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RESEARCH ARTICLE

Ruminal fermentation, nutrient digestibility and microbial protein synthesis in sheep fed diets with different levels of date pulp

A. Khezri A B , S. Javidan A , O. Dayani A and R. Tahmasbi A
+ Author Affiliations
- Author Affiliations

A Department of Animal Science, College of Agriculture, Shahid Bahonar University of Kerman, Iran.

B Corresponding author. Email: akhezri@uk.ac.ir

Animal Production Science 57(4) 636-642 https://doi.org/10.1071/AN14586
Submitted: 22 May 2014  Accepted: 13 January 2016   Published: 21 June 2016

Abstract

Four ruminally cannulated mature Kermani sheep (50 ± 2.3 kg and 40 ± 2.1 months old) were used in a 4 × 4 Latin square design to determine the effects of diets with different levels of date pulp (DP) on ruminal fermentation, nutrient digestibility and microbial protein synthesis. DP was replaced for wheat bran in diets at no DP (0 DP), 7 (7 DP), 14 (14 DP) and 21% (21 DP) of diet dry matter (DM) and were fed twice daily (0800 hours and 1800 hours). In this study, increasing the amount of DP in diets of sheep did not affect DM intake and apparent digestibility of nutrient (P > 0.05). Inclusion of DP in diets increased ruminal pH linearly (P < 0.05), but did not influence total volatile fatty acids and molar proportion of individual volatile fatty acids (P > 0.05). Ruminal ammonia nitrogen concentration (6.04 vs 10.13 mmol/L), and blood urea nitrogen (8.59 vs 13.10 mg/dL) were affected by diets (P < 0.05). Moreover, urinary nitrogen excretion was higher (P < 0.05) for Control diet (no DP) than the 21 DP diet. In this study, urinary excretion of purine derivatives and microbial protein synthesis were affected by experimental diets (P < 0.05). In conclusion, this study showed that DP at 14% can be used as an alternative feed resource in sheep nutrition especially in semiarid areas.

Additional keyword: nitrogen metabolism.


References

Agarwal U, Hu Q, Baldwin RL, Bequette BJ (2015) Role of rumen butyrate in regulation of nitrogen utilization and urea nitrogen kinetics in growing sheep. Journal of Animal Science 93, 2382–2390.
Role of rumen butyrate in regulation of nitrogen utilization and urea nitrogen kinetics in growing sheep.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC2MXhtVCkt7fN&md5=85276a0d97edc67d931e25a19868737bCAS | 26020334PubMed |

Al-Ani A, Hassan SA, Aljasim AM (1991) Dried date pulp in fattening diets for Awasi lambs. Small Ruminant Research 6, 31–37.
Dried date pulp in fattening diets for Awasi lambs.Crossref | GoogleScholarGoogle Scholar |

Al-Yousef YM, El-Hag GA, El-Gasim GA, Al-Muthim FN (1993) The utilization of date and other agricultural by-products as feed ingredients in ruminant rations. Proceedings of the 3rd Symposium on the date palm. King Faisal University, Al-Hassa, Saudi Arabia.

AOAC (2000) Official Methods of Analysis, 17th ed. Official Methods of Analysis of AOAC International, Gaithersburg, MD, USA.

Ashraf Z, Hamidi-Esfahani Z (2011) Date and date processing. Food Reviews International 27, 101–133.
Date and date processing.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3MXitFGrtbo%3D&md5=9e6811bc63ff1c95d34611ba3e6c5831CAS |

Bailey K, Spain TJ, Bennett M (1991) Economics of using alternative feeds. In ‘Proceedings of the national symposium on alternative feeds for dairy and beef cattle’, St Louis, MO. (Ed. ER Jordan) pp. 146–149. (University of Missouri: Columbia, MO)

Broderick GA, Luchini ND, Reynal SM, Varga GA, Ishler VA (2008) Effect on production of replacing dietary starch with sucrose in lactating dairy cows. Journal of Dairy Science 91, 4801–4810.
Effect on production of replacing dietary starch with sucrose in lactating dairy cows.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1cXhsVKgtrjL&md5=5d7135592a5ca9861a4c74de39a0edd7CAS | 19038955PubMed |

Chamberlain DG, Robertson S, Choung JJ (1993) Sugars versus starch as supplements to grass silage: effects on ruminal fermentation and the supply of microbial protein to the small intestine, estimated from the urinary excretion of purine derivatives, in sheep. Journal of the Science of Food and Agriculture 63, 189–194.

Cheeke PR, Dierenfeld ES (2010) ‘Comparative animal nutrition and metabolism.’ (CABI Publishing: Cambridge)

Chen XB, Hovell DBFD, Orskov ER, Brown DS (1990) Excretion of purine derivatives by ruminants: effect of exogenous nucleic acid supply on purine derivative excretion by sheep. British Journal of Nutrition 63, 131–142.
Excretion of purine derivatives by ruminants: effect of exogenous nucleic acid supply on purine derivative excretion by sheep.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK3cXnsFOitQ%3D%3D&md5=251c158a7e71758dd0d91ab81932dcf5CAS | 2317474PubMed |

Chen XB, Chen YK, Franklin MF, Orskov ER, Shand WJ (1992) The effect of feed intake and body weight on purine derivative excretion and microbial protein supply in sheep. Journal of Animal Science 70, 1534–1542.

Crooke WM, Simpson WE (1971) Determination of ammonium in Kjeldahl digest of crops by an automated procedure. Journal of the Science of Food and Agriculture 22, 9–10.
Determination of ammonium in Kjeldahl digest of crops by an automated procedure.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaE3MXhsVSisb4%3D&md5=b17f43333eaaf1faef01242e291015bbCAS |

Dayani O, Khezri A, Moradi AG (2012) Determination of nutritive value of date palm by-products using in vitro and in situ measurements. Small Ruminant Research 105, 122–125.
Determination of nutritive value of date palm by-products using in vitro and in situ measurements.Crossref | GoogleScholarGoogle Scholar |

Dijkstra J, Ellis JL, Kebreab E, Strathe AB, Lَpez S, France J, Bannink A (2012) Ruminal pH regulation and nutritional consequences of low pH. Animal Feed Science and Technology 172, 22–33.
Ruminal pH regulation and nutritional consequences of low pH.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC38XitVCgt7s%3D&md5=06cc061d92d86d74b88954db817c4f9dCAS |

Grasser LA, Fadel JG, Garnett I, DePeters EJ (1995) Quantity and economic importance of nine selected by-products used in California dairy rations. Journal of Dairy Science 78, 962–971.
Quantity and economic importance of nine selected by-products used in California dairy rations.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK2MXlt1CksbY%3D&md5=910027c096c79c1866d6d5874efeae06CAS | 7790589PubMed |

Hall MB, Herejk C (2001) Differences in yields of microbial crude protein from in vitro fermentation of carbohydrates. Journal of Dairy Science 84, 2486–2493.
Differences in yields of microbial crude protein from in vitro fermentation of carbohydrates.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3MXptVGltLg%3D&md5=2575409d24f32640d12c3e4fcc7b136eCAS | 11768090PubMed |

Hall MB, Hoover WH, Jennings JP, Webster TKM (1999) A method for partitioning neutral detergent-soluble carbohydrates. Journal of the Science of Food and Agriculture 79, 2079–2086.
A method for partitioning neutral detergent-soluble carbohydrates.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3cXks1GjsA%3D%3D&md5=cecd639c1eec878102e1b43704535a93CAS |

Heldt JS, Cochran RC, Stokka GK, Farmer CG, Mathis CP, Tigemeyer EC, Nagaraja TG (1999) Effects of different supplemental sugars and starch fed in combination with degradable intake protein on low-quality forage use by beef steers. Journal of Animal Science 77, 2793–2802.

Hmeidan M, Al-Hag G, Al-Dosary M, Al-Yousef Y, Al-Turki I (1993) Use of dates as an alternative energy source in sheep fattening rations. The 3rd symposium on the date palm in Saudi Arabia, 17–20(II) January, 359–366.

Hristov AN, Jouany JP (2005) Factors affecting the efficiency of nitrogen utilization in the rumen. In ‘Nitrogen and phosphorus nutrition of cattle’. (Eds E Pfeffer, AN Hristov) pp. 117–166. (CABI Publishing: Cambridge)

Iranian Council of Animal Care (1995) ‘Guide to the care and use of experimental animals. Vol. 1.’ (Isfahan University of Technology Publishing: Iran)

Khezri A, Rezayadi K, Danesh-Mesgaran M, Moradi-Shahrbabak M (2009) Effect of different rumen-degradable carbohydrates on rumen fermentation, nitrogen metabolism and lactation performance of Holstein dairy cows. Asian-Australasian Journal of Animal Sciences 22, 651–658.
Effect of different rumen-degradable carbohydrates on rumen fermentation, nitrogen metabolism and lactation performance of Holstein dairy cows.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1MXot12rtL0%3D&md5=358f2bcc8b6522980d2c0ad5f1f2f478CAS |

Littell RC, Stroup WW, Freund RJ (2002) ‘SAS for linear models.’ 4th edn. (SAS Institute Inc.: Cary, NC)

Lockyer DR, Whitehead DC (1990) Volatilization of ammonia from cattle urine applied to grassland. Soil Biology & Biochemistry 22, 1137–1142.
Volatilization of ammonia from cattle urine applied to grassland.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK3MXotVCnsA%3D%3D&md5=7a96db79a1af5be1dff864dd9a6febb7CAS |

MANR (2010) Economical studies and statistics. Ministry of Agriculture and Natural Resources, Tehran, Iran.

McCormick ME, Redfearn DD, Ward JD, Blouin DC (2001) Effect of protein source and soluble carbohydrate addition on rumen fermentation and lactation performance of Holstein cows. Journal of Dairy Science 84, 1686–1697.
Effect of protein source and soluble carbohydrate addition on rumen fermentation and lactation performance of Holstein cows.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3MXlvFamu7k%3D&md5=34fd0fabfea14d69782710a0161877f1CAS | 11467819PubMed |

Moorby JM, Dewhurst RJ, Evans RT, Danelón JL (2006) Effects of dairy cow diet forage proportion on duodenal nutrient supply and urinary purine derivative excretion. Journal of Dairy Science 89, 3552–3562.
Effects of dairy cow diet forage proportion on duodenal nutrient supply and urinary purine derivative excretion.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD28Xos1Khtr4%3D&md5=8d2091c57bcbf4a0297c2ec0bb8eddb9CAS | 16899691PubMed |

National Research Council (1989) ‘Nutrient requirements of dairy cattle.’ 6th rev. edn. (National Academy Press: Washington, DC)

Penner GB, Oba M (2009) Increasing dietary sugar concentration may improve dry matter intake, ruminal fermentation and productivity of dairy cows in the postpartum phase of the transition period. Journal of Dairy Science 92, 3341–3353.
Increasing dietary sugar concentration may improve dry matter intake, ruminal fermentation and productivity of dairy cows in the postpartum phase of the transition period.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1MXnslGjtbs%3D&md5=413ecabfd777dedf453d7e826b94109bCAS | 19528611PubMed |

Robles V, González L, Ferret A, Manteca X, Calsamiglia S (2007) Effects of feeding frequency on intake, ruminal fermentation, and feeding behavior in heifers fed high-concentrate diets. Journal of Animal Science 85, 2538–2547.
Effects of feeding frequency on intake, ruminal fermentation, and feeding behavior in heifers fed high-concentrate diets.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD2sXhtFSjtrjM&md5=bd7dbf7ea95ed10a81cfcc46e9102866CAS | 17609471PubMed |

Rodriguez F, Llamas AG (1990) Digestibilidad, balance de nutrimentos y patrones de fermentaci on ruminal. In ‘Manual de Tecnicas de Investigaci on en Ruminologa. Editorial Castellanos, Mexico’. (Eds AG Llamas, A Shimada) pp. 79–93. (University of Córdoba: Andalusia, Spain)

Russell JB, Wilson DB (1996) Why are ruminal cellulolytic bacteria unable to digest cellulose at low pH? Journal of Dairy Science 79, 1503–1509.
Why are ruminal cellulolytic bacteria unable to digest cellulose at low pH?Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK28Xlsleltr4%3D&md5=1502ffa6beb25e3a58710b3da37d9d93CAS | 8880476PubMed |

Russell JB, O’Conner JD, Fox DG, Van Soest P, Sniffen J (1992) A net carbohydrate and protein system for evaluating cattle diets: I. Ruminal fermentation. Journal of Animal Science 70, 3551–3561.

SAS (2003) ‘User’s guide: statistics, version 9.1.’ Edition. (SAS Institute Inc.: Cary, NC)

Schwab C, Huhtanen P, Hunt C, Hvelplund T (2005) Nitrogen requirements of cattle. In ‘Nitrogen and phosphorus nutrition of cattle’. (Eds E Pfeffer, AN Hristov) pp. 14–70. (CABI Publishing: Cambridge)

Simmons N, Chaudhry A, Graham C, Scriven E, Thistlethwaite A, Smith C, Stewart G (2009) Dietary regulation of ruminal bovine UT-B urea transporter expression and localization. Journal of Animal Science 87, 3288–3299.
Dietary regulation of ruminal bovine UT-B urea transporter expression and localization.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1MXht1WksLzI&md5=bdc335b1e81848aa9dafee56269729f3CAS | 19574570PubMed |

Sniffen CJ, O’Connor JD, Van Soest PJ, Fox DG, Russell JB (1992) A net carbohydrate and protein system for evaluating cattle diets. II. Carbohydrate and protein availability. Journal of Animal Science 70, 3562–3577.

Supelco Inc. (1975) ‘GC separation of VFA C2–C5.’ Technical Bulletin 749D. (Supelco, Inc.: Bellefonte, PA)

Tamminga S (1992) Nutrition management of dairy cows as a contribution to pollution control. Journal of Dairy Science 75, 345–357.
Nutrition management of dairy cows as a contribution to pollution control.Crossref | GoogleScholarGoogle Scholar |

Van Soest PJ (1994) ‘Nutritional ecology of the ruminant.’ 2nd edn. (Comstock Publishing Associates/Cornell University Press: Ithaca, NY)

Van Soest PJ, Roberson JB, Lewis BA (1991) Methods for dietary fiber, neutral detergent fiber, and non-starch polysaccharides in relation to animal nutrition. Journal of Dairy Science 74, 3583–3597.
Methods for dietary fiber, neutral detergent fiber, and non-starch polysaccharides in relation to animal nutrition.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DyaK38%2FnvVCltA%3D%3D&md5=5ac74045d70ec4fdb1b477d24fb39c1dCAS | 1660498PubMed |

Wadha M, Bakshi MPS (2013) Utilization of fruit and vegetable wastes as livestock feed and as substrates for generation of other value-added products. Food and Agriculture Organization of the United Nations Publications 4, 1–5.

Weakleve DC, Reutzel LF (2013) Improving ruminal digestibility. Proceedings of Tri-state Dairy Nutrition Conference, 97–115.