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Genome-scale models of bacterial metabolism: reconstruction and applications

机译:细菌代谢的基因组规模模型:重建和应用

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摘要

Genome-scale metabolic models bridge the gap between genome-derived biochemical information and metabolic phenotypes in a principled manner, providing a solid interpretative framework for experimental data related to metabolic states, and enabling simple in silico experiments with whole-cell metabolism. Models have been reconstructed for almost 20 bacterial species, so far mainly through expert curation efforts integrating information from the literature with genome annotation. A wide variety of computational methods exploiting metabolic models have been developed and applied to bacteria, yielding valuable insights into bacterial metabolism and evolution, and providing a sound basis for computer-assisted design in metabolic engineering. Recent advances in computational systems biology and high-throughput experimental technologies pave the way for the systematic reconstruction of metabolic models from genomes of new species, and a corresponding expansion of the scope of their applications. In this review, we provide an introduction to the key ideas of metabolic modeling, survey the methods, and resources that enable model reconstruction and refinement, and chart applications to the investigation of global properties of metabolic systems, the interpretation of experimental results, and the re-engineering of their biochemical capabilities.
机译:基因组规模的代谢模型以有原则的方式弥合了基因组衍生的生化信息和代谢表型之间的鸿沟,为与代谢状态相关的实验数据提供了坚实的解释框架,并实现了具有全细胞代谢的简单计算机模拟实验。到目前为止,已经通过针对近20种细菌的模型重建了模型,主要是通过专家策展的努力,将文献中的信息与基因组注释相结合。已经开发了多种利用代谢模型的计算方法并将其应用于细菌,从而为细菌代谢和进化提供了有价值的见识,并为代谢工程中的计算机辅助设计提供了良好的基础。计算系统生物学和高通量实验技术的最新进展为从新物种的基因组系统重建代谢模型铺平了道路,并相应扩展了其应用范围。在这篇综述中,我们提供了关于代谢建模的关键思想的介绍,概述了能够进行模型重建和完善的方法和资源,并绘制了图表,用于研究代谢系统的整体特性,解释实验结果以及重新设计其生化能力。

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