Ai Chunxiang, Leng Xiangjun, Luo Zhi, Zhou Zhigang, Ai Qinghui
College of Ocean & Earth Sciences, Xiamen University, Fujian, China.
National Demonstration Center for Experimental Fisheries Science Education, Shanghai Ocean University, Shanghai, China.
J Nutr. 2025 Aug 12. doi: 10.1016/j.tjnut.2025.08.009.
In recent decades, aquaculture has experienced a period of rapid expansion, which has had considerable ramifications for global food security, nutrition, and livelihoods. Concurrent advancements in aquaculture nutrition, in conjunction with technological innovations in aquafeed formulation, have resulted in a marked enhancement in the mean feed conversion ratio, alongside a sustained reduction in the use of fish-oriented resources, such as fish meal and fish oil, among all categories of species in diets. However, projections indicate a 10% increase in the global demand for aquatic animal production within the next decade. This demand, when considered in conjunction with the limited fish-oriented resources, growing demand for sustainable feed ingredients, and increasing emphasis on sustainability in relation to the ongoing expansion of aquaculture, has presented a series of challenges to both the research and industry sectors. To facilitate the transformation of the aquafeed industry from its past, resource-dependent, and consumable paradigm to a sustainable aquaculture model, it is imperative that progressive initiatives and technological innovations in the field of research further enhance the feed efficiency of low-carbon feeds and expand aquaculture production in a more efficient and emission-reducing manner. This review aims to provide a comprehensive evaluation of recent advancements in the domain of aquaculture nutrition in recent decades. To that end, it will encompass a detailed illustration of the major discoveries, theory progresses, practical problems, and strategies for sustainable aquaculture, as well as the potential applications of modern biotechnology in aquaculture nutrition. Furthermore, by elucidating these advancements and deliberating their prospective implications and applications, a paradigm shift in aquaculture practices toward greater sustainability may be precipitated. This review's overarching objective is to emphasize research gaps and domains in aquaculture nutrition, where further exploration is imperative to enable the long-term, eco-friendly expansion of aquaculture.
近几十年来,水产养殖业经历了快速扩张时期,这对全球粮食安全、营养和生计产生了重大影响。水产养殖营养的同步进步,加上水产饲料配方的技术创新,使得平均饲料转化率显著提高,同时各类养殖品种饲料中鱼粉和鱼油等以鱼为导向的资源使用量持续减少。然而,预测表明未来十年全球对水产动物产品的需求将增长10%。考虑到以鱼为导向的资源有限、对可持续饲料原料的需求不断增加以及随着水产养殖业的持续扩张对可持续性的日益重视,这给研究和行业部门都带来了一系列挑战。为了推动水产饲料行业从过去依赖资源且消耗型的模式转变为可持续的水产养殖模式,研究领域的进步举措和技术创新必须进一步提高低碳饲料的饲料效率,并以更高效和减排的方式扩大水产养殖产量。本综述旨在全面评估近几十年来水产养殖营养领域的最新进展。为此,它将详细阐述主要发现、理论进展、实际问题以及可持续水产养殖的策略,以及现代生物技术在水产养殖营养中的潜在应用。此外,通过阐明这些进展并探讨其潜在影响和应用,可能会促使水产养殖实践朝着更大的可持续性发生范式转变。本综述的总体目标是强调水产养殖营养方面的研究差距和领域,在这些领域进一步探索对于实现水产养殖的长期、生态友好型扩张至关重要。