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Corresponding Author(s)

张淼(1984—),女,四川旅游学院副教授,硕士。E-mail:414137715@qq.com

Abstract

Objective: This study aimed to analyze and compare the quality of four brands of silver cod that have high market sales. Methods: The sensory quality, whiteness, texture and volatile flavor substances of four brands of silver cod were detected by sensory analysis, colorimeter, texture analyzer and gas chromatography-mass spectrometry. Results: Among the four brands of silver cod, BS had the highest sensory score, followed by BI and WH, and ILU had the lowest. BS had the best whiteness, followed by BI and WH, while ILU had the worst. ILU had significantly higher hardness and chewiness than the other three brands, and BS had significantly lower elasticity than the other three brands, and there was no significant difference in the cohesion of the four brands of silver cod. A total of 122 kinds of volatile substances (excluding internal standards) were detected in the four brands of silver cod, of which hydrocarbons, alcohols and esters were at a high level and were the main flavoring substances of cod, accounting for 53, 20 and 17 respectively. 24 kinds of volatile substances detected were found in all four brands, and a total of 85, 63, 53 and 53 volatile substances were detected in ILU, BI, BS and WH respectively, with 40, 6, 10 and 5 kinds of volatile substances unique to each. Conclusion: BS had the best sensory quality and colour but slightly less elasticity, and ILU had the best hardness, chewiness and a significantly better overall flavor than the other three brands. BI, BS and WH were relatively similar in terms of type and content of various volatile flavor substances.

Publication Date

6-9-2023

First Page

150

Last Page

158

DOI

10.13652/j.spjx.1003.5788.2022.80577

References

[1] SUMAILA U R, VOLPE J, LIU Y. Potential economic benefits from sablefish farming in British Columbia[J]. Marine Policy, 2007, 31(2): 81-84.
[2] XIONG X, LISA G, MARIA J, et al. DNA barcoding reveals substitution of Sablefish (Anoplopoma fimbria) with Patagonian and Antarctic Toothfish (Dissostichus eleginoides and Dissostichus mawsoni) in online market in China: How mislabeling opens door to IUU fishing[J]. Food Control, 2016, 70: 380-391.
[3] 刘长琳, 陈四清, 王有廷, 等. 裸盖鱼(Anoplopoma fimbria)肌肉的营养成分分析及评价[J]. 渔业科学进展, 2015, 36(2): 133-139. LIU C L, CHEN S Q, WANG Y T, et al. The analysis and evaluation of the nutritive composition of the muscles of sablefish (Anoplopoma fimbria) [J]. Progress in Fishery Sciences, 2015, 36(2): 133-139.
[4] 李栋. 揭秘鳕鱼市场乱象命名混乱缺乏标准 品种不同价差十倍[J]. 广西质量监督导报, 2016(7): 31-32. LI D. Uncover the chaos of the cod market naming confusion lack of standard varieties of different spreads[J]. Guangxi Quality Supervision Report, 2016(7): 31-32.
[5] 李富威, 张舒亚, 任硕, 等. 鳕鱼成分的实时荧光PCR检测方法[J]. 中国生物工程杂志, 2012, 32(12): 80-85. LI F W, ZHANG S Y, REN S, et al. Detection of gadiformes by real-time PCR assay[J]. Chinese Journal of Bioengineering, 2012, 32(12): 80-85.
[6] 伍尚森, 张娟. 鳕鱼及其制品真伪属性鉴别的调查分析[J]. 现代食品, 2021(20): 207-209. WU S S, ZHANG J. Investigation and analysis of cod fish and its products authentication[J]. Modern Food, 2021(20): 207-209.
[7] 鳕鱼及其制品中裸盖鱼、油鱼和南极犬牙鱼源性成分检测BJS 201907[J]. 中国食品卫生杂志, 2019, 31(2): 105, 115, 158. Detection of source components of Anoplopoma fimbria, Lepidocybium flavobrunneum, Ruvettus pretiosus and Dissostichus eleginoides, Dissostichus mawsoni in cod and its products BJS 201907[J]. Chinese Journal of Food Hygiene, 2019, 31(2): 105, 115, 158.
[8] 刘春胜, 陈四清, 王有廷, 等. 1~2龄裸盖鱼形态特征及其相关参数分析[J]. 渔业现代化, 2015, 42(2): 23-27. LIU C S, CHEN S Q, WANG Y T, et al. Analysis on morphological characteristics and related parameters of 1~2 years old naked cod[J]. Fishery Modernization, 2015, 42(2): 23-27.
[9] 任范伟, 朱兰兰, 周德庆. 秋刀鱼肉质感官评价与质构的相关性分析[J]. 南方农业学报, 2016, 47(11): 1 932-1 938. REN F W, ZHU L L, ZHOU D Q. Correlation between meat quality sensory evaluation and texture of Cololabis saira[J]. Journal of Southern Agriculture, 2016, 47(11): 1 932-1 938.
[10] 唐建华, 张秀南, 何小龙, 等. 加热温度对草鱼肉理化性质、质构与微观结构的影响[J]. 美食研究, 2020, 37(4): 62-67. TANG T H, ZHANG X N, HE X L,et al. Effects of heating temperature on the physical and chemical properties, texture profiles and microstructure of grass carp[J]. Journal of Researches on Dietetic Science and Culture, 2020, 37(4): 62-67.
[11] 叶繁, 陈康, 陶美洁, 等. 5种市售鳕鱼肠品质比较及风味分析[J]. 南方水产科学, 2019, 15(6): 96-105. YE F, CHEN K, TAO M J, et al. Comparison of quality and volatile components among five brands of cod sausages[J]. South China Fisheries Science, 2019, 15(6): 96-105.
[12] 田迪英, 焦慧, 陶崴, 等. 5种海鱼挥发性风味成分分析[J]. 食品与发酵工业, 2015, 41(10): 155-159. TIAN D Y, JIAO H, TAO W, et al. Analysis of volatile flavor components of five kinds of marine fish[J]. Food and Fermentation Industries, 2015, 41(10): 155-159.
[13] 王悦齐, 李春生, 李来好, 等. 基于GC-MS联用技术分析传统鱼露发酵过程中挥发性风味成分和脂肪酸组分变化[J]. 水产学报, 2018, 42(6): 984-995. WANG Y Q, LI C S, LI L H, et al. Analysis of the changes of volatile flavor compounds and fatty acids in traditional fish sauce during fermentation by GC-MS[J]. Journal of Fisheries, 2018, 42(6): 984-995.
[14] 焦慧. 海鱼及其制品挥发性风味的研究[D]. 杭州: 浙江工商大学, 2012: 29. JIAO H. Study on flavor of seawater fish meat and its products[D]. Hangzhou: Zhejiang Gongshang University, 2012: 29.
[15] 姚芳, 赵延胜, 王海蓝, 等. 银杏果酶解发酵前后风味成分的变化及主成分分析[J]. 现代食品科技, 2021, 37(6): 251-265. YAO F, ZHAO Y S, WANG H L, et al. Changes and principal component analysis of flavor components in ginkgo seed before and after enzymolysis-fermentation[J]. Modern Food Science and Technology, 2021, 37(6): 251-265.
[16] 蔺佳良, 繆芳芳, 蔡江佳, 等. 中华绒螯蟹不同部位挥发性物质的研究[J]. 核农学报, 2014, 28(2): 259-269. LIN J L, MIAO F F, CAI J J, et al. Volatile substances in different parts of female eriocheir sinensis[J]. Journal of Nuclear Agricultural, 2014, 28(2): 259-269.
[17] 黄骆镰, 黄克, 肖如武. 水产品腥味物质形成机理的研究进展[J]. 广东化工, 2009, 36(9): 146-150. HUANG L L, HUANG K, XIAO R W. Advances on the formational theory of fishy odor for aquatic product[J]. Guangdong Chemical Industry, 2009, 36(9): 146-150.
[18] 杜国伟, 夏文水. 鲢鱼糜脱腥前后及贮藏过程中挥发性成分的变化[J]. 食品工业科技, 2007(9): 76-80. DU G W, XIA W S. Changes of volatile components in silver carp surimi before and after deodorization and during storage[J]. Science and Technology of Food Industry, 2007(9): 76-80.
[19] 冯杰, 詹晓北, 周朝晖, 等. 两种膜过滤生产的纯生酱油风味物质比较[J]. 食品与生物技术学报, 2010, 29(1): 33-39. FENG J, ZHAN X B, ZHOU Z H, et al. Comparative analysis of flavor compounds in draft soy sauce origin from two different membranes[J]. Journal of Food Science and Biotechnology, 2010, 29(1): 33-39.
[20] 丁媛, 周君, 郑平安, 等. 基于SPEM-GC-MS和电子鼻研究温度对毛蚶挥发性物质的影响[J]. 核农学报, 2013, 27(12): 1 873-1 880. DING Y, ZHOU J, ZHENG P A, et al. Analysis of flavor compounds of the scapharca subcrenata at different temperatures by SPEM-GC-MS combined with chemical sensors[J]. Journal of Nuclear Agricultural, 2013, 27(12): 1 873-1 880.
[21] 吴丹. GC/MS方法研究天然挥发性风味物质[D]. 上海: 复旦大学, 2006: 79. WU D. Study on natural volatile flavor compounds by GC/MS[D]. Shanghai: Fudan University, 2006: 79.
[22] 杨红菊, 乔发东, 马长伟, 等. 脂肪氧化和美拉德反应与肉品风味质量的关系[J]. 肉类研究, 2004(1): 25-28. YANG H J, QIAO F D, MA C W, et al. Effect of lipid oxidation and maillard reaction on flavor meat[J]. Meat Research, 2004(1): 25-28.
[23] EDWARDS R A, ORDONEZ JA, DAINTY R H, et al. Characterization of the headspace volatile compounds of selected Spanish dry fermented sausages[J]. Food Chemistry, 1999, 64(4): 461-465.
[24] 孙金龙, 师希雄, 岳建伟, 等. 金鳟鱼鱼体不同部位挥发性成分的检测[J]. 食品与发酵科技, 2018, 54(4): 91-96. SUN J L, SHI X X, YUE J W, et al. Volatile component analysis of different parts of golden trout[J]. Food and Fermentation Sciences and Technology, 2018, 54(4): 91-96.
[25] 张娜, 袁信华, 过世东, 等. 中华绒螯蟹挥发性物质的研究[J]. 食品与发酵工业, 2008(3): 141-144. ZHANG N, YUAN X H, GUO S D, et al. Study on volatile substances of Chinese mitten crab[J]. Food and Fermentation Industry, 2008(3): 141-144.
[26] 俞海峰, 何芳, 周浙良. 水产品的风味研究进展[J]. 现代渔业信息, 2009, 24(3): 14-16. YU H F, HE F, ZHOU Z L. Progress in research of flavor of aquatic products[J]. Modern Fisheries Information, 2009, 24(3): 14-16.
[27] 刘玉平, 陈海涛, 孙宝国. 鱼肉中挥发性成分提取与分析的研究进展[J]. 食品科学, 2009, 30(23): 447-451. LIU Y P, CHEN H T, SUN B G. Recent advances in extraction and analysis of volatile components in fish[J]. Food Science, 2009, 30(23): 447-451.

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