Widely targeted metabolomics and SPME-GC-MS analysis revealed the quality characteristics of non-volatile/volatile compounds in Zheng'an Bai tea
文献类型: 外文期刊
作者: Liu, Li 1 ; Qiao, Dahe 2 ; Mi, Xiaozeng 2 ; Yu, Shirui 1 ; Jing, Tingting 3 ; An, Yanlin 1 ;
作者机构: 1.Moutai Inst, Dept Food Sci & Engn, Renhuai, Peoples R China
2.Guizhou Acad Agr Sci, Guizhou Tea Res Inst, Guiyang, Peoples R China
3.Anhui Agr Univ, State Key Lab Tea Plant Biol & Utilizat, Hefei, Peoples R China
关键词: Zheng'an Bai tea; widely targeted metabolomics; non-volatile/volatiles; fresh leaves; tea processing; SPME-GC-MS
期刊名称:FRONTIERS IN NUTRITION ( 影响因子:5.1; 五年影响因子:5.4 )
ISSN: 2296-861X
年卷期: 2024 年 11 卷
页码:
收录情况: SCI
摘要: Background: As albino tea under the geographical protection of agricultural products, Zheng'an Bai tea is not only rich in amino acids, polyphenols and other beneficial components for the human body, but also its leaf color will turn green as the temperature gradually rises, thus causing changes in the quality characteristics of tea leaves. However, these changing characteristics have not yet been revealed. Methods: In-depth quality analysis was carried out on the fresh leaves of Zheng'an Bai tea at four different developmental stages and four samples from the processing stage through extensive targeted metabolomics and SPME-GC-MS analysis. Results: In this study, a total of 573 non-volatile metabolites were detected from the fresh leaves and processing samples of Zheng'an Bai tea, mainly including 96 flavonoids, 75 amino acids, 56 sugars and alcohols, 48 terpenoids, 46 organic acids, 44 alkaloids, and 39 polyphenols and their derivatives. In fresh leaves, the most significant differential metabolites (VIP > 1, p < 0.05) among different samples mainly include substances such as ethyl gallate, theaflavin, isovitexin and linalool, while the main differential metabolites of samples in the processing stage include alkaloids, polyphenols and flavonoids such as zarzissine, methyl L-Pyroglutamate, theaflavin 3,3'-digallate, euscaphic acid and ethyl gallate. Overall, substances such as sugars and alcohols, alkaloids and polyphenols show the greatest differences between fresh leaves and the processing process. Meanwhile, 97 kinds of volatile metabolites were detected in these samples, most of which had a higher content in the fresh leaves. Moderate spreading is conducive to the release of the aroma of tea leaves, but fixation causes a sharp decrease in the content of most volatile metabolites. Ultimately, 9 volatile substances including geraniol, linalool, nerolidol, jasmone, octanal, 1-Nonanal, heptaldehyde, methyl salicylate and 1-Octen-3-ol were identified as the key aroma components (OAV >1) of Zheng'an Bai tea. Conclusion: In conclusion, this study has for the first time comprehensively revealed the quality change characteristics of fresh leaves at different developmental stages and during the processing of Zheng'an Bai tea, and provided a foundation for further process improvement.
- 相关文献
作者其他论文 更多>>
-
CsMPDB 1.0: An interactive web application for visualizing and exploring the microRNAs and phasiRNAs of tea plant ( Camellia sinensis var. sinensis 'Shuchazao')
作者:Zhao, Shiqi;Zhang, Runqi;An, Yanlin;Jing, Tingting;Qiao, Dahe
关键词:MicroRNA; PhasiRNA; Database; Tea plant; ShinyApp
-
A defensive pathway from NAC and TCP transcription factors activates a BAHD acyltransferase for (Z)-3-hexenyl acetate biosynthesis to resist herbivore in tea plant (Camellia sinensis)
作者:Gu, Honglian;Li, Jiaxing;Qiao, Dahe;Li, Mei;Yao, Yingjie;Xie, Hui;Huang, Ke-lin;Liu, Shengrui;Wei, Chaoling;Zhu, Junyan;Qiao, Dahe;Xie, De-Yu
关键词:(Z)-3-hexenyl acetate;
CsCHAT1 ; herbivore; herbivore-induced plant volatiles; NAC transcription factor; TCP transcription factor; tea plants -
Transcriptome sequencing revealed the regulation of stem internode length associated with mechanical harvesting in three tea varieties
作者:Mi, Xiaozeng;Qiao, Dahe;Yang, Chun;Chen, Juan;Liang, Sihui;Guo, Yan;Mi, Xiaozeng;Yang, Chun;Liang, Sihui;Guo, Yan;Qiao, Dahe
关键词:stem internode length; mechanical harvesting; tea plant; RNA-Seq; WGCNA
-
A comprehensive study of the physiology and chemistry of tea withering based on untargeted metabolomic, transcriptomic, and biochemical analyses
作者:Li, Yan;Chen, Yao;Pan, Ke;Mi, Xiaozeng;Qiao, Dahe;Chen, Juan;Chen, Zhengwu;Shen, Qiang;Zhang, Xiaoqin;Dai, Xinlong
关键词:Tea flavor; Withering; Transcriptomics; Metabolomics; Biochemical analysis
-
Analysis of thaumatin-like protein (TLP) gene family in tea plant revealed that CsTLP8 contributes to tea blister blight resistance
作者:Mi, Xiaozeng;Tang, Mengsha;Yang, Chun;Liang, Sihui;Chen, Yao;Qiao, Dahe;Chen, Zhengwu;Mi, Xiaozeng;Yang, Chun;Liang, Sihui;Chen, Zhengwu;Qiao, Dahe
关键词:Thaumatin-like protein; Gene family; Tea blister blight; Tea plant
-
Alternative splicing regulates tea aroma quality formation during withering of fresh leaves
作者:Qiao, Dahe;Mi, Xiaozeng;Qiao, Dahe;Mi, Xiaozeng;Xie, Hui;Zhu, Junyan;Liu, Shengrui;Wei, Chaoling
关键词:Camellia sinensis; Alternative splicing; Aroma; Withering; Transcriptome
-
Genome-wide identification of tea plant (Camellia sinensis) BAHD acyltransferases reveals their role in response to herbivorous pests
作者:Qiao, Dahe;Yang, Chun;Mi, Xiaozeng;Tang, Mengsha;Liang, Sihui;Chen, Zhengwu;Qiao, Dahe
关键词:Camellia sinensis; Acyltransferase; Tea geometrid; Tea green leafhopper; HIPVs



