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Effect of Replacing Maize Grain by Hybrid Rye Grain in the TMR on Performance of Mid-Lactating Dairy Cows

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Andersson A.A.M., Dimberg L., Åman P., Landberg R. (2014). Recent findings on certain bioactive components in whole grain wheat and rye. J. Cereal Sci., 59: 294–311.10.1016/j.jcs.2014.01.003Search in Google Scholar

AOAC (2005). Association of Official Analytical Chemists. Official methods of analysis. 18th Ed. AOAC International, Washington, DC.Search in Google Scholar

Benninghoff J., Paschke-Beese M. (2015). In situ and in vitro ruminal degradation of maize grain and untreated or xylose-treated wheat, barley and rye grains. Anim. Feed Sci. Tech., 210: 86–93.10.1016/j.anifeedsci.2015.10.002Search in Google Scholar

Casper P., Schingoethe D.J. (1990). Response of early lactation dairy cows fed diets varying in source of nonstructural carbohydrate and crude protein. J. Dairy Sci., 73: 1039–1050.10.3168/jds.S0022-0302(90)78763-2Search in Google Scholar

Cipolat-Gotet C., Cecchinato A. (2018). Variations in milk protein fractions affect the efficiency of the cheese-making process. J. Dairy Sci., 101: 8788–8804.10.3168/jds.2018-14503Search in Google Scholar

Crowley S.V., Dowling A.P. (2016). Impact of α-lactalbumin:β-lactoglobulin ratio on the heat stability of model infant milk formula protein systems. Food Chem., 194: 184–190.10.1016/j.foodchem.2015.07.077Search in Google Scholar

Denek N., Deniz S. (2004). The determination of energy levels in some cereal grains used in ruminant diets by in vivo and in vitro methods. Turk. J. Vet. Anim. Sci., 28: 185–193.Search in Google Scholar

Faisant N., Planchot V., Kozlowski F., Pacourent M.P., Colonna P., Champ M. (1995). Resistant starch determination adapted to products containing high level of resistant starch. Sci. Alim., 15: 83–89.Search in Google Scholar

Folch J., Lees M. (1957). A simple method for the isolation and purification of total lipids from animal tissues. J. Biol. Chem., 226: 497–509.10.1016/S0021-9258(18)64849-5Search in Google Scholar

Grenier B., Oswald I.P. (2011). Mycotoxin co-contamination of food and feed: Meta-analysis of publications describing toxicological interactions. World Mycotoxin J., 11: 285–313.10.3920/WMJ2011.1281Search in Google Scholar

Horne D.S., Banks J.M. (2004). Rennet-induced coagulation of milk. In: Cheese Chemistry, Physics and Microbiology, Fox P.F., McSweeney P.L.H., Cogan T.M.C., Guinee T.P. (eds). Elsevier Academic Press, London, UK, pp. 47–70.10.1016/S1874-558X(04)80062-9Search in Google Scholar

INRA (2007). Alimentation des bovins, ovins et caprins: Besoins des animaux – Valeurs des aliments. Editions Quae, Versailles, France, 2007.Search in Google Scholar

ISO 4121:2003 (2003). Sensory analysis – guidelines for the use of quantitative response scales.Search in Google Scholar

Jürgens H.U., Jansen G., Wegener C.B. (2012). Characterisation of several rye cultivars with respect to arabinoxylans and extract viscosity. J. Agric. Sci., 5: 1–12.10.5539/jas.v4n5p1Search in Google Scholar

Kargar S., Ghorbani G.R. (2014). Reciprocal combinations of barley and corn grains in oil-supplemented diets: Feeding behavior and milk yield of lactating cows. J. Dairy Sci., 97: 7001–7011.10.3168/jds.2013-7850Search in Google Scholar

Kirilov M.P., Kumarin S.V., Ilyukhina L.A., Golovin A.V., Udalova E.V. (1994). Rye in feed mixtures. Životnovodštvo, 33: 16–18.Search in Google Scholar

Koistinen V.M., Hanhineva K. (2017). Microbial and endogenous metabolic conversions of rye phytochemicals. Molec. Nutr. Food Res., 61: 7.10.1002/mnfr.201600627Search in Google Scholar

Kraszewski J., Kozłowski J. (2000). Effect of feeding ground rye in feed rations for cows on the nutritional value of milk and butter (in Polish). Rocz. Nauk. Zoot., Supp. 6: 62–72.Search in Google Scholar

Krieg J., Siegfried N., Steingass H., Rodehutscord M. (2017). In situ and in vitro ruminal starch degradation of grains from different rye, triticale and barley genotypes. Animal, 11: 1745–1753.10.1017/S1751731117000337Search in Google Scholar

Laemmli U.K. (1970). Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature, 227: 680–685.10.1038/227680a0Search in Google Scholar

Micek P. (2008). Nutritional usefulness to ruminants of grain of Polish cereal species and cultivars (in Polish). Zesz. Nauk. UR Kraków, 449: 1–127.Search in Google Scholar

Mills J.A.N., France J., Dijkstra J. (1999). A review of starch digestion in the lactating dairy cow and proposals for a mechanistic model. 1. Dietary starch characterisation and ruminal starch digestion. J. Anim. Feed Sci., 8: 291–340.10.22358/jafs/68938/1999Search in Google Scholar

Oliveira J.S., Huber J.T., Ben-Ghedalia D., Swingle R.S., Theurer C.B., Pessarakli M. (1993). Influence of sorghum grain processing on performance of lactating dairy cows. J. Dairy Sci., 76: 575–581.10.3168/jds.S0022-0302(93)77377-4Search in Google Scholar

Petr J., Mikšĭk V. (2006). Rye quality of hybrid and population varieties from intensive and ecological conditions. Sci. Agric. Bohem., 37: 1–8.Search in Google Scholar

Pieszka M., Kamyczek M., Rudzki B., Łopuszańska-Rusek M., Pieszka M. (2015). Evaluation of the usefulness of hybrid rye in feeding Polish Holstein-Friesian dairy cows in early lactation. Ann. Anim. Sci., 15: 929–943.10.1515/aoas-2015-0038Search in Google Scholar

Plaizier J.C., Krause D.O., Gozho G.N., Mc Bride B.W. (2009). Subacute ruminal acidosis in dairy cows: The physiological causes, incidence and consequences. Vet. J., 176: 21–31.10.1016/j.tvjl.2007.12.016Search in Google Scholar

PN-A-86927 (1961). Edible vegetable fats – Determination of crystallization temperature. Polish Official Standard (in Polish).Search in Google Scholar

PN-EN ISO 6321:2004 (2004). Animal and vegetable fats and oils – Determination of melting point in open capillary tubes (slip point). Polish Official Standard (in Polish).Search in Google Scholar

PN-EN ISO 660:2010 (2010). Animal and vegetable fats and oils – Determination of acid value and acidity. Polish Official Standard (in Polish).Search in Google Scholar

PN-ISO 3976:2014-11 (2014). Milk fat – Determination of peroxide value. Polish Official Standard (in Polish).Search in Google Scholar

PN-ISO 3972:2016-07 (2016). Sensory analysis – Methodology – Method of investigating sensitivity of taste. Polish Normalization Committee (in Polish).Search in Google Scholar

Rajtar P., Górka P., Schwarz T., Micek P. (2020). Effect of hybrid rye and maize grain processing on ruminal and postruminal digestibility parameters. Ann. Anim. Sci., 20: 1065–1083.10.2478/aoas-2020-0025Search in Google Scholar

Robertson J.B., Van Soest P.J. (1981). The detergent system analysis and its application to human foods. In: The Analysis of Dietary Fiber in Food, Theander J. (ed.). Dekker INC, pp. 123–157.Search in Google Scholar

Rodehutscord M., Rückert C., Maurer H.P., Schenkel H., Schipprack W., Bach Knudsen K.E., Schollenberger M., Laux M., Eklund M., Siegert W. (2016). Variation in chemical composition and physical characteristics of cereal grains from different genotypes. Arch. Anim. Nutr., 70: 87–107.10.1080/1745039X.2015.1133111Search in Google Scholar

Sauvant D., Perez J.M., Tran G. (2004). Tables INRA-AFZ de composition et de valeur nutritive des matières premières destinées aux animaux d’élevage: 2ème édition. INRA Editions, Versailles France.Search in Google Scholar

Schiano A.N., Harwood W.S., Drake M.A. (2017). A 100-year review: Sensory analysis of milk. J. Dairy Sci., 100: 9966–9986.10.3168/jds.2017-13031Search in Google Scholar

Sharma H.R., Ingalls J.H., Mc Kirdy J.A., Sanford L.M. (1981). Evaluation of rye grain in the diets of young Holstein calves and lactating dairy cows. J. Dairy Sci., 64: 441–448.10.3168/jds.S0022-0302(81)82591-XSearch in Google Scholar

Sharma H.R., Ingalls J.R., Mc Kirdy J.A. (1983). Feeding value of alkali-treated whole rye (Secale cereale L.) grain for lactating cows and its digestibility for sheep. Anim. Feed Sci. Tech., 10: 77–82.10.1016/0377-8401(83)90007-XSearch in Google Scholar

Slots T., Butler G., Leifert C., Kristensen T., Skibsted L.H., Nielsen J.H. (2009). Potentials to differentiate milk composition by different feeding strategies. J. Dairy Sci., 92: 2057–2066.10.3168/jds.2008-1392Search in Google Scholar

Smit M.N., Zhou X., Landero J.L., Young M.G., Beltranena E. (2019). Increasing hybrid rye level substituting wheat grain with or without enzyme on growth performance and carcass traits of growing-finishing barrows and gilts. Tran. Anim. Sci., 3: 1561–1574.10.1093/tas/txz141Search in Google Scholar

Südekum K.H., Brandt M. (1994). Site and extent of cell-wall neutral monosaccharide digestion in dairy cows receiving diets with rolled cereal grains. Anim. Feed Sci. Tech., 46: 307–320.10.1016/0377-8401(94)90148-1Search in Google Scholar

Taylor M.W., Mac Gibbon A.K.H. (2003). Lipids. General characteristics. In: Encyclopedia of Dairy Sciences, Roginski H., Fuquay J.W., Fox P.F. (eds). Academic Press, London, UK, pp. 1544–1550.10.1016/B0-12-227235-8/00259-5Search in Google Scholar

Van Soest P.J., Robertson J.B., Lewis B.A. (1991). Methods for dietary fibre, neutral detergent fibre and non-starch polysaccharides in relation to animal nutrition. J. Dairy Sci., 74: 3583–3597.10.3168/jds.S0022-0302(91)78551-2Search in Google Scholar

Ziajka S. (2008). Dairying (in Polish). UWM, Olsztyn, Poland.Search in Google Scholar

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