State Key Laboratory of Food Science and Technology, Nanchang University, Nanchang 330047, China.
State Key Laboratory of Food Science and Technology, Nanchang University, Nanchang 330047, China.
Food Res Int. 2023 Feb;164:112325. doi: 10.1016/j.foodres.2022.112325. Epub 2022 Dec 10.
Animal aquatic products have high water content, abundant enzyme system and their own diverse microbial flora. These products are severely susceptible to autolysis and degradation after death, resulting in many adverse effects on storage, processing, and transportation. Among them, the endogenous enzyme are the key factor that caused the autolysis and degradation. Autolytic hydrolysis provides an effective way to maximize the use of aquatic by-products and achieve increased protein resources and reduce environmental pollution from by-products. To better acquaintance the autolysis phenomenon and regulation of the autolysis phenomenon. This paper reviews the autolytic mechanism, biochemical changes, influencing factors, and potential applications of animal aquatic products and their by-products to explore autolysis and its effective utilization and regulation. In addition, this study also emphasizes the importance of making full use of aquatic by-products. Furthermore, the research trends and future challenges of autolysis are also discussed. Autolysis can effectively transform aquatic products and by-products into bioactive hydrolysates. The hydrolysates produced by the autolysis of aquatic products and their by-products have attracted attention because of their wide applications in food, healthcare, and animal feed industries. However, the mechanism and regulation (promotion or inhibition) of autolysis should be further studied, and autolysate at the industrial level should be produced to provide high-value-added products for by-product processing and realize the sustainable utilization of resources.
动物水产品水分含量高,酶系丰富,自身微生物菌群多样。这些产品在死亡后极易发生自溶和降解,对储存、加工和运输有许多不利影响。其中,内源性酶是导致自溶和降解的关键因素。自溶水解为最大限度地利用水产副产物、增加蛋白质资源和减少副产物对环境的污染提供了有效途径。为了更好地了解自溶现象及其调控机制。本文综述了动物水产品及其副产物的自溶机制、生化变化、影响因素及潜在应用,探讨了自溶及其有效利用和调控。此外,本研究还强调了充分利用水产副产物的重要性。最后,还讨论了自溶的研究趋势和未来挑战。自溶可以有效地将水产品及其副产物转化为具有生物活性的水解产物。由于其在食品、保健和动物饲料行业的广泛应用,水产品及其副产物自溶产生的水解产物受到了关注。然而,自溶的机制和调控(促进或抑制)仍需进一步研究,应在工业水平上生产自溶产物,为副产物加工提供高附加值产品,实现资源的可持续利用。