College of Marine Science, Fujian Agriculture and Forestry University, Fuzhou, 350002, PR China; College of Life Science, Fujian Agriculture and Forestry University, Fuzhou, 350002, PR China.
College of Marine Science, Fujian Agriculture and Forestry University, Fuzhou, 350002, PR China; College of Life Science, Fujian Agriculture and Forestry University, Fuzhou, 350002, PR China; Department of Animal and Fish Production, Faculty of Agriculture (Saba Basha), Alexandria University, Alexandria, 21531, Egypt.
Fish Shellfish Immunol. 2022 Oct;129:1-12. doi: 10.1016/j.fsi.2022.08.056. Epub 2022 Aug 27.
In aquaculture, nutrigenomics or "nutritional genomics" is concerned with studying the impacts of nutrients and food ingredients on gene expressions and understanding the interactions that may occur between nutrients and dietary bioactive ingredients with the genome and cellular molecules of the treated aquatic animals at the molecular levels that will, in turn, mediate gene expression. This concept will throw light on or provide important information to recognize better how specific nutrients may influence the overall health status of aquatic organisms. In crustaceans, it is well known that the nutritional requirements vary among different species. Thus, studying the nutrigenomics in different crustacean species is of significant importance. Of interest, recognition of the actual mechanisms that may be associated with the effects of the nutrients on the immune responses of crustaceans will provide clear outstanding protection, build a solid immune system, and also decrease the possibilities of the emergence of infectious diseases in the culture systems. Similarly, the growth, molting, lipid metabolism, antioxidant capacity, and reproduction could be effectively enhanced by using specific nutrients. In the area of crustacean research, nutrigenomics has been rapidly grown for addressing several aspects related to the influences of nutrients on crustacean development. Several researchers have studied the relationships between several functional genes and their expression profile with several physiological functions of crustaceans. They found a close association between the effects of optimal feeding with efficient production, growth, reproduction development, and health status of several crustacean species. Moreover, they illustrated that regulation of the gene expression in individual cells by different nutrients and formulated feeds could improve the growth development and immunity-boosting of several crustacean species. The present review will spotlight on such relationships between the dietary nutrients and expression of genes linked with growth, metabolism, molting, antioxidant, reproduction, and immunity of several crustacean species. The literature included in this review article will provide references and future outlooks for the upcoming research plans. This will contribute positively for maintaining the sustainability of the sector of the crustacean industry.
在水产养殖中,营养基因组学或“营养基因组学”关注的是研究营养素和食物成分对基因表达的影响,并了解营养素与饮食生物活性成分与受处理水生动物的基因组和细胞分子之间可能发生的相互作用,这些相互作用将在分子水平上调节基因表达。这一概念将阐明或提供重要信息,以更好地了解特定营养素如何影响水生生物的整体健康状况。在甲壳类动物中,众所周知,不同物种的营养需求不同。因此,研究不同甲壳类动物的营养基因组学具有重要意义。有趣的是,认识到可能与营养素对甲壳类动物免疫反应的影响相关的实际机制,将为提供明确的卓越保护、建立坚实的免疫系统以及降低养殖系统中传染病的出现可能性提供清晰的认识。同样,可以有效地利用特定营养素来增强生长、蜕皮、脂质代谢、抗氧化能力和繁殖能力。在甲壳类动物研究领域,营养基因组学的发展迅速,以解决与营养素对甲壳类动物发育的影响相关的几个方面。一些研究人员已经研究了几种功能基因与几种甲壳类动物的生理功能的表达谱之间的关系。他们发现,最佳饲养与高效生产、生长、繁殖发育和几种甲壳类动物的健康状况之间存在密切联系。此外,他们表明,不同营养素和配方饲料对个体细胞中基因表达的调节可以提高几种甲壳类动物的生长发育和免疫增强。本综述将重点介绍几种甲壳类动物的生长、代谢、蜕皮、抗氧化、繁殖和免疫相关的膳食营养素与基因表达之间的这种关系。本文综述中包含的文献将为即将到来的研究计划提供参考和未来展望。这将为甲壳类动物产业的可持续发展做出积极贡献。