An evaluation of Astragali Radix with different growth patterns and years, based on a new multidimensional comparison method

被引:1
作者
Wang, Yapeng [1 ]
Yuan, Changsheng [1 ]
Zhao, Jiachen [1 ]
Liu, Yunxiang [1 ]
Tian, Chunfang [1 ]
Qian, Jinxiu [1 ]
Nan, Tiegui [1 ]
Kang, Liping [1 ]
Liu, Yanmeng [1 ]
Zhan, Zhilai [1 ]
Huang, Luqi [1 ]
机构
[1] China Acad Chinese Med Sci, Natl Resource Ctr Chinese Mat Med, State Key Lab Qual Ensurance & Sustainable Use Dao, Beijing, Peoples R China
来源
FRONTIERS IN PLANT SCIENCE | 2024年 / 15卷
关键词
Astragali Radix; growth patterns; growth years; quality difference; imitated-wild cultivation; ACCUMULATION;
D O I
10.3389/fpls.2024.1368135
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Introduction With the depletion of wild Astragali Radix (WA) resources, imitated-wild Astragali Radix (IWA) and cultivated Astragali Radix (CA) have become the main products of Astragali Radix. However, the quality differences of three growth patterns (WA, IWA, CA) and different growth years of Astragali Radix have not been fully characterized, leading to a lack of necessary scientific evidence for their use as substitutes for WA.Methods We innovatively proposed a multidimensional evaluation method that encompassed traits, microstructure, cell wall components, saccharides, and pharmacodynamic compounds, to comprehensively explain the quality variances among different growth patterns and years of Astragali Radix.Results and discussion Our study showed that the quality of IWA and WA was comparatively similar, including evaluation indicators such as apparent color, sectional structure and odor, thickness of phellem, diameter and number of vessels, morphology of phloem and xylem, and the levels and ratios of cellulose, hemicellulose, lignin, sucrose, starch, water-soluble polysaccharides, total-saponins. However, the content of sucrose, starch and sorbose in CA was significantly higher than WA, and the diameter and number of vessels, total-flavonoids content were lower than WA, indicating significant quality differences between CA and WA. Hence, we suggest that IWA should be used as a substitute for WA instead of CA. As for the planting years of IWA, our results indicated that IWA aged 1-32 years could be divided into three stages according to their quality change: rapid growth period (1-5 years), stable growth period (6-20 years), and elderly growth period (25-32 years). Among these, 6-20 years old IWA exhibited consistent multidimensional comparative results, showcasing elevated levels of key active components such as water-soluble polysaccharides, flavonoids, and saponins. Considering both the quality and cultivation expenses of IWA, we recommend a cultivation duration of 6-8 years for growers. In conclusion, we established a novel multidimensional evaluation method to systematically characterize the quality of Astragali Radix, and provided a new scientific perspective for the artificial cultivation and quality assurance of Astragali Radix.
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页数:15
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共 37 条
  • [21] Qin Xue-Mei, 2016, Zhongguo Zhong Yao Za Zhi, V41, P4670, DOI 10.4268/cjcmm20162429
  • [22] Study on the Relevance Between Beany Flavor and Main Bioactive Components in Radix Astragali
    Sun, Haifeng
    Xie, Daosheng
    Guo, Xiaoqing
    Zhang, Lizeng
    Li, Zhenyu
    Wu, Bin
    Qin, Xuemei
    [J]. JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2010, 58 (09) : 5568 - 5573
  • [23] Discovery of chemical markers for identifying species, growth mode and production area of Astragali Radix by using ultra-high-performance liquid chromatography coupled to triple quadrupole mass spectrometry
    Wang, Can-Jian
    He, Fan
    Huang, Yu-Feng
    Ma, Hong-Liang
    Wang, Ying-Ping
    Cheng, Chun-Song
    Cheng, Jin-Le
    Lao, Chi-Chou
    Chen, Di-An
    Zhang, Zhi-Feng
    Sang, Zhen
    Luo, Pei
    Xiao, Sheng-Yuan
    Xie, Ying
    Zhou, Hua
    [J]. PHYTOMEDICINE, 2020, 67
  • [24] Wang H., 2021, J. Chin. Medicinal Materials, V44, P2257, DOI [10.13863/j.issn1001-4454.2021.10.001, DOI 10.13863/J.ISSN1001-4454.2021.10.001]
  • [25] A review of the botany, phytochemistry, traditional uses, pharmacology, toxicology, and quality control of the Astragalus memeranaceus
    Wang, Panpan
    Wang, Zhen
    Zhang, Zhanping
    Cao, Huiyan
    Kong, Lingyang
    Ma, Wei
    Ren, Weichao
    [J]. FRONTIERS IN PHARMACOLOGY, 2023, 14
  • [26] Natural variance at the interface of plant primary and specialized metabolism
    Wang, Shouchuang
    Li, Yan
    He, Liqiang
    Yang, Jun
    Fernie, Alisdair R.
    Luo, Jie
    [J]. CURRENT OPINION IN PLANT BIOLOGY, 2022, 67
  • [27] Spatio-Temporal Modification of Lignin Biosynthesis in Plants: A Promising Strategy for Lignocellulose Improvement and Lignin Valorization
    Wang, Yongli
    Gui, Cunjin
    Wu, Jiangyan
    Gao, Xing
    Huang, Ting
    Cui, Fengjie
    Liu, Huan
    Sethupathy, Sivasamy
    [J]. FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2022, 10
  • [28] Review on the protective mechanism of astragaloside IV against cardiovascular diseases
    Yang, Chunkun
    Pan, Qingquan
    Ji, Kui
    Tian, Zhuang
    Zhou, Hongyuan
    Li, Shuanghong
    Luo, Chuanchao
    Li, Jun
    [J]. FRONTIERS IN PHARMACOLOGY, 2023, 14
  • [29] Chemical comparison of Astragali Radix by UHPLC/Q-TOF-MS with different growing patterns
    Yang, Lan
    Li, Rongrong
    Qin, Xuemei
    Li, Zhenyu
    [J]. EUROPEAN FOOD RESEARCH AND TECHNOLOGY, 2022, 248 (09) : 2409 - 2419
  • [30] Colour, chemical compounds, and antioxidant capacity of Astragali Radix based on untargeted metabolomics and targeted quantification
    Yang, Mei
    Yin, Minzhen
    Chu, Shanshan
    Zhao, Yujiao
    Fang, Qingying
    Cheng, Ming'en
    Peng, Huasheng
    Huang, Luqi
    [J]. PHYTOCHEMICAL ANALYSIS, 2022, 33 (04) : 599 - 611