Feed Science and Technology

Effects of Zymotic Soybean Hull on Growth Performance, Slaughter Performance and Nutrient Availability of Wulong Geese Aged from 5 to 12 Weeks

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  • Nutrition and Feed Laboratory of China Agriculture Research System, Institute of High Quality Waterfowl, Qingdao Agricultural University, Qingdao 266109, China

Received date: 2014-05-12

  Online published: 2014-09-10

Abstract

This experiment was conducted to study the effects of dietary differenet zymotic soybean hull levels on growth performan, slaughter performance and nutrient availability of Wulong geese aged from 5 to 12 weeks, and to find the appropriate supplemental level of zymotic soybean hull and its feeding effect. A total of 216 five-week-old Wulong geese were randomly divided into 6 groups with 6 replicates per group and 6 geese per replicate (half male and half female). Geese in the 6 groups were fed the basal diets supplemented with 0 (group Ⅰ, control group), 3% (group Ⅱ), 5% (group Ⅲ), 7% (group Ⅳ), 9% (group Ⅴ) and 11% (group Ⅵ) zymotic soybean hull, respectively. The experiment lasted for 8 weeks. The results showed as follows: 1) compared with the control group, the average daily gain (ADG) in groups Ⅳ and Ⅴ was significantly increased (P<0.05), and the feed/gain was significantly decreased (P<0.05); the dressed percentage and percentage of breast muscle in group Ⅳ was significantly increased (P<0.05), the percentage of breast muscle and percentage of leg muscle in group Ⅴwas significantly increased (P<0.05). 2) The availability of crude protein, ether extract, calcium, phosphorus, crude fiber, neutral detergent fiber and acid detergent fiber in groups Ⅳ and Ⅴ was significantly higher than that in control group (P<0.01). There were no significant differents in the energy availability among all groups (P>0.05). The availability of crude protein, crude fiber, neutral detergent fiber, acid detergent fiber and phosphorus of zymotic soybean hull was significantly higher than that of unfermented soybean hull (P<0.05 or P<0.01). 3) Compared with the control group, the total amino acid availability in group Ⅴ was significantly increased (P<0.05), and the most amino acid availability in groups Ⅳ and Ⅴ significantly increased (P<0.05 or P<0.01). 4) The nano oligopeptide collagen availability in groups Ⅲ and Ⅳ was significantly higher than that in group Ⅵ (P<0.05). In conclusion, zymotic soybean hull can improve the growth performance, slaughter performance and nutrient availability of Wulong geese, and the dietary appropriate supplemental level of Wulong geese aged from 5 to 12 weeks is 7% to 9%.

Cite this article

WANG Baowei, ZHANG Kailei, GE Wenhua, ZHANG Ming, SUI Ling, YUE Bin . Effects of Zymotic Soybean Hull on Growth Performance, Slaughter Performance and Nutrient Availability of Wulong Geese Aged from 5 to 12 Weeks[J]. Chinese Journal of Animal Nutrition, 2014 , 26(9) : 2761 -2771 . DOI: 10.3969/j.issn.1006-267x.2014.09.039

References

[1] 侯世忠,祝平,井长伟.大豆皮的营养价值及在饲料中的应用[J].吉林畜牧兽医,2007,28(9):18-20.

[2] 朱梅芳,朱定贵,胡传水,等.用大豆皮代替麦麸对肉猪生长性能影响的试验研究[J].饲料研究,2011,32(13):37-39.

[3] 李忠平,庄苏,杜文兴,等.大豆皮在肉鸭饲料中的应用研究[J].粮食与饲料工业,2002(11):28-30.

[4] GARCIA A D,KALSCHEUR K.Particle size and effective fiber in dairy cow diets[M].[S.l.]:Cooperative Extension Service,2005.

[5] 周旭,王春璈,李兆祥.复合微生物发酵大豆皮饲料及其制备方法[P].中国CN102524525A,2012-07-04.

[6] KIERS J L,VAN LAEKEN A E,ROMBOUTS F M,et al.In vitro digestibility of Bacillus fermented soya bean[J].International Journal of Food Microbiology,2000,60(2/3):163-169.

[7] GAGGÌA F,MATTARELLI P,BIAVATI B.Probiotics and prebiotics in animal feeding for safe food production[J].International Journal of Food Microbiology,2010,141:S15-S28.

[8] 杨凤.动物营养学[M].2版.北京:中国农业出版社,1999.

[9] NEWEY H,SMYTH D H.Cellular mechanisms in intestinal transfer of amino acids[J].The Journal of Physiology,1962,164(3):527-551.

[10] GILBERT E R,WONG E A,WEBB K E.Board-invited review:peptide absorption and utilization:implications for animal nutrition and health[J].Journal of Animal Science,2008,86(9):2135-2155.  

[11] 孙海元.小肽和半胱胺对生长肥育猪生产性能的影响及机理研究[D].硕士学位论文.邯郸:河北工程大学,2013.

[12] 符运勤,刁其玉,屠焰.益生菌对0-52周龄中国荷斯坦后备牛生长发育的影响[J].中国奶牛,2012(15):5.

[13] 柯祥军,瞿明仁,易中华,等.不同水平发酵豆粕对肉鸡生产性能及血清生化指标的影响[J].饲料工业,2007,28(18):46-50.

[14] JENSEN L S.Are peptides needed for optimum animal nutrition?[J].Feed Management,1991,42:37-40.

[15] PINCHASOV Y,MENDONCAC X,JENSEN L S.Broiler chick response to low protein diets supplemented with synthetic amino acids[J].Poultry Science,1990,69(11):1950-1955.  

[16] TRIPATHI M K,KARIM S A.Effect of yeast cultures supplementation on live weight change,rumen fermentation,ciliate protozoa population,microbial hydrolytic enzymes status and slaughtering performance of growing lamb[J].Livestock Science,2011,135(1):17-25.  

[17] MIDILLI M,TUNCER ? D.The effects of enzyme and probiotic supplementation to diets on broiler performance[J].Turkish Journal of Veterinary & Animal Sciences,2001,25(6):895-903.

[18] 沈峰,王恬,张莉莉,等.小肽制剂对肥育猪生产性能,屠宰性能及血清生化指标的影响[J].中国饲料,2006(2):30-32.

[19] 李秀,李芹,毕瑜林,等.日粮中添加微生态制剂对苏禽黄鸡生长性性能和屠宰性能的影响[J].广东饲料,2011(3):16-19.

[20] 王向荣,蒋桂韬,张旭,等.日粮添加芽孢杆菌制剂对黄羽肉鸡血清生化指标,屠宰性能和盲肠微生物的影响[J].中国饲料,2012(23):17-19.

[21] KALAVATHY R,ABDULLAH N,JALALUDIN S,et al.Effects of Lactobacillus cultures on growth performance,abdominal fat deposition,serum lipids and weight of organs of broiler chickens[J].British Poultry Science,2003,44(1):139-144.  

[22] 马文强,冯杰,刘媛媛,等.Aspergillus oryzae发酵豆粕对肉仔鸡相关消化酶活性的影响[J].饲料工业,2007,27(23):23-25.

[23] 王宝维,姜晓霞,张名爱,等.日粮添加鹅源草酸青霉产果胶酶对改善肉鸡生产性能的消化生理与免疫学机制的研究[J].中国农业科学,2011,44(15):3223-3234.

[24] 李新红,安渊,王艳梅.复合酶和益生菌制剂对獐日粮中营养物质消化利用率的影响[J].上海交通大学学报:农业科学版,2009,26(6):507-510.

[25] 胡艳,王红兵,左剑波,等.复合益生菌对断奶仔猪生产性能和养分利用率的影响[J].湖南畜牧兽医,2013(5):15-17.

[26] RAMARAO S V,REDDY M R,RAJU M Y L N,et al.Growth,nutrient utilization and immunecompetence in broiler chicken fed probiotic,gut acidifier and antibacterial compounds[J].Indian Journal of Poultry Science,2004,39(2):125-130.

[27] BOZA J J,MARTÍNEZ-AUGUSTIN O,BAR L,et al.Protein v.enzymic protein hydrolysates.Nitrogen utilization in starved rats[J].British Journal of Nutrition,1995,73(1):65-71.  

[28] 姚妙爱.低蛋白日粮中添加尿素,益生素及酶制剂对蛋鸡生产性能的影响[D].硕士学位论文.杨凌:西北农林科技大学,2006.

[29] KAWADA T,WATANABE T,TAKAISHI T,et al.Capsaicin-induced β-adrenergic action on energy metabolism in rats:influence of capsaicin on oxygen consumption,the respiratory quotient,and substrate utilization[J].Experimental Biology and Medicine,1986,183(2):250-256.  

[30] 胡启蒙,张媛媛,陈振亮,等.新型复合菌制剂对发酵床养猪饲料氮及氨基酸消化的影响[J].上海交通大学学报:农业科学版,2013,31(2):7-11.

[31] 孙占田,刘志敏,钟翠红,等.饲料肽对仔猪后期的生长,氨基酸消化率及消化酶活性的影响[J].中国饲料,2011(2):36-38.

[32] 张青青,张桂凤,邹杨.活性肽蛋白对猪的能量、蛋白质和氨基酸利用率的影响[C]//2009山东饲料科学技术交流大会论文集.泰安:山东畜牧兽医学会,2009:104-107.

[33] 张克英,陈代文,余冰,等.饲粮中添加植酸酶对断奶仔猪生长性能及蛋白质,氨基酸和磷利用率的影响[J].动物营养学报,2001,13(3):19-24.

[34] SAUER W C,OZIMEK L.Digestibility of amino acids in swine:results and their practical applications.A review[J].Livestock Production Science,1986,15(4):367-388.  

[35] 闫奎友,马秋刚,计成.畜禽饲料氨基酸利用率的影响因素[J].中国饲料,1999(1):6-8.

[36] COLNAGO G L,PENZ JR A M,JENSEN L S.Effect of response of starting broiler chicks to incremental reduction in intact protein on performance during the grower phase[J].Poultry Science,1991,70(Suppl.1):153.
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