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Articles

Effects of ethyl ester supplementation to forage on short-term dry matter intake and preference by goats

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Pages 127-139 | Received 30 Aug 2018, Accepted 17 Jan 2019, Published online: 20 Feb 2019

References

  • Alonso V, Pereyra C, Keller L, Dalcero A, Rosa C, Chiacchiera S, Cavaglieri L. 2013. Fungi and mycotoxins in silage: an overview. J Appl Microbiol. 115:637–643.
  • Anonymus. 2013. Tierschutzgesetz in der Fassung der Bekanntmachung vom 18. Mai 2006 (BGBl. I S. 1206, 1313, ausgegeben zu Bonn am 31. Mai 2006), das zuletzt durch Artikel 4 Absatz 90 des Gesetzes vom 7. August 2013 (BGBl. I S. 3154) geändert worden ist. § 11 Abs. 1.
  • Barbieri G, Bolzoni L, Careri M, Mangia A, Parolari G, Spagnoli S, Virgili R. 1994. Study of the volatile fraction of Parmesan cheese. J Agric Food Chem. 42:1170–1176.
  • Brandt M, Schuldt A, Mannerkorpi P, Vearasilp T. 1987. Zur enzymatischen Stärkebestimmung im Darminhalt und Kot von Kühen mit hitzestabiler Amylase. Arch Anim Nutr. 37:455. (Abstract).
  • Brüning D, Gerlach K, Weiß K, Südekum K-H. 2018a. Effect of compaction, delayed sealing and aerobic exposure on maize silage quality and on formation of volatile organic compounds. Grass Forage Sci. 73:53–66.
  • Brüning D, Gerlach K, Weiß K, Südekum K-H. 2018b. Effect of compaction, delayed sealing and aerobic exposure on forage choice and short-term intake of maize silage by goats. Grass Forage Sci. 73:392–405.
  • Bundesarbeitskreis Futterkonservierung. 2011. Handbuch Futter- und Substratkonservierung. 8th ed. Frankfurt a.M (Germany): DLG-Verlags GmbH.
  • Buntinx SE, Pond KR, Fisher DS, Burns JC. 1997. The utilization of multidimensional scaling to identify forage characteristics associated with preference in sheep. J Anim Sci. 75:1641–1650.
  • Burns JC, Fisher DS, Mayland HF. 2001. Preference by sheep and goats among hay of eight tall fescue cultivars. J Anim Sci. 79:213–224.
  • Daniel JLP, Amaral RC, Sá Neto A, Cabezas-Garcia EH, Bispo AW, Zopollatto M, Cardoso TL, Spoto MHF, Santos FAP, Nussio LG. 2013. Performance of dairy cows fed high levels of acetic acid or ethanol. J Dairy Sci. 96:398–406.
  • Dougherty R, Shipe W, Gudnason G, Ledford R, Peterson R, Scarpellino R. 1962. Physiological mechanisms involved in transmitting flavors and odors to milk. I. Contribution of eructated gases to milk flavor. J Dairy Sci. 45:472–476.
  • Engels WJM, Dekker R, de Jong C, Neeter R, Visser S. 1997. A comparative study of volatile compounds in the water-soluble fraction of various types of ripened cheese. Int Dairy J. 7:255–263.
  • Gerlach K, Liao Y, Südekum K-H. 2014a. Aerobic exposure of lucerne silages and its impact on preference and dry matter intake by goats. Small Rumin Res. 121:308–313.
  • Gerlach K, Reimink A, Messerschmidt U, Südekum K-H. 2017. Ensiled sugar beets as dietary component and their effect on preference and dry matter intake by goats. Arch Anim Nutr. 71:297–310.
  • Gerlach K, Roß F, Weiß K, Büscher W, Südekum K-H. 2013. Changes in maize silage fermentation products during aerobic deterioration and effects on dry matter intake by goats. Agricultural and Food Science. 22:168–181.
  • Gerlach K, Roß F, Weiß K, Büscher W, Südekum K-H. 2014b. Aerobic exposure of grass silages and its impact on dry matter intake and preference by goats. Small Rumin Res. 117:131–141.
  • GfE. 2008. New equations for predicting metabolisable energy of grass and maize products for ruminants. Proc Soc Nutr Physiol. 17:191–197.
  • Hafner SD, Howard C, Muck RE, Franco RB, Montes F, Green PG, Mitloehner F, Trabue SL, Alan Rotz C. 2013. Emission of volatile organic compounds from silage: compounds, sources, and implications. Atmos Environ. 77:827–839.
  • Hetta M, Cone JW, Bernes G, Gustavsson AM, Martinsson K. 2007. Voluntary intake of silages in dairy cows depending on chemical composition and in vitro gas production characteristics. Livest Sci. 106:47–56.
  • Kalač P. 2011. The effects of silage feeding on some sensory and health attributes of cow´s milk: a review. Food Chem. 125:307–317.
  • Kristensen NB, Storm A, Raun BML, Røjen BA, Harmon DL. 2007. Metabolism of silage alcohols in lactating dairy cows. J Dairy Sci. 90:1364–1377.
  • Menke KH, Steingass H. 1987. Schätzung des energetischen Futterwerts aus der in vitro mit Pansensaft bestimmten Gasbildung und der chemischen Analyse. II. Regressionsgleichungen. Übers Tierernährg. 15:59–94.
  • Moio L, Dekimpe J, Etievant P, Addeo F. 1993. Neutral volatile compounds in the raw milks from different species. J Dairy Res. 60:199–213.
  • Ragazzo-Sanchez J, Chalier P, Chevalier-Lucia D, Calderon-Santoyo M, Ghommidh C. 2009. Off-flavours detection in alcoholic beverages by electronic nose coupled to GC. Sens Actuators B Chem. 140:29–34.
  • Randby ÅT, Selmer-Olsen I, Baevre L. 1999. Effect of ethanol in feed on milk flavor and chemical composition. J Dairy Sci. 82:420–428.
  • Saerens SMG, Delvaux FR, Verstrepen KJ, Thevelein JM. 2010. Production and biological function of volatile esters in Saccharomyces cerevisiae. Microb Biotechnol. 3:165–177.
  • Strauß G. 2014. Maskierte Mykotoxine in fermentierten Lebens-und Futtermitteln: biochemische, mikrobiologische und analytische Aspekte. J Verbrauch Lebensm. 9:55–59.
  • Toso B, Procida G, Stefanon B. 2002. Determination of volatile compounds in cows’ milk using headspace GC-MS. J Dairy Res. 69:569–577.
  • VDLUFA. 2012. VDLUFA-Methodenbuch, Bd. III. Die Chemische Untersuchung von Futtermitteln. Darmstadt (Germany): VDLUFA-Verlag.
  • von Lengerken J, Zimmermann K. 1991. Handbuch Futtermittelprüfung. Berlin (Germany): Deutscher Landwirtschaftsverlag.
  • Weiß K, Kaiser E. 1995. Milchsäurebestimmung in Silageextrakten mit Hilfe der HPLC. Wirtschaftseig Futter. 41:69–80.
  • Weiss K, Kroschewski B, Auerbach H. 2016. Effects of air exposure, temperature and additives on fermentation characteristics, yeast count, aerobic stability and volatile organic compounds in corn silage. J Dairy Sci. 99:8053–8069.
  • Weiß K, Sommer G. 2012. Bestimmung von Estern und anderen flüchtigen organischen Substanzen (VOC) in Silageextrakten mit Hilfe der Gaschromatographie. VDLUFA-Schriftenr. 68:561–569.
  • Weißbach F, Strubelt C. 2008. Correcting the dry matter content of maize silages as a substrate for biogas production. Landtechnik. 63:82–83.

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