反刍动物营养

粗饲料组合对奶牛饲粮养分消化率、 能量和氮的利用的影响

  • 夏科 ,
  • 王志博 ,
  • 郗伟斌 ,
  • 姚庆 ,
  • 李富国 ,
  • 王燕 ,
  • 赵洪波 ,
  • 张永根
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  • 1. 东北农业大学动物科学技术学院, 哈尔滨 150030;
    2. 沈阳农业大学畜牧兽医学院, 沈阳 110886

收稿日期: 2011-10-25

  网络出版日期: 2012-03-30

基金资助

农业部现代农业(奶牛)产业技术体系(nycytx0202)

Effects of Forage Combinations on Nutrient Digestibility, Utilization of Energy and Nitrogen of Diets for Dairy Cows

  • XIA Ke ,
  • WANG Zhibo ,
  • XI Weibin ,
  • YAO Qing ,
  • LI Fuguo ,
  • WANG Yan ,
  • ZHAO Hongbo ,
  • ZHANG Yonggen
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  • 1. College of Animal Science and Technology, Northeast Agricultural University, Harbin 150030, China;
    2. College of Animal Husbandry and Veterinary Medicine, Shenyang Agricultural University, Shenyang 110886, China

Received date: 2011-10-25

  Online published: 2012-03-30

摘要

本试验旨在研究粗饲料组合对奶牛饲粮养分消化率、能量和氮的利用的影响。试验采用单因素随机区组设计,将16头体重、年龄、胎次相近的,处于干奶期的健康荷斯坦奶牛分为4组,每组4头。以常用的粗饲料设计A(玉米青贮+玉米秸秆)、B(玉米青贮+羊草)、C(玉米青贮+玉米秸秆+羊草)、D(玉米青贮+苜蓿草+羊草)4种粗饲料组合的饲粮。结果表明:饲粮D干物质、有机物和中性洗涤纤维的消化率最高,显著高于其他各饲粮(P<0.05),其次为饲粮B和饲粮C,饲粮A最低,显著低于其他各饲粮(P<0.05),各饲粮的酸性洗涤纤维消化率差异不显著(P>0.05)。粗饲料组合显著影响饲粮摄入总能、能量消化率和能量代谢率(P<0.05),饲粮D甲烷能占摄入总能比显著低于其他3种饲粮(P<0.05)。各饲粮的粪氮、尿氮占摄入总氮比差异不显著(P>0.05),饲粮D的氮消化率显著高于饲粮B与饲粮C(P<0.05),且饲粮B显著高于饲粮A(P<0.05);饲粮B、饲粮D的氮利用率显著高于饲粮A(P<0.05)。由此可见,玉米青贮+苜蓿草+羊草型饲粮的养分消化率、能量和氮的利用均优于其他各饲粮,羊草与玉米秸秆之间存在正组合效应,两者搭配使用可提高玉米秸秆的消化率,优化能量和氮的利用。

本文引用格式

夏科 , 王志博 , 郗伟斌 , 姚庆 , 李富国 , 王燕 , 赵洪波 , 张永根 . 粗饲料组合对奶牛饲粮养分消化率、 能量和氮的利用的影响[J]. 动物营养学报, 2012 , 24(4) : 681 -688 . DOI: 10.3969/j.issn.1006-267x.2012.04.013

Abstract

This experiment was conducted to study the effects of forage combinations on nutrient digestibility, utilization of energy and nitrogen of diets for dairy cows. A single factor random block was used in this study. Sixteen Holstein cows were divided into four groups with four heads in each group. Four diets of different combinations were designed with common forages. The results showed as follows: the digestibility of dry matter, organic matter and neutral detergent fibers of diet D was the highest, and was significantly higher than that of the other diets (P<0.05), followed by diet B and diet C; that of diet A was the lowest, and was significantly lower than that of the other diets (P<0.05); no significant difference was detected in the digestibility of acid detergent fibers (P>0.05). There were significant effects of forage combinations on gross energy intake (GEI), digestibility and metabolic rate of energy (P<0.05), and the methane energy/gross energy intake (CH4-E/GEI) of diet D was significantly lower than that of the other diets (P<0.05). There were no significant differences in the percentage of fecal nitrogen or urinary nitrogen in total nitrogen intake among different diets (P>0.05). Nitrogen digestibility of diet D was significantly higher than that of the diet B and diet C(P<0.05), and that of diet B was also significantly higher than that of diet A (P<0.05); meanwhile, nitrogen utilization of diet D and diet B was significantly higher than that of diet A (P<0.05). In conclusion, nutrient digestibility, utilization of nitrogen and energy of the diet compounded with corn silage, alfalfa hay and Chinese wildrye are better than those of diet with the other combinations, and there are positive combination effects between corn stover and Chinese wildrye, which can improve nutrient digestibility and utilization of energy and nitrogen.

参考文献

[1] 李胜利,周鑫宇.全国奶业发展动态——截至7月8日各地奶业情况[J].中国牧业通讯,2010(15):4-6.

[2] 李胜利,周鑫宇,刘玉满,等.2010年中国奶业回顾与展望[J].中国畜牧杂志,2011,47(2):33-37.

[3] 王加启,李树聪.不同日粮类型对奶牛营养代谢影响的研究 //动物营养研究进展.北京:中国农业科学技术出版社,2004:124-133.

[4] 李胜利,张胜利,刘建新,等.奶牛产业与技术进展[J].中国畜牧杂志,2011,47(4):42-46.

[5] ODONGO N E,BAGG R,VESSIE G,et al.Long-term effects of feeding monensin on methane production in lactating dairy cows[J].Journal of Dairy Science,2007,90(4):1781-1788.  

[6] 张丽英.饲料分析及饲料质量检测技术[M].北京:中国农业大学出版社,2003.

[7] 张元庆,魏吉安,孟庆翔.不同植物细胞壁的体外发酵特征及其对甲烷产生的贡献[J].畜牧兽医学报,2006,37(10):992-998.

[8] 卢德勋.系统动物营养学导论[M].北京:中国农业出版社,2004.

[9] 杨凤.动物营养学[M].北京:中国农业出版社,2006.

[10] 娜仁花,董红敏.日粮类型对奶牛能量代谢的影响[J].中国饲料,2011(18):24-27.

[11] 樊霞,董红敏,韩鲁佳,等.肉牛甲烷排放影响因素的试验研究[J].农业工程学报,2006,22(8):179-183.

[12] 李霞,金海,薛树媛,等.内蒙古双峰驼甲烷产生量的体外估测[J].饲料工业,2007(9):38-40.

[13] 游玉波.肉牛甲烷排放测定与估算模型的研究[D]博士学位论文.北京:中国农业科学院,2008:25-47.

[14] 娜仁花.不同日粮对奶牛瘤胃甲烷及氮排放的影响研究[D]博士学位论文.北京:中国农业科学院,2010:36-52.

[15] 韩继福,冯仰廉,张晓明,等.阉牛不同日粮的纤维消化、瘤胃内VFA对甲烷产生量的影响[J].中国兽医学报,1997,17(3):278-280.

[16] NIDERKORN V,BAUMONT R.Associative effects between forages on feed intake and digestion in ruminants[J].Animal,2009,3(7):951-960.  

[17] ZHANG X D,WANG J K,CHEN W J,et al.Associative effects of supplementing rice straw-based diet with cornstarch on intake,digestion,rumen microbes and growth performance of Huzhou lambs[J].Animal Science Journal,2010,81(2):172-179.  

[18] LECHARTIER C,PEYRAUD J L.The effects of starch and rapidly degradable dry matter from concentrate on ruminal digestion in dairy cows fed corn silage-based diets with fixed forage proportion[J].Journal of Dairy Science,2011,94(5):2440-2454.  

[19] ROBINSON P H,GETACHEW G,CONE J W.Evaluation of the extent of associative effects of two groups of four feeds using an in vitro gas production procedure[J].Animal Feed Science and Technology,2009,150(1/2):9-17.

[20] NIDERKORN V,BAUMONT R,LE MORVAN A,et al.Occurrence of associative effects between grasses and legumes in binary mixtures on in vitro rumen fermentation characteristics[J].Journal of Animal Science,2011,89(4):1138-1145.  

[21] 李鹏,林雪彦,苏鹏程,等.饲粮能氮瘤胃释放同步化对泌乳奶牛瘤胃发酵、生产性能及氮平衡的影响[J].动物营养学报,2011,23(9):1505-1512.

[22] BIERMAN S,ERICKSON G E,KLOPFENSTEIN T J,et al.Evaluation of nitrogen and organic matter balance in the feedlot as affected by level and source of dietary fiber[J].Journal of Animal Science,1999,77(7):1645-1653.

[23] WEISS W P,WILLETT L B,ST-PIERRE N R,et al.Varying forage type,metabolizable protein concentration,and carbohydrate source affects manure excretion,manure ammonia,and nitrogen metabolism of dairy cows[J].Journal of Dairy Science,2009,92(11):5607-5619.  

[24] 周海柱,王军,张涛,等.不同饲粮结构对牛粪中微生物类群及氮磷含量的影响[J].中国畜牧杂志,2011,47(17):34-36,46.

[25] TAMMINGA S.Nutrition Management of dairy cows as a contribution to pollution control[J].Journal of Dairy Science,1992,75(1):345-357.  

[26] MACREA J C.Advancing our understanding amino acid utilization and metabolism in ruminan //Nutrient management of food animals to enhance and protect the environment.Boca Raton:CRC Lewis Publishers,1996:73-89.

[27] MULLIGAN F J,DILLON P,CALLAN J J,et al.Supplementary concentrate type affects nitrogen excretion of grazing dairy cows[J].Journal of Dairy Science,2004,87(10):3451-3460.  

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