脆肉与普通罗非鱼复配对鱼糜凝胶品质的影响

Effects of compound of crisped tilapia and common tilapia on surimi gel quality

  • 摘要:
    目的 针对普通罗非鱼鱼糜凝胶强度低,制品贮藏加工稳定性差、品质易劣变,而单一脆肉罗非鱼鱼糜制品生产成本高、质构偏硬的问题,探究两种罗非鱼复配协同改善鱼糜综合品质的可行性及内在机制。
    方法 实验以不同比例(普通罗非鱼∶脆肉罗非鱼 = 10∶0、8∶2、7∶3、6∶4、5∶5、0∶10,重量比)制备鱼糜凝胶,系统分析其凝胶强度、持水性、水分分布、动态流变特性、感官品质、电子舌/电子鼻响应、挥发性风味物质组成及肌原纤维蛋白构象变化。
    结果 脆肉罗非鱼比例增加可显著提升凝胶强度、持水性及不易流动水比例,改善储能模量与损耗模量;风味物质丰富度逐步提高,醛类、不饱和醇类及特征酯类含量增加。当复配比例为5∶5时,鱼糜凝胶在质构、保水性与风味均衡性上综合最优,其β-折叠比例显著升高、无规卷曲减少,内源荧光强度适中,表明蛋白二级与三级结构实现了有序重排。
    结论 普通与脆肉罗非鱼5∶5复配可通过诱导肌原纤维蛋白构象重构、优化水分分布及调控关键挥发性风味物质,有效弥补单一原料缺陷,是制备高品质罗非鱼鱼糜制品的有效工艺手段。本研究可为罗非鱼加工产业的原料高效利用、产品品质升级及差异化市场拓展提供理论依据和工艺参考。

     

    Abstract: Tilapia (Oreochromis sp.) is one of the most productive and widely consumed aquaculture species worldwide, with China’s breeding output exceeding 1.89 million tons in 2024. Surimi from common tilapia suffers from weak gel strength and rapid quality deterioration during storage, failing to meet market demands of medium-to-high-end surimi products. Crisp tilapia, a special variant cultivated with broad bean feeding, possesses much denser muscle fibers and serves as an ideal raw material for elastic surimi. Nevertheless, surimi solely made from crisp tilapia exhibits excessive hardness, unbalanced flavor and high manufacturing costs. Blending two types of tilapia surimi enables complementary performance in texture and flavor, yet the quality regulation rules and the conformational evolution of myofibrillar protein in this mixed system remain unclear. Common tilapia surimi is limited by poor gel strength and unstable storage quality, while pure crisp tilapia surimi is associated with high costs and overly rigid texture. This work aims to explore the synergistic effect and underlying mechanism of blended tilapia surimi for overall quality improvement. Surimi gels were manufactured at mass ratios of common tilapia to crisp tilapia (10:0, 8:2, 7:3, 6:4, 5:5, 0:10). A series of indicators were comprehensively characterized, including gel strength, water holding capacity (WHC), water distribution, dynamic rheological behaviors, sensory attributes, electronic tongue and nose signals, volatile flavor profiles, and myofibrillar protein conformation. The results showed that an increased proportion of crisp tilapia remarkably elevated gel strength, WHC, and the ratio of immobilized water, along with enhanced storage and loss moduli. The abundance of flavor compounds gradually increased, with growing contents of aldehydes, unsaturated alcohols, and characteristic esters. The 5:5 blending group achieved the optimal balanced performance in terms of texture, water retention, and flavor harmony.Notably, the protein in this group exhibited a higher β-sheet content, a reduced proportion of random coil, and moderate intrinsic fluorescence intensity, indicating the ordered rearrangement of the secondary and tertiary structures of myofibrillar protein. The 5:5 compounding strategy compensates for the defects of single raw materials by reconstructing myofibrillar protein conformation, optimizing water distribution, and regulating key volatile compounds, which serves as an effective processing technique for producing high-quality tilapia surimi. This study provides theoretical support and technical references for the efficient utilization of raw materials, product quality upgrading, and differentiated market development in the tilapia processing industry.

     

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