研究简报 Short Communications

过瘤胃蛋氨酸对奶牛瘤胃体外发酵及泌乳奶牛生产性能的影响

  • 王剑飞 ,
  • 王梦芝 ,
  • 冯春燕 ,
  • 张鑫 ,
  • 张军 ,
  • 洪伟 ,
  • 王洪荣
展开
  • 1. 上海美农生物科技股份有限公司, 上海 201807;
    2. 扬州大学动物科学与技术学院, 扬州 225009;
    3. 扬州市扬大康源乳业有限公司, 扬州 225004

收稿日期: 2015-01-15

  网络出版日期: 2015-07-07

基金资助

国家十二五科技支撑项目(2012BAD12B02)

Effects of Rumen Protected Methionine on in Vitro Ruminal Fermentation and Performance of Lactating Dairy Cows

  • WANG Jianfei ,
  • WANG Mengzhi ,
  • FENG Chunyan ,
  • ZHANG Xin ,
  • ZHANG Jun ,
  • HONG Wei ,
  • WANG Hongrong
Expand
  • 1. Shanghai Menon Animal Nutrition Technology Co., Ltd., Shanghai 201807, China;
    2. College of Animal Science and Technology, Yangzhou University, Yangzhou 225009, China;
    3. Yangda Kang Yuan Dairy Co., Ltd., Yangzhou 225004, China

Received date: 2015-01-15

  Online published: 2015-07-07

摘要

本文主要研究过瘤胃蛋氨酸对奶牛瘤胃体外发酵及泌乳奶牛生产性能的影响。体外发酵试验:分别在培养液中添加蛋氨酸、过瘤胃蛋氨酸,以无添加为对照,在培养0、2、4、8、12、16和24 h测定pH以及氨态氮、细菌蛋白和原虫蛋白含量;动物试验:选用30头健康的泌乳荷斯坦奶牛采用随机区组分为3组,分别在基础饲粮中添加13.50 g/(头·d)蛋氨酸、30.00 g/(头·d)过瘤胃蛋氨酸,以无添加为对照。预试期7 d,正试期42 d。结果表明:1)体外发酵试验,培养液pH、氨态氮和细菌蛋白含量在组间都没有显著差异(P>0.05);与对照组相比,过瘤胃蛋氨酸组和蛋氨酸组均显著提高了培养液原虫蛋白含量(P<0.05),但2个试验组间没有显著差异(P>0.05)。2)动物试验,第28天时,以及乳蛋白率和乳脂率在3组间都没有显著的差异(P>0.05)。第42天时,过瘤胃蛋氨酸组的乳蛋白率和乳脂率显著高于其他2组(P<0.05),而该组的血清尿素氮和乳尿素氮含量显著低于其他2组(P<0.05);另外,该组的饲粮粗蛋白质消化率也显著高于其他2组(P<0.05)。综上,过瘤胃蛋氨酸对奶牛瘤胃体外发酵没有显著影响,但可在一定程度上提高奶牛乳蛋白率和乳脂率和饲粮粗蛋白质的消化率。

本文引用格式

王剑飞 , 王梦芝 , 冯春燕 , 张鑫 , 张军 , 洪伟 , 王洪荣 . 过瘤胃蛋氨酸对奶牛瘤胃体外发酵及泌乳奶牛生产性能的影响[J]. 动物营养学报, 2015 , 27(7) : 2248 -2255 . DOI: 10.3969/j.issn.1006-267x.2015.07.032

Abstract

This experiment was conducted to study the effects of rumen protected methionine on in vitro ruminal fermentation and performance of lactating dairy cows. In vitro fermentation test, methionine and rumen protected methionine was added in culture medium, and culture medium without addition was used as control. After cultured for 0, 2, 4, 8, 12, 16 and 24 h, pH and the contents of ammonia nitrogen, bacterial protein and protozoal protein were determined. Animal test, thirty healthy Holstein lactating dairy cows were randomly divided into 3 groups, cows in control were fed a basal diet, and those in experimental groups were fed the basal diet supplemented with 13.50 g/(head·d) methionine and 30.00 g/(head·d)rumen protected methionine, respectively. The pretest lasted for 7 days, and the test lasted for 42 days. The results showed as follows: 1) in vitro fermentation test, rumen protected methionine had no significant effects on pH, the contents of ammonia nitrogen and bacterial protein of culture medium (P>0.05). The protozoal protein content was significantly increased by the supplementation of methionine and rumen protected methionine compared with control group (P<0.05), but there was no significant difference between the two methionine groups (P>0.05). 2) Animal test, no significant differences were detected in the percentages of milk protein and milk fat among groups on the 28th day (P>0.05). However, on the 42nd day, rumen protected methionine group was significantly higher than the other 2 groups in the percentages of milk protein and milk fat (P<0.05), and was significantly lower in serum urea nitrogen and milk urea nitrogen contents (P<0.05). Additionally, rumen protected methionine group significantly increased dietary crude protein digestibility compared with the other 2 groups (P<0.05). In conclusion, rumen protected methionine has no significant effect on in vitro ruminal fermentation, but can improve the percentages of milk protein and milk fat by improving the digestibility of dietary crude protein content of lactating dairy cows.

参考文献

[1] MERCHEN N R,TITGEMEYER E C.Manipulation of amino acid supply to the growing ruminant[J].Journal of Animal Science,1992,70(10):3238-3247.

[2] NRC.National research council,nutrient requirements of dairy cattle[S].7th ed.Washington,D.C.:National Academy of Sciences,2001.

[3] JOUANY J P,PAPON Y,LASSALAS B,et al.Effects of Isotricha,Eudiplodinium,Epidinium+Entodinium and a mixed population of rumen protozoa on the in vitro degradation of fish meal,soybean meal and casein[J].Canadian Journal of Animal Science,1992,72(4):871-880.  

[4] WALLACE R J,NEWBOLD C J,MCKAIN N.Inhibition by 1,10-phenanthroline of the breakdown of peptides by rumen bacteria and protozoa[J].Journal of Applied Bacteriology,1996,80(4):425-430.  

[5] CHALUPA W.Degradation of amino acids by the mixed rumen microbial population[J].Journal of Animal Science,1976,43(4):829-834.

[6] ONODERA R.Methionine and lysine metabolism in the rumen and the possible effects of their metabolites on the nutrition and physiology of ruminants[J].Amino Acids,1993,5(2):217-232.  

[7] CHEN Z H,BRODERICK G A,LUCHINI N D,et al.Effect of feeding different sources of rumen-protected methionine on milk production and N-utilization in lactating dairy cows[J].Journal of Dairy Science,2011,94(4):1978-1988.  

[8] PATTON R A.Effect of rumen-protected methionine on feed intake,milk production,true milk protein concentration,and true milk protein yield,and the factors that influence these effects:a meta-analysis[J].Journal of Dairy Science,2010,93(5):2105-2118.  

[9] ØRSKOV E R,MCDONALD I.The estimation of protein degradability in the rumen from incubation measurements weighted according to rate of passage[J].The Journal of Agricultural Science,1979,92(2):499-503.  

[10] 冯仰廉.反刍动物营养学[M].北京:科学出版社,2004:172-173.

[11] MENKEA K H,RAABA L,SALEWSKI A,et al.The estimation of the digestibility and metabolizable energy content of ruminant feedingstuffs from the gas production when they are incubated with rumen liquor in vitro[J].The Journal of Agricultural Science (Cambridge),1979,93:217-222.

[12] 王继贵.临床生化检验[M].2版.长沙:湖南科学技术出版社:1996.

[13] REDDY P S,REDDY G V N,REDDY M R.Utilization of sunflower straw and subabul-meal in complete diets for crossbred bulls[J].India Journal of Animal Sciences 1987,59(9):980-985.

[14] LENG R A,NOLAN J V.Nitrogen metabolism in the rumen[J].Journal of Dairy Science,1984,67(5):1072-1089.  

[15] STERN M D,VARGA G A,CLARK J H,et al.Evaluation of chemical and physical properties of feeds that affect protein metabolism in the rumen[J].Journal of Dairy Science,1994,77(9):2762-2786.  

[16] LEE C,HRISTOV A N,CASSIDY T W,et al.Rumen-protected lysine,methionine,and histidine increase milk protein yield in dairy cows fed a metabolizable protein-deficient diet[J].Journal of Dairy Science,2012,95(10):6042-6056.  

[17] GUINARD J,RULQUIN H.Effects of graded amounts of duodenal infusions of methionine on the mammary uptake of major milk precursors in dairy cows[J].Journal of Dairy Science,1995,78(10):2196-2207.  

[18] 邹阿玲,孙国军,李明强,等.过瘤胃蛋氨酸对泌乳早期奶牛生产性能的影响[J].中国奶牛,2005(2):27-29.

[19] 王永康,胡绪华,李海涛,等.补饲过瘤胃蛋氨酸提高奶牛生产性能的试验[J].乳业科学与技术,2005,27(1):33-35.

[20] MISCIATTELLI L,KRISTENSEN V F,VESTERGAARD M,et al.Milk production,nutrient utilization,and endocrine responses to increased postruminal lysine and methionine supply in dairy cows[J].Journal of Dairy Science,2003,86(1):275-286.  

[21] 王纪亭,万文菊,徐国青,等.保护性蛋氨酸对奶牛生产性能的影响[J].中国奶牛,2003(1):15-17.

[22] PISULEWSK P M,RULQUIN H,PEYRAUD J L,et al.Lactational and systemic responses of dairy cows to postruminal infusions of increasing amounts of methionine[J].Journal of Dairy Science,1996,79(10):1781-1791.  

[23] HUNTINGTON G B.Uptake and transport of nonprotein nitrogen by the ruminant gut[J].Federation Proceedings,1986,45(8):2272-2276.

[24] 王洪荣,卢德勋.饲喂玉米型日粮的生长绵羊限制性氨基酸的研究[J].动物营养学报,1999,11(4):17-28.

[25] 翟少伟.中国荷斯坦牛血液与乳液中尿素氮浓度的关系研究[J].福建畜牧兽医,2008,30(增刊):53-55.
文章导航

/