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RESEARCH ARTICLE

Effect of the type of dietary fat when added as an energy source on animal performance, carcass characteristics and meat quality of intensively reared Friesian steers

A. Guerrero A D , E. Muela A , M. V. Valero B , I. N. Prado B , M. M. Campo A , J. L. Olleta A , O. Catalán C and C. Sañudo A
+ Author Affiliations
- Author Affiliations

A Department of Animal Production and Food Science, University of Zaragoza, Miguel Servet 177, 50013, Zaragoza, Spain.

B Department of Animal Science, State University of Maringá, Av. Colombo, 5790, 87020-900, Maringá, Paraná, Brazil.

C INZAR, Poeta Luis Cernuda s/n, 50018, Zaragoza, Spain.

D Corresponding author. Email: guerrerobarrado@gmail.com

Animal Production Science 56(7) 1144-1151 https://doi.org/10.1071/AN14682
Submitted: 10 July 2014  Accepted: 2 February 2015   Published: 24 April 2015

Abstract

The effects of different fats in the diet were evaluated on the basis of animal performance, carcass and meat-quality traits. Four groups of eight Friesian steers were intensively finished with concentrate and cereal straw given ad libitum. Four different types of fats were included at a 4% level in the diet, namely, palm oil, sunflower oil, tallow and hydrogenated fat. The feeding trial lasted for 84 days. There were no differences on animal performance or carcass characteristics, except for animals from the hydrogenated-fat diet, which had the greatest percentage of muscle and moisture, and the lowest percentage of fat in a 6th rib dissection. Meat colour, texture, lipid oxidation and consumer acceptability did not differ among the diets. Nevertheless, the effects of ageing or display time were more important than those of the source of fat. Intramuscular fatty acid profile was hardly influenced by the fat source. In conclusion, the type of fat added at the final stage of the rearing process, at a 4% of inclusion level, did not produce noticeable variations on productive parameters or product quality. This would allow to formulate rations for cattle, using the most profitable source of fat (added at low levels), without having variability on the product quality.

Additional keywords: carcass quality, colour, consumer test, fatty acids, supplemental fat.


References

Albertí P, Gómez I, Mendizabal JA, Ripoll G, Barahona M, Sarriés V, Insausti K, Beriain MJ, Purroy A, Realini C (2013) Effect of whole linseed and rumen-protected conjugated linoleic acid enriched diets on feedlot performance, carcass characteristics, and adipose tissue development in young Holstein bulls. Meat Science 94, 208–214.
Effect of whole linseed and rumen-protected conjugated linoleic acid enriched diets on feedlot performance, carcass characteristics, and adipose tissue development in young Holstein bulls.Crossref | GoogleScholarGoogle Scholar | 23501252PubMed |

AOAC (1998) ‘Official methods of analysis 401.’ 16th edn. (Association of Official Analytical Chemists Inc.: Arlington, VA)

Aricetti JA, Rotta PP, Prado RM, Perotto D, Moletta JL, Matsushita M, Prado IN (2008) Carcass characteristics, chemical composition and fatty acid profile of Longissimus muscle of bulls and steers finished in a pasture system. Asian–Australasian Journal of Animal Sciences 21, 1441–1448.
Carcass characteristics, chemical composition and fatty acid profile of Longissimus muscle of bulls and steers finished in a pasture system.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1cXhtlCisrnK&md5=3f1350d9d2b410078ee21ee7f61828b6CAS |

Basarab JA, Aalhus JL, Shah MA, Mir PS, Baron VS, Dugan M, Okine EK, Robertson WM (2007) Effect of feeding sunflower seeds on the performance, carcass characteristics, meat quality, retail stability and sensory characteristics of pasture-fed and feedlot finished beef. Canadian Journal of Animal Science 87, 15–27.
Effect of feeding sunflower seeds on the performance, carcass characteristics, meat quality, retail stability and sensory characteristics of pasture-fed and feedlot finished beef.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD2sXmtlSmtbg%3D&md5=b179196a9acd524a28886eb934f3664cCAS |

Bealieu AD, Drackley JK, Merchen NR (2002) Concentrations of conjugated linoleic acid (cis-9, trans-11octadecadienoic acid) are not increased in tissue lipids of cattle fed a high-concentrate diet supplemented with soybean. Journal of Animal Science 80, 847–861.

Bligh EG, Dyer WJ (1959) A rapid method of total lipid extraction and purification. Canadian Journal of Biochemistry and Physiology 37, 911–917.
A rapid method of total lipid extraction and purification.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaG1MXhtVSgt70%3D&md5=f27b5093c7024e1d52fe6b79b42c4e76CAS | 13671378PubMed |

Campo MM, Santolaria P, Sañudo C, Lepetit J, Olleta JL, Panea B, Albertí P (2000) Assessment of breed type and ageing time effects on beef meat quality using two different texture devices. Meat Science 55, 371–378.
Assessment of breed type and ageing time effects on beef meat quality using two different texture devices.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BC3s%2Fhtl2rsg%3D%3D&md5=d7390473b47811498bd4f43fff890a32CAS | 22061567PubMed |

Campo MM, Nute GR, Hughes SI, Enser M, Wood JD, Richardson RI (2006) Flavour perception of oxidation in beef. Meat Science 72, 303–311.
Flavour perception of oxidation in beef.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD2MXhtFOgsLjO&md5=ea44898435cc50141340e6436ed2c9f2CAS | 22061558PubMed |

Carrilho MC, López M, Campo MM (2009) Effect of the fattening diet on the development of the fatty acid profile in rabbits from weaning. Meat Science 83, 88–95.
Effect of the fattening diet on the development of the fatty acid profile in rabbits from weaning.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1MXmvFGhtbY%3D&md5=0acaf32f8861f7ec05b62bc5174baf3fCAS | 20416618PubMed |

Corazzin M, Bovolenta S, Sepulcri A, Piasentier E (2012) Effect of whole linseed addition on meat production and quality of Italian Simmental and Holstein young bulls. Meat Science 90, 99–105.
Effect of whole linseed addition on meat production and quality of Italian Simmental and Holstein young bulls.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3MXht1ens7%2FE&md5=bf1dc3b184dd869aca02e6c7b4ce2b1bCAS | 21873001PubMed |

Faustman C, Sun Q, Mancini R, Suman SP (2010) Myoglobin and lipid oxidation interactions: Mechanistic bases and control. Meat Science 86, 86–94.
Myoglobin and lipid oxidation interactions: Mechanistic bases and control.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3cXos1Cntrk%3D&md5=44d859e48f52821ab59de1f255b244dfCAS | 20554121PubMed |

Felton EED, Kerley MS (2004) Performance and carcass quality of steers fed different sources of dietary fat. Journal of Animal Science 82, 1794–1805.

Font i Furnols M, Realini CE, Guerrero L, Oliver MA, Sañudo C, Campo MM, Nute GR, Cañeque V, Álvarez I, San Julián R, Luzardo S, Brito G, Montossi F (2009) Acceptability of lamb fed on pasture, concentrate or combinations of both systems by European consumers. Meat Science 81, 196–202.
Acceptability of lamb fed on pasture, concentrate or combinations of both systems by European consumers.Crossref | GoogleScholarGoogle Scholar | 22063982PubMed |

González L, Moreno T, Bispo E, Dugan MER, Franco D (2014) Effect of supplementing different oils: linseed, sunflower and soybean, on animal performance, carcass characteristics, meat quality and fatty acid profile of veal from ‘Rubia Gallega’ calves. Meat Science 96, 829–836.
Effect of supplementing different oils: linseed, sunflower and soybean, on animal performance, carcass characteristics, meat quality and fatty acid profile of veal from ‘Rubia Gallega’ calves.Crossref | GoogleScholarGoogle Scholar | 24200577PubMed |

ISO-R-1442 (1997) ‘Meat and meat products: determination of moisture content. Method ISO R-1442.’ (International Organization for Standardization: Geneva, Switzerland)

ISO-R-1443 (1973) ‘Meat and meat products: determination of total fat content. Method ISO R-1442.’ (International Organization for Standardization: Geneva, Switzerland)

ISO-R-936 (1998) ‘Meat and meat products: determination of total ash content. Method ISO R-936.’ (International Organization for Standardization: Geneva, Switzerland)

ISO-R-937 (1978) ‘Meat and meat products: determination of nitrogen content. Method ISO R-937.’ (International Organization for Standardization: Geneva, Switzerland)

Ladeira MM, Machado Neto OR, Chizzotti ML, Oliveira DM, Chalfun Júnior A (2012) Lipids in the diet and the fatty acid profile in beef: a review and recent patents on the topic. Recent Patents on Food, Nutrition and Agriculture 4, 1–10.

Ludden PA, Kucuk O, Rule DC, Hess BW (2009) Growth and carcass fatty acid composition of beed steers fed soybean oil for increasing duration before slaughter. Meat Science 82, 185–192.
Growth and carcass fatty acid composition of beed steers fed soybean oil for increasing duration before slaughter.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1MXjsVKqtLk%3D&md5=e87d374a0ebd7c534c5b913cf26fa892CAS | 20416764PubMed |

Macfie HJ, Bratchell N, Greehoff K, Vallis LV (1989) Designs to balance the effect of order of presentation and first order carry over effect in hall tests. Journal of Sensory Studies 4, 129–148.
Designs to balance the effect of order of presentation and first order carry over effect in hall tests.Crossref | GoogleScholarGoogle Scholar |

Mach N, Bach A, Velarde A, Devant M (2008) Association between animal, transportation, slaughterhouse practices, and meat pH in beef. Meat Science 78, 232–238.
Association between animal, transportation, slaughterhouse practices, and meat pH in beef.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD2sXhtlCrsbfN&md5=f7b642eff9ea5ac6f2bea5aa2634ced1CAS | 22062275PubMed |

Marti S, Pérez M, Aris A, Bach A, Devant M (2014) Effect of dietary energy density and meal size on growth performance, eating pattern, and carcass and meat quality in Holstein steers fed high-concentrate diets. Journal of Animal Science 92, 3515–3525.
Effect of dietary energy density and meal size on growth performance, eating pattern, and carcass and meat quality in Holstein steers fed high-concentrate diets.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC2cXhtlKnurvP&md5=e01493e2ec185fe5235ef07e82f9e0c7CAS | 25006061PubMed |

Mir PS, McAllister TA, Zaman S, Morgan Jones SD, He ML, Aalhus JL, Jeremiah LE, Goonewardene LA, Weselake RJ, Mir Z (2003) Effect of dietary sunflower oil and vitamin E on beef cattle performance, carcass characteristics and meat quality. Canadian Journal of Animal Science 83, 53–66.
Effect of dietary sunflower oil and vitamin E on beef cattle performance, carcass characteristics and meat quality.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3sXktVagsL0%3D&md5=550433c1121ac173e65f441ca5843751CAS |

Monsón F, Sañudo C, Sierra I (2004) Influence of cattle breed and ageing time on textural meat quality. Meat Science 68, 595–602.
Influence of cattle breed and ageing time on textural meat quality.Crossref | GoogleScholarGoogle Scholar | 22062536PubMed |

Nelson ML, Marks DJ, Busboom JR, Cronrath JD, Falen L (2004) Effects of supplemental fat on growth performance and quality of beef from steers fed barley-potato product finishing diets: I. Feedlot performance, carcass traits, appearance, water binding, retail storage, and palatability attributes. Journal of Animal Science 82, 3600–3610.

Nelson ML, Busboom JR, Ross CF, O’Fallon JV (2008) Effects of supplemental fat on growth performance and quality of beef from steers fed corn finishing diets. Journal of Animal Science 86, 936–948.
Effects of supplemental fat on growth performance and quality of beef from steers fed corn finishing diets.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1cXjvFerurc%3D&md5=5e4dcb55ff5181b3510ff884b21a1ad0CAS | 18192553PubMed |

NRC (2001) ‘Nutrient requirements of beef cattle.’ 7th edn. (National Academy Press: Washington, DC)

Page JK, Wulf DM, Schwotzer TR (2001) A survey of beef muscle color and pH. Journal of Animal Science 79, 678–687.

Partida JA, Olleta JL, Sañudo C, Albertí P, Campo MM (2007a) Fatty acid composition and sensory traits of beef fed palm oil supplements. Meat Science 76, 444–454.
Fatty acid composition and sensory traits of beef fed palm oil supplements.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD2sXksVyju78%3D&md5=a8e07ff5561a9ebe8ed5768b407875c0CAS | 22060986PubMed |

Partida JA, Olleta JL, Campo MM, Sañudo C, María GA (2007b) Effect of social dominance on the meat quality of young Friesian bulls. Meat Science 76, 266–273.
Effect of social dominance on the meat quality of young Friesian bulls.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BC3Mbns1CksQ%3D%3D&md5=c9f74bbd345d23e0c5a22d0d980906b2CAS | 22064295PubMed |

Pfalzgraf A, Frigg M, Steinhart H (1995) Alpha tocopherol contents and lipid oxidation in pork muscle and adipose tissue during storage. Journal of Agricultural and Food Chemistry 43, 1339–1342.
Alpha tocopherol contents and lipid oxidation in pork muscle and adipose tissue during storage.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK2MXlsFeks7k%3D&md5=b799eb8ea2092be63af4dce7c3a923abCAS |

Plasencia A, Mendoza GM, Vasquez C, Avery R (2005) Factores que influyen en el valor nutricional de las grasas utilizadas en las dietas para bovinos de engorda en confinamiento: una revisión. Interciencia 30, 134–142.

Purchas RW, Burnham DL, Morris ST (2002) Effects of growth potential and growth path on tenderness of beef Longissimus muscle from bulls and steers. Journal of Animal Science 80, 3211–3221.

Rotta PP, Prado RM, Prado IN, Valero MV, Visentainer JV, Silva RR (2009) The effects of genetic groups, nutrition, finishing systems and gender of Brazilian cattle on carcass characteristics and beef composition and appearance: a review. Asian–Australasian Journal of Animal Sciences 22, 1718–1734.
The effects of genetic groups, nutrition, finishing systems and gender of Brazilian cattle on carcass characteristics and beef composition and appearance: a review.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3cXotVKitw%3D%3D&md5=c018874bbe5154a7c5a01a0a09ba47e6CAS |

Scheeder MRL, Casutt MM, Roulin M, Escher F, Dufey PA, Kreuzer M (2001) Fatty acid composition, cooking loss and texture of beef patties from meat of bulls fed different fats. Meat Science 58, 321–328.
Fatty acid composition, cooking loss and texture of beef patties from meat of bulls fed different fats.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3MXisVWis7Y%3D&md5=fd77a42437bde848ac06310611d07e5dCAS |

Scollan ND, Dannenberger D, Nuernberg K, Richardson I, MacKintosh S, Hocquette JF, Moloney A (2014) Enhancing the nutritional and health value of beef lipids and their relationship with meat quality. Meat Science 97, 384–394.
Enhancing the nutritional and health value of beef lipids and their relationship with meat quality.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC2cXltl2ntrk%3D&md5=35ee610cbddee0ae74a79d8553137d96CAS | 24697921PubMed |

Shah MA, Mir PS, Aalhus JL, Basarab J, Okine EK (2006) Effect of sunflower seed inclusion in finishing diets for steers on performance, carcass characteristics, muscle and adipose fatty acid composition and meat quality. Canadian Journal of Animal Science 86, 37–48.

Tamminga S, Doreau M (1991) Lipids and rumen digestion. In ‘Rumen microbial metabolism and ruminant digestion’. (Ed. J-P Jouany) pp. 151–164. (Institut National de la Recherche Agronomique: Paris)

Wood JD, Enser M, Fisher AV, Nute GR, Sheard PR, Richardson RI, Hughes SI, Whittington FM (2008) Fat deposition, fatty acid composition and meat quality: a review. Meat Science 78, 343–358.
Fat deposition, fatty acid composition and meat quality: a review.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1cXhsVCls7s%3D&md5=b4184d5c3b50f9c406bcb15ab6277be2CAS | 22062452PubMed |

Woods VB, Fearon AM (2009) Dietary sources of unsaturated fatty acids for animals and their transfer into meat, milk and eggs: a review. Livestock Science 126, 1–20.
Dietary sources of unsaturated fatty acids for animals and their transfer into meat, milk and eggs: a review.Crossref | GoogleScholarGoogle Scholar |

Zinn RA, Jorquera AP (2007) Feed value of supplemental fats used in feedlot cattle diets. Veterinary Clinics of North America: Food Animal Practice 23, 247–268.
Feed value of supplemental fats used in feedlot cattle diets.Crossref | GoogleScholarGoogle Scholar | 17606149PubMed |