Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10889827 | Journal of Microbiological Methods | 2010 | 8 Pages |
Abstract
Quantitative fatty acid composition of microorganisms at various growth space points is required for understanding membrane associated processes of cells, but the majority of the relevant publications still restrict to the relative compositions. In the current study, a simple and reliable method for quantitative measurement of fatty acid content in bacterial biomass without prior derivatization using ultra performance liquid chromatography-electrospray ionization mass spectrometry was developed. The method was applied for investigating the influence of specific growth rate and pH on the fatty acid profiles of two biotechnologically important microorganisms - Gram-negative bacteria Escherichia coli and Gram-positive bacteria Lactococcus lactis grown in controlled physiological states. It was found that the membranes of slowly growing cells are more rigid and that the fatty acid fraction of the cells of L. lactis diminishes considerably with increasing growth rate.
Keywords
LOQSFATOFESI-MSUPLCAPCIFFATICUFARSDAPEPBSCFALABElectrospray Ionization Mass SpectrometryCyclopropane fatty acidsFree fatty acidssaturated fatty acidsUnsaturated fatty acidsEscherichia colirelative standard deviationLactic acid bacteriatime of flightFAMELactococcus lactisLodfatty acid methyl esterslimit of quantificationlimit of detectionPhosphate-buffered salineultra performance liquid chromatographyhigh performance liquid chromatographyHPLCtotal ion chromatogramelectron ionizationatmospheric pressure chemical ionization
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Authors
Merli Å pitsmeister, Kaarel Adamberg, Raivo Vilu,