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Systematic Characterization and Analysis of the Taxonomic Drivers of Functional Shifts in the Human Microbiome

机译:人微生物组中功能变化的分类司机的系统特征及分析

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Comparative analyses of the human microbiome have identified both taxonomic and functional shifts that are associated with numerous diseases. To date, however, microbiome taxonomy and function have mostly been studied independently and the taxonomic drivers of functional imbalances have not been systematically identified. Here, we present FishTaco, an analytical and computational framework that integrates taxonomic and functional comparative analyses to accurately quantify taxon-level contributions to disease-associated functional shifts. Applying FishTaco to several large-scale metagenomic cohorts, we show that shifts in the microbiome's functional capacity can be traced back to specific taxa. Furthermore, the set of taxa driving functional shifts and their contribution levels vary markedly between functions. We additionally find that similar functional imbalances in different diseases are driven by both disease-specific and shared taxa. Such integrated analysis of microbiome ecological and functional dynamics can inform future microbiome-based therapy, pinpointing putative intervention targets for manipulating the microbiome's functional capacity.
机译:对人类微生物组的比较分析已经确定了与许多疾病相关的分类和功能变化。然而,迄今为止,微生物组分类学和功能大多是独立研究的,功能失衡的分类学驱动因素尚未得到系统识别。在这里,我们介绍了FishTaco,这是一个分析和计算框架,集成了分类学和功能比较分析,以准确量化分类单元水平对疾病相关功能转移的贡献。将FishTaco应用于几个大型宏基因组队列,我们表明微生物组功能能力的变化可以追溯到特定的分类群。此外,推动功能转移的分类群及其贡献水平在不同功能之间存在显著差异。我们还发现,不同疾病中类似的功能失衡是由疾病特异性分类群和共享分类群共同驱动的。这种对微生物组生态和功能动力学的综合分析可以为未来基于微生物组的治疗提供信息,精确定位操纵微生物组功能能力的假定干预目标。

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