禽营养 Poultry nutrition

鸭肥肝和鹅肥肝的氨基酸、脂肪酸营养价值及质构特性比较

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  • 1. 青岛农业大学食品科学与工程学院, 青岛 266109;
    2. 国家水禽产业技术体系营养与饲料功能研究室, 青岛 266109;
    3. 吉林正方农牧股份有限公司, 长春 130012
秦鹏飞(1991-),女,山东临沂人,硕士研究生,研究方向为营养与保健。E-mail:1661733966@qq.com

收稿日期: 2018-05-01

  网络出版日期: 2018-12-19

基金资助

国家水禽产业技术体系专项基金(CARS-42-14);山东省农业重大应用技术创新课题——水禽副产品加工综合利用新技术研究(6682213001)

Comparison on Amino Acids and Fatty Acids Nutritive Value and Texture Characteristics in Duck Fatty Liver and Goose Fatty Liver

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  • 1. College of Food Science and Engineering, Qingdao Agricultural University, Qingdao 266109, China;
    2. National Waterfowl Industrial Technology System Nutrition and Feed Function Laboratory, Qingdao 266109, China;
    3. Jilin Zhengfang Grouping & Husbandry Stock Company Limited, Changchun 130012, China

Received date: 2018-05-01

  Online published: 2018-12-19

摘要

本试验通过对鸭肥肝和鹅肥肝的基本营养成分、氨基酸、脂肪酸进行分析和营养评价,旨在比较鸭肥肝和鹅肥肝氨基酸、脂肪酸营养价值及质构特性的差异性。分别选择填饲期为28 d的鹅肥肝和填饲期为14 d的鸭肥肝,采用氨基酸分析仪、气相色谱仪等仪器进行测定分析,比较二者营养价值的差异性。结果表明:1)鸭肥肝中水分、粗脂肪含量极显著低于鹅肥肝(P<0.01),而粗灰分、粗蛋白质含量极显著高于鹅肥肝(P<0.01)。2)鸭肥肝和鹅肥肝的氨基酸种类相同,均未检测到色氨酸,其余氨基酸(除半胱氨酸和脯氨酸)含量均有显著或极显著差异(P<0.05或P<0.01)。鸭肥肝的必需氨基酸指数(EAAI)为64.34,鹅肥肝的EAAI为60.25;鸭肥肝的氨基酸比值系数评分(SRC)为73.34,鹅肥肝的SRC为47.11;鹅肥肝中呈味氨基酸的比例高于鸭肥肝,鸭肥肝中药用氨基酸含量高于鹅肥肝。3)鹅肥肝中不饱和脂肪酸含量为61.70%,饱和脂肪酸含量为39.31%;鸭肥肝中不饱和脂肪酸含量为59.11%,饱和脂肪酸含量为41.25%。鹅肥肝中饱和脂肪酸、单不饱和脂肪酸、多不饱和脂肪酸的比例为5.53:7.69:1.00,鹅肥肝脂肪酸的营养价值优于鸭肥肝。4)鸭肥肝中的铬、铜、铁、磷、含量极显著高于鹅肥肝(P<0.01),鹅肥肝中钙含量极显著高于鸭肥肝(P<0.01)。5)鸭肥肝的硬度极显著高于鹅肥肝(P<0.01),鸭肥肝的黏附性极显著低于鹅肥肝(P<0.01)。由此可见,鸭肥肝氨基酸营养价值高于鹅肥肝,鹅肥肝脂肪酸营养价值高于鸭肥肝;鹅肥肝嫩度好,鸭肥肝硬度高。

本文引用格式

秦鹏飞, 王宝维, 张福君, 李承颖, 葛文华, 张名爱, 岳斌 . 鸭肥肝和鹅肥肝的氨基酸、脂肪酸营养价值及质构特性比较[J]. 动物营养学报, 2018 , 30(12) : 4954 -4963 . DOI: 10.3969/j.issn.1006-267x.2018.12.023

Abstract

This study was conducted to compare the difference of amino acids and fatty acids nutritive value and texture characteristics in duck fatty liver and goose fatty liver through analyzing and evaluating the basic nutrient composition, amino acids and fatty acids in duck fatty liver and goose fatty liver. The fatty livers were selected from the goose and duck overfeeding period lasted for 28 and 14 days, respectively. The difference of nutritive values of duck fatty liver and goose fatty liver were tested by using amino acid analyzer, gas chromatograph and so on. The results showed as follows: 1) the contents of moisture and crude lipid in duck fatty liver were significantly lower than those in goose fatty liver (P<0.01), and the contents of crude ash and crude protein were significantly higher than those in goose fatty liver (P<0.01). 2) The amino acid types of duck fat liver and goose fatty liver were the same, tryptophan was not detected, the other amino acids (except cysteine and proline) contents had significant differences between duck fat liver and goose fatty liver (P<0.05 or P<0.01). The essential amino acid index (EAAI) of duck fat liver and goose fatty liver were 64.34 and 60.25, respectively. The amino acid ratio coefficient score (SRC) of duck fat liver and goose fatty liver protein were 73.34 and 47.11, respectively. The ratio of the taste amino acids in goose fatty liver was higher than that in duck fat liver, the content of therapeutic amino acids in duck fat liver was higher than that in goose fat liver. 3) The contents of unsaturated fatty acids and saturated fatty acids were 61.70% and 39.31% in goose fat liver, the contents of unsaturated fatty acids and saturated fatty acids were 59.11% and 41.25% in duck fatty liver. The ratio of saturated fatty acid, monounsaturated fatty acid and polyunsaturated fatty acid in goose fatty liver was 5.53:7.69:1.00, the nutritive value of fatty acids in goose fatty liver was better than duck fatty liver. 4) The contents of chromium, copper, iron and phosphorus in duck fatty liver were significantly higher than those in goose fatty liver (P<0.01), the content of calcium in goose fatty liver was significantly higher than that in duck fatty liver (P<0.01). 5) The hardness of duck fatty liver was significantly higher than that of goose fatty liver (P<0.01), the adhesiveness of duck fatty liver was significantly lower than that of goose fatty liver (P<0.01). In conclusion, the nutritive value of amino acids in duck fat liver is higher than goose fatty liver, the nutritive value of fatty acids in goose fatty liver is higher than duck fat liver. Goose fatty liver has better tenderness, duck fat liver has high hardness.

参考文献

[1] 朱振鹏,王健,龚道清,等.黑羽番鸭体重体尺与产肝性能的相关性分析[J].江苏农业科学,2013,41(10):157-158.



[2] RENAUD S,DE LORGERIL M.Wine,alcohol,platelets,and the French paradox for coronary heart disease[J].The Lancet,1992,339(8808):1523-1526.  



[3] 王宝维,王雷,于世浩.鹅肥肝生产研究现状与发展新思路[J].中国家禽,2006,28(17):1-5.



[4] 曾秋凤,吴昊,丁雪梅,等.蒸煮对不同品质鸭肥肝营养特性及脂肪酸组成的影[J].食品科学,2013,34(1):105-108.



[5] 彭祥伟,王小军,布丽君,等.人工填饲朗德鹅鹅肥肝营养成分分析[J].农产品加工,2016(10):33-35.



[6] 卢洁,王士长,周敏,等.气相色谱全分析樱桃谷鸭肥肝脂肪酸[J].食品科学,2009,30(2):224-227.



[7] 范永存.不同脂肪对鹅产肝性能及品质影响研究[D].硕士学位论文.青岛:青岛农业大学,2009.



[8] 黄明泉,张璟琳,王璐,等.不同品牌甜面酱中氨基酸组成分析及营养价值评价[J].食品工业科技,2014,35(7):330-334.



[9] FAO/WHO.Protein quality evaluation:report of the joint FAO/WHO expert consultation[R].FAO Food and Nutrition Paper 51.Rome:FAO,1989.



[10] SELIGSON F H,MACKEY L N.Variable predictions of protein quality by chemical score due to amino acid analysis and reference pattern[J].The Journal of Nutrition,1984,114(4):682-691.  



[11] OSER B L.Method for integrating essential amino acid content in the nutritional evaluation of protein[J].Journal of the American Dietetic Association,1951,27:396-402.



[12] OSER B L.An integrated essential amino acid index for predicting the biological value of proteins. Protein and amino acid nutrition[M].New York:Academic Press,1959:281-295.



[13] 朱圣陶,吴坤.蛋白质营养价值评价:氨基酸比值系数法[J].营养学报,1988,10(2):187-190.



[14] CAMPO M M,NUTE G R,WOOD J D,et al.Modelling the effect of fatty acids in odour development of cooked meat in vitro:part Ⅰ-sensory perception[J].Meat Science,2003,63(3):367-375.  



[15] 吴莹莹,鲍大鹏,王瑞娟,等.6种市售工厂化栽培金针菇的氨基酸组成及蛋白质营养评价[J].食品科学,2017,39(10):263-268.



[16] 冯笑笑,李娟,陈侨侨,等.翅果油树种仁蛋白氨基酸组成分析及营养价值评价[J].食品科学,2016,37(22):160-165.



[17] 杨鲜,祝慧凤,王涛,等.重庆巫山等多地党参氨基酸及营养价值比较与分析[J].食品科学,2014,35(15):251-257.



[18] 高慧颖,姜帆,张立杰,等.5个枇杷晚熟品种果实氨基酸组成和含量分析[J].福建果树,2009(2):37-41.



[19] 张晓煜,刘静,袁海燕,等.不同地域环境对枸杞蛋白质和药用氨基酸含量的影响[J].干旱地区农业研究,2004,22(3):100-104.



[20] FAO/WHO/UNU.Energy and protein requirements.Report of a joint FAO/WHO/UNU expert consultation[R].World Health Organization Technical Reportseries 724.Geneva:WHO,1985:121-123.



[21] INNIS S M.The role of dietary n-6 and n-3 fatty acids in the developing brain[J].Developmental Neuroscience,2000,22(5/6):474-480.



[22] ÇELIK M,TÜRELI C,ÇELIK M,et al.Fatty acid composition of the blue crab (Callinectes sapidus Rathbun,1896) in the north eastern Mediterranean[J].Food Chemistry,2004,88(2):271-273.  



[23] JOHNSTON L A,ALDERSON R,SANDHAM C,et al.Patterns of muscle growth in early and late maturing populations of Atlantic salmon (Salmo salar L.)[J].Aquaculture,2000,189(3/4):307-327.



[24] 孙倩.鹅肥肝质量评价方法的建立与新型鹅肝酱工艺研究[D].硕士学位论文.青岛:青岛农业大学,2012.
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