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Functional Classification of Genome-Scale Metabolic Networks

机译:基因组规模代谢网络的功能分类

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摘要

We propose two strategies to characterize organisms with respect to their metabolic capabilities. The first, investigative, strategy describes metabolic networks in terms of their capability to utilize different carbon sources, resulting in the concept of carbon utilization spectra. In the second, predictive, approach minimal nutrient combinations are predicted from the structure of the metabolic networks, resulting in a characteristic nutrient profile. Both strategies allow for a quantification of functional properties of metabolic networks, allowing to identify groups of organisms with similar functions. We investigate whether the functional description reflects the typical environments of the corresponding organisms by dividing all species into disjoint groups based on whether they are aerotolerant and/or photosynthetic. Despite differences in the underlying concepts, both measures display some common features. Closely related organisms often display a similar functional behavior and in both cases the functional measures appear to correlate with the considered classes of environments. Carbon utilization spectra and nutrient profiles are complementary approaches toward a functional classification of organism-wide metabolic networks. Both approaches contain different information and thus yield different clusterings, which are both different from the classical taxonomy of organisms. Our results indicate that a sophisticated combination of our approaches will allow for a quantitative description reflecting the lifestyles of organisms.
机译:我们提出了两种策略来表征生物的代谢能力。第一种研究策略以代谢网络利用不同碳源的能力来描述它们,从而形成了碳利用谱的概念。在第二种预测性方法中,根据代谢网络的结构预测出最少的养分组合,从而得出特征性的养分特征。两种策略都可以量化代谢网络的功能特性,从而可以识别具有相似功能的生物群。我们根据功能描述是否具有耐气性和/或光合作用,将所有物种分为不相交的组,从而研究功能描述是否反映了相应生物的典型环境。尽管基本概念有所不同,但这两种方法都显示出一些共同的特征。密切相关的生物通常表现出相似的功能行为,在两种情况下,功能措施似乎都与所考虑的环境类别相关。碳利用谱和营养素分布图是对整个有机体代谢网络进行功能分类的补充方法。两种方法都包含不同的信息,因此产生不同的聚类,这与经典的生物分类法不同。我们的结果表明,我们方法的精密组合将允许对反映生物生活方式的定量描述。

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