反刍与草食动物营养与饲料 RUMINANT AND HERBIVORE NUTRITION AND FEED

蒸汽压片玉米对平凉红牛肉用性能的影响

  • 白云鹏 ,
  • 雷赵民 ,
  • 吴建平 ,
  • 赵生国 ,
  • 张科 ,
  • 曾金焱 ,
  • 焦婷 ,
  • 豆思远 ,
  • 李玉
展开
  • 1. 甘肃农业大学动物科学技术学院, 兰州 730070;
    2. 甘肃省农业科学院畜草与绿色农业研究所, 兰州 730070;
    3. 西北农林科技大学动物科技学院, 杨凌 712100;
    4. 甘肃农业职业技术学院畜牧兽医系, 兰州 370020;
    5. 甘肃农业大学草业学院, 兰州 730070;
    6. 甘肃省动物疫病预防控制中心, 兰州 730046;
    7. 甘肃省畜牧技术推广总站, 兰州 730030
白云鹏(1995-),男,甘肃白银人,硕士研究生,从事动物遗传育种与繁殖学研究。E-mail:1358972699@qq.com

收稿日期: 2019-12-11

  网络出版日期: 2020-06-16

基金资助

甘肃省草原生态治理修复科技支撑项目(甘肃省林草局专项);甘肃省科技重大专项计划:肉牛高效生态营养技术体系研究与示范(17ZD2NC020);兰州市科技局重点项目:玉米秸秆饲料化关键技术集成与示范推广(2012-2-159);甘肃省现代农业(草食畜)产业技术体系专项(GARS-CSX-1);农业部公益性行业(农业)科研专项:北方作物秸秆饲用化利用技术研究与示范(201503134)

Effects of Steam-Flaked Corn on Meat Performance of Pingliang Red Cattle

  • BAI Yunpeng ,
  • LEI Zhaomin ,
  • WU Jianping ,
  • ZHAO Shengguo ,
  • ZHANG Ke ,
  • ZENG Jinyan ,
  • JIAO Ting ,
  • DOU Siyuan ,
  • LI Yu
Expand
  • 1. College of Animal Science and Technology, Gansu Agricultural University, Lanzhou 730070, China;
    2. Institute of Livestock Grass and Green Agriculture, Gansu Academy of Agricultural Sciences, Lanzhou 730070, China;
    3. Forestry University, Yangling 712100, China;
    4. Gansu Agriculture Technology College, Lanzhou 730020, China;
    5. Pratacultural College, Gansu Agriculture University, Lanzhou 730070, China;
    6. Gansu Provincial Center for Animal Disease Control and Prevention, Lanzhou 730046, China;
    7. Gansu Livestock Production Technique Central Station, Lanzhou 730030, China

Received date: 2019-12-11

  Online published: 2020-06-16

摘要

本试验旨在研究蒸汽压片玉米对平凉红牛生长性能、屠宰性能、肉品质、常规营养成分及胴体主要部位肉块产量的影响。选取20月龄左右、体重为(403.24±5.14) kg的健康平凉红牛(阉牛)45头,随机分为3组,每组3个重复,每个重复5头牛。各组试验牛分别饲喂蒸汽压片玉米替代0(SFC0组)、50%(SFC50组)、100%(SFC100组)粉碎玉米的试验饲粮。预试期10 d,正试期150 d。饲喂结束后屠宰并测定屠宰性能、肉品质、常规营养成分和胴体主要部位肉块产量。结果表明:1) SFC100组的平均日增重显著高于SFC50组和SFC0组(P<0.05),且SFC50组显著高于SFC0组(P<0.05);SFC100组的料重比显著低于SFC50组和SFC0组(P<0.05),且SFC50组显著低于SFC0组(P<0.05)。2) SFC100组和SFC50组的24 h空腹重显著高于SFC0组(P<0.05)。各组间的屠宰率、净肉率、胴体产肉率和肉骨比均没有显著差异(P>0.05)。3) SFC100组的熟肉率显著高于SFC0组和SFC50组(P<0.05),SFC100组和SFC50组的失水率显著低于SFC0组(P<0.05),SFC100组的蒸煮损失和水分含量显著低于SFC0组(P<0.05),SFC100组的pH显著低于SFC50组和SFC0组(P<0.05)。4) SFC100组的高档部位肉块产量、高档部位肉块占活体比例及优质部位肉块产量显著高于SFC50组和SFC0组(P<0.05),且SFC50组显著高于SFC0组(P<0.05)。由此可见,饲粮中蒸汽压片玉米替代粉碎玉米可以在不影响屠宰性能的基础上,提高平凉红牛的生长性能、肉品质及胴体主要部位肉块产量。本试验条件下,在饲粮中使用蒸汽压片玉米100%替代粉碎玉米效果最佳。

本文引用格式

白云鹏 , 雷赵民 , 吴建平 , 赵生国 , 张科 , 曾金焱 , 焦婷 , 豆思远 , 李玉 . 蒸汽压片玉米对平凉红牛肉用性能的影响[J]. 动物营养学报, 2020 , 32(6) : 2700 -2709 . DOI: 10.3969/j.issn.1006-267x.2020.06.029

Abstract

This experiment was conducted to study the effects of steam-flaked corn on growth performance, slaughter performance, meat quality, regular nutritional component and carcass main parts meat yield of Pingliang red cattle. Forty-five 20-month-old healthy Pingliang red cattle (steers) with similar body weight of (403.24±5.14) kg were randomly divided into 3 groups with 3 replicates per group and 15 cattle per replicate. Cattle in the 3 groups were fed the experimental diets which used steam-flaked corn replaced 0 (FC0 group), 50% (SFC50 group) and 100% (SFC100 group) milling corn, respectively. The pre-experimental period lasted for 10 days, and the experimental period lasted for 150 days. At the end of feeding, cattle were slaughter and the slaughter performance, meat quality, regular nutritional component and carcass main parts meat yield were measured. The results showed as follows: 1) the daily weight gain of SFC100 group was significantly higher than that of SFC50 group and SFC0 group (P<0.05), and SFC50 group was significantly higher than that of SFC0 group (P<0.05); the feed to gain ratio of SFC100 group was significantly lower than that of SFC50 group and SFC0 group (P<0.05), and SFC50 group was significantly lower than SFC0 group (P<0.05). 2) The 24 h fasting weight of SFC100 group and SFC50 group was significantly higher than SFC0 group (P<0.05). There were no significant differences in slaughter rate, net meat rate, carcass meat rate and meat to bone ratio among all groups (P>0.05). 3) The cooked meat rate of SFC100 group was significantly higher than that of SFC50 group and SFC0 group (P<0.05), the water loss rate of SFC100 group and SFC50 group was significantly lower than that of SFC0 group (P<0.05), the cooking loss moisture content of SFC100 group were significantly lower than those of SFC0 group (P<0.05), and the pH of SFC100 group was significantly lower than that of SFC50 group and SFC0 group (P<0.05). 4) The meat yield of high-grade parts, meat proportion of high-grade parts in living body and meat yield of high-quality parts of SFC100 group were significantly higher than those of SFC50 group and SFC0 group (P<0.05), and SFC50 group was significantly higher than SFC0 group (P<0.05). In conclusion, dietary steam-flaked corn replace milling corn can improve the growth performance, meat quality and carcass main parts meat yield of Pingliang red cattle without affecting the slaughter performance. Under this experiment condition, dietary steam-flaked corn replace 100% milling corn has the best effect.

参考文献

[1] 曹兵海,李俊雅,王之盛,等.2018年肉牛牦牛产业技术发展报告[J].中国畜牧杂志,2019,55(3):133-137.
[2] 马志锋,曹效锋,李新科,等.日本和牛冻精杂交本地"平凉红牛"效果[J].畜牧兽医杂志,2017,36(4):12-14,17.
[3] 孙芳,刘利,王嘉博,等.不同饲料类型对犊牛肉品质影响[J].中国牛业科学,2013,39(6):19-22.
[4] 段淇斌,张长庆,赵冬青,等.谷饲育肥对牛肉中脂肪酸组成及含量的影响[J].中国牛业科学,2018,44(1):4-7.
[5] SCHWANDT E F,HUBBERT M E,THOMSON D U,et al.A survey of starch availability of steam-flaked corn in commercial feedlots evaluating roll size and flake density[J].The Professional Animal Scientist,2016,32(5):550-560.  
[6] ZINN R A.Influence of flake density on the comparative feeding value of steam-flaked corn for feedlot cattle[J].Journal of Animal Science,1990,68(3):767-775.  
[7] 刁其玉,杨茁萌,陈荆芬.草颗粒饲料在牛瘤胃内的降解与饲养价值[J].草业科学,2001,18(6):43-47.
[8] RAMOS-AVINA D,PLASCENCIA A,ZINN R.Influence of dietary nonstructural carbohydrate concentration on growth performance and carcass characteristics of Holstein steers[J].Asian-Australasian Journal of Animal Sciences,2018,31(6):859-863.  
[9] VASCONCELOS J T,GALYEAN M L.Nutritional recommendations of feedlot consulting nutritionists:the 2007 Texas tech university survey[J].Journal of Animal Science,2007,85(10):2772-2781.  
[10] DEHGHAN-BANADAKY M,CORBETT R,OBA M.Effects of barley grain processing on productivity of Cattle[J].Animal Feed Science and Technology,2007,137(1/2):1-24.
[11] HALES K E,MCMENIMAN J P,LEIBOVICH J,et al.Effects of varying bulk densities of steam-flaked corn and dietary roughage concentration on in vitro fermentation,performance,carcass quality,and acid-base balance measurements in finishing steers[J].Journal of Animal Science,2010,88(3):1135-1147.  
[12] 张亚伟,魏曼琳,吴浩,等.蒸汽压片玉米替代饲粮中不同比例粉碎玉米对鲁西阉黄牛生长性能、屠宰性能和肉品质与常规化学成分的影响[J].动物营养学报,2017,29(4):1167-1174.
[13] WOOLSONCROFT M A,YOUNGERS M E,MCPHILLIPS L J,et al.Effects of exercise and roughage source on the health and performance of receiving beef calves[J].The Professional Animal Scientist,2018,34(2):183-191.  
[14] ZINN R A,BARRERAS A,CORONA L,et al.Comparative effects of processing methods on the feeding value of maize in feedlot cattle[J].Nutrition Research Reviews,2011,24(2):183-190.  
[15] 毛红霞,雷俊杰,赵光平,等.蒸汽压片玉米对犏牛冷季育肥效果的影响[J].中国草食动物科学,2017,37(1):31-33.
[16] 刘萍,孟庆翔,解祥学,等.蒸汽压片玉米及膨化大豆对奶公犊生长和屠宰性能的影响[J].中国农业大学学报,2013,18(2):124-129.
[17] 李克广,王利琴.动物营养与饲料加工[M].武汉:华中科技大学出版社,2012.
[18] XIONG Y,BARTLE S J,PRESTON R L.Improved enzymatic method to measure processing effects and starch availability in sorghum grain[J].Journal of Animal Science,1990,68(11):3861-3870.  
[19] VAN SOEST P J,ROBERTSON J B,LEWIS B A.Methods for dietary fiber,neutral detergent fiber,and nonstarch polysaccharides in relation to animal nutrition[J].Journal of Dairy Science,1991,74(10):3583-3597.  
[20] 昝林森.牛生产学[M].2版.北京:中国农业出版社,2007.
[21] 韩冬洁,余群力,韩玲,等.西门塔尔杂交牛与平凉红牛不同部位肉品质分析[J].甘肃农业大学学报,2016,51(5):107-115.
[22] 梁国飞,李娜,杨加梅.蒸汽压片玉米加工工艺及其对牛生产性能的影响[J].饲料工业,2007,28(5):57-60.
[23] ZINN R A,ALVAREZ E G,MONTAÑO M F,et al.Influence of tempering on the feeding value of rolled corn in finishing diets for feedlot cattle[J].Journal of Animal Science,1998,76(9):2239-2246.  
[24] 陈涛,高艳霞,曹玉凤,等.蒸汽压片玉米对奶牛生产性能和氮磷排放影响的研究[J].畜牧兽医学报,2009,40(12):1769-1775.
[25] KALSCHEUR K F,TETER B B,PIPEROVA L S,et al.Effect of dietary forage concentration and buffer addition on duodenal flow of trans-C18:1 fatty acids and milk fat production in dairy cows[J].Journal of Dairy Science,1997,80(9):2104-2114.  
[26] MAY M L,QUINN M J,DEPENBUSCH B E,et al.Dried distillers grains with solubles with reduced corn silage levels in beef finishing diets[J].Journal of Animal Science,2010,88(7):2456-2463.  
[27] LEIBOVICH J,VASCONCELOS J T,GALYEAN M L.Effects of corn processing method in diets containing sorghum wet distillers grain plus solubles on performance and carcass characteristics of finishing beef cattle and on in vitro fermentation of diets[J].Journal of Animal Science,2009,87(6):2124-2132.  
[28] 李瑞景.蒸汽压片玉米对肉牛生长性能和肉品质的影响[D].硕士学位论文.保定:河北农业大学,2011.
[29] 栗明月,方洛云,苏汉书,等.竹叶提取物对奶牛瘤胃体外发酵参数及产气量的影响[J].动物营养学报,2019,31(4):1816-1822.
[30] 辛杭书,许曾曾,张跃文,等.蒸汽压片技术对玉米营养价值及奶牛饲用效果的影响[J].中国畜牧杂志,2006,42(10):57-60.
[31] 张婷,张彬,张佩华,等.不同能量水平及玉米加工饲粮对瘤胃体外发酵参数的影响[J].草业学报,2015,24(12):102-111.
[32] ZHAO S G,LI G D,ZHENG N,et al.Steam explosion enhances digestibility and fermentation of corn stover by facilitating ruminal microbial colonization[J].Bioresource Technology,2018,253:244-251.
[33] WANG C,LIU Q,GUO G,et al.Effects of substituting corn with steam-flaked sorghum on growth,digestion and blood metabolites in young Cattle fed feedlot diets[J].Animal Production Science,2016,58(2):299-306.
[34] 曹玉伟,丁健,李艳玲.蒸汽压片玉米在奶牛生产中的应用研究进展[J].中国畜牧兽医,2018,45(5):1211-1218.
[35] 刘萍,孟庆翔,解祥学,等.蒸汽压片玉米及膨化大豆对犊牛生长性能和屠宰性能的影响[C]//中国畜牧兽医学会动物营养学分会第十一次全国动物营养学术研讨会论文集.长沙:中国畜牧兽医学会,2012.
[36] BUTTREY E K,COLE N A,JENKINS K H,et al.Effects of twenty percent corn wet distillers grains plus solubles in steam-flaked and dry-rolled corn-based finishing diets on heifer performance,carcass characteristics,and manure characteristics[J].Journal of Animal Science,2012,90(13):5086-5098.  
[37] QIAO M,FLETCHER D L,SMITH D P,et al.The effect of broiler breast meat color on pH,moisture,water-holding capacity,and emulsification capacity[J].Poultry Science,2001,80(5):676-680.  
[38] JEREMIAH L E,TONG A K W,GIBSON L L.The usefulness of muscle color and pH for segregating beef carcasses into tenderness groups[J].Meat Science,1991,30(2):97-114.  
[39] MOUNIER L,DUBROEUCQ H,ANDANSON S,et al.Variations in meat pH of beef bulls in relation to conditions of transfer to slaughter and previous history of the animals[J].Journal of Animal Science,2006,84(6):1567-1576.  
[40] BOLEMAN S J,MILLER R K,BUYCK M J,et al.Influence of realimentation of mature cows on maturity,color,collagen solubility,and sensory characteristics[J].Journal of Animal Science,1996,74(9):2187-2194.  
[41] MILLER R K,TATUM J D,CROSS H R,et al.Effects of carcass maturity on collagen solubility and palatability of beef from grain-finished steers[J].Journal of Food Science,1983,48(2):484-486.  
[42] ERJAEI K,ZALI A,GANJKHANLOO M,et al.Effects of wheat processing and dietary fat sources on performance,ruminal and blood parameters,and steak fatty acids profile of Holstein steers[J].Livestock Science,2012,149(1/2):74-82.
[43] 魏曼琳.蒸汽压片玉米对瘤胃发酵和肉牛生长及胴体品质的影响[D].硕士学位论文.北京:中国农业大学,2006.
[44] 万发春,王文娟,刘晓牧,等.玉米不同加工方式对肉牛育肥性能的影响[J].中国畜牧兽医,2012,39(6):113-116.
[45] BUTTREY E K,JENKINS K H,LEWIS J B,et al.Effects of 35% corn wet distillers grains plus solubles in steam-flaked and dry-rolled corn-based finishing diets on animal performance,carcass characteristics,beef fatty acid composition,and sensory attributes1[J].Journal of Animal Science,2013,91(4):1850-1865.  
[46] BARRERAS A,CASTRO-PÉREZ B I,LÓPEZ-SOTO M A,et al.Influence of ionophore supplementation on growth performance,dietary energetics and carcass characteristics in finishing cattle during period of heat stress[J].Asian-Australasian Journal of Animal Sciences,2013,26(11):1553-1561.  
文章导航

/