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Holo-Omics: Integrated Host-Microbiota Multi-omics for Basic and Applied Biological Research

机译:Holo-Omics:基础和应用生物学研究的集成宿主微生物群多OMICS

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摘要

From ontogenesis to homeostasis, the phenotypes of complex organisms are shaped by the bidirectional interactions between the host organisms and their associated microbiota. Current technology can reveal many such interactions by combining multi-omic data from both hosts and microbes. However, exploring the full extent of these interactions requires careful consideration of study design for the efficient generation and optimal integration of data derived from (meta)genomics, (meta)transcriptomics, (meta)proteomics, and (meta)metabolomics. In this perspective, we introduce the holo-omic approach that incorporates multi-omic data from both host and microbiota domains to untangle the interplay between the two. We revisit the recent literature on biomolecular host-microbe interactions and discuss the implementation and current limitations of the holo-omic approach. We anticipate that the application of this approach can contribute to opening new research avenues and discoveries in biomedicine, biotechnology, agricultural and aquacultural sciences, nature conservation, as well as basic ecological and evolutionary research.
机译:从组织发生到稳态,复杂生物的表型通过宿主生物与其相关的微生物群系之间的双向相互作用而成。目前的技术可以通过组合来自主机和微生物的多个OMIC数据来揭示许多这样的交互。然而,探索这些相互作用的全部程度需要仔细考虑研究设计,以获得从(Meta)基因组学,(Meta)转录组织,(Meta)蛋白质组学和(Meta)代谢组学的有效发电和最佳的数据集成。在这种角度来看,我们介绍了来自宿主和微生物域域的多个OMIC数据,以解开两者之间的相互作用。我们重新审视了最近的生物分子宿主微生物相互作用文献,并讨论了Holo-Omic方法的实施和当前限制。我们预计这种方法的应用可以有助于开设新的研究途径和发现生物医生,生物技术,农业和水产养殖科学,自然保护以及基本生态和进化研究。

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