4.7 Article

Odor Detection Thresholds and Enantiomeric Distributions of Several 4-Alkyl Substituted γ-Lactones in Australian Red Wine

期刊

JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
卷 57, 期 6, 页码 2462-2467

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jf802866f

关键词

gamma-Lactones; aroma thresholds; Australian wine; enantiomeric distribution; GC-olfaction

资金

  1. Grape and Wine Research and Development Corporation
  2. Australian Government
  3. Commonwealth Cooperative Research Centres Program
  4. Australian Postgraduate Research Award

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The individual enantiomers of gamma-octalactone (1), gamma-nonalactone (2), gamma-decalactone (3) and gamma-dodecalactone (4) have been synthesized. The (R) series of enantiomers was prepared from L-glutamic acid by a strategy involving deamination and reduction to (S)-5-oxo-2-tetrahydrofurancarboxaldehyde (S)-7. The different length side chains were introduced by a series of Wittig reactions, varying in the choice of phosphorane used. Hydrogenation then gave the final gamma-lactones 1-4. The (S) series of enantiomers was prepared in an analogous fashion beginning with D-glutamic acid. Aroma detection thresholds for all eight enantiomers were determined in a bag in a box dry red wine by the application of ASTM method E 679, employing a panel of 25 members. The lowest threshold determined was 8 mu g/L for (R)-dodecalactone (4) while the highest threshold was 285 mu g/L for (R)-nonalactone (2). With the exception of gamma-decalactone (3) there were statistically significant differences (at the 5% level) in aroma detection thresholds between the two enantiomers of the same lactone. A stable isotope method developed for quantification of the lactones 1-4 has been extended for use with chiral phase GC (Rt-beta DEXcst capillary column) allowing quantification of the individual enantiomers. The enantiomeric distribution of gamma-octalactone (1) and gamma-nonalactone (2) in seven botrytized wines and of 2 in a total of 34 red wines were thus determined; with few exceptions, the (P) enantiomer of gamma-nonalactone (2) was found to be more prevalent than its (S) counterpart in the dry red and botrytized white wines analyzed. The same was true for gamma-octalactone (1) in the botrytized white wines.

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