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反刍动物瘤胃甲烷产生及调控的研究进展 被引量:10

The Study of Methane Biochemistry Mechanism and Relation for Ruminants
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摘要 反刍动物瘤胃甲烷气体的排放是一种能量损失,同时也增强了大气的温室效应。因此,减少瘤胃内甲烷的生成对提高饲料能量利用率和改善环境具有重要意义。文章对瘤胃甲烷产生的生化机制和影响因素,以及控制瘤胃内产生甲烷的措施进行了综述。 CH4 emissions from ruminants result in not only a loss of metabolic energy,it is also a greenhouse gas and as such significantly contributes to atmospheric warning.So it is very important to decrease the methane production for increasing energy utilization rate and improving the environment.This paper provids an overview in biochemistry mechanism and influence factor of methane production and introducing the main methane inhibitors.
作者 李琳 董国忠
出处 《草食家畜》 2010年第2期41-44,共4页 Grass-Feeding Livestock
基金 国家973计划项目(2007CB108901)
关键词 反刍动物 甲烷抑制剂 瘤胃发酵 产气机制 影响因素 methane inhibitors ruminant rumen fermentation biochemistry mechanism influence factor
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参考文献36

  • 1唐佳梅.京都议定书[J].海外英语,2005(4):3-5. 被引量:1
  • 2Harper L A, Denmead O T, Freney J R. Direct measurement of methane emissions from grazing and feedlot cattle [J].Journal of Animal Science, 1999, (77): 1392- 1402.
  • 3Moss A R, Jouany J P. Methane production by ruminants :Contribution to global warning [J].Annales De Zootechnie, 2000, 49(3): 231-253.
  • 4韩继福.反刍动物瘤胃内甲烷产生及其调控[J].当代畜牧,1996,25(4):8-9. 被引量:6
  • 5IPCC :Intergovernmental panel on climate change.The Supplementary Report to the IPCC Scientific Assessment[J].NewYork. Cambridge University Press,1992.
  • 6Johoson D E, Hill T M,Carmean B R. New perspectives on ruminant methane emission [J]. Journal of Animal Science, 1991,(68): 376-379.
  • 7Moe P.W.,and Terrell H F. Methane production in dairy cows. [J ]. Dairy sci, 1979,(62): 1583-1586.
  • 8Van Kessel J S, Russell J B. The effect of pH on ruminal methanogenesis [J]. FEMS Microbiol Ecol, 1996.(20): 205-210.
  • 9Beauchemin K A, McGinn S M. Methane emissions from feedlot cattle fed barley or corn diets [J]. Journal of Animal Science, 2005, (83): 653- 672.
  • 10Ware R A, Zinn RA. Effect of pelletizing on the feeding value of rice straw in steam-flaked corn growing-finishing diets for feedlot cattle [J]. Animal Feed Science and Technology .2005, 631- 642.

二级参考文献19

  • 1Van Nevel C J, Demeyer D I. Feed additives and other interventions for decreasing methane emissions. In: Wallace R J, et al. ed.Biotechnology in Animal Feeds & Animal Feeding. Weinheim:Wiley-VCH, 1995, 329- 349.
  • 2Chaucheyras F, Fonty G, Bertin G, et al. In vitro H2 utilization by a ruminal acetogenic bacterium cultivated alone or in association with an archaea methanogen is stimulated by a probiotic strain of Saccharomyces cerevesiae . Appl Environ Microbiol , 1995, 61 ( 9 ):3466 - 3467.
  • 3Lopez S, McIntosh F M, Wallace R J. Effect of adding acetogenic bacteria on methane production by mixed rumen microorganisms.Anim Feed Sci Technol, 1999, 78: 1-9.
  • 4Asanuma N, Iwamoto M, Hino T. Effect of the addition of fumarate on methane production by ruminal microorganisms in vitro. J DaiSci, 1999, 82(4) :780-787.
  • 5Hess H D, Monsalve L M, Lascano C E, et al. Supplementation of a tropical grass diet with forage legumes and Sapindus saponaria fruits: effects on in vitro ruminal nitrogenturnover and methanogenesis. Aust J Agric Res, 2003, 54(7): 703 - 713.
  • 6Wang Y, McAllister T A, Yanke L J, et al. In vitro effects of steroidalsaponins from Yucca schidigera extract on rumen microbial protein synthesis and ruminal fermentation. J Sci Food Agric, 2000,80:2114 - 2122.
  • 7Kajikawa H, Valdes C, Hillman K, et al. Methane oxidation and its coupled electron-sink reactions in rumenal fluid. Lett Appl Microbiol, 2003, 36: 354- 357.
  • 8Johnson K A, Johnson D E. Methane emissions from cattle. J Anim Sci, 1995, 73: 2483 - 2492.
  • 9Machmuller A, Dohme F, Soliva C R, et al. Diet composition affects the level of ruminal methane suppression by medium-chain fatty acids. Aust JAgric Res, 2001, 52:713-722.
  • 10Machmuller A, Soliva C R, Kreuzer M. Methane-suppressing effect of myristic acid in sheep as affected by dietary calcium and forage proportion. Br J Nutr, 2003, 90:529 - 540.

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