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From Network Analysis to Functional Metabolic Modeling of the Human Gut Microbiota

机译:从网络分析到人体肠道微生物的功能代谢建模

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An important hallmark of the human gut microbiota is its species diversity and complexity. Various diseases have been associated with a decreased diversity leading to reduced metabolic functionalities. Common approaches to investigate the human microbiota include high-throughput sequencing with subsequent correlative analyses. However, to understand the ecology of the human gut microbiota and consequently design novel treatments for diseases, it is important to represent the different interactions between microbes with their associated metabolites. Computational systems biology approaches can give further mechanistic insights by constructing data- or knowledge-driven networks that represent microbe interactions. In this minireview, we will discuss current approaches in systems biology to analyze the human gut microbiota, with a particular focus on constraint-based modeling. We will discuss various community modeling techniques with their advantages and differences, as well as their application to predict the metabolic mechanisms of intestinal microbial communities. Finally, we will discuss future perspectives and current challenges of simulating realistic and comprehensive models of the human gut microbiota.
机译:人体肠道微生物群的重要标志是其物种多样性和复杂性。各种疾病与降低的多样性有关,导致代谢功能降低。探讨人微生物群的常见方法包括随后的相关分析的高通量测序。然而,要了解人体肠道微生物的生态,因此设计用于疾病的新药治疗,重要的是表示微生物与其相关代谢物之间的不同相互作用。计算系统通过构建代表微生物交互的数据或知识驱动的网络可以提供进一步的机械洞察。在这个MINIREVIEW中,我们将讨论系统生物学中的目前的方法,以分析人体肠道微生物群,特别关注基于约束的建模。我们将讨论各种社区建模技术,其优点和差异,以及其应用来预测肠道微生物群落的代谢机制。最后,我们将讨论模拟人体肠道微生物群现实和综合模型的未来观点和当前挑战。

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