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解脂假交替单胞菌TC8生物膜和浮游表型之间的代谢组和蛋白质组变化

Metabolome and proteome changes between biofilm and planktonic phenotypes of the marine bacterium Pseudoalteromonas lipolytica TC8.

作者信息

Favre Laurie, Ortalo-Magné Annick, Pichereaux Carole, Gargaros Audrey, Burlet-Schiltz Odile, Cotelle Valérie, Culioli Gérald

机构信息

a MAPIEM EA 4323 , Université de Toulon , Toulon , France.

b Fédération de Recherche FR3450 , CNRS , Toulouse , France.

出版信息

Biofouling. 2018 Feb;34(2):132-148. doi: 10.1080/08927014.2017.1413551. Epub 2018 Jan 10.

Abstract

A number of bacteria adopt various lifestyles such as planktonic free-living or sessile biofilm stages. This enables their survival and development in a wide range of contrasting environments. With the aim of highlighting specific metabolic shifts between these phenotypes and to improve the overall understanding of marine bacterial adhesion, a dual metabolomics/proteomics approach was applied to planktonic and biofilm cultures of the marine bacterium Pseudoalteromonas lipolytica TC8. The liquid chromatography mass spectrometry (LC-MS) based metabolomics study indicated that membrane lipid composition was highly affected by the culture mode: phosphatidylethanolamine (PEs) derivatives were over-produced in sessile cultures while ornithine lipids (OLs) were more specifically synthesized in planktonic samples. In parallel, differences between proteomes revealed that peptidases, oxidases, transcription factors, membrane proteins and the enzymes involved in histidine biosynthesis were over-expressed in biofilms while proteins involved in heme production, nutrient assimilation, cell division and arginine/ornithine biosynthesis were specifically up-regulated in free-living cells.

摘要

许多细菌具有多种生活方式,如浮游自由生活或固着生物膜阶段。这使它们能够在各种截然不同的环境中生存和发展。为了突出这些表型之间的特定代谢变化,并增进对海洋细菌黏附的整体理解,采用了代谢组学/蛋白质组学双方法,对海洋细菌解脂假交替单胞菌TC8的浮游培养物和生物膜培养物进行研究。基于液相色谱质谱(LC-MS)的代谢组学研究表明,膜脂组成受培养模式的影响很大:在固着培养物中磷脂酰乙醇胺(PEs)衍生物过量产生,而在浮游样本中鸟氨酸脂(OLs)的合成更为特异。同时,蛋白质组之间的差异显示,肽酶、氧化酶、转录因子、膜蛋白以及参与组氨酸生物合成的酶在生物膜中过度表达,而参与血红素产生、营养同化、细胞分裂以及精氨酸/鸟氨酸生物合成的蛋白质在自由生活细胞中特异性上调。

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