食品科学 ›› 2023, Vol. 44 ›› Issue (9): 147-153.doi: 10.7506/spkx1002-6630-20220331-394

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壳聚糖复合保鲜对冷藏草鱼肌肉蛋白质组的影响

李嘉蕾,陈赛,田明礼,俞健,刘永乐,王发祥   

  1. (1.长沙理工大学食品与生物工程学院,湖南省水生资源食品加工工程技术研究中心,湖南 长沙 410114;2.湖南喜味佳生物科技有限公司,湖南 岳阳 414006)
  • 出版日期:2023-05-15 发布日期:2023-05-24
  • 基金资助:
    “十三五”国家重点研发计划重点专项(2020YFD0900104);湖南省重点研发计划项目(2022NK2038); 长沙理工大学研究生科研创新项目(CX2021SS84)

Effect of Chitosan Composite Preservative on Proteome Changes of Grass Carp Muscle during Cold Storage

LI Jialei, CHEN Sai, TIAN Mingli, YU Jian, LIU Yongle, WANG Faxiang   

  1. (1. Hunan Provincial Engineering Research Center for Food Processing of Aquatic Biotic Resources, School of Food Science and Bioengineering, Changsha University of Science and Technology, Changsha 410114, China; 2. Hunan Xiweijia Biological Technology Co., Ltd., Yueyang 414006, China)
  • Online:2023-05-15 Published:2023-05-24

摘要: 为深入研究壳聚糖复合保鲜(10 mg/mL壳聚糖+5 mg/mL茶多酚+2 000 U/mL溶菌酶)对草鱼冷藏过程中肌肉蛋白质的影响,采用双向电泳-质谱(two-dimensional electrophoresis-mass spectrometry,2DE-MS)技术对新鲜(第0天)和冷藏第9天(保鲜组和未保鲜对照组)草鱼样品进行差异蛋白质组学分析。结果表明,与新鲜样品相比,保鲜组2DE图谱差异不明显,主要变化为快肌钙蛋白T丰度下降,慢肌钙蛋白T和腺苷酸激酶同工酶1丰度上升;而未保鲜对照组样品2DE图谱的蛋白点数量和信号强度均与新鲜组差异较大,进一步分析表明其快肌钙蛋白T、原肌球调节蛋白4、突触足蛋白2、M型丙酮酸激酶丰度下调,肌球蛋白重链、肌球蛋白轻链1、α-肌动蛋白、α-原肌球蛋白、轻酶解肌球蛋白等结构蛋白丰度上升。此外,与保鲜组样品相比,对照组3 种肌钙蛋白T丰度下调,而肌球蛋白重链、轻酶解肌球蛋白、α-肌动蛋白、α-原肌球蛋白、M型肌酸激酶的丰度上升,其中肌酸激酶可作为检测草鱼腐败的指示蛋白。综上,壳聚糖复合保鲜能较好地维持草鱼肌肉蛋白质稳定。

关键词: 草鱼;壳聚糖;保鲜;蛋白质组;双向电泳

Abstract: To explore the effect of a chitosan-based preservative solution (10 mg/mL chitosan + 5 mg/mL tea polyphenol + 2 000 U/mL lysozyme) on the change in the muscle proteome of grass carp during cold storage, differential proteomic analysis of fresh fish and nine-day-stored fish with or without (control) preservative treatment was conducted by two-dimensional electrophoresis-mass spectrometry (2DE-MS). The results showed that the 2DE map of the preservative-treated group was not obviously different from that of the fresh group, except for a decrease in the abundance of fast troponin T and an increase in the abundance of slow troponin T and adenylate kinase isoenzyme. However, the 2DE profile of the control group differed greatly from that of the fresh group in both the number and signal intensity of protein spots. Further analysis showed that the abundance of fast troponin T, tropomodulin 4, synaptopodin 2 and pyruvate kinase type M were down-regulated, while the abundance of myosin heavy chain, myosin light chain 1, α-actin, α-tropomyosin and intermediate light meromyosin were up-regulated. Moreover, compared with the preservative-treated group, the abundance of three troponins T were decreased, while the abundance of myosin heavy chain, intermediate light meromyosin, α-actin, α-tropomyosin and creatine kinase M-type were increased in the control group, suggesting that creatine kinase could serve as an indicator for evaluating grass carp muscle spoilage. This study demonstrates that the chitosan-based composite preservative can maintain the stability of grass carp muscle protein during cold storage.

Key words: grass carp; chitosan; preservation; proteomics; two-dimensional electrophoresis

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