School of Perfume and Aroma Technology, Shanghai Institute of Technology, Shanghai 201418, China.
School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.
J Agric Food Chem. 2023 May 3;71(17):6691-6698. doi: 10.1021/acs.jafc.3c00860. Epub 2023 Apr 21.
Odor activity value (OAV) and S-curve were used to study the content, proportion, and contribution of lactone chiral enantiomers in Longjing tea. A total of 10 enantiomers were identified in this study, among which ()-(-)-δ-decalactone (45.4-84.4 μg/L), ()-(-)-γ-decalactone (31.5-109 μg/L), ()-(-)-γ-nonanolactone (23.4-72.8 μg/L), and ()-(-)-γ-undecalactone (21.1-56.2 μg/L) presented the highest concentrations. Furthermore, ()-(+)-γ-nonanolactone (OAV: 2-7), ()-(-)-γ-nonanolactone (OAV: 1-5), ()-(-)-δ-decalactone (OAV: 2-4), ()-(+)-δ-decalactone (OAV: 1-3), and ()-(+)-γ-undecalactone (OAV: 1-5) were determined as enantiomeric compounds that play an important role in the perceived aroma of Longjing tea. Compared with the aromatic reconstitution (AR), the threshold increased to different degrees after adding γ-nonanolactone, γ-decalactone, δ-decalactone, γ-undecalactone, and their chiral enantiomers. This finding indicated that these compounds exert significant effects on the overall aroma of the AR. The contribution of racemates and chiral enantiomers to the AR threshold and aroma is completely different. In view of the difference between racemic and enantiomers' aroma characteristics in Longjing tea, the analysis and identification of chiral enantiomers are necessary to enrich and improve the accurate analysis of the flavor profile of Longjing tea.
香气活值(OAV)和 S 曲线被用于研究龙井茶中内酯手性对映异构体的含量、比例和贡献。本研究共鉴定出 10 种对映异构体,其中(-)-(-)-δ-癸内酯(45.4-84.4μg/L)、(-)-(-)-γ-癸内酯(31.5-109μg/L)、(-)-(-)-γ-壬内酯(23.4-72.8μg/L)和(-)-(-)-γ-十一内酯(21.1-56.2μg/L)浓度最高。此外,(-)-(+)-γ-壬内酯(OAV:2-7)、(-)-(-)-γ-壬内酯(OAV:1-5)、(-)-(-)-δ-癸内酯(OAV:2-4)、(-)-(+)-δ-癸内酯(OAV:1-3)和(-)-(+)-γ-十一内酯(OAV:1-5)被确定为对龙井茶感知香气起重要作用的手性对映异构体。与香气重建(AR)相比,添加γ-壬内酯、γ-癸内酯、δ-癸内酯、γ-十一内酯及其手性对映异构体后,阈值均不同程度增加。这表明这些化合物对 AR 的整体香气有显著影响。外消旋体和手性对映异构体对 AR 阈值和香气的贡献完全不同。鉴于龙井茶中旋光异构体和对映异构体香气特征的差异,分析和鉴定手性对映异构体对于丰富和完善龙井茶风味特征的准确分析是必要的。