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铜绿假单胞菌如何适应各种环境:代谢组学方法。

How Pseudomonas aeruginosa adapts to various environments: a metabolomic approach.

机构信息

Department of Biochemistry and Bioinformatics, Institute for Biochemistry & Biotechnology, Technische Universitaet Braunschweig, 38106 Braunschweig, Germany.

出版信息

Environ Microbiol. 2010 Jun;12(6):1734-47. doi: 10.1111/j.1462-2920.2010.02253.x.

Abstract

In addition to transcriptome and proteome studies, metabolome analysis represents a third complementary approach to identify metabolic pathways and adaptation processes. In order to elucidate basic principles of metabolic versatility of Pseudomonas aeruginosa, we investigated the metabolome profiles of two genetically and morphologically divergent strains, the reference strain PAO1 and the mucoid clinical isolate TBCF10839 in exponential growth and stationary phase in six different carbon sources (cadaverine, casamino acids, citrate, glucose, succinate and tryptone). Both strains exhibited strong similarities in mode of growth; the metabolite patterns were mainly defined by the growth condition. Besides this adaptive response, a basic core metabolism shapes the P. aeruginosa metabolome, independent of growth phase, carbon source and genetic background. This core metabolism includes pathways related to the central energy and amino acid metabolism. These consistently utilized metabolic pathways are closely related to glutamate which represents a dominant metabolite in all conditions analysed. In nutrient-depleted media of stationary phase cultures, P. aeruginosa maintains a specific repertoire of metabolic pathways that are related to the carbon source formerly available. This specified adaptation strategy combined with the invariant basic core metabolism may represent a fundamental requirement for the metabolic versatility of this organism.

摘要

除了转录组和蛋白质组研究外,代谢组分析代表了识别代谢途径和适应过程的第三种互补方法。为了阐明铜绿假单胞菌代谢多功能性的基本原理,我们研究了两种遗传和形态上不同的菌株的代谢组图谱,即参考菌株 PAO1 和粘液临床分离株 TBCF10839,在指数生长期和静止期在六种不同的碳源(腐胺、复合氨基酸、柠檬酸盐、葡萄糖、琥珀酸盐和色氨酸)中。这两种菌株在生长方式上表现出很强的相似性;代谢模式主要由生长条件决定。除了这种适应性反应外,基本的核心代谢还塑造了铜绿假单胞菌的代谢组,不受生长阶段、碳源和遗传背景的影响。这种核心代谢包括与中心能量和氨基酸代谢相关的途径。这些经常利用的代谢途径与谷氨酸密切相关,谷氨酸是所有分析条件下的主要代谢物。在静止期培养物的营养缺乏培养基中,铜绿假单胞菌维持与以前可用的碳源有关的特定代谢途径 repertoire。这种特定的适应策略与不变的基本核心代谢相结合,可能是该生物体代谢多功能性的基本要求。

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