The free volatiles, as well as those released from the glycosidically bound forms by enzyme hydrolysis, have been analyzed to chracterize young Tannat wines from two successive vintages. The Tannat wine showed some aroma profile peculiarities detected in the free forms but, above all, in the bound fraction for the level and profile of the norisoprenoidic fraction. Among the free volatile compunds, a rather low content of C(6) alcohols with a prevalence of cis-3-hexen-1-ol on the trans form and sometimes a remarkable level of trans-2-hexen-1-ol seem to be typical for the variety. C(13)-norisoprenoidic and monoterpenic volatiles made up approximately 42% of the total level of the volatiles observed in the glycosidase enzyme-released fraction. The other volatiles were C(6) alcohols (6%) and benzenoid compounds (51%). The dominating monoterpene alcohols were the cis and trans isomers of 3,7-dimethyl-1,6-octadiene-3,8-diol (8-hydroxylinalool). The C(13)-norisoprenoid pattern was composed by 3-hydroxy-beta-damascone, 3-oxo-alpha-ionol, vomifoliol, 4-oxo-beta-ionol, 3-oxo-7,8-dihydro-alpha-ionol, 4-oxo-7,8-dihydro-beta-ionol, grasshopper ketone, and 7,8-dihydrovomifoliol.
Under traditional wine-making conditions, this work examines the beta-glycosidic activity of Oenococcus oeni on glycosylated aroma compounds of Tannat wines during malolactic fermentation (MLF) by comparing the changes on selected aglycones liberated. MLF diminished the content of all the glycosylated compounds. The level of the free aroma components was slightly modified by the action of the malolactic fermentation so that the cleavage of the glycosidic linkage by the beta-glycosidic activity of O. oeni did not appear to increase significatively the aglycone contents. The consequences of further chemical rearrangements of the algycones under wine conditions were explored using synthesized glycoconjugates on synthetic medium. Bacteria could also be responsible for the cleavage of aroma glycosylated compounds, being the aglycone adsorbed on polysaccharides or peptidoglycans and was released into the external medium. This hypothesis was studied through the evaluation of a stable arrangement of aroma compounds with polysaccharides produced by lactic acid bacteria. A possible retaining of free-made aroma compounds into the whole cells of O. oeni was also investigated through cell culture analysis. Through the results obtained, we assume stable linkage of aroma compounds with bacterial polysaccharides.
Descriptive sensory profiles of Uruguayan Tannat wines following malolactic fermentation (MLF) with Oenococcus oeni were compared with control wines where MLF was prevented. MLF led to a significant decrease (P < 0.05) in secondary descriptors such as ‘berry fruit’ and ‘fresh vegetative’, as well as a decrease in related tertiary descriptors such as ‘blackcurrant’, ‘apricot’, ‘cut green grass’ and ‘green pepper’. The main differences in the chemical composition of Tannat wine aromas following MLF were (1) an increase of the lactates (mainly ethyl lactate) over the sensory threshold; (2) a significant decrease in ethyl esters and acetates, depending on the bacteria strain utilised (the most significant change was found in hexyl acetate), and (3) a small increase of 4‐vinylguaiacol and 4‐vinylphenol with one of the MLF strains (this change was below the threshold of human perception). We also observed an increase of compounds related to α‐ketoglutarate metabolism, namely: ethyl 4‐hidroxibutanoate and γ‐butyro‐lactone. Differences in chemical composition due to MLF are discussed in relation to variation in sensory profiles.
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