Department of Food Science and Biotechnology, Kangwon National University, Chuncheon 200-701, Korea.
SportBiomics, Sacramento Inc., California, CA 95660, USA.
Biomolecules. 2021 Feb 17;11(2):300. doi: 10.3390/biom11020300.
The advent of omic technology has made it possible to identify viable but unculturable micro-organisms in the gut. Therefore, application of multi-omic technologies in gut microbiome studies has become invaluable for unveiling a comprehensive interaction between these commensals in health and disease. Meanwhile, despite the successful identification of many microbial and host-microbial cometabolites that have been reported so far, it remains difficult to clearly identify the origin and function of some proteins and metabolites that are detected in gut samples. However, the application of single omic techniques for studying the gut microbiome comes with its own challenges which may be overcome if a number of different omics techniques are combined. In this review, we discuss our current knowledge about multi-omic techniques, their challenges and future perspective in this field of gut microbiome studies.
随着组学技术的出现,人们有可能鉴定出肠道中具有生命力但不可培养的微生物。因此,多组学技术在肠道微生物组研究中的应用对于揭示这些共生微生物在健康和疾病中的综合相互作用变得非常有价值。同时,尽管目前已经成功鉴定了许多微生物和宿主微生物共代谢物,但仍难以清楚地确定在肠道样本中检测到的一些蛋白质和代谢物的来源和功能。然而,如果将多种不同的组学技术结合起来,应用单一组学技术来研究肠道微生物组也存在其自身的挑战。在这篇综述中,我们讨论了我们目前对多组学技术的了解,以及它们在肠道微生物组研究领域的挑战和未来前景。