Grass silage pulp as a dietary component for high-yielding dairy cows

Animal - Tập 14 Số 7 - Trang 1472-1480 - 2020
Outi Savonen1, Marcia Franco1, Tomasz Stefański1, Päivi Mäntysaari1, Kaisa Kuoppala1, Marketta Rinne1
1Natural Resources Institute Finland (Luke), FI-31600Jokioinen, Finland

Tóm tắt

Từ khóa


Tài liệu tham khảo

Adler SA, Johansen A, Ingvoldstadt AK, Etun R and Gjerlaung-Enger EJ 2018. Forages – a local protein source for growing pigs. In Proceedings of the IXth Nordic Feed Science Conference, 12–13 June 2018, Uppsala, Sweden, pp. 61–65.

1971, Determination of crude oils and fats, Official Journal of European Community Legistations, 297, 995

1990

Bryant, 1983, Nutritive value of pressed herbage residues for lactating dairy cows, New Zealand Journal of Agricultural Research, 26, 79, 10.1080/00288233.1983.10420954

Damborg, 2019, Ensiled pulp from biorefining increased milk production in dairy cows compared with grass-clover silage, Journal of Dairy Science, 102, 8883, 10.3168/jds.2018-16096

Damborg, 2018, Protein value and degradation characteristics of pulp fibre fractions from screw pressed grass, clover and lucerne, Animal Feed Science and Technology, 244, 93, 10.1016/j.anifeedsci.2018.08.004

Edmonson, 1989, A body condition scoring chart for Holstein dairy cows, Journal of Dairy Science, 72, 68, 10.3168/jds.S0022-0302(89)79081-0

European Commission 1971. Commission Directive 71/250/EEC. Determination of ash which is insoluble in hydrochloric acid. Official Journal No L 155/13, 30–31 (Method B).

Franco, 2019, Grass silage for biorefinery - a meta-analysis of silage factors affecting liquid-solid separation, Grass and Forage Science, 74, 218, 10.1111/gfs.12421

Haacker, 1983, Zur kolorimetrischen Milchsäurebestimmung in Silagen mit p-Hydroxydiphenyl, Archiv für Tierernährung, 33, 505, 10.1080/17450398309425704

Hermansen JE, Jorgensen U, Laerke PE, Manevski K, Boelt B and Jensen SK 2017. Green Biomass – protein production through bio-refining. DCA raport No. 093. 68 p. Retrieved on 21 February 2019 from http://www.dca.au.dk.

Hintz, 1999, Mechanical maceration of Alfalfa, Journal of Animal Science, 77, 187, 10.2527/1999.771187x

Hong, 1988, Effects of shredding alfalfa stems on fiber digestion determined by in vitro procedures and scanning electron microscopy, Journal of Dairy Science, 71, 1536, 10.3168/jds.S0022-0302(88)79717-9

Hoover, 1986, Chemical factors involved in ruminal fiber digestion, Journal of Dairy Science, 69, 2755, 10.3168/jds.S0022-0302(86)80724-X

Huhtanen P, Ahvenjärvi S, Weisbjerg MR and Nørgaard P 2006b. Digestion and passage of fibre in ruminants. In Ruminant physiology: Digestion, metabolism and impact of nutrition on gene expression, immunology and stress (ed. K Sejrsen, T Hvelpund and MO Nielsen ), pp. 87–135. Wageningen Academic Publishers, Wageningen, the Netherlands

Huhtanen, 1998, Effects of intraruminal infusions of propionate and butyrate with two different protein supplements on milk production and blood metabolites in dairy cows receiving grass silage based diet, Journal of the Science of Food and Agriculture, 77, 213, 10.1002/(SICI)1097-0010(199806)77:2<213::AID-JSFA28>3.0.CO;2-6

Huhtanen P and Broderick G 2016. Improving utilisation of forage protein in ruminant production by crop and feed management. The multiple roles of grassland in the European bioeconomy. In Proceedings of 26th General Meeting of the European Grassland Federation, 4–8 September 2016, Trondheim, Norway, pp. 340–349.

Huhtanen, 1994, The use of internal markers to predict total digestibility and duodenal flow of nutrients in cattle given six different diets, Animal Feed Science and Technology, 48, 211, 10.1016/0377-8401(94)90173-2

Huhtanen, 2012, Production responses of lactating dairy cows fed silage-based diets to changes in nutrient supply, Livestock Science, 148, 146, 10.1016/j.livsci.2012.05.023

Huhtanen, 2006, Recent developments in forage evaluation with special reference to practical applications, Agricultural and Food Science, 15, 293, 10.2137/145960606779216317

Huhtanen, 2008, Utilization and partition of dietary nitrogen in dairy cows fed grass silage-based diets, Journal of Dairy Science, 91, 3589, 10.3168/jds.2008-1181

Huhtanen, 2007, Evaluation of the factors affecting silage intake of dairy cows: a revision of the relative silage dry-matter intake index, Animal, 1, 758, 10.1017/S175173110773673X

Huida, 1986, Comparison of dry matter contents in grass silage as determined by oven drying and gas chromatographic water analysis, Annales Agriculturae Fenniae, 25, 215

Kamm, 2016, Green biorefinery - industrial implementation, Food Chemistry, 197, 1341, 10.1016/j.foodchem.2015.11.088

Kuoppala, 2008, The effect of cutting time of grass in primary growth and the interactions between silage quality and concentrate level on milk production of dairy cows, Livestock Science, 116, 171, 10.1016/j.livsci.2007.10.002

Luke 2019. Feed tables and nutrient requirements, Natural Resources Institute Finland (Luke). Retrieved on 15 July 2019 from www.luke.fi/feedtables

MAFF 1984. Energy allowances and feeding systems for ruminants. In: ADAS Reference Book No. 433. Ministry of Agriculture, Fisheries and Food, London, UK.

McCullough, 1967, The determination of ammonia in whole blood by direct colorimetric method, Clinical Chemical Acta, 17, 10, 10.1016/0009-8981(67)90133-7

McEniry J and O’Kiely P 2013.The estimated nutritive value of three common grassland species at three primary growth harvest dates following ensiling and fractionation of press-cake. Agricultural and Food Science 22, 194–200.10.23986/afsci.6710

Mertens DR, Koegel RG and Straub RJ 1991. Altered ruminal fermentation in lactating cows fed rations containing macerated alfalfa. In 1991 research summaries, pp. 89–92. U.S. Dairy Forage Research Center, Madison, WI, USA

Niemi, 2017, Production of sugars from grass silage after steam explosion or soaking in aqueous ammonia, Industrial Crops and Products, 98, 93, 10.1016/j.indcrop.2017.01.022

Nousiainen, 2003, Prediction of the digestibility of primary growth grass silages harvested at different stages of maturity from chemical composition and pepsin-cellulase solubility, Animal Feed Science and Technology, 103, 97, 10.1016/S0377-8401(02)00283-3

Pijlman J, Koopmans S, De Haan G, Lenssinck F, Van Houwelingen KM, Sanders JPM, Deru JGC and Erisman JW 2018. Effect of the grass fibrous fraction obtained from biorefinery on n and P utilization of dairy cows. In Proceedings of the XX Nitrogen Workshop, 25–27 June 2018, Rennes, France, pp. 431–433.

Raymond, 1957, The value of the fibrous residue from leaf protein extraction as a feeding-stuff for ruminants, Journal of British Grassland Society, 12, 166, 10.1111/j.1365-2494.1957.tb00968.x

Rinne, 1997, Grass maturity effects on cattle fed silage-based diets. 2. Cell wall digestibility, digestion and passage kinetics, Animal Feed Science and Technology, 67, 19, 10.1016/S0377-8401(96)01142-X

Rinne, 2002, Digestive processes of dairy cows fed silages harvested at four stages of grass maturity, Journal of Animal Science, 80, 1986, 10.2527/2002.8071986x

Rinne, 1999, Silages harvested at different stages of grass growth v. concentrate foods as energy and protein sources in milk production, Animal Science, 69, 251, 10.1017/S1357729800051286

Rinne M, Keto L, Siljander-Rasi H and Stefanski T 2018. Grass silage for biorefinery – palatability of silage juice for growing pigs and lactating cows. In Proceedings of XVIII International Silage Conference (ed. K Gerlach and K-H Südekum), 24–26 July 2018, Bonn, Germany, pp. 184–185.

Robertson JB and Van Soest PJ 1981. The detergent system of analysis and its application to human foods. In The analyses of dietary fibre in foods (ed. WDT James and O Theander ), pp. 123–158. Marcell Dekker, New York, NY, USA

Sales, 2003, Acid-insoluble ash as a marker in digestibility studies: a review, Journal of Animal and Feed Sciences, 12, 383, 10.22358/jafs/67718/2003

Santamaría-Fernández, 2018, Biogas potential of green biomass after protein extraction in an organic biorefinery concept for feed, fuel and fertilizer production, Renewable Energy, 129, 769, 10.1016/j.renene.2017.03.012

Savonen O, Franco M, Stefanski T, Mäntysaari P, Kuoppala K and Rinne M 2018. Grass silage for biorefinery – dairy cow responses to diets based on solid fraction of grass silage. In Proceedings of the 9th Nordic Feed Science Conference, 12–13 June 2018, Uppsala, Sweden, pp. 55–60.

Somogyi, 1945, A new reagent for the determination of sugars, Journal of Biological Chemistry, 160, 61, 10.1016/S0021-9258(18)43097-9

Stefanski T, Franco M, Savonen O, Jalava T, Winquist E and Rinne M 2018. Grass silage biorefinery – separation efficiency and aerobic stability of silage, solid and liquid fractions. In Proceedings of the 9th Nordic Feed Science Conference, 12–13 June 2018, Uppsala, Sweden, pp. 153–158.

Van Soest, 1991, Methods for dietary fibre, neutral detergent fibre and nonstarch polysaccharides in relation to animal nutrition, Journal of Dairy Science, 74, 3583, 10.3168/jds.S0022-0302(91)78551-2

Weisbjerg MR, Waldemar P, Hellewing ALF and Kristensen T 2018. Can we increase digestibility of green forages by physical treatment before ensiling? In Proceedings of the 9th Nordic Feed Science Conference, 12–13 June 2018, Uppsala, Sweden, pp. 15–22.

Wilkinson, 2018, Highlights of progress in silage conservation and future perspectives, Grass and Forage Science, 73, 40, 10.1111/gfs.12327

Xiu, 2015, Development of green biorefinery for biomass utilization: a review, Trends in Renewable Energy, 1, 4, 10.17737/tre.2015.1.1.008