Khiari Zied
National Research Council Canada, Aquatic and Crop Resource Development Research Centre, Halifax, NS, Canada.
Front Nutr. 2022 Apr 7;9:875697. doi: 10.3389/fnut.2022.875697. eCollection 2022.
The fisheries and aquaculture industries are some of the major economic sectors in the world. However, these industries generate significant amounts of wastes that need to be properly managed to avoid serious health and environmental issues. Recent advances in marine waste valorization indicate that fish waste biomass represents an abundant source of high-value biomolecules including enzymes, functional proteins, bioactive peptides, and omega-3 rich oils. Enzyme-assisted processes, for the recovery of these value-added biomolecules, have gained interest over chemical-based processes due to their cost-effectiveness as well as their green and eco-friendly aspects. Currently, the majority of commercially available proteases that are used to recover value-added compounds from fisheries and aquaculture wastes are mesophilic and/or thermophilic that require significant energy input and can lead to unfavorable reactions (i.e., oxidation). Cold-adapted proteases extracted from cold-water fish species, on the other hand, are active at low temperatures but unstable at higher temperatures which makes them interesting from both environmental and economic points of view by upcycling fish waste as well as by offering substantial energy savings. This review provides a general overview of cold-adapted proteolytic enzymes from cold-water fish species and highlights the opportunities they offer in the valorization of fisheries and aquaculture wastes.
渔业和水产养殖业是世界上一些主要的经济部门。然而,这些产业产生了大量废物,需要进行妥善管理,以避免严重的健康和环境问题。海洋废物增值方面的最新进展表明,鱼类废弃物生物质是包括酶、功能蛋白、生物活性肽和富含欧米伽-3的油脂在内的高价值生物分子的丰富来源。由于酶辅助工艺具有成本效益以及绿色环保的特点,在回收这些增值生物分子方面,相较于基于化学的工艺更受关注。目前,大多数用于从渔业和水产养殖废物中回收增值化合物的市售蛋白酶是嗜温的和/或嗜热的,这需要大量的能量输入,并且可能导致不利的反应(即氧化)。另一方面,从冷水鱼类中提取的冷适应蛋白酶在低温下具有活性,但在较高温度下不稳定,这使得它们在将鱼类废物升级再利用以及大幅节省能源方面,从环境和经济角度来看都很有吸引力。本综述概述了来自冷水鱼类的冷适应蛋白水解酶,并强调了它们在渔业和水产养殖废物增值方面所提供的机会。