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降低反刍动物胃肠道甲烷排放的措施

DOI: 10.3969/j.issn.1006-267x.2015.10.002

Keywords: 反刍动物,胃肠道,甲烷,排放

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Abstract:

反刍动物胃肠道是甲烷的重要来源之一。降低胃肠道甲烷排放量,对减缓气候变暖和提高饲料利用率有着重要的意义。反刍动物胃肠道甲烷主要来自于瘤胃微生物的发酵。本文综述了瘤胃中的产甲烷菌种类、甲烷合成过程和降低胃肠道甲烷排放的营养调控新技术,期望为进一步制定甲烷减排措施提供参考。

References

[1]  TAVENDALE M H,MEAGHER L P,PACHECO D,et al.Methane production from in vitro rumen incubations with Lotus pedunculatus and Medicago sativa,and effects of extractable condensed tannin fractions on methanogenesis[J].Animal Feed Science and Technology,2005,123/124(Part 1):403-419.
[2]  HESS H D,TIEMANN T T,NOTO F,et al.Strategic use of tannins as means to limit methane emission from ruminant livestock[C]//The 2nd international conference on greenhouse gases and animal agriculture.Zurich,Switzerland:Elsevier,2006:164-167.
[3]  ANIMUT G,PUCHALA R,GOETSCH A L,et al.Methane emission by goats consuming diets with different levels of condensed tannins from lespedeza[J].Animal Feed Science and Technology,2008,144(3/4):212-227.
[4]  BHATTA R,SARAVANAN M,BARUAH L,et al.Effect of graded levels of tropical leaves containing-secondary metabolites on rumen fermentation pattern,protozoa population and methanogenesis in vitro[J].Advances in Animal Biosciences,2013,4(2):307.
[5]  郑会超,刘建新,吴跃明,等.单宁对反刍动物营养代谢的影响[J].黄牛杂志,2004,30(6):23-25,32.
[6]  崔振亮,孟庆翔,李德勇,等.植物蜕皮甾酮对体外瘤胃发酵及甲烷产量的影响[J].中国畜牧杂志,2014,50(19):66-70.
[7]  GRAINGER C,BEAUCHEMIN K A.Can enteric methane emissions from ruminants be lowered without lowering their production?[J].Animal Feed Science and Technology,2011,166-177:308-320.
[8]  JORDAN E,LOVETT D K,MONAHAN F,et al.Effect of refined coconut oil or copra meal on methane output and on intake and performance of beef heifers[J].Journal of Animal Science,2006,84(1):162-170.
[9]  ZHOU X,MEILE L,KREUZER M,et al.The effect of lauric acid on methane production and cell viability of methanobrevibacter ruminantium[J].Advances in Animal Biosciences,2013,4(2):458.
[10]  STAERFL S M,ZEITZ J O,KREUZER M,et al.Methane conversion rate of bulls fattened on grass or maize silage as compared with the ipcc default values,and the long-term methane mitigation efficiency of adding acacia tannin,garlic,maca and lupine[J].Agriculture,Ecosystems & Environment,2012,148:111-120.
[11]  黄江丽,王东升,张志红,等.体外产气法研究植物精油对水牛瘤胃发酵和甲烷生成的影响[J].江西科学,2014,32(3):328-331,337.
[12]  GIRALDO L A,RANILLA M J,TEJIDO M L,et al.Influence of exogenous fibrolytic enzymes and fumarate on methane production,microbial growth and fermentation in rusitec fermenters[J].British Journal of Nutrition,2007,98(4):753-761.
[13]  TEJIDO M L,RANILLA M J,GARCíA-MARTíNEZ R,et al.In vitro microbial growth and rumen fermentation of different substrates as affected by the addition of disodium malate[J].Animal Science,2005,81(1):31-38.
[14]  CHEN M,WOLIN M J.Effect of monensin and lasalocid-sodium on the growth of methanogenic and rumen saccharolytic bacteria[J].Applied and Environmental Microbiology,1979,38(1):72-77.
[15]  花万里,张振伟,石绘陆.莫能菌素对反刍动物的作用机理及影响[J].养殖与饲料,2012(10):33-34.
[16]  朱双,张爱忠,姜宁,等.细菌素及其在动物生产中的应用[J].动物营养学报,2014,26(2):327-333.
[17]  吴美容,张瑞,周俊,等.温度对产甲烷菌代谢途径和优势菌群结构的影响[J].化工学报,2014,65(5):1602-1606.
[18]  LASSEY K R.Livestock methane emission:from the individual grazing animal through national inventories to the global methane cycle[J].Agricultural and Forest Meteorology,2007,142(2/3/4):120-132.
[19]  DINI Y,GERE J,BRIANO C,et al.Methane emission and milk production of dairy cows grazing pastures rich in legumes or rich in grasses in uruguay[J].Animals,2012,2(2):288-300.
[20]  WHITFORD M F,TEATHER R M,FORSTER R J.Phylogenetic analysis of methanogens from the bovine rumen[J].BMC Microbiology,2001,1:5.
[21]  吴健豪,曲永利,王丹.反刍动物甲烷排放量营养调控技术的研究进展[J].中国牛业科学,2008,34(4):52-55,60.
[22]  胡红莲,卢德勋,高民.反刍动物甲烷的排放及其减排调控技术[J].畜牧与饲料科学,2011,32(9/10):26-29.
[23]  MEALE S J,CHAVES A V,BAAH J,et al.Methane production of different forages in in vitro ruminal fermentation[J].Asian-Australasian Journal of Animal Sciences,2012,25(1):86-91.
[24]  吴爽,张永根,夏科,等.不同粗饲料组合类型对奶牛瘤胃甲烷产量及氮代谢的影响[J].中国饲料,2014(3):29-33.
[25]  张晓明,王之盛,唐春梅,等.不同蛋白质源饲粮对肉牛能氮代谢和甲烷排放的影响[J].动物营养学报,2014,26(7):1830-1837.
[26]  UNGERFELD E M,FORSTER R J.A meta-analysis of malate effects on methanogenesis in ruminal batch cultures[J].Animal Feed Science and Technology,2011,166-167:282-290.
[27]  WOOD T A,WALLACE R J,ROWE A,et al.Encapsulated fumaric acid as a feed ingredient to decrease ruminal methane emissions[J].Animal Feed Science and Technology,2009,152(1/2):62-71.
[28]  FOLEY P A,KENNY D A,CALLAN J J,et al.Effect of DL-malic acid supplementation on feed intake,methane emission,and rumen fermentation in beef cattle[J].Journal of Animal Science,2009,87(3):1048-1057.
[29]  BEAUCHEMIN K A,MCGINN S M.Methane emissions from beef cattle:effects of fumaric acid,essential oil,and canola oil[J].Journal of Animal Science,2006,84(6):1489-1496.
[30]  张振威,王聪,刘强,等.异丁酸对西门塔尔牛增重、日粮养分消化和甲烷排放的影响[J].草业学报,2014,23(1):346-352.
[31]  牛文静,赵广永,张婷婷,等.延胡索酸二钠对氨化稻草体外瘤胃发酵甲烷及挥发性脂肪酸产量的影响[J].动物营养学报,2014,26(1):245-251.
[32]  CALLAWAY T R,MARTIN S A,WAMPLER J L,et al.Malate content of forage varieties commonly fed to cattle[J].Journal of Dairy Science,1997,80(8):1651-1655.
[33]  HAISAN J,SUN Y,BEAUCHEMIN K,et al.Effects of feeding 3-nitrooxypropanol,at varying levels,on methane emissions and rumen fermentation in lactating dairy cows[J].Advances in Animal Biosciences,2013,4:326.
[34]  MARTINEZ-FERNNDEZ G,ARCO A,ABECIA L,et al.The addition of ethyl-3-nitrooxy propionate and 3-nitrooxypropanol in the diet of sheep substantially reduces methane emissions and the effect persists over a month[J].Advances in Animal Biosciences,2013,4(2):368.
[35]  SEJRSEN K,HVELPLUND T,NIELSEN M O.Ruminant physiology:digestion,metabolism and impact of nutrition on gene expression,immunology and stress[M].Netherlands:Wageningen Academic Publishers,2006:55-84.
[36]  INTHAPANYA S,PRESTON T R,LENG R A.Mitigating methane production from ruminants; effect of calcium nitrate as modifier of the fermentation in an in vitro incubation using cassava root as the energy source and leaves of cassava or Mimosa pigra as source of protein[J].Livestock Research for Rural Development,2011,23(2).
[37]  HUYEN L T N,DO H Q,PRESTON T R,et al.Nitrate as fermentable nitrogen supplement to reduce rumen methane production[J].Livestock Research for Rural Development,2010,22(8).
[38]  刘开朗,王加启,卜登攀.2008-2009年反刍动物营养研究进展Ⅰ.瘤胃微生物多样性与功能[J].中国畜牧兽医,2010,37(2):5-14.
[39]  GOODRICH R D,GARRETT J E,GAST D R,et al.Influence of monensin on the performance of cattle[J].Journal of Animal Science,1984,58(6):1484-1498.
[40]  刘薇,文奇男,杨运玲,等.肉牛料中添加莫能菌素的意义及其应用价值[J].饲料工业,2013,34(23):62-64.
[41]  邓磊,李胜利.莫能菌素在牛奶中残留检测方法初探[J].中国奶牛,2005(3):14-16.
[42]  KALMOKOFF M L,BARTLETT F,TEATHER R M.Are ruminal bacteria armed with bacteriocins?[J].Journal of Dairy Science,1996,79(12):2297-2306.
[43]  LE VAN T D,ROBINSON J A,RALPH J,et al.Assessment of reductive acetogenesis with indigenous ruminal bacterium populations and Acetitomaculum ruminis[J].Applied and Environmental Microbiology,1998,64(9):3429-3436.
[44]  DORé J,MORVAN B,RIEU-LESME F,et al.Most probable number enumeration of H2-utilizing acetogenic bacteria from the digestive tract of animals and man[J].FEMS Microbiology Letters,1995,130(1):7-12.
[45]  CHAUCHEYRAS 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 cerevisiae[J].Applied and Environmental Microbiology,1995,61(9):3466-3467.
[46]  JIANG Q Q,BAKKEN L R.Nitrous oxide production and methane oxidation by different ammonia-oxidizing bacteria[J].Applied and Environmental Microbiology,1999,65(6):2679-2684.
[47]  HOU S B,MAKAROVA K S,SAW J H W,et al.Complete genome sequence of the extremely acidophilic methanotroph isolate V4,Methylacidiphilum Infernorum,a representative of the bacterial phylum Verrucomicrobia[J].Biology Direct,2008,3:26.
[48]  DEHORITY B A.Carbon dioxide requirement of various species of rumen bacteria[J].Journal of Bacteriology,1971,105(1):70-76.
[49]  KEMPTON T J,MURRAY R M,LENG R.Methane production and digestibility measurements in the grey kangaroo and sheep[J].Australian Journal of Biological Sciences,1976,29(3):209-214.
[50]  WRIGHT A D G,KENNEDY P,O''NEILL C J,et al.Reducing methane emissions in sheep by immunization against rumen methanogens[J].Vaccine,2004,22(29/30):3976-3985.
[51]  WILLIAMS Y J,REA S M,POPOVSKI S,et al.Reponses of sheep to a vaccination of entodinial or mixed rumen protozoal antigens to reduce rumen protozoal numbers[J].British Journal of Nutrition,2008,99(1):100-109.

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