Non-targeted metabolomics and electronic tongue analysis reveal the effect of rolling time on the sensory quality and nonvolatile metabolites of congou black tea
Author:
Publisher
Elsevier BV
Subject
Food Science
Reference50 articles.
1. Impact of light irradiation on black tea quality during withering;Ai;Journal of Food Science & Technology,2017
2. Distribution and biosynthesis of flavan-3-ols in Camellia sinensis seedlings and expression of genes encoding biosynthetic enzymes;Ashihara;Phytochemistry,2010
3. Metabolic engineering of the flavone-C-glycoside pathway using polyprotein technology;Brazier-Hicks;Metabolic Engineering,2013
4. Application of FT-NIR spectroscopy for simultaneous estimation of taste quality and taste-related compounds content of black tea;Chen;Journal of Food Science & Technology,2018
5. Characterization of white tea metabolome: Comparison against green and black tea by a nontargeted metabolomics approach;Dai;Food Research International,2017
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