Lazado Carlo C, Caipang Christopher Marlowe A, Estante Erish G
Section for Aquaculture, National Institute of Aquatic Resources, Technical University of Denmark, North Sea Science Park, 9850, Hirtshals, Denmark.
School of Applied Science, Temasek Polytechnic, 529757, Singapore.
Fish Shellfish Immunol. 2015 Jul;45(1):2-12. doi: 10.1016/j.fsi.2015.02.023. Epub 2015 Feb 20.
Aquatic animals harbor a great number of microorganisms with interesting biological and biochemical diversity. Besides serving as the natural defense system of the host, the utilization potential of this microbial association has been identified particularly as reservoirs of candidate probiotics. Host-derived probiotics have gained popularity in recent years as they offer an alternative source of beneficial microbes to the industry that is customarily dependent on the use of terrestrial microorganisms. At present, there is an overwhelming number of candidate probiotics in aquaculture but their large-scale application is restricted by bio-technological concerns and fragmentary documented probiotic actions. This paper presents the current understanding on the use of probiotics as a sustainable alternative that promotes health and welfare in fish and penaeids. In particular, this paper discusses the relevance of host microbiota and its potential as a source of candidate probiotics. It also revisits the interaction between probiotics and host immunity to provide the foundation of the immunomodulatory functions of host-derived probiotics. Several studies demonstrating the immunomodulatory capabilities of host-derived candidate probiotics are given to establish the current knowledge and provide avenues for future research and development in this thematic area of probiotics research in aquaculture.
水生动物体内蕴藏着大量具有有趣生物学和生物化学多样性的微生物。除了作为宿主的天然防御系统外,这种微生物群落的利用潜力尤其被确定为候选益生菌的来源。近年来,宿主来源的益生菌越来越受欢迎,因为它们为通常依赖使用陆生微生物的行业提供了有益微生物的替代来源。目前,水产养殖中有大量的候选益生菌,但其大规模应用受到生物技术问题和益生菌作用记录不完整的限制。本文介绍了目前对益生菌作为促进鱼类和对虾健康与福利的可持续替代方法的理解。特别是,本文讨论了宿主微生物群的相关性及其作为候选益生菌来源的潜力。它还重新审视了益生菌与宿主免疫之间的相互作用,以提供宿主来源益生菌免疫调节功能的基础。给出了几项证明宿主来源候选益生菌免疫调节能力的研究,以确立当前的知识,并为水产养殖益生菌研究这一主题领域的未来研发提供途径。