Llewellyn Martin S, Boutin Sébastien, Hoseinifar Seyed Hossein, Derome Nicolas
Département de Biologie, Institut de Biologie Intégrative et des Systèmes, Université Laval Québec, QC, Canada ; Molecular Ecology and Fisheries Genetics Laboratory, School of Biological Sciences, University of Wales Bangor, UK.
Département de Biologie, Institut de Biologie Intégrative et des Systèmes, Université Laval Québec, QC, Canada.
Front Microbiol. 2014 Jun 2;5:207. doi: 10.3389/fmicb.2014.00207. eCollection 2014.
Indigenous microbiota play a critical role in the lives of their vertebrate hosts. In human and mouse models it is increasingly clear that innate and adaptive immunity develop in close concert with the commensal microbiome. Furthermore, several aspects of digestion and nutrient metabolism are governed by intestinal microbiota. Research on teleosts has responded relatively slowly to the introduction of massively parallel sequencing procedures in microbiomics. Nonetheless, progress has been made in biotic and gnotobiotic zebrafish models, defining a core microbiome and describing its role in development. However, microbiome research in other teleost species, especially those important from an aquaculture perspective, has been relatively slow. In this review, we examine progress in teleost microbiome research to date. We discuss teleost microbiomes in health and disease, microbiome ontogeny, prospects for successful microbiome manipulation (especially in an aquaculture setting) and attempt to identify important future research themes. We predict an explosion in research in this sector in line with the increasing global demand for fish protein, and the need to find sustainable approaches to improve aquaculture yield. The reduced cost and increasing ease of next generation sequencing technologies provides the technological backing, and the next 10 years will be an exciting time for teleost microbiome research.
本土微生物群在其脊椎动物宿主的生命中发挥着关键作用。在人类和小鼠模型中,越来越明显的是,先天性免疫和适应性免疫与共生微生物群密切协同发展。此外,消化和营养代谢的几个方面受肠道微生物群的调控。在微生物组学中引入大规模平行测序程序后,硬骨鱼的相关研究反应相对较慢。尽管如此,在无菌和已知菌斑马鱼模型方面已取得进展,确定了核心微生物群并描述了其在发育中的作用。然而,其他硬骨鱼物种的微生物组研究,尤其是从水产养殖角度来看重要的物种,进展相对缓慢。在这篇综述中,我们审视了迄今为止硬骨鱼微生物组研究的进展。我们讨论了硬骨鱼在健康和疾病状态下的微生物群、微生物组个体发生、成功进行微生物组调控的前景(尤其是在水产养殖环境中),并试图确定未来重要的研究主题。我们预计,随着全球对鱼类蛋白质需求的增加,以及寻找提高水产养殖产量的可持续方法的需求,该领域的研究将呈爆发式增长。下一代测序技术成本的降低和操作日益简便提供了技术支持,未来10年将是硬骨鱼微生物组研究令人兴奋的时期。