Nontargeted and targeted metabolomics analysis provides novel insight into nonvolatile metabolites in Jianghua Kucha tea germplasm (Camellia sinensis var. Assamica cv. Jianghua)

文献类型: 外文期刊

第一作者: Wu, Wenliang

作者: Wu, Wenliang;Peng, Jiakun;Lv, Haipeng;Shi, Jiang;Chen, Dan;Dai, Weidong;Lin, Zhi;Wu, Wenliang;Zhang, Shuguang;Liu, Zhen;Duan, Jihua;Lu, Meiling

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关键词: Jianghua Kucha; Metabolomics; Nonvolatile metabolites; Theacrine; LC-MS

期刊名称:FOOD CHEMISTRY-X ( 影响因子:6.443; 五年影响因子:6.443 )

ISSN: 2590-1575

年卷期: 2022 年 13 卷

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收录情况: SCI

摘要: Jianghua Kucha (JHKC) is a special tea germplasm with high bitterness growing in China; however, the chemical characteristics of JHKC are not completely understood. In this study, 61 differential metabolites were identified between 11 wild JHKC individuals and 3 control cultivars of Fudingdabai, Yunkang 10, and Zhuyeqi using comprehensive nontargeted and targeted metabolomics approach. The JHKC accessions mainly possessed significantly higher levels of purine alkaloids of theacrine (12.06 +/- 5.23 mg/g) and 1,3,7-trimethyluric acid, non-epi-form flavanols (catechin, gallocatechin, catechin gallate, and gallocatechin gallate), and methylated flavanols of epigallocatechin-3-O-(3 ''-O-methyl)-gallate (4.79 +/- 1.45 mg/g) and epicatechin-3-O-(3 ''-O-methyl)- gallate (1.02 +/- 0.34 mg/g), as well as significantly lower levels of flavonol glycosides, which indicated that caffeine metabolism, flavonoid biosynthesis, and flavonol and flavone biosynthesis are mostly differential metabolic pathways. Our study demonstrated that JHKC germplasm is a promising resource for breeding novel tea cultivars with high contents of theacrine, non-epi-form flavanols, and methylated flavanols.

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[1]Nontargeted and targeted metabolomics analysis provides novel insight into nonvolatile metabolites in Jianghua Kucha tea germplasm (Camellia sinensis var. Assamica cv. Jianghua). Wu, Wenliang,Peng, Jiakun,Lv, Haipeng,Shi, Jiang,Chen, Dan,Dai, Weidong,Lin, Zhi,Wu, Wenliang,Zhang, Shuguang,Liu, Zhen,Duan, Jihua,Lu, Meiling. 2022

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