Using untargeted metabolomics to profile the differences of the fruits of Lycium barbarum in different geographical origins

被引:5
作者
Li, Yujin [1 ]
Zhao, Guangyue [2 ]
Zhang, Rong [2 ]
Wei, Yuhai [2 ]
Yao, Zhimin [2 ]
Su, Shanshan [2 ]
Li, Zhanqiang [1 ,3 ]
机构
[1] Qinghai Univ, Med Coll, Xining 810001, Qinghai, Peoples R China
[2] Tech Ctr Xining Customs, Key Lab Food Safety Res Qinghai Prov, Xining 810099, Qinghai, Peoples R China
[3] Qinghai Univ, Res Ctr High Altitude Med, Key Lab High Altitude Med, Minist Educ, Xining 810001, Peoples R China
基金
中国科学院西部之光基金;
关键词
Lycium barbarum; Metabolomics; Multivariate statistical analysis; UHPLC-QE-MS; Environmental implication; RUTHENICUM;
D O I
10.1007/s44211-022-00137-z
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
An ultra-high performance liquid chromatography system coupled with the Q-Exactive mass spectrometry (UHPLC-QE-MS) approach combined with multivariate statistical analysis was used to investigate the metabolic profiles of the fruits of Lycium barbarum in different geographical origins in China. Several classes of compounds such as sugars, amino acids, organic acids, fatty acids, polyphenols and alkaloid were identified in hydroalcoholic extracts, and ten differential metabolites including amino acids, organic acids and vitamins were identified by multivariate statistical method. It was discussed that the differences between organic acids and amino acids in the samples may be caused by environmental factors such as ultraviolet radiation, soil and altitude. A total of 119 metabolic pathways were involved in the differential metabolites and 17 of them were retained for enrichment analysis. It was found that alanine, aspartate and glutamate metabolism, arginine biosynthesis, glutathione metabolism, glyoxylate and dicarboxylate metabolism, purine metabolism, histidine metabolism and aminoacyl-tRNA biosynthesis were the most important pathways. These findings play an important role in the origin tracing of the Lycium barbarum fruit.
引用
收藏
页码:1083 / 1093
页数:11
相关论文
共 33 条
[1]   Using untargeted metabolomics to profile the changes in roselle (Hibiscus sabdariffa L.) anthocyanins during wine fermentation [J].
Ai, Jian ;
Wu, Qixia ;
Battino, Maurizio ;
Bai, Weibin ;
Tian, Lingmin .
FOOD CHEMISTRY, 2021, 364
[2]   Anthocyanins from Lycium ruthenicum Murr. Ameliorated D-Galactose-Induced Memory Impairment, Oxidative Stress, and Neuroinflammation in Adult Rats [J].
Chen, Shasha ;
Zhou, Haonan ;
Zhang, Gong ;
Meng, Jing ;
Deng, Kai ;
Zhou, Wu ;
Wang, Honglun ;
Wang, Zhenhua ;
Hu, Na ;
Suo, Yourui .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2019, 67 (11) :3140-3149
[3]   Goji berry fruit (Lycium spp.): antioxidant compound fingerprint and bioactivity evaluation [J].
Donno, D. ;
Beccaro, G. L. ;
Mellano, M. G. ;
Cerutti, A. K. ;
Bounous, G. .
JOURNAL OF FUNCTIONAL FOODS, 2015, 18 :1070-1085
[4]   Protective Effect of Lycium ruthenicum Murr. Against Radiation Injury in Mice [J].
Duan, Yabin ;
Chen, Fan ;
Yao, Xingchen ;
Zhu, Junbo ;
Wang, Cai ;
Zhang, Juanling ;
Li, Xiangyang .
INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, 2015, 12 (07) :8332-8347
[5]  
Huang WL., 1983, ENV COND TESTS, V4, P33
[6]  
Li S., 2017, CHIN QINGHAI J ANIM, V47, P36, DOI [10.3969/j.issn.1003-7950.2017.06.009, DOI 10.3969/J.ISSN.1003-7950.2017.06.009]
[7]   Antioxidant and antiplatelet activity by polyphenol-rich nutrients: focus on extra virgin olive oil and cocoa [J].
Loffredo, Lorenzo ;
Perri, Ludovica ;
Nocella, Cristina ;
Violi, Francesco .
BRITISH JOURNAL OF CLINICAL PHARMACOLOGY, 2017, 83 (01) :96-102
[8]  
Long QX, 2020, NAT MED, V26, P845, DOI [10.1038/s41591-020-0897-1, 10.1093/cid/ciaa344]
[9]  
Ma Y., 2019, COMPUT TECH GEOPHYS, V41, P554
[10]  
Mbonu JI., 2015, SCI AFR, V14, P82