研究简报 Short Communications

饲粮铜水平对冬毛期雌性蓝狐生长性能、营养物质消化率、血清生化指标及毛皮品质的影响

  • 刘志 ,
  • 吴学壮 ,
  • 郭强 ,
  • 张铁涛 ,
  • 郭俊刚 ,
  • 高秀华 ,
  • 杨福合 ,
  • 邢秀梅
展开
  • 1. 中国农业科学院饲料研究所, 北京 100081;
    2. 吉林省特种经济动物分子生物学省部共建实验室, 长春 130112;
    3. 中国农业科学院特产研究所, 长春 130112

收稿日期: 2015-12-25

  网络出版日期: 2016-06-27

基金资助

国家自然资源平台专项"特种经济动物种质资源共享平台"(2005DKA21102)

Effects of Dietary Copper Level on Growth Performance, Nutrient Digestibility, Serum Biochemical Parameters and Fur Quality of Female Blue Foxes in Fur Development Period

  • LIU Zhi ,
  • WU Xuezhuang ,
  • GUO Qiang ,
  • ZHANG Tietao ,
  • GUO Jungang ,
  • GAO Xiuhua ,
  • YANG Fuhe ,
  • XING Xiumei
Expand
  • 1. Institute of Feed Research, Chinese Academy of Agriculture Sciences, Beijing 100081, China;
    2. Institute of Economic Animal and Plant Science, Chinese Academy of Agriculture Sciences, Jilin 130112, China;
    3. State Key Laboratory of Special Economic Animal Molecular Biology, Jilin 130112, China

Received date: 2015-12-25

  Online published: 2016-06-27

摘要

本试验旨在研究饲粮铜水平对冬毛期雌性蓝狐生长性能、营养物质消化率、血清生化指标及毛皮品质的影响。试验选取115日龄左右的健康雌性蓝狐50只,随机分成5组,每组10个重复,每个重复1只。以五水硫酸铜(CuSO4·5H2O)为铜源,在基础饲粮中分别添加0、12.22、32.22、72.22、152.22 mg/kg的铜配成5种试验饲粮,5种试验饲粮铜水平分别为7.78(Ⅰ组,作为对照组)、20(Ⅱ组)、40(Ⅲ组)、80(Ⅳ组)、160 mg/kg(Ⅴ组)。预试期为7 d,正试期为60 d。结果表明:1)Ⅲ、Ⅳ和Ⅴ组蓝狐的平均日增重显著高于对照组(P<0.05),料重比显著低于对照组(P<0.05);各组蓝狐的终末体重及平均日采食量差异不显著(P>0.05)。2)各组蓝狐的干物质消化率、蛋白质消化率及氮沉积差异不显著(P>0.05);Ⅲ、Ⅳ组蓝狐的脂肪消化率显著高于对照组(P<0.05),其他各组间差异不显著(P>0.05);铜排出量随着饲粮铜水平的升高极显著的增加(P<0.01)。3)Ⅴ组蓝狐血清总蛋白和白蛋白含量显著高于对照组和Ⅱ组(P<0.05);Ⅴ组蓝狐血清尿素氮含量显著高于Ⅱ组(P<0.05);各组蓝狐血清铜蓝蛋白活性差异不显著(P>0.05),Ⅳ组蓝狐血清铜锌超氧化物歧化酶活性显著高于对照组及Ⅱ和Ⅲ组(P<0.05)。4)Ⅴ组蓝狐肝脏铜含量显著高于对照组(P<0.05),血清铜、锌、铁含量各组间差异不显著(P>0.05)。5)饲粮铜水平并未显著影响蓝狐的体长和干皮长(P>0.05);Ⅲ和Ⅴ组蓝狐针毛长和绒毛长显著大于Ⅱ和Ⅳ组(P<0.05);Ⅴ组蓝狐皮张颜色显著深于对照组(P<0.05)。由此可见,在饲粮中添加32.22 mg/kg铜即铜水平为40.00 mg/kg时,冬毛期雌性蓝狐可获得较好的生长性能、营养物质消化率及毛皮品质,同时铜的排放量较低。

本文引用格式

刘志 , 吴学壮 , 郭强 , 张铁涛 , 郭俊刚 , 高秀华 , 杨福合 , 邢秀梅 . 饲粮铜水平对冬毛期雌性蓝狐生长性能、营养物质消化率、血清生化指标及毛皮品质的影响[J]. 动物营养学报, 2016 , 28(6) : 1841 -1849 . DOI: 10.3969/j.issn.1006-267x.2016.06.027

Abstract

An experiment was conducted to investigate the effects of dietary copper (Cu) level on growth performance, nutrient digestibility, serum biochemical parameters and fur quality of female blue foxes in fur development period. Sixty healthy 115-day-old female blue foxes were randomly allocated to 5 groups with 10 replicates each group and 1 fox per replicate. The foxes in the five groups were fed experimental diets with Cu supplemental levels of 0, 12.22, 32.22, 72.22 and 152.22 mg/kg using copper sulfate pentahydrate (CuSO4·5H2O) as copper source, and the Cu levels in the experimental diets were 7.78 (group Ⅰ, as control group), 20.00 (group Ⅱ), 40.00 (group Ⅲ), 80.00 (group Ⅳ) and 160.00 mg/kg (group Ⅴ), respectively. The pre-test period lasted for 7 days, and the trial lasted for 60 days. The results showed as follows: 1) foxes in groups Ⅲ, Ⅳ and Ⅴ had higher average daily gain (ADG) and lower feed/gain (F/G) compared with those in control group (P<0.05). Besides, dietary Cu level did not affect the average daily feed intake (ADFI) and final body weight (FBW) (P>0.05). 2) The digestibility of dry matter and protein, and nitrogen retention were not affected by dietary Cu level (P>0.05). Foxes in groups Ⅲ and Ⅳ had higher fat digestibility compared with control group (P<0.05). Cu output was significantly raised with the dietary Cu level increasing (P<0.01). 3) Serum total protein (TP) and albumin (ALB) contents in group Ⅴ were significantly higher than those in control group and group Ⅱ (P<0.05). Serum urea nitrogen (UN) content in group Ⅴ was significantly higher than that in group Ⅱ (P<0.05). The activity of serum Cu and zinc (Zn) superoxide dismutase (Cu-Zn SOD) in group Ⅳ was significantly higher than that in control group and group Ⅱ (P<0.05), but no significant difference was found in serum ceruloplasmin (Cp) activity among the five groups (P>0.05). 4) Liver Cu content in group Ⅴ was significantly higher than that in control group (P<0.05), but no significant differences were observed in serum Cu, Zn and iron (Fe) contents among the five groups (P>0.05). 5) The body length and dry fur length were not affected by dietary Cu level (P>0.05). Guard hair length and underfur length in groups Ⅲ and Ⅴwere significantly higher than those in groups Ⅱ and Ⅳ (P<0.05). Foxes in group Ⅴ had a darker fur color compared with control group (P<0.05). It is concluded that diet supplemented with 32.22 mg/kg Cu (Cu level is 40.00 mg/kg) can promote growth performance, nutrient digestibility and fur quality of female blue foxes in fur development period. Meanwhile, Cu excretion is relatively low when foxes are fed 40.00 mg/kg Cu diet.

参考文献

[1] LEOSCHKE W L.Nutrition and nutritional physiology of the fox:a historical perspective[M].Indiana:Trafford Publishing,2011.
[2] NRC.Mineral tolerance of animals[S].2nd ed.Washington,D.C.:National Academy Press,2005.
[3] 郭永佳,佟煜人.养狐实用新技术[M].北京:金盾出版社,2005.
[4] AULERICH R J,RINGER R K.Can copper sulphate in mink feed give advantages?[J].Vara Palsdjur,1977,48(3):103-105.
[5] AULERICH R J,RINGER R K,BLEAVINS M R,et al.Effects of supplemental dietary copper on growth,reproductive performance and kit survival of Standard dark mink and the acute toxicity of copper to mink[J].Journal of Animal Science,1982,55(2):337-343.
[6] WU X Z,LIU Z,ZHANG T T,et al.Effects of dietary copper on nutrient digestibility,tissular copper deposition and fur quality of growing-furring mink (Mustela vison)[J].Biological Trace Element Research,2014,158(2):166-175.  
[7] ZHONG W,LIU H L,LUO G L,et al.Dietary copper supplementation improves pelt characteristics of female silver fox (Vulpes fulva) during the winter fur-growing season[J].Animal Science Journal,2014,85(7):757-762.  
[8] 白玉妍,张浩,叶纯子,等.蛋氨酸铜、蛋氨酸锌对乌苏里貉冬毛生长期体重及毛皮质量的影响[J].黑龙江畜牧兽医,2009(7):113-114.
[9] 刘志,张铁涛,郭强,等.饲粮铜水平对育成期蓝狐生长性能、营养物质消化率及氮代谢的影响[J].动物营养学报,2013,25(7):1497-1503.
[10] NRC.Nutrient requirements of mink and foxes[S].2nd ed.Washington,D.C.:National Academy Press,1982.
[11] 崔虎.日粮蛋白质和蛋氨酸水平对蓝狐生产性能及营养物质代谢的影响[D].硕士学位论文.北京:中国农业科学院,2012.
[12] DAHLMAN T,KIISKINEN T,MÄKELÄ J,et al.Digestibility and nitrogen utilisation of diets containing protein at different levels and supplemented with DL-methionine,L-methionine and L-lysine in blue fox (Alopex lagopus)[J].Animal Feed Science and Technology,2002,98(3/4):219-325.
[13] 郭强,张铁涛,刘志,等.饲粮锌水平对冬毛期蓝狐生长性能、营养物质消化率、氮代谢及毛皮质量的影响[J].动物营养学报,2014,26(5):1414-1420.
[14] SHELTON N W,TOKACH M D,NELSSEN J L,et al.Effects of copper sulfate,tri-basic copper chloride,and zinc oxide on weanling pig performance[J].Journal of Animal Science,2011,89(8):2440-2451.  
[15] SAMANTA B,BISWAS A,GHOSH P R.Effects of dietary copper supplementation on production performance and plasma biochemical parameters in broiler chickens[J].British Poultry Science,2011,52(5):573-577.  
[16] BASSUNY S M.The effect of copper sulphate supplement on rabbit performance under Egyptian conditions[J].Journal of Applied Rabbit Research,1991,14(2):93-97.
[17] 刘晓波,罗绪刚,张荣强.高剂量铜对猪促生长作用机理的研究进展[J].动物营养学报,1997,9(3):1-6.
[18] ZHOU W,KORNEGAY E T,VAN LAAR H,et al.The role of feed consumption and feed efficiency in copper-stimulated growth[J].Journal of Animal Science,1994,72(9):2385-2394.
[19] DOVE C R.The effect of copper level on nutrient utilization of weanling pigs[J].Journal of Animal Science,1995,73(1):166-171.
[20] GENG Y Y,YANG F H,XING X M,et al.Effects of dietary fat levels on nutrient digestibility and production performance of growing-furring blue foxes (Alopex lagopus)[J].Journal of Animal Physiology and Animal Nutrition,2012,96(4):610-617.  
[21] LABELLA F,DULAR R,VIVIAN S,et al.Pituitary hormone releasing or inhibiting activity of metal ions present in hypothalamic extracts[J].Biochemical and Biophysical Research Communications,1973,52(3):786-791.  
[22] YANG W Y,WANG J G,LIU L,et al.Effect of high dietary copper on somatostatin and growth hormone-releasing hormone levels in the hypothalami of growing pigs[J].Biological Trace Element Research,2011,143(2):893-900.  
[23] WU X Z,ZHANG T T,GUO J G,et al.Copper bioavailability,blood parameters,and nutrient balance in mink[J].Journal of Animal Science,2015,93(1):176-184.  
[24] LUO X G,DOVE C R.Effect of dietary copper and fat on nutrient utilization,digestive enzyme activities,and tissue mineral levels in weanling pigs[J].Journal of Animal Science,1996,74(8):1888-1896.
[25] CAREY M C,SMALL D M,BLISS C M.Lipid digestion and absorption[J].Annual Review of Physiology,1983,45:651-677.
[26] HARADA M,SAKISAKA S,YOSHITAKE M,et al.Biliary copper excretion in acutely and chronically copper-loaded rats[J].Hepatology,1993,17(1):111-117.  
[27] ROBERTS E A,SARKAR B.Liver as a key organ in the supply,storage,and excretion of copper[J].American Journal of Clinical Nutrition,2008,88(3):851S-854S.
[28] 李道林.铜源和铜水平对生长獭兔的生长性能、毛皮品质及理化指标的影响[D].硕士学位论文.长春:中国人民解放军军需大学,2002.
[29] HWANG D F,WANG L C,CHENG H M.Effect of taurine on toxicity of copper in rats[J].Food and Chemical Toxicology,1998,36(3):239-244.  
[30] SUGAWARA N,LI D,SUGAWARA C,et al.Response of hepatic function to hepatic copper deposition in rats fed a diet containing copper[J].Biological Trace Element Research,1995,49(2/3):161-169.
[31] 冯杰,刘欣,吴新民,等.酪蛋白铜对仔猪生长及血清铜蓝蛋白和SOD活性的影响[J].中国畜牧杂志,2005,41(3):14-17.
[32] DANZEISEN R,ARAYA M,HARRISON B,et al.How reliable and robust are current biomarkers for copper status?[J].British Journal of Nutrition,2007,98(4):676-683.
[33] TURNLUND J R,KEYES W R,PEIFFER G L,et al.Copper absorption,excretion,and retention by young men consuming low dietary copper determined by using the stable isotope 65Cu[J].American Journal of Clinical Nutrition,1998,67(6):1219-1225.
[34] HAMBIDGE M.Biomarkers of trace mineral intake and status[J].The Journal of Nutrition,2003,133(Suppl.3):948S-955S.
[35] 奉向东,邓激光,王伟,等.饲粮中高铜高锌在组织中残留及排泄规律的研究[J].检验检疫学刊,2009,19(1):21-23.
[36] 杨顺江,陈义风.在棉菜饼型日粮中添加锌、铜、铁对生长肥育猪生长的影响及其代谢过程中的相互关系[J].中国农业科学,1989,22(1):93-94.
[37] LOREK M O,GUGOLEK A,HARTMAN A.Studies on the relationship between body weight,trunk length and pelt size in common foxes (Vulpes vulpes)[J].Czech Journal of Animal Science,2001,46(11):481-484.
[38] DAHLMAN T,VALAJA J,NIEMELÄ P,et al.Influence of protein level and supplementary L-methionine and lysine on growth performance and fur quality of blue fox (Alopex lagopus)[J].Acta Agriculturae Scandinavica,Section A:Animal Science,2002,52(4):174-182.  
[39] GUGOŁEK A,WYCZLING T,JANISZEWSKI P,et al.The effect of dietary methionine levels on the performance parameters of Arctic foxes (Vulpes lagopus)[J].Annals of Animal Science,2012,12(3):393-401.
[40] WU X Z,GAO X H,YANG F H.Effects of dietary copper on organ indexes,tissular Cu,Zn and Fe deposition and fur quality of growing-furring male mink (Mustela vison)[J].Journal of Animal Science and Technology,2015,57:6.
[41] 李继兴.铜对卡拉库尔羊毛色影响的研究[D].硕士学位论文.阿拉尔:塔里木大学,2012.
文章导航

/