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代谢组学:现状与不断发展的方法和工具

Metabolomics: current state and evolving methodologies and tools.

作者信息

Oldiges Marco, Lütz Stephan, Pflug Simon, Schroer Kirsten, Stein Nadine, Wiendahl Christiane

机构信息

Institute of Biotechnology 2, Forschungszentrum Jülich GmbH, 52425, Jülich, Germany.

出版信息

Appl Microbiol Biotechnol. 2007 Sep;76(3):495-511. doi: 10.1007/s00253-007-1029-2. Epub 2007 Jul 31.

Abstract

In recent years, metabolomics developed to an accepted and valuable tool in life sciences. Substantial improvements of analytical hardware allow metabolomics to run routinely now. Data are successfully used to investigate genotype-phenotype relations of strains and mutants. Metabolomics facilitates metabolic engineering to optimise mircoorganisms for white biotechnology and spreads to the investigation of biotransformations and cell culture. Metabolomics serves not only as a source of qualitative but also quantitative data of intra-cellular metabolites essential for the model-based description of the metabolic network operating under in vivo conditions. To collect reliable metabolome data sets, culture and sampling conditions, as well as the cells' metabolic state, are crucial. Hence, application of biochemical engineering principles and method standardisation efforts become important. Together with the other more established omics technologies, metabolomics will strengthen its claim to contribute to the detailed understanding of the in vivo function of gene products, biochemical and regulatory networks and, even more ambitious, the mathematical description and simulation of the whole cell in the systems biology approach. This knowledge will allow the construction of designer organisms for process application using biotransformation and fermentative approaches making effective use of single enzymes, whole microbial and even higher cells.

摘要

近年来,代谢组学已发展成为生命科学中一种被广泛认可且有价值的工具。分析硬件的显著改进使得代谢组学如今能够常规开展。数据已成功用于研究菌株和突变体的基因型 - 表型关系。代谢组学有助于代谢工程,以优化用于白色生物技术的微生物,并扩展到生物转化和细胞培养的研究。代谢组学不仅是细胞内代谢物定性数据的来源,也是基于模型描述体内条件下运行的代谢网络所必需的定量数据的来源。为了收集可靠的代谢组数据集,培养和采样条件以及细胞的代谢状态至关重要。因此,生化工程原理的应用和方法标准化工作变得很重要。与其他更成熟的组学技术一起,代谢组学将更有力地宣称其有助于详细了解基因产物、生化和调控网络的体内功能,甚至更有雄心的是,在系统生物学方法中对整个细胞进行数学描述和模拟。这些知识将有助于构建用于过程应用的设计生物体,利用生物转化和发酵方法有效利用单一酶、整个微生物甚至更高等的细胞。

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