Application of Metabolomics for High Resolution Phenotype Analysis.

Q3 Physics and Astronomy
E. Fukusaki
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引用次数: 10

Abstract

Metabolome, a total profile of whole metabolites, is placed on downstream of proteome. Metabolome is thought to be results of implementation of genomic information. In other words, metabolome can be called as high resolution phenotype. The easiest operation of metabolomics is the integration to the upstream ome information including transcriptome and/or proteome. Those trials have been reported at a certain scientific level. In addition, metabolomics can be operated in stand-alone mode without any other ome information. Among metabolomics tactics, the author's group is particularly focusing on metabolic fingerprinting, in which metabolome information is employed as explanatory variant to evaluate response variant. Metabolic fingerprinting technique is expected not only for analyzing slight difference depending on genotype difference but also for expressing dynamic variation of living organisms. The author introduces several good examples which he performed. Those are useful for easy understanding of the power of metabolomics. In addition, the author mentions the latest technology for analysis of metabolic dynamism. The author's group developed a facile analytical method for semi-quantitative metabolic dynamism. The author introduces the novel method that uses time dependent variation of isotope distribution based on stable isotope dilution.
代谢组学在高分辨率表型分析中的应用。
代谢组是整个代谢产物的总谱,位于蛋白质组的下游。代谢组被认为是基因组信息实现的结果。换句话说,代谢组可以被称为高分辨率表型。代谢组学最简单的操作是整合上游基因组信息,包括转录组和/或蛋白质组。这些试验已经在一定的科学水平上得到了报道。此外,代谢组学可以在没有任何其他一些信息的独立模式下操作。在代谢组学策略中,作者小组特别关注代谢指纹,将代谢组信息作为解释变量来评估反应变量。代谢指纹图谱技术不仅可以用于分析基因型差异的微小差异,而且可以用于表达生物体的动态变化。作者介绍了他表演的几个好例子。这些都有助于理解代谢组学的力量。此外,作者还介绍了代谢动力学分析的最新技术。作者小组开发了一种简便的半定量代谢动力学分析方法。本文介绍了基于稳定同位素稀释的同位素分布随时间变化的新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mass spectrometry
Mass spectrometry Physics and Astronomy-Instrumentation
CiteScore
1.90
自引率
0.00%
发文量
3
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