Hasan Imam, Rimoldi Simona, Saroglia Giulio, Terova Genciana
Department of Biotechnology and Life Sciences, University of Insubria, Via Dunant, 3-21100 Varese, Italy.
Medical Devices Area, Institute of Digital Technologies for Personalized Healthcare-MeDiTech, Scuola Universitaria Professionale della Svizzera Italiana, Via La Santa 1, CH-6962 Lugano, Switzerland.
Animals (Basel). 2023 May 14;13(10):1633. doi: 10.3390/ani13101633.
Aquaculture is the fastest-growing agricultural industry in the world. Fishmeal is an essential component of commercial fish diets, but its long-term sustainability is a concern. Therefore, it is important to find alternatives to fishmeal that have a similar nutritional value and, at the same time, are affordable and readily available. The search for high-quality alternatives to fishmeal and fish oil has interested researchers worldwide. Over the past 20 years, different insect meals have been studied as a potential alternate source of fishmeal in aquafeeds. On the other hand, probiotics-live microbial strains-are being used as dietary supplements and showing beneficial effects on fish growth and health status. Fish gut microbiota plays a significant role in nutrition metabolism, which affects a number of other physiological functions, including fish growth and development, immune regulation, and pathogen resistance. One of the key reasons for studying fish gut microbiota is the possibility to modify microbial communities that inhabit the intestine to benefit host growth and health. The development of DNA sequencing technologies and advanced bioinformatics tools has made metagenomic analysis a feasible method for researching gut microbes. In this review, we analyze and summarize the current knowledge provided by studies of our research group on using insect meal and probiotic supplements in aquafeed formulations and their effects on different fish gut microbiota. We also highlight future research directions to make insect meals a key source of proteins for sustainable aquaculture and explore the challenges associated with the use of probiotics. Insect meals and probiotics will undoubtedly have a positive effect on the long-term sustainability and profitability of aquaculture.
水产养殖是世界上发展最快的农业产业。鱼粉是商业鱼类饲料的重要组成部分,但其长期可持续性令人担忧。因此,找到具有相似营养价值、同时价格合理且易于获取的鱼粉替代品很重要。寻找高质量的鱼粉和鱼油替代品引起了全球研究人员的兴趣。在过去20年里,不同的昆虫粉已作为水产饲料中鱼粉的潜在替代来源进行了研究。另一方面,益生菌(活的微生物菌株)正被用作膳食补充剂,并对鱼类生长和健康状况显示出有益影响。鱼类肠道微生物群在营养代谢中起重要作用,这会影响许多其他生理功能,包括鱼类生长发育、免疫调节和抗病能力。研究鱼类肠道微生物群的一个关键原因是有可能改变栖息在肠道中的微生物群落,以利于宿主生长和健康。DNA测序技术和先进生物信息学工具的发展使宏基因组分析成为研究肠道微生物的可行方法。在本综述中,我们分析并总结了我们研究小组关于在水产饲料配方中使用昆虫粉和益生菌补充剂及其对不同鱼类肠道微生物群影响的研究提供的现有知识。我们还强调了未来的研究方向,以使昆虫粉成为可持续水产养殖的关键蛋白质来源,并探索与使用益生菌相关的挑战。昆虫粉和益生菌无疑将对水产养殖的长期可持续性和盈利能力产生积极影响。