禽营养 Poultry Nutrition

武冈铜鹅与其他3种鹅肉品质特性的比较

  • 曲湘勇 ,
  • 何俊 ,
  • 贺长青 ,
  • 金宏 ,
  • 杨丹丹 ,
  • 朱立涛 ,
  • 范志勇 ,
  • 达代又 ,
  • 林立东
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  • 1. 湖南农业大学动物科学技术学院, 长沙 410128;
    2. 武冈市特色产业办公室, 武冈 422400

收稿日期: 2013-04-03

  网络出版日期: 2013-09-16

基金资助

湖南省科技重大专项"双百工程"子项目(SB59);湖南省家禽遗传资源调查(BK0752);湖南农业大学产学研合作项目(09019)

Comparison of Meat Quality Characteristics between Wugang Bronze Geese and Other Three Types of Geese

  • QU Xiangyong ,
  • HE Jun ,
  • HE Changqing ,
  • JIN Hong ,
  • YANG Dandan ,
  • ZHU Litao ,
  • FAN Zhiyong ,
  • DA Daiyou ,
  • LIN Lidong
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  • 1. College of Animal Science and Technology, Hunan Agricultural University, Changsha 410128, China;
    2. Office of Wugang Features Industry, Wugang 422400, China

Received date: 2013-04-03

  Online published: 2013-09-16

摘要

本试验旨在测定武冈铜鹅、四川白鹅、武川鹅以及天府肉鹅的常规肉品质和矿物质元素、氨基酸、风味脂肪酸、肌苷酸含量及肌纤维直径与密度,并进行比较。选取1日龄体格健壮的武冈铜鹅、四川白鹅、武川鹅和天府肉鹅各30只,分为4组,每组5个重复,每个重复6只鹅,公母各占1/2,饲喂相同饲粮。试验期为70 d。结果表明:1)武冈铜鹅胸肌粗蛋白质含量显著高于其他3种鹅(P<0.05),胸肌粗脂肪含量显著高于四川白鹅(P<0.05);而腿肌粗脂肪含量与其他3种鹅差异不显著(P>0.05),腿肌贮存损失率显著低于其他3种鹅(P<0.05)。2)武冈铜鹅肌肉铁、镁、钾含量均显著高于四川白鹅和天府肉鹅(P<0.05)。3)武冈铜鹅肌肉中天门冬氨酸、谷氨酸、丙氨酸、缬氨酸、赖氨酸的含量极显著高于武川鹅和四川白鹅(P<0.01),甘氨酸和脯氨酸含量极显著高于其他3种鹅(P<0.01),而胱氨酸和苯丙氨酸与其他3种鹅差异不显著(P>0.05)。4)武冈铜鹅肌肉中肉豆蔻酸含量极显著高于其他3种鹅(P<0.01);十六烯酸含量极显著高于武川鹅(P<0.01);亚麻酸含量显著高于武川鹅(P<0.05);二十烯酸含量极显著高于天府肉鹅(P<0.01)。5)武冈铜鹅胸肌肌纤维密度显著高于四川白鹅和武川鹅(P<0.05),而各组肌纤维直径没有显著差异(P>0.05)。由此可见,武冈铜鹅肌肉品质以及风味优于武川鹅、四川白鹅以及天府肉鹅。

本文引用格式

曲湘勇 , 何俊 , 贺长青 , 金宏 , 杨丹丹 , 朱立涛 , 范志勇 , 达代又 , 林立东 . 武冈铜鹅与其他3种鹅肉品质特性的比较[J]. 动物营养学报, 2013 , 25(10) : 2277 -2285 . DOI: 10.3969/j.issn.1006-267x.2013.10.011

Abstract

This experiment was conducted to determine and compare the common meat quality, microelement content, amino acid content, fatty acid content, inosine monophosphate content, muscle fiber density and diameter in muscle of Wugang bronze geese, Sichuan white geese, Wuchuan geese and Tianfu meat geese. Thirty one-day-old healthy geese of each breed (half male and half female) were divided into 4 groups with 5 replicates per group and 6 geese per replicate. Each group fed the same diet. The experiment lasted for 70 days. The results showed as follows: 1) the breast muscle crude protein content of Wugang bronze geese was significantly higher than that of other three types of geese (P<0.05), and the breast muscle crude fat content was significantly higher than that of Sichuan white geese (P<0.05); there was no significant difference in thigh muscle crude fat content between Wugang bronze geese and other three types of geese (P>0.05), while the keeping loss in thigh muscle of Wugang bronze geese was significantly lower than that of other three types of geese (P<0.05). 2) The contents of Fe, Mg and K in muscle of Wugang bronze geese were significantly higher than those of Sichuan white geese and Tianfu meat geese (P<0.05). 3) The contents of Asp, Glu, Ala, Val and Lys in muscle of Wugang bronze geese were significantly higher than those of Sichuan white geese and Wuchuan geese (P<0.01), the contents of Cys and Phe in muscle of Wugang bronze geese were significantly higher than those of other three types of geese (P<0.01), and there were no significant differences in the contents of Cys and Phe in muscle among the 4 types of geese (P>0.05). 4) The muscle myristic acid content of Wugang bronze geese was significantly higher than that of other three types of geese (P<0.01), the hypogaeic acid content was significantly higher than that of Wuchuan geese (P<0.01), the linolenic acid content was significantly higher than that of Wuchuan geese(P<0.05), and the eicosenoic acid content was significantly higher than that of Tianfu meat geese (P<0.01). 5) The muscle fiber density of Wugang bronze geese was significantly higher than that of Sichuan white geese and Wuchuan geese (P<0.05), but there was no significant difference in muscle fiber diameter among the 4 types of geese (P>0.05). Based on the results of the experiment, it is concluded that the flavor and meat quality of Wugang bronze geese are better than those of Wuchuan geese, Sichuan white geese and Tianfu meat geese.

参考文献

[1] SCANE C G.The global importance of poultry[J].Poultry Science,2007,86(6):1057-1058.
[2] 曲湘勇,达代又,唐结果,等.武冈铜鹅种质特性的研究[C]//中国家禽科学研究进展——第十四次全国家禽科学学术讨论会论文集.北京:中国畜牧兽医学会,2009:347-350.
[3] ROSIŃSKI A.The analysis of direct and correlated selection effects in two goose strains[D].Ph.D Thesis.Poland:Agricultural University Poznań,2000.
[4] WEŻYK S,ROSIŃSKI A,BIELIŃSKA H,et al.A note on the meat quality of W11 and W33 white Kouda geese strains[J].Animal Science Papers and Reports,2003,21(3):191-199.
[5] 潘迎丽.籽鹅与莱茵鹅肌肉组织学、屠宰及肉品质性状的研究[D].硕士学位论文.大庆:黑龙江八一农垦大学,2007.
[6] ZHAO G P,CUI H X,LIU R R,et al.Comparison of breast muscle meat quality in 2 broiler breeds[J].Poultry Science,2011,90(10):2355-2359.  
[7] CISNEROS F,ELLIS M,MCKEITH F K,et al.Influence of slaughter weight on growth and carcass characteristics,commercial cutting and curing yields,and meat quality of barrows and gilts from two genotypes[J].Journal of Animal Science,1996,74(5):925-933.
[8] LIU B Y,WANG Z Y,YANG H M,et al.Influence of rearing system on growth performance,carcass traits,and meat quality of Yangzhou geese[J].Poultry Science,2011,90(3):653-659.  
[9] WANG B W,HUANG G Q,WANG Q L.Effects of yeast selenium supplementation on the growth performance,meat quality,immunity,and antioxidant capacity of goose[J].Journal of Animal Physiology and Animal Nutrition,2011,95(4):440-448.  
[10] FUJIMURA S,MURAMOTO T,KATSUKAWA M,et al.Chemical analysis and sensory evaluation of free amino acids and 5'-inosinic acid in meat of Hinai-dori Japanese native chicken:comparison with broilers and layer pullets[J].Animal Science and Technology,1994,65:610-618.
[11] KENZO K.Glutamate:from discovery as a food flavor to role as a basic taste(umami)[J].American Journal of Clinical Nutrition,2009,90(3):719S-722S.
[12] RIKIMARU K,TAKAHASHI H.Evaluation of the meat from Hinai-jidori chickens and broilers:analysis of general biochemical components,free amino acids,inosine 5'-monophosphate,and fatty acids[J].The Journal of Applied Poultry Research,2010,19(4):327-333.  
[13] 马现永,周桂莲,林映才,等.饲粮中添加谷氨酸钠对黄羽肉鸡生长性能及肉品风味的影响[J].动物营养学报,2011,23(3):410-416.
[14] GHIRRI A,BIGNETTI E.Occurrence and role of umami molecules in foods[J].International Journal of Food Sciences and Nutrition,2012,63(7):871-881.  
[15] 中华人民共和国农业部.NY/T821—2004猪肌肉品质测定技术规范[S].北京:标准出版社,2004.
[16] 李利,臧素敏,王鹏,等.太行鸡肌肉品质的分析[J].动物营养学报,2011,23(9):1592-1599.
[17] 于辉,李华,刘为民,等.梁子湖三种鲌肉质分析[J].水生生物学报,2005,29(5):502-505.
[18] RECKMEYER N M,VICKERS Z M,CSALLANY A S.Effect of free fatty acids on sweet,salty,sour and umami tastes[J].Journal of Sensory Studies,2010,25(5):751-760.  
[19] 谭会泽,冯定远,沈思军,等.复合蛋氨酸螯合微量元素对经产母猪血清相关生化指标及繁殖性能的影响[J].华南农业大学学报,2005,26(1):98-101.
[20] 李建华.四川白鹅的品种特性及杂交应用[J].中国家禽,2003,25(10):34-36.
[21] 王继文,王林全,史若皇.天府肉鹅配套系选育[J].中国家禽,2001,23(15):7-8.
[22] YAMAGUCHI S,NINOMIYA K.Umami and food palatability[J].The Journal of Nutrition,2000,130(S4):921s-926s.
[23] KINNAMON S C.Umami taste transduction mechanisms[J].American Journal of Clinical Nutrition,2009,90(3):753S-755S.
[24] OIKE H,WAKAMORI M,MORI Y,et al.Arachidonic acid can function as a signaling modulator by activating the TRPM5 cation channel in taste receptor cells[J].Biochimica et Biophysica Acta,2006,1761(9):1078-1084.  
[25] CARTONI C,YASUMATSU K,OHKURI T,et al.Taste preference for fatty acids is mediated by GPR40 and GPR120[J].Journal of Neuroscience,2010,30(25):8376-8382.  
[26] KIYOHARA R,YAMAGUCHI S,RIKIMARU K,et al.Supplemental arachidonic acid-enriched oil improves the taste of thigh meat of Hinai-jidori chickens[J].Poultry Science,2011,90(8):1817-1822.  
[27] 陈宏权,黄华云,陈华,等.鹅MC4R基因RFLP及其与胴体和羽绒性状的关联性[J].畜牧兽医学报,2008,39(7):885-890.
[28] 张学余,束婧婷,韩威,等.肌苷酸合成酶系3个基因对白耳鸡胸肌肌苷酸含量的遗传效应[J].畜牧兽医学报,2009,40(10):1440-1446.
[29] 秦召,康相涛,李国喜.肌纤维组织学特性与肌肉品质的关系[J].安徽农业科学,2006,34(2):5872-5878.
[30] LEE S H,JOO S T,RYU Y C.Skeletal muscle fiber type and myofibrillar proteins in relation to meat quality[J].Meat Science,2010,86(1):166-170.  
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