide. Version 9.2. (SAS Institute Inc.: Cary, NC)

Su S, Miska KB, Fetterer RH, Jenkins MC, Wong EA (2015) Expression of digestive enzymes and nutrient transporters in Eimeria-challenged broilers. Experimental Parasitology 150, 13–21.
Expression of digestive enzymes and nutrient transporters in Eimeria-challenged broilers.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC2MXhs1aqurk%3D&md5=8aebfecf4f44101c5fe6b722621b6eb5CAS | 25617757PubMed |

Torii K, Uneyama H, Nakamura E (2013) Physiological roles of dietary glutamate signaling via gut-brain axis due to efficient digestion and absorption. Journal of Gastroenterology 48, 442–451.
Physiological roles of dietary glutamate signaling via gut-brain axis due to efficient digestion and absorption.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3sXmsFGqtr4%3D&md5=e16fbefe12d356e993f068787a2bcbceCAS | 23463402PubMed |

Wu G, Bazer FW, Dai Z, Li D, Wang J, Wu Z (2014) Amino acid nutrition in animals: protein synthesis and beyond. Annual Review of Animal Biosciences 2, 387–417.
Amino acid nutrition in animals: protein synthesis and beyond.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC2MXkt1Sgsrc%3D&md5=000c97e6f51d9c7977b5955f9a0d0b55CAS | 25384149PubMed |

Xu FZ, Zeng XG, Ding XL (2012) Effects of replacing soybean meal with fermented rapeseed meal on performance, serum biochemical variables and intestinal morphology of broilers. Asian-Australasian Journal of Animal Sciences 25, 1734–1741.
Effects of replacing soybean meal with fermented rapeseed meal on performance, serum biochemical variables and intestinal morphology of broilers.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3sXhsFens7Y%3D&md5=2cae18b555fe39e4b8333c239345c335CAS | 25049539PubMed |

Yao K, Yin YL, Chu WY, Liu ZQ, Deng D, Li T, Huang R, Zhang J, Tan B, Wang W, Wu G (2008) Dietary arginine supplementation increases mTOR signaling activity in skeletal muscle of neonatal pigs. The Journal of Nutrition 138, 867–872.

Zduńczyk Z, Jankowski J, Juśkiewicz J, Mikulski D, Slominski BA (2013) Effect of different dietary levels of low-glucosinolate rapeseed (canola) meal and non-starch polysaccharide-degrading enzymes on growth performance and gut physiology of growing turkeys. Canadian Journal of Animal Science 93, 353–362.
Effect of different dietary levels of low-glucosinolate rapeseed (canola) meal and non-starch polysaccharide-degrading enzymes on growth performance and gut physiology of growing turkeys.Crossref | GoogleScholarGoogle Scholar |