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A Toolkit to Enable Hydrocarbon Conversion in Aqueous Environments
Published on: October 2, 2012
Bacterial-driven lipid remodeling in avocado fermentation via hydroxylation and oxidation routes
Ali Zein Alabiden Tlais1, Ilario Losito2, Pasquale Filannino3
1Faculty of Agricultural, Environmental and Food Sciences, Free University of Bolzano-Bozen, 39100 Bolzano, Italy; International Center on Food Fermentations (ICOFF), NOITech Park, 39100 Bolzano, Italy.
Abstract:
We investigated the lipid metabolism of three lactic acid bacteria in fermenting two avocado cultivars. Using Liquid Chromatography-High-Resolution Mass Spectrometry, we tracked the fermentation-induced modifications in native lipid profiles. These modifications unveiled an increase in free fatty acids (FA) but also the generation of their oxidized derivatives associated with 14 different m/z ratios. Mono-, di-, and tri-hydroxylated derivatives originating from major unsaturated FA (18:1, 18:2, 18:3), along with oxidized forms of 16:0 and 18:0 FA, were recognized through the interpretation of tandem mass spectrometry data. Tandem mass spectrometry also suggested oxidized derivatives from minor FA (16,1, 16:2). In certain cases, bacterial-driven hydroxylation processes were confirmed on oleic acid in synthetic media. Overall, bacterial-driven hydroxylation and oxidation enriched avocado with potentially bioactive lipids, offering opportunities for nutraceutical and food applications, with minimal undesirable sensory effects specifically affected by microbial species and avocado cultivar.
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