4.7 Article

Linking Pedobacter lusitanus NL19 volatile exometabolome with growth medium composition: what can we learn using comprehensive two-dimensional gas chromatography coupled to time-of-flight mass spectrometry?

Journal

ANALYTICAL AND BIOANALYTICAL CHEMISTRY
Volume -, Issue -, Pages -

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s00216-022-04505-6

Keywords

Pedobacter lusitanus NL19; Pedobacter himalayensis MTCC6384; Volatilome; Microbial metabolomics; GC x GC-ToFMS; HS-SPME

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Microbial metabolomics is used to analyze and understand the metabolites produced and released by microorganisms in specific conditions. This research aims to investigate the impact of culture media changes on the metabolic profile and production of biotechnologically relevant compounds in Pedobacter lusitanus NL19 and Pedobacter himalayensis MTCC 6384. The study identified 320 metabolites belonging to different chemical families and associated 80 metabolites with various metabolic pathways. The findings provide insights into how slight changes in culture media composition can affect microbial metabolism and have potential applications in metabolomics pipeline construction and biotechnology.
Microbial metabolomics allows understanding and to comprehensively analyse metabolites, and their related cellular and metabolic processes, that are produced and released to the extracellular environment under specific conditions. In that regard, the main objective of this research is to understand the impact of culture media changes in the metabolic profile of Pedobacter lusitanus NL19 (NL19) and Pedobacter himalayensis MTCC 6384 (MTCC6384) and respective influence on the production of biotechnologically relevant compounds. Solid-phase microextraction combined with comprehensive two-dimensional gas chromatography coupled to time-of-flight mass spectrometry with time-of-flight analyser (GC x GC-ToFMS) was applied to comprehensively study the metabolites produced by NL19 and MTCC6384 both in tryptic soy broth 100% (TSB100) and tryptic soy broth with 25% casein peptone (PC25). A total of 320 metabolites were putatively identified, which belong to different chemical families: alcohols, aldehydes, esters, ethers, hydrocarbons, ketones, nitrogen compounds, sulphur compounds, monoterpenes, and sesquiterpenes. Metabolites that were statistically different from the control (sterile medium) were selected allowing for the construction of the metabolic profile of both strains. A set of 80 metabolites was tentatively associated to the metabolic pathways such as the metabolism of fatty acids, branched-chain aminoacids, phenylalanine, methionine, aromatic compounds, and monoterpene and sesquiterpene biosynthesis. This study allowed to better understand how slight changes of the culture media and thus the composition of nutrients impair the metabolic profile of bacteria, which may be further explored for metabolomics pipeline construction or biotechnological applications.

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