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低压静电场辅助部分冻结对大黄鱼贮藏期间蛋白质特性及代谢组学的影响

Effect of low-voltage electrostatic field-assisted partial freezing on large yellow croaker protein properties and metabolomic analysis during storage.

作者信息

Fei Lifeng, Ma Ze, Yue Aodong, Cui Pengbo, Qiu Yue, Lyu Fei, Zhang Jianyou

机构信息

College of Food Science and Technology, Zhejiang University of Technology, Hangzhou, China.

Key Laboratory of Marine Fishery Resources Exploitment & Utilization of Zhejiang Province, Hangzhou, China.

出版信息

J Sci Food Agric. 2024 Mar 15;104(4):2359-2371. doi: 10.1002/jsfa.13145. Epub 2023 Dec 22.

Abstract

BACKGROUND

Large yellow croaker is highly perishable during storage because of high protein and moisture content. The degradation of the fish is mainly attributed to microbial growth and enzyme activity, so it is important to find an efficient storage method to extend its shelf life.

METHODOLOGY

This study investigated the effect of a low-voltage electrostatic field combined with partial freezing treatment on the physicochemical properties of myofibrillar protein (MP) and metabolomic analysis of large yellow croaker during preservation. The samples in chilled storage (C), partial freezing storage (PF) and 6 kV/m low-voltage electrostatic field partial freezing storage (LVEF-PF) were analyzed during an 18 day storage period.

RESULTS

In comparison with the C and PF groups, LVEF-PF delayed the oxidation of MP by inhibiting the formation of carbonyl groups (2.25 nmol/mg pro), and maintaining higher sulfhydryl content (29.73 nmol/mg pro). Fourier transform infrared (FTIR) spectroscopy and fluorescence spectroscopy analysis also demonstrated that the LVEF-PF treatment maintained the stability of the protein structure by increasing the a-helix ratio (19.88%) and reducing the random coil ratio (17.83%). Scanning electron microscopy showed that, compared with the LVEF-PF group, there was more degeneration and aggregation of MP in the C and PF groups after 18 days' storage. The results of untargeted metabolomic analysis showed that 415 kinds of differential metabolites were identified after storage, and the difference levels of differential metabolites were least between the samples treated with LVEF-PF stored on the ninth day and the fresh samples. The main differential metabolic pathways during storage were amino acid metabolism and lipid metabolism.

CONCLUSION

The LVEF-PF treatment could maintain the stability of myofibrillar protein in large yellow croaker during storage. These results showed a potential application of the LVEF-PF method for aquatic product preservation. © 2023 Society of Chemical Industry.

摘要

背景

大黄鱼由于蛋白质和水分含量高,在储存过程中极易腐败。鱼肉的降解主要归因于微生物生长和酶活性,因此找到一种有效的储存方法来延长其货架期非常重要。

方法

本研究调查了低电压静电场结合部分冷冻处理对大黄鱼在保鲜过程中肌原纤维蛋白(MP)理化性质及代谢组学分析的影响。在18天的储存期内,对冷藏(C)、部分冷冻储存(PF)和6 kV/m低电压静电场部分冷冻储存(LVEF-PF)的样品进行了分析。

结果

与C组和PF组相比,LVEF-PF通过抑制羰基的形成(2.25 nmol/mg蛋白)延缓了MP的氧化,并保持了较高的巯基含量(29.73 nmol/mg蛋白)。傅里叶变换红外(FTIR)光谱和荧光光谱分析还表明,LVEF-PF处理通过增加α-螺旋比例(19.88%)和降低无规卷曲比例(17.83%)维持了蛋白质结构的稳定性。扫描电子显微镜显示,与LVEF-PF组相比,C组和PF组在储存18天后MP的变性和聚集更多。非靶向代谢组学分析结果表明,储存后鉴定出415种差异代谢物,LVEF-PF处理的样品在第9天储存时与新鲜样品之间差异代谢物的差异水平最小。储存期间主要的差异代谢途径是氨基酸代谢和脂质代谢。

结论

LVEF-PF处理可以在储存期间维持大黄鱼肌原纤维蛋白的稳定性。这些结果表明LVEF-PF方法在水产品保鲜方面具有潜在应用价值。© 2023化学工业协会。

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