您好,欢迎访问云南省农业科学院 机构知识库!

Comprehensive Quality Assessment Based Specific Chemical Profiles for Geographic and Tissue Variation in Gentiana rigescens Using HPLC and FTIR Method Combined with Principal Component Analysis

文献类型: 外文期刊

作者: Li, Jie 1 ; Zhang, Ji 1 ; Zhao, Yan-Li 1 ; Huang, Heng-Yu 2 ; Wang, Yuan-Zhang 1 ;

作者机构: 1.Yunnan Acad Agr Sci, Inst Med Plants, Kunming, Yunnan, Peoples R China

2.Yunnan Univ Tradit Chinese Med, Coll Tradit Chinese Med, Kunming, Yunnan, Peoples R China

关键词: Gentiana rigescens;HPLC;FTIR;principal component analysis;quality assessment

期刊名称:FRONTIERS IN CHEMISTRY ( 影响因子:5.221; 五年影响因子:5.385 )

ISSN: 2296-2646

年卷期: 2017 年 5 卷

页码:

收录情况: SCI

摘要: Roots, stems, leaves, and flowers of Longdan (Gentiana rigescens Franch. ex Hemsl) were collected from six geographic origins of Yunnan Province (n = 240) to implement the quality assessment based on contents of gentiopicroside, loganic acid, sweroside and swertiamarin and chemical profile using HPLC-DAD and FTIR method combined with principal component analysis (PCA). The content of gentiopicroside (major iridoid glycoside) was the highest in G. rigescens, regardless of tissue and geographic origin. The level of swertiamarin was the lowest, even unable to be detected in samples from Kunming and Qujing. Significant correlations (p < 0.05) between gentiopicroside, loganic acid, sweroside, and swertiamarin were found at inter-or intra-tissues, which were highly depended on geographic origins, indicating the influence of environmental conditions on the conversion and transport of secondary metabolites in G. rigescens. Furthermore, samples were reasonably classified as three clusters along large producing areas where have similar climate conditions, characterized by carbohydrates, phenols, benzoates, terpenoids, aliphatic alcohols, aromatic hydrocarbons, and so forth. The present work provided global information on the chemical profile and contents of major iridoid glycosides in G. rigescens originated from six different origins, which is helpful for controlling quality of herbal medicines systematically.

  • 相关文献

[1]Study on the Discrimination of Gentiana Rigescens with Different Processing Methods by Using FTIR Spectroscopy. Shen Yun-xia,Zhang Qing-zhi,Shen Yun-xia,Zhao Yan-li,Zhang Ji,Wang Yuan-zhong. 2016

[2]Study on the Discrimination of FTIR Spectroscopy of Gentiana Rigescens with Different Harvest Time. Shen Yun-xia,Zhao Yan-li,Zhang Ji,Jin Hang,Wang Yuan-zhong,Shen Yun-xia. 2016

[3]Evaluation of Mineral Elements in Gentiana rigescens in China. Zhao, Yan-Li,Zhang, Ji,Zhang, Jin-Yu,Wang, Yuan-Zhong,Jin, Hang,Yuan, Tian-Jun,Shen, Tao.

[4]多源异构光谱信息融合的食用牛肝菌鉴别方法. 李秀萍,李杰庆,李涛,刘鸿高,王元忠. 2018

[5]不同部位矿质元素与红外光谱数据融合对美味牛肝菌产地溯源研究. 张钰,李杰庆,李涛,刘鸿高,王元忠. 2018

[6]17种分类算法在牛肝菌种类鉴别研究中的应用. 张钰,李杰庆,李涛,刘鸿高,王元忠. 2019

[7]Ultraviolet spectroscopy combined with ultra-fast liquid chromatography and multivariate statistical analysis for quality assessment of wild Wolfiporia extensa from different geographical origins. Li, Yan,Zhang, Ji,Jin, Hang,Wang, Yuanzhong,Li, Yan,Zhang, Ji,Jin, Hang,Wang, Yuanzhong,Li, Yan,Liu, Honggao.

[8]De Novo Assembly and Characterization of the Transcriptome of the Chinese Medicinal Herb, Gentiana rigescens. Zhang, Xiaodong,Li, Caixia,Allan, Andrew C.,Wang, Yuanzhong,Yao, Qiuyang. 2015

[9]Investigation of metabolites accumulation in medical plant Gentiana rigescens during different growing stage using LC-MS/MS and FT-IR. Pan, Yu,Zhang, Ji,Zhao, Yan-Li,Wang, Yuan-Zhong,Pan, Yu,Huang, Heng-Yu. 2015

[10]Study on Gentiana Rigescens with Silvomedicinal and Agriosivomedicinal Systems with FTIR Spectroscopy. Shen Yun-xia,Zhao Yan-li,Zhang Ji,Jin Hang,Wang Yuan-zhong,Shen Yun-xia. 2016

[11]Optimization of ultrasonic extraction by response surface methodology combined with ultrafast liquid chromatography-ultraviolet method for determination of four iridoids in Gentiana rigescens. Pan, Yu,Zhang, Ji,Zuo, Zhi-Tian,Jin, Hang,Wang, Yuan-Zhong,Li, Wan-Yi,Pan, Yu,Shen, Tao. 2015

[12]Characterization of Gentiana rigescens by Ultraviolet-Visible and Infrared Spectroscopies with Chemometrics. Qi, LuMing,Qi, LuMing,Zhang, Ji,Zhao, YanLi,Zuo, ZhiTian,Wang, Yuan-Zhong,Jin, Hang.

[13]Quality Assessment of Gentiana rigescens from Different Geographical Origins Using FT-IR Spectroscopy Combined with HPLC. Wu, Zhe,Zhao, Yanli,Zhang, Ji,Wang, Yuanzhong,Wu, Zhe,Zhao, Yanli,Zhang, Ji,Wang, Yuanzhong,Wu, Zhe.

[14]Evaluation and quantitative analysis of different growth periods of herb-arbor intercropping systems using HPLC and UV-vis methods coupled with chemometrics. Chu, Bo-wen,Zhang, Ji,Li, Zhi-min,Zhao, Yan-li,Zuo, Zhi-tian,Wang, Yuan-zhong,Li, Wan-yi,Chu, Bo-wen,Zhang, Ji,Li, Zhi-min,Zhao, Yan-li,Zuo, Zhi-tian,Wang, Yuan-zhong,Li, Wan-yi,Li, Wan-yi.

[15]The Common and Variation Peak Ratio Dual Index Sequence Analysis in UV Fingerprint Spectra of Gentiana Rigescens. Yuan Tian-jun,Wang Yuan-zhong,Zhao Yan-li,Zhang Ji,Jin Hang,Zhang Jin-yu,Yuan Tian-jun. 2011

[16]Determination of mineral elements in Gentiana rigescens from different zones of Yunnan, China. Zhang, Jinyu,Yuan, Tianjun,Wang, Yuanzhong,Zhao, Yanli,Zhang, Ji,Jin, Hang,Yuan, Tianjun.

[17]Study on Different Parts of Wild and Cultivated Gentiana Rigescens with Fourier Transform Infrared Spectroscopy. Shen Yun-xia,Zhang Qing-zhi,Shen Yun-xia,Zhao Yan-li,Zhang Ji,Zuo Zhi-tian,Wang Yuan-zhong. 2016

[18]Determination of Iridoids in Gentiana rigescens by Infrared Spectroscopy and Multivariate Analysis. Qi, Lu-Ming,Qi, Lu-Ming,Zhang, Ji,Zuo, Zhi-Tian,Zhao, Yan-Li,Wang, Yuan-Zhong,Hang, Jin,Qi, Lu-Ming,Zhang, Ji,Zuo, Zhi-Tian,Zhao, Yan-Li,Wang, Yuan-Zhong,Hang, Jin.

[19]Rapid Identification of Dendrobium Plants Based on Near Infrared Diffuse Reflection Spectroscopy. Ding Chang-chun,Xia Nian-he,Ding Chang-chun,Ding Chang-chun,Fang Xiang-jing,Li Gui-xiang,Zhao Yan-li,Wang Yuan-zhong,Li Tao. 2014

[20]FTIR Spectroscopic Study of Broad Bean Diseased Leaves. Li Zhi-yong,Liu Gang,Li Lun,Ou Quan-hong,Zhao Xing-xiang,Zhang Li,Zhou Xiang-ping,Wang Lu-xiang. 2012

作者其他论文 更多>>