Have a personal or library account? Click to login
Fatty Acid Profile of Intramuscular Fat in the Longissimus Lumborum and Semimembranosus Muscles of Bulls Fed Diets Based on Virginia Fanpetals, Grass and Maize Silages Cover

Fatty Acid Profile of Intramuscular Fat in the Longissimus Lumborum and Semimembranosus Muscles of Bulls Fed Diets Based on Virginia Fanpetals, Grass and Maize Silages

Open Access
|Feb 2022

References

  1. AOAC (2005). Association of Official Analytical Chemists. Official Methods of Analysis. 18th Edition. Arlington.
  2. Arnold R.N., Arp S.C., Scheller K.K., Williams S.N., Schaefer D.M. (1993). Tissue equilibration and subcellular-distribution of vitamin-E relative to myoglobin and lipid oxidation in displayed beef. J. Anim. Sci., 71: 105–118.10.2527/1993.711105x
  3. Barceló-Coblijn G., Murphy E.J. (2009). Alpha-linolenic acid and its conversion to longer chain n-3 fatty acids: Benefits for human health and a role in maintaining tissue n-3 fatty acid levels. Prog. Lipid Res., 48: 355–374.10.1016/j.plipres.2009.07.002
  4. Borkowska H., Styk B. (2006). Sida hermaphrodita. Cultivation and use. Lublin AR Publisher, 2nd ed., 125 pp.
  5. Borkowska H., Molas R., Kupczyk A. (2009). Virginia fanpetals (Sida hermaphrodita rusby) cultivated on light soil; height of yield and biomass productivity. Pol. J. Environ. Stud., 18: 563–568.
  6. Breslow J.L. (2006). n-3 Fatty acids and cardiovascular disease. Am. J. Clin. Nutr., 83: 1477–1482.10.1093/ajcn/83.6.1477S
  7. Buccioni A., Decandia M., Minieri S., Molle G., Cabiddu A. (2012). Lipid metabolism in the rumen: New insights on lipolysis and biohydrogenation with an emphasis on the role of endogenous plant factors. Anim. Feed Sci. Technol., 174: 1–25.10.1016/j.anifeedsci.2012.02.009
  8. Cabrera M.C., Ramos A., Saadoun A., Brito G. (2010). Selenium, copper, zinc, iron and manganese content of seven meat cuts from Hereford and Braford steers fed pasture in Uruguay. Meat Sci., 84: 518–528.10.1016/j.meatsci.2009.10.007
  9. Council Regulation (EC) No 1099/2009 of 24 September 2009 on the protection of animals at the time of killing. Official Journal of European Union L, 303: 1–30.
  10. Dannenberger D., Nuernberg G., Scollan N., Schabbel W., Steinhart H., En-der K., Nuernberg K. (2004). Effect of diet on the deposition of n-3 fatty acids, conjugated linoleic and C18:1trans fatty acid isomers in muscle lipids of German Holstein bulls. J. Agric. Food Chem., 52: 6607–6615.10.1021/jf049511l
  11. De Smet S., Raes K., Demeyer D. (2004). Meat fatty acid composition as affected by fatness and genetic factors: A review. Anim. Res., 53: 81–98.10.1051/animres:2004003
  12. Decker E.A., Faustman C., Lopez-Bote C.J. (2000). Antioxidants in muscle foods. Nutritional strategies to improve quality. John Wiley Publishing, New York, NY, USA, 512 pp.
  13. Domaradzki P., Żółkiewski P., Litwińczuk A., Florek M., Dmoch M. (2019). Profile and nutritional value of fatty acids in selected skeletal muscles of Polish Holstein-Friesian bulls. Med. Wet., 75: 310–315.10.21521/mw.6208
  14. Durand D., Scislowski V., Gruffat D., Chilliard Y., Bauchart D. (2005). High-fat rations and lipid peroxidation in ruminants: Consequences on the health of animals and quality of their products. In: Indicators of milk and beef quality, J.F. Hocquette, S. Gigli (eds). Wageningen Academic Publishers, 112: 137–150.
  15. EFSA (European Food Safety Authority) (2010). NDA Panel Scientific opinion on dietary reference values for fats, including saturated fatty acids, polyunsaturated fatty acids, monounsaturated fatty acids, trans fatty acids, and cholesterol. EFSA J., 8: 1461.10.2903/j.efsa.2010.1461
  16. Faucitano L., Chouinard P.Y., Fortin J., Mandell I.B., Lafreniere C., Girard C.L., Berthiaume R. (2008). Comparison of alternative beef production systems based on forage finishing or grain-forage diets with or without growth promotants: 2. Meat quality, fatty acid composition, and overall palatability. J. Anim. Sci., 86: 1678–1689.10.2527/jas.2007-0756
  17. Fortin M., Julien P., Couture Y., Dubreuil P., Chouinard P.Y., Latulippe C., Davis T.A., Thivierge M.C. (2010). Regulation of glucose and protein metabolism in growing steers by long-chain n-3 fatty acids in muscle membrane phospholipids is dose-dependent. Animal, 4: 89–101.10.1017/S1751731109991042
  18. Franzaring J., Holz I., Kauf Z., Fangmeier A. (2015). Responses of the novel bioenergy plant species Sida hermaphrodita (L.) Rusby and Silphium perfoliatum L. to CO2 fertilization at different temperatures and water supply. Biomass Bioenergy, 81: 574–583.10.1016/j.biombioe.2015.07.031
  19. Hunt M.R., Legako J.F., Dinh T.T.N., Garmyn A.J., O’Quinn T.G., Corbin C.H., Miller M.F. (2016). Assessment of volatile compounds, neutral and polar lipid fatty acids of four beef muscles from USDA choice and select graded carcasses and their relationships with consumer palatability scores and intramuscular fat content. Meat Sci., 116: 91–101.10.1016/j.meatsci.2016.02.010
  20. IOM (2010) Dietary reference intakes tables and application. Institute of Medicine of the National Academies, USA. http://nationalacademies.org/hmd/Activities/Nutrition/SummaryDRIs/DRITables. Accessed 31 May 2020.
  21. Kennedy P.C., Dawson L.E.R., Lively F.O., Steen R.W.J., Fearon A.M., Moss B.W., Kilpatrick D.J. (2018). Effects of offering lupins/triticale and vetch/barley silages alone or in combination with grass silage on animal performance, meat quality and the fatty acid composition of lean meat from beef cattle. J. Agric. Sci., 156: 1005–1016.10.1017/S0021859618000837
  22. Kien S. (2004). The classification of carcasses of adult bovine animals in the EUROP. Meat and Fat Research Institute, Warsaw, Division in Poznań, Poland.
  23. Lee M.R., Evans P.R., Nute G.R., Richardson R.I., Scollan N.D. (2009). A comparison between red clover silage and grass silage feeding on fatty acid composition, meat stability and sensory quality of the M. Longissimus muscle of dairy cull cows. Meat Sci., 81: 738–744.10.1016/j.meatsci.2008.11.016
  24. Lopez-Huertas E. (2010). Health effects of oleic acid and long chain omega-3 fatty acids (EPA and DHA) enriched milks. A review of intervention studies. Pharmacol. Res., 61: 200–207.10.1016/j.phrs.2009.10.007
  25. Mac Kintosh S.B., Richardson I., Kim E.J., Dannenberger D., Coulmier D., Scollan N.D. (2017). Addition of an extract of lucerne (Medicago sativa L.) to cattle diets – effects on fatty acid profile, meat quality and eating quality of the M. longissimus muscle. Meat Sci., 130: 69–80.10.1016/j.meatsci.2017.03.011
  26. Moloney A.P., Mooney M.T., Kerry J.P., Stanton C., O’Kiely P. (2013). Colour of fat, and colour, fatty acid composition and sensory characteristics of muscle from heifers offered alternative forages to grass silage in a finishing ration. Meat Sci., 95: 608–615.10.1016/j.meatsci.2013.05.030
  27. Momot M., Nogalski Z., Sobczuk-Szul M., Pogorzelska-Przybyłek P. (2016). Effect of fattening intensity on the fatty acid profile and mineral content of meat from Holstein- Friesian bulls. J. Elementol., 21: 1081–1091.10.5601/jelem.2015.20.4.1085
  28. Morris J. (2016). Operation Manual (Original), Extraction System B-811. 096675H en. BÜCHI Labortechnik AG.
  29. Nogalski Z., Starczewski M., Purwin C., Pogorzelska-Przybyłek P., Sobczuk-Szul M., Modzelewska-Kapituła M. (2020). Carcass and meat quality traits in young bulls fed Virginia fanpetals silage. Ann. Anim. Sci., 20: 1127–1140.10.2478/aoas-2020-0033
  30. Nogalski Z., Wielgosz-Groth Z., Purwin C., Nogalska A., Sobczuk-Szul M., Winarski R., Pogorzelska P. (2014). The effect of slaughter weight and fattening intensity on changes in carcass fatness in young Holstein–Friesian bulls. Ital. J. Anim. Sci., 13: 66–72.10.4081/ijas.2014.2824
  31. Oprządek J., Oprządek A. (2003). Modifications of fatty acids composition in ruminants. M59: 492–495.
  32. Pereira P.M., Vicente A.F. (2013). Meat nutritional composition and nutritive role in the human diet. Meat Sci., 93: 586–592.10.1016/j.meatsci.2012.09.018
  33. Piao M.Y., Yong H.I., Lee H.J., Fassah D.M., Kim H.J., Jo C., Baik M. (2017). Comparison of fatty acid profiles and volatile compounds among quality grades and their association with carcass characteristics in longissimus dorsi and semimembranosus muscles of Korean cattle steer. Livest. Sci., 198: 147–156.10.1016/j.livsci.2017.02.021
  34. Polish Standard, PN EN ISO 5508 (1996). Animal and vegetable fats and oils. Analysis by gas chromatography of methyl esters of fatty acids (in Polish).
  35. Polish Standard, PN-EN ISO 5509 (2001). Animal and vegetable fats and oils. Preparation of methyl esters of fatty acids (in Polish).
  36. Polish Standard, PN EN 12822 (2014). Determination of vitamin E by high performance liquid chromatography – measurement of alpha, beta, gamma and delta tocopherols (in Polish).
  37. Ponnampalam E.N., Jacobs J.L., Hopkins D.L. (2018). Increasing omega-3 levels in ruminants under pasture-based systems: An invited review. In: The Contribution of Animals to Human Welfare – OIE Scientific and Technical Review, T. Grandin (ed.). 37: 57–70.10.20506/rst.37.1.2740
  38. Realini C., Kallas Z., Pérez-Juan M., Gómez I., Olleta J., Beriain M., Alberti P., Sańudo C. (2014). Relative importance of cues underlying Spanish consumers’ beef choice and segmentation, and consumer liking of beef enriched with n-3 and CLA fatty acids. Food Qual. Prefer., 33: 74–85.10.1016/j.foodqual.2013.11.007
  39. Röhrle F.T., Moloney A.P., Black A., Osorio M.T., Sweeney T., Schmidt O., Monahan F.J. (2011). α-Tocopherol stereoisomers in beef as an indicator of vitamin E supplementation in cattle diets. Food Chem., 124: 935–940.10.1016/j.foodchem.2010.07.023
  40. Salter A.M. (2013). Dietary fatty acids and cardiovascular disease. Animal, 7: 163–171.10.1017/S1751731111002023
  41. Scollan N.D., Costa P., Hallett K.G., Nute G.R., Wood J.D., Richardson R.I. (2006). The fatty acid composition of muscle fat and relationships to meat quality in Charolais steers: Influence of level of red clover in the diet. Proc. Brit. Soc. Anim. Sci., Winter, BSAS, pp. 23.10.1017/S1752756200009327
  42. Scollan N.D., Dannenberger D., Nuernberg K., Richardson I., Mac Kintosh S., Hocquette J.F., Moloney A.P. (2014). Enhancing the nutritional and health value of beef lipids and their relationship with meat quality. Meat Sci., 97: 384–394.10.1016/j.meatsci.2014.02.015
  43. Siri-Tarino P.W., Sun Q., Hu F.B., Krauss R.M. (2010). Meta-analysis of prospective cohort studies evaluating the association of saturated fat with cardiovascular disease. Am. J. Clin. Nutr., 91: 535–546.10.3945/ajcn.2009.27725
  44. Tarkowski A. (2008). The yield and chemical composition of milk of cows fed the ration with protein-fibrous-extruderate. J. Cent. Eur. Agr., 9: 645–650.
  45. Titei V. (2015). Agro biological peculiarities and economical value of Sida hermaphrodita in Republic of Moldova. ProEnvironment, 8: 485–489.
  46. Turkki P.R., Campbell A.M. (1967). Relation of phospholipids to other lipid components in two beef muscles. J. Food Sci., 32: 151–154.10.1111/j.1365-2621.1967.tb01280.x
  47. Valencak T.G., Gamsjaeger L., Ohrnberger S., Culbert N.J., Ruf T. (2015). Healthy n-6/n-3 fatty acid composition from five European game meat species remains after cooking. BMC Res Notes, 8: 273.10.1186/s13104-015-1254-1
  48. Webb E.C. (2006). Manipulating beef quality through feeding. S. Afr. J. Anim. Sci., 7: 5–15.
  49. Wielgosz-Groth Z., Sobczuk-Szul M., Nogalski Z., Mochol M., Purwin C., Winarski R. (2017). Fatty acid profiles of intramuscular, intermuscular, external and internal fat in Polish Holstein-Friesian × Hereford bulls and steers fed grass silage-based diets supplemented with concentrates. Anim. Prod. Sci., 57: 371–377.10.1071/AN14954
  50. Williams C. (2000). Dietary fatty acids and human health. Ann. Zootech., 49: 165–180.10.1051/animres:2000116
  51. Williams J.E., Wagner D.G., Walters L.E., Horn G.W., Waller G.R., Sims P.L., Guenther J.J. (1983). Effect of production systems on performance, body composition and lipid and mineral profiles of soft tissue in cattle. J. Anim. Sci., 57: 1020–1024.10.2527/jas1983.5741020x
  52. Wood J.D., Enser M., Fisher A.V., Nute G.R., Sheard P.R., Richardson R.I., Hugles S.I., Whittington F.M. (2008). Fat deposition, fatty acid composition and meat quality: A review. Meat Sci., 78: 343–358.10.1016/j.meatsci.2007.07.019
  53. World Health Organization(WHO). (2011). Guideline: Vitamin A supplementation in pregnant women. ttp://apps.who.int/iris/bitstream/10665/44625/1/9789241501781_eng.pdf.
  54. Żegarska Z., Jaworski J., Borejszo Z. (1991). Evaluation of a modified Peisker method of the preparation of fatty acid methyl esters (in Polish). Acta Acad. Agric. Tech. Olst., 24: 25–33.
DOI: https://doi.org/10.2478/aoas-2021-0023 | Journal eISSN: 2300-8733 | Journal ISSN: 1642-3402
Language: English
Page range: 419 - 437
Submitted on: Jun 3, 2020
Accepted on: Mar 29, 2021
Published on: Feb 4, 2022
Published by: National Research Institute of Animal Production
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2022 Zenon Nogalski, Martyna Momot, Paulina Pogorzelska-Przybyłek, Monika Sobczuk-Szul, Monika Modzelewska-Kapituła, published by National Research Institute of Animal Production
This work is licensed under the Creative Commons Attribution 4.0 License.