[1] MUTSVANGWA T,WRIGHT T.Sub-acute ruminal acidosis (SARA) in dairy cows[M].[S.l.]:Ministry Agriculture Food and Rural Affairs,2003,30-31.
[2] NOCEK J E.Bovine acidosis:implications on laminitis[J].Journal of Dairy Science,1997,80(5):1005-1028.

[3] KREHBIEL C R,BRITTON R A,HARMON D L,et al.The effects of ruminal acidosis on volatile fatty acid absorption and plasma activities of pancreatic enzymes in lambs[J].Journal of Animal Science,1995,73(10):3111-3121.

[4] 刘烨彤,刘大程,卢德勋,等.慢性瘤胃酸中毒状态下奶山羊瘤胃细菌内几种相关细菌数量变化的研究[J].中国畜牧兽医,2009,36(3):123-126.
[5] COUNOTTE G H M,LANKHORST A,PRINS R A.Role of DL-lactic acid as an intermediate in rumen metabolism of dairy cows[J].Journal of Animal Science,1983,56(5):1222-1235.

[6] 潘晓花,付聪,王梦芝,等.日粮精粗比和添加硫胺素对奶牛瘤胃微生物菌群的影响[C]//中国畜牧兽医学会动物营养学分会全国动物营养学术研讨会论文集.北京:中国畜牧兽医学会动物营养学分会,2012.
[7] HENNING P H,HORN C H,LEEUW K J,et al.Effect of ruminal administration of the lactate-utilizing strain Megasphaera elsdenii (Me) NCIMB 41125 on abrupt or gradual transition from forage to concentrate diets[J].Animal Feed Science and Technology,2010,157(1/2):20-29.
[8] WEIMER P J,MOEN G N.Quantitative analysis of growth and volatile fatty acid production by the anaerobic ruminal bacterium Megasphaera elsdenii T81[J].Applied Microbiology and Biotechnology,2013,97(9):4075-4081.

[9] COUNOTTE G H M,PRINS R A,JANSSEN R H A M,et al.Role of Megasphaera elsdenii in the fermentation of DL-[2-
13C]lactate in the rumen of dairy cattle[J].Applied and Environmental Microbiology,1981,42(4):649-655.
[10] PRABHU R,ALTMAN E,EITEMAN M A.Lactate and acrylate metabolism by Megasphaera elsdenii under batch and steady-state conditions[J].Applied and Environmental Microbiology,2012,78(24):8564-8570.

[11] 胡红莲,卢德勋,刘大程.反刍动物瘤胃酸中毒发病机理的研究进展[J].畜牧与饲料科学,2010,31(6/7):430-432.
[12] RUSSELL J B,BALDWIN R L.Substrate preferences in rumen bacteria:evidence of catabolite regulatory mechanisms[J].Applied and Environmental Microbiology,1978,36(2):319-329.
[13] ASANUMA N,HINO T.Ability to utilize lactate and related enzymes of a ruminal bacterium,Selenomonas ruminantium[J].Animal Science Journal,2005,76(4):345-352.

[14] MAROUNEK M,FLIEGROVA K,BARTOS S.Metabolism and some characteristics of ruminal strains of Megasphaera elsdenii[J].Applied and Environmental Microbiology,1989,55(6):1570-1573.
[15] HINO T,KURODA S.Presence of lactate dehydrogenase and lactate racemase in Megasphaera elsdenii grown on glucose or lactate[J].Applied and Environmental Microbiology,1993,59(1):255-259.
[16] HINO T,SHIMADA K,MARUYAMA T.Substrate preference in a strain of Megasphaera elsdenii,a ruminal bacterium,and its implications in propionate production and growth competition[J].Applied and Environmental Microbiology,1994,60(6):1827-1831.
[17] 赵培厅,刘大程,高民,等.饲粮不同NFC/NDF对奶山羊瘤胃溶纤维丁酸弧菌、牛链球菌及埃氏巨型球菌含量变化的影响[J].畜牧与饲料科学,2011,23(10):1716-1724.
[18] HENNING P H,HORN C H,STEYN D G,et al.The potential of Megasphaera elsdenii isolates to control ruminal acidosis[J].Animal Feed Science and Technology,2010,157(1/2):13-19.
[19] 陈连民.山羊瘤胃中主要乳酸代谢菌代谢机制及其调控瘤胃酸中毒的应用研究[D].硕士学位论文.扬州:扬州大学,2017.
[20] VALENTE T N P,SAMPAIO C B,DA SILVA LIMA E,et al.Aspects of acidosis in ruminants with a focus on nutrition:a review[J].Journal of Agricultural Science,2017,9(3):90-97.

[21] JIANG X L,SU Y,ZHU W Y.Fermentation characteristics of Megasphaera elsdenii J6 derived from pig feces on different lactate isomers[J].Journal of Integrative Agriculture,2016,15(7):1575-1583.

[22] NAGARAJA T G,TITGEMEYER E C.Ruminal acidosis in beef cattle:the current microbiological and nutritional outlook[J].Journal of Dairy Science,2007,90 Suppl:E17-E38.
[23] DE BARI L,ATLANTE A,GUARAGNELLA N,et al.D-lactate transport and metabolism in rat liver mitochondria[J].Biochemical Journal,2002,365(2):391-403.

[24] 王玲玲,郭振辉.D-乳酸的生化特性及其临床研究进展[J].广东医学,2011,32(23):3144-3147.
[25] SHU Q,BIRD S H,GILL H S,et al.Immunological cross-reactivity between the vaccine and other isolates of Streptococcus bovis and Lactobacillus[J].FEMS Immunology & Medical Microbiology,1999,26(2):153-158.

[26] KUNG L,Jr,HESSION A O.Preventing in vitro lactate accumulation in ruminal fermentations by inoculation with Megasphaera elsdenii[J].Journal of Animal Science,1995,73(1):250-256.

[27] WIRYAWAN K G,BROOKER J D.Probiotic control of lactate accumulation in acutely grain-fed sheep[J].Australian Journal of Agricultural Research,1995,46(8):1555-1568.

[28] AIKMAN P C,HENNING P H,HUMPHRIES D J,et al.Rumen pH and fermentation characteristics in dairy cows supplemented with Megasphaera elsdenii NCIMB 41125 in early lactation[J].Journal of Dairy Science,2011,94(6):2840-2849.

[29] ROBINSON J A,SMOLENSKI W J,GREENING R C,et al.Prevention of acute acidosis and enhancement of feed intake in the bovine by MegaspHaera elsdenii 407A[J].Journal of Animal Science,1992,70(Suppl 1):310.
[30] LÍPEZ S,VALDÉS C,NEWBOLD C J,et al.Influence of sodium fumarate addition on rumen fermentation in vitro[J].British Journal of Nutrition,1999,81(1):59-64.
[31] NISBET D J,MARTIN S A.Effect of dicarboxylic acids and Aspergillus oryzae fermentation extract on lactate uptake by the ruminal bacterium Selenomonas ruminantium[J].Applied and Environmental Microbiology,1990,56(11):3515-3518.
[32] NISBET D J,MARTIN S A.Factors affecting L-lactate utilization by Selenomonas ruminantium[J].Journal of Animal Science,1994,72(5):1355-1361.

[33] 王洪荣,张红伟.硫胺素和硫水平对山羊人工瘤胃代谢和微生物菌群的影响[J].中国农业科学,2012,45(8):1595-1605.
[34] PAN X H,YANG L,XUE F G,et al.Relationship between thiamine and subacute ruminal acidosis induced by a high-grain diet in dairy cows[J].Journal of Dairy Science,2016,99(11):8790-8801.

[35] WANG H R,PAN X H,WANG C,et al.Effects of different dietary concentrate to forage ratio and thiamine supplementation on the rumen fermentation and ruminal bacterial community in dairy cows[J].Animal Production Science,2015,55(2):189-193.