[1] Loor J J,Hoover W H,Miller-Webster T K,et al.Biohydrogenation of unsaturated fatty acids in continuous culture fermenters during digestion of orchardgrass or red clover with three levels ofground corn supplementation[J].Journal of Animal Science,2003,81:1611-1627.
[2] Bradford B J,Harvatine K J,Allen M S.Dietary unsaturated fatty acids increase plasma glucagon-like peptide-1 and cholecystokinin and may decrease premeal ghrelin in lactating dairy cows[J].Journal of Dairy Science,2008,91:1443-1450.
[3] NRC.Nutrent Requirements of Dairy Cattle.7th rev.ed.Washington,2001,D.C:National Academy Press.
[4] Moate P J,Chalupa W,Jenkins T C,et al.A model to describe ruminal metabolism and intestinal absorption of long chain fatty acids[J].Journal of Animal Feed Science and Technology,2004,112:79-105.
[5] Singhan S,Hawke J C.The in vitro lipolysis and biohydrogenation of monogalactosyldiglycer-Ide by whole rumen contents and its fractions[J].Journal of the Science of Food and Agriculture,1979,30:603-612.
[6] Beam T M,Jenkins T C,Moate P J,et al.Palmquist.Effects of amount and source of fat on the rates of lipolysis and biohydrogenation of fatty acids in ruminal contents[J].Journal of Dairy Science,2000,83:2564-2573.
[7] Henderson C.A study of the lipase produced by Anaerovibrio lipolytica,a rumen bacterium[J].Journal of General Microbiology,1971,65:81-89.
[8] Banks A,Hilditch T P.The glyceride structure of beef tallows[J].Biochemical Jouranl,1931,25 (4):1168-1182.
[9] Theurer M L,Block E,Sanchez W K,et al.Calcium salts of polyunsaturated fatty acids deliver more essential fatty acids to the lactating dairy cow[J].Journal of Dairy Science,2009,92:2051-2056.
[10] Mackie R I,White B A,Bryant M P.Lipid metabolism in anaerobic ecosystems[J].Critical Reviews in Microbiology,1991,17(6):449-479.
[11] Pilar Gómez-Cortés,Cynthia Tyburczy,Thomas Brenna J,et al.Characterization of cis-9 trans-11 trans-15 C18:3 in milk fat by GC and covalent adduct chemical ionization tandem MS[J].Journal of Lipid Research,2009,50:2412-2420.
[12] Russell J B.Rumen microbiology and its role in ruminant nutrition[M].2002,New York:Cornell University.
[13] Maia M RG,Chaudhary L C,Bestwick C S,et al.Toxicity of unsaturated fatty acids to the biohydrogenating ruminal bacterium,Butyrivibrio fibrisolvens[J].BMC Microbiology,2010,10 (52):1471-2180.
[14] Hazlewood G P,Kemp P,Lauder D,et al.C18 unsaturated fatty acid biohydrogenation patterns of some rumen bacteria and their ability to hydrolyse exogenous phospholipids[J].British Journal of Nutrition,1976,35:293-297.
[15] Kemp P,Lander D J.Hydrogenation in vitro of α-linolenic acid to stearic acid by mixed cultures of pure strains of rumen bacteria[J].Journal of General Microbiology,1984,130:527-533.
[16] Fellner V,Sauer F D,Kramer J K.Steady-state rates of linoleic acid biohydrogenation by ruminal bacteria in continuous culture[J].Journal of Dairy Science,1995,78(8):1815-1823.
[17] Mosley E E,Powell G L,Riley M B,et al.Microbial biohydrogenation of oleic acid to trans isomers in vitro[J].Journal of Lipid Research,2002,43:290-296.
[18] Hobson P N.The rumen microbial ecosystem[M].Elsevier Science Publishing,New York,1988,285-322.
[19] Shingfleld K J,Ahvenjarvi S,Toivonen V A Arola,et al.Effect of dietary fish oil on biohydrogenation of fatty acids and milk fatty acid content in cows[J].Journal of Animal Science,2003,77:165-179.
[20] Kim Y J,Liu R H,Rychlik J L,et al.The enrichment of a ruminal bacterium (Megasphaera elsdenii YJ-4) that produces the trans-10,cis-12 isomer of conjugated linoleic acid[J].Journal of Applied Microbiology,2002,92(5):976-982.
[21] Van Nieuwenhove C P,Oliszewski R,Gonz lez S N,et al.Conjugated linoleic acid converstion by dairy bacteria cultured in MRS broth and buffalo milk[J].Letters in Applied Microbiology,2007,44 (5):467-474.
[22] Van de Vossenberg J L,Joblin K N.Biohydrogenation of C18 unsaturated fatty acids to stearic acid by a strain of Butyrivibrio hungatei from the bovine rumen[J].Letters in Applied Microbiology,2003,37 (5):424-428.
[23] Nam I S,Garnsworthy P C.Biohydrogenation of linoleic acid by rumen fungi compared with rumen bacteria[J].Journal of Applied Microbiology,2007,103 (3):551-556.
[24] Maia M R G,Chaudhary L C,Figueres L,et al.Metabolism of polyunsaturated fatty acids and their toxicity to the microflora of the rumen[J].Antonie van Leeuwenhoek,2007,91 (4):303-314.
[25] Or-Rashid M M,Odongo N E,McBride B W.Fatty acid composition of ruminal bacteria and protozoa,with emphasis on conjugated linoleic acid,vaccenic acid,and odd-chain and branched-chain fatty acids[J].Journal of Animal Science,2007,85:1228-1234.
[26] Wright D E.Hydrogenation of lipids by rumen protozoa[J].Nature,1959,184:875-876.
[27] Dawson R M,Kemp P.The effect of defaunation on the phospholipids and on the hydrogena-tion of unsaturated fatty acids in the rumen[J].Biochemical Journal,1969,115(2):351-352.
[28] Devillard E,McIntosh F M,Newbold C J.Rumen ciliate protozoa contain high concentra-tions of conjugated linoleic acids and vaccenic acid,yet do not hydrogenate linoleic acid or desa-turate stearic acid[J].British Journal of Nutrition,2006,96 (4):697-704.
[29] 0'Kelly J C,Spiers W G.Influence of host diet on the concentrations of fatty acids in rumen bacteria from cattle[J].Australian Journal of Agricultural Research,1991,42(2):243-252.
[30] Bauchert D,Leay F,Doreau M,et al.Lipid metabolism of liquid-associated and solid-adherent bacteria in rumen contents of dairy cows offered lipid-supplernented diets[J].British Journal of Nutrition,1990,63 (3):563-571. |