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Preparation of High-Quality Fermented Fish Product
Published on: August 23, 2019
Temperature-dependent quality evolution of Atlantic salmon (Salmo salar): Mechanistic insights into physicochemical
Gongwei Li1, Xiaodong Zhou2, Fan Yang1
1College of Food Science and Technology, Huazhong Agricultural University, Wuhan 430070, China; Hubei Technology Innovation Center for Meat Processing, Huazhong Agricultural University, Xiangyang 441000, China.
Abstract:
Although conventional refrigeration is widely used for Atlantic salmon preservation, rapid quality deterioration limits its shelf life. With increasing consumer demand for fresh-like salmon products, ice-temperature and micro-freezing preservation techniques have gained attention. In this study, Atlantic salmon was stored for 10 days under refrigeration (4.0 °C), ice-temperature storage (-0.5 °C), and micro-freezing storage (-4.0 °C) to systematically evaluate quality evolution, water migration, and microbial community dynamics. The results demonstrated that salmon stored at -0.5 °C exhibited superior quality retention, as indicated by lower increases in Total Viable Counts (11.29%) and reduced expansion of muscle interstitial spaces (10.89%). Low-field nuclear magnetic resonance indicated that -0.5 °C storage stabilized water status by retaining immobilized water and restricting its conversion to free water. Moreover, 16S rDNA sequencing revealed that -0.5 °C effectively inhibited the proliferation of Firmicutes, thus delaying microbial succession and extending the shelf life. Taken together, ice-temperature storage outperformed conventional refrigeration and micro-freezing storage, providing mechanistic insights and a theoretical basis for high-quality preservation of salmon.
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