罗勒
罗勒
生物信息学
色谱法
串联质谱法
化学
质谱法
液相色谱-质谱法
串联
风味
生物
食品科学
植物
生物化学
材料科学
精油
复合材料
基因
作者
Eftichia Kritsi,Thalia Tsiaka,Anna Boroboka,Garyfallia Koletsou,Spyridon Theofilatos,Artemis Maggenaki,Paris Christodoulou,Georgia Ladika,Konstantinos Tsiantas,Georgios Sotiroudis,Vassilia J. Sinanoglou
出处
期刊:Separations
[Multidisciplinary Digital Publishing Institute]
日期:2024-09-03
卷期号:11 (9): 261-261
被引量:1
标识
DOI:10.3390/separations11090261
摘要
Although post-distillation side-streams of basil (Ocimum basilicum L.) pose significant economic and environmental challenges, they also bring forth new opportunities in the flavor industry. Thus, the objective of the current study was to assess the phenolic profile of basil side-stream extracts to identify key compounds and to evaluate their taste properties, using liquid chromatography–tandem mass spectrometry (LC-MS/MS) analysis, flavor prediction tools and molecular docking. In particular, 52 phytoconstituents, mainly phenolic acids, salvianolic acids, flavonoids and fatty acids derivatives, were elucidated in the side-streams of two different basil varieties (Minimum and Genovese) harvested and distilled in early and late autumn, highlighting the effect of pre-harvest factors on basil’s phenolic fingerprint. Furthermore, the results of tests undertaken using taste prediction tools showed that most of the identified compounds were very likely to taste bitter, while six of them (caffeoylferuloyltartaric acid, isoquercetin, lithospermic acid A, sagerinic acid, salvianolic acids C and F) presented a high bitterant capacity (70–90%). Moreover, according to molecular docking studies, these compounds exhibited a stronger binding affinity to the hTAS2R46 bitter receptor compared to its known agonist, strychnine. This outcome and consequently their bitterness were mainly attributed to interactions with Glu265, Thr180 and/or Trp88 through the formation of direct hydrogen bonds. Therefore, the present results provide insights into the taste profiles of basil side-streams, leading to more sustainable and innovative uses of aromatic herbs residues.
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