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Blood hormones, metabolic parameters and fatty acid proportion in dairy cows fed condensed tannins and oils blend Cover

Blood hormones, metabolic parameters and fatty acid proportion in dairy cows fed condensed tannins and oils blend

Open Access
|Jan 2018

References

  1. AOAC (2007). Official Methods of Analysis of AOAC International. 18th ed. Association of Official Analytical Chemists, Gaithersburg, USA.
  2. Barry T.N., Manley T.R., Duncan S.J. (1986). The role of condensed tannins in the nutritional value of Lotus pedunculatus for sheep. 4. Sites of carbohydrate and protein digestion as influenced by dietary reactive tannin concentration. Br. J. Nutr., 55: 123-137.10.1079/BJN19860016
  3. Cebra C.K., Garry F.B., Getzy D.M., Fettman M.J. (1997). Hepatic lipidosis in anorectic, lactating Holstein cattle:aretrospective study of serum biochemical abnormalities. J. Vet. Intern. Med., 11: 231-237.
  4. Cieslak A., El- Sherbiny M., Szczechowiak J., Kowalczyk D., Pers- Kamczyc E., Bryszak M., Szulc P., Jozwik A., Szumacher- Strabel M. (2015). Rapeseed and fish oil mixtures supplied at low dose can modulate milk fatty acid composition without affecting rumen fermentation and productive parameters in dairy cows. Anim. Sci. Pap. Rep., 33: 357-372.
  5. Danfaer A., Tetens V., Agergaard N. (1995). Review and an experimental study on the physiological and quantitative aspects of gluconeogenesis in lactating ruminants. Comp. Biochem. Physiol. B-Biochem. Mol. Biol., 111: 201-210.
  6. Duncombe W.G. (1964). The colorimetric micro-determination of nonesterified fatty acids in plasma. Clin. Chim. Acta., 9: 122-125.10.1016/0009-8981(64)90004-X
  7. FASS (2010). Guide for the Care and Use of Agricultural Animals in Research and Teaching. www.adsa.org
  8. Fouladi- Nashta A.A., Wonnacott K.E., Gutierrez C.G., Gong J.G., Sinclair K.D., Garnsworthy P.C., Webb R. (2009). Oocyte quality in lactating dairy cows fed on high levels of n-3 and n-6 fatty acids. Reproduction, 138: 771-781.
  9. Frutos P., Hervas G., Giráldez F.J., Mantecón A.R. (2004). Review. Tannins and ruminant nutrition. Span. J. Agric. Res., 2: 191-202.10.5424/sjar/2004022-73
  10. Gerrits W.J., Decuypere E., Verstegen M.W., Karabinas V. (1998). Effect of protein and protein-free energy intake on plasma concentrations of insulin-like growth factor Iand thyroid hormones in preruminant calves. J. Anim. Sci., 76: 1356-1363.10.2527/1998.7651356x
  11. Halmemies- Beauchet-Filleau A., Kairenius P., Ahvenjärvi S., Toivonen V., Huhtanen , P., Vanhatalo A., Givens I., Shingfield K.J. (2013). Effect of forage conservation method on plasma lipids, mammary lipogenesis, and milk fatty acid composition in lactating cows fed diets containinga60: 40 forage-to-concentrate ratio. J. Dairy Sci., 96: 5267-5289.
  12. Kiczorowska B., Samolińska W., Marczuk J., Winiarska- Mieczan A., Kleba- niuk R., Kowalczuk- Vasilev E., Zasadna Z. (2017). Comparative effects of organic, traditional, and intensive production with probiotics on the fatty acid profile of cow’s milk. J. Food Comp. Anal., 63: 157-163.10.1016/j.jfca.2017.08.002
  13. Klebaniuk R., Kochman G., Kowalczuk- Vasilev E., Grela E.R., Bąkowski M., Olcha M., Dunster F. (2016). Energy efficiency of diet for periparturient dairy cows supplemented with free fatty acids or glucogenic additives. Med. Weter., 72: 760-767.
  14. Lopez- Huertas E. (2010). Health effects of oleic acid and long chain omega-3 fatty acids (EPAand DHA) enriched milks. Areview of intervention studies. Pharmacol. Res., 61: 200-207.10.1016/j.phrs.2009.10.007
  15. Megraw R.E., Dunn D.E., Biggs H.G. (1979). Manual and continuous-flow colorimetry of triacylglycerols byafully enzymic method. Clin. Chem., 25: 273-284.
  16. Moussavi A.H., Gilbert R.O., Overton T.R., Bauman D.E., Butler W.R. (2007). Effects of feeding fish meal and n-3 fatty acids on ovarian and uterine responses in early lactating dairy cows. J. Dairy Sci., 90: 145-154.10.3168/jds.S0022-0302(07)72616-4
  17. Mueller- Harvey I. (2006). Unravelling the conundrum of tannins in animal nutrition and health. J. Sci. Food Agric., 86: 2010-2037.10.1002/jsfa.2577
  18. Patra A.K., Saxena J. (2011). Exploitation of dietary tannins to improve rumen metabolism and ruminant nutrition. J. Sci. Food Agric., 91: 24-37.10.1002/jsfa.415220815041
  19. Perez- Maldonado R.A., Norton B.W. (1996). Digestion of C-labelled condensed tannins from Desmodium intortum in sheep and goats. Br. J. Nutr., 76: 501-513.
  20. Petit H.V., Dewhurst R.J., Scollan N.D., Proulx J.G., Khalid M., Haresign W., Twa- giramungu H., Mann G.E. (2002). Milk production and composition, ovarian function, and prostaglandin secretion of dairy cows fed omega-3 fats. J. Dairy Sci., 85: 889-899.
  21. R Development Core Team (2008). R:alanguage and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. http://www.R-project.org
  22. Shakeri P. (2016). Pistachio by-product as an alternative forage source for male lambs: Effects on performance, blood metabolites, and urine characteristics. Anim. Feed Sci. Tech., 211: 92-99.
  23. Shingfield K.J., Bonnet M., Scollan N.D. (2013). Recent developments in altering the fatty acid composition of ruminant-derived foods. Animal, 7: 132-162.10.1017/S175173111200168123031638
  24. Steppa R., Szkudelska K., Wojtowski J., Stanisz M., Szumacher- Strabel M., Czyzak-Runowska G., Cieslak A., Markiewicz-Keszycka M., Pietrzak M. (2014). The metabolic profile of growing lambs fed diets rich in unsaturated fatty acids. J. Anim. Physiol. Anim. Nutr., 98: 914-920.
  25. Szczechowiak J., Szumacher- Strabel M., El- Sherbiny M., Pers- Kamczyc E., Pawlak P., Cieslak A. (2016). Rumen fermentation, methane concentration and fatty acid proportion in the rumen and milk of dairy cows fed condensed tannin and/or fish-soybean oils blend. Anim. Feed Sci. Tech., 216: 93-107.
  26. Toral P.G., Hervas G., Belenguer A., Bichi E., Frutos P. (2013). Effect of the inclusion of quebracho tannins inadiet rich in linoleic acid on milk fatty acid composition in dairy ewes. J. Dairy Sci., 96: 431-439.10.3168/jds.2012-562223164228
  27. Trinder P. (1969). Determination of glucose in blood using glucose oxidase with an alternative oxygen acceptor. Ann. Clin. Biochem., 6: 24-27.10.1177/000456326900600108
  28. Van Soest P.J., Robertson J.B., Lewis B.A. (1991). Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition. J. Dairy Sci., 74: 3583-3597.
  29. Vasta V., Nudda A., Cannas A., Lanza M., Priolo A. (2008). Alternative feed resources and their effects on the quality of meat and milk from small ruminants (Review). Anim. Feed Sci. Tech., 147: 223-246.
  30. Vasta V., Priolo A., Scerra M., Hallet K.C., Wood J.D., Doran O. (2009). Δ9 desaturase protein expression and fatty acid composition of longissimus dorsi muscle in lambs fed green herbage or concentrate with or without added tannins. Meat Sci., 82: 357-364.10.1016/j.meatsci.2009.02.00720416712
  31. Velayutham R., Sankaradoss N., Ahamed K.F. (2012). Protective effect of tannins from Ficus racemosa in hypercholesterolemia and diabetes induced vascular tissue damage in rats. Asian Pac. J. Trop. Med., 5: 367-373.
  32. Wencelova M., Varadyova Z., Pristas P., Cobanova K., Placha I., Kisidayova S. (2016). Effects of diet supplementation with herbal blend and sunflower seeds on fermentation parameters, microbial population, and fatty acid profile in rumen of sheep. Czech J. Anim. Sci., 61: 551-559.
  33. Zachut M., Dekel I., Lehrer H., Arieli A., Arav A., Livshitz L., Yakoby S., Moal- lem U. (2010). Effects of dietary fats differing in n-6:n-3 ratio fed to high-yielding dairy cows on fatty acid composition of ovarian compartments, follicular status, and oocyte quality. J. Dairy Sci., 93: 529-545.10.3168/jds.2009-216720105525
  34. Zhang Q., Koser S.L., Bequette B.J., Donkin S.S. (2015). Effect of propionate on m RNA expression of key genes for gluconeogenesis in liver of dairy cattle. J. Dairy Sci., 98: 8698-8709.
DOI: https://doi.org/10.1515/aoas-2017-0039 | Journal eISSN: 2300-8733 | Journal ISSN: 1642-3402
Language: English
Page range: 155 - 166
Submitted on: Sep 7, 2017
Accepted on: Nov 20, 2017
Published on: Jan 30, 2018
Published by: National Research Institute of Animal Production
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2018 Joanna Szczechowiak, Katarzyna Szkudelska, Małgorzata Szumacher-Strabel, Sławomir Sadkowski, Kinga Gwozdz, Mohamed El-Sherbiny, Martyna Kozłowska, Victor Rodriguez, Adam Cieslak, published by National Research Institute of Animal Production
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.