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1.
Zhongguo Zhong Yao Za Zhi ; 49(16): 4407-4419, 2024 Aug.
Article in Chinese | MEDLINE | ID: mdl-39307777

ABSTRACT

The MYB(v-myb avian myeloblastosis viral oncogene homolog) family of transcription factors is the largest class of genes among higher plant transcription factors, which can be divided into four subfamilies, with the R2R3-MYB being the most common subfamily type. R2R3-MYB transcription factors are widely involved in the regulation of organ development and secondary metabolite biosynthesis in plants. To investigate the role of R2R3-MYB family transcription factors in the synthesis of flavonoids and glandular trichome development in Artemisia argyi, this study screened and identified 92 R2R3-MYB transcription factors based on the whole genome data of A. argyi, and predicted their potential functions based on bioinformatics. The results showed that the amino acid lengths of the 92 transcription factors ranged from 168 to 547 aa, with relative molecular weights ranging from 19. 6 to 60. 5 kDa, all of which were hydrophilic proteins. Subcellular localization analysis showed that 89 AaMYB proteins were located in the nucleus, while three proteins were simultaneously located in the nucleus and cytoplasm. According to the classification of Arabidopsis R2R3-MYB family, the 92 A. argyi R2R3-MYB proteins were divided into 26 subfamilies, with similar gene structures within the same subfamily.Cis-acting element prediction results showed that light-responsive elements, methyl jasmonate elements, and abscisic acid elements were widely distributed in the promoter regions of R2R3-MYB genes. Transcriptome expression analysis results showed that the expression of AaMYB60, AaMYB63, and AaMYB86 in leaves was higher than that in stems and roots, indicating that these three transcription factors mainly function in leaves. Additionally, five candidate R2R3-MYB transcription factors involved in A. argyi flavonoid biosynthesis or glandular trichome development were selected through phylogenetic analysis. This study provides important genetic resources for the breeding of superior varieties and germplasm innovation of A. argyi in the future.


Subject(s)
Artemisia , Gene Expression Regulation, Plant , Phylogeny , Plant Proteins , Transcription Factors , Artemisia/genetics , Artemisia/metabolism , Artemisia/growth & development , Transcription Factors/genetics , Transcription Factors/metabolism , Plant Proteins/genetics , Plant Proteins/metabolism , Gene Expression Profiling , Amino Acid Sequence
2.
Zhongguo Zhong Yao Za Zhi ; 44(11): 2197-2207, 2019 Jun.
Article in Chinese | MEDLINE | ID: mdl-31359642

ABSTRACT

The excessive pesticide residues and heavy metals in traditional Chinese medicine seriously endanger human health and the sustainable development of Chinese medicine industry. In order to improve the quality of traditional Chinese medicine and establish a general standard for maximum residue limits(MRL) of pesticides in pollution-free traditional Chinese medicine and decoction pieces, and to ensure the safety of clinical medication from its origin, MRLs were calculated based on the formula(MRL=A×W/100M) from Chinese Pharmacopeia, comparing it with the current Chinese and international standards as well as literature review, the RAND/UCLA appropriateness method(RAM) was applied to determine the categories and MRLs of pesticides in pollution-free traditional Chinese medicine and decoction pieces. Two questionnaires were drafted for expert panel and appropriateness analysis was carried out with the 9-point Likert scale to determine the general standard for MRLs of pollution-free traditional Chinese medicine and decoction pieces. The results showed that a total of nine experts from different fields scored the necessity of standard-setting and 206 pesticide residue limits respectively. The appropriateness scores of 206 pesticides were greater than 7, and appropriateness rate was 100%, which signifies that the expert panel has reached consensus. In summary, based on the RAM, the general standard for maximum residue limits of pesticides in pollution-free Chinese medicines and decoction pieces has reached an expert consensus. Comparing with the MRLs of medicinal plants and plant-sourced food from CAC, Europe Union, the United States, South Korea, Japan, Australia, New Zealand and Canada, 206 MRLs from this general standard share 88.8% in common, 4.4% of which is higher and 6.8% lower than those international standards. This has provided a basis for standardizing the use of pesticides in pollution-free traditional Chinese medicine.


Subject(s)
Drugs, Chinese Herbal/standards , Pesticide Residues/analysis , Pesticides/analysis , Medicine, Chinese Traditional
3.
Zhongguo Zhong Yao Za Zhi ; 43(15): 3070-3079, 2018 Aug.
Article in Chinese | MEDLINE | ID: mdl-30200701

ABSTRACT

Aimed to solve the issues of pesticide residue, heavy metal contents and harmful elements in the productive process of Chinese herbal medicines, the research team built the technical regulations for production of pollution-free Chinese herbal medicines. This regulation included the environment of production area, the process of production, quality of products etc., which were the key steps controlled the quality of Chinese herbal medicines. The environment of production area was selected according to the ecological factors which were stipulated by Ecological Suitability Regionalization of Chinese herbal medicines (second edition). The quality of air should be attain the one or two levels of GB/T3095-2012 standard values. The cultivation soils should reach to the one or two levels of GB15618 and NY/T391 standard values. The quality of irrigation water should accord with the stipulation of GB5084-2005. Aimed to the production of Chinese herbal medicines, disease-resistant and superior varieties which were suitable to the local stations should be selected, and the breeding of superior seeds and seedlings should be strengthened. Additionally, rational fertilizer application of pollution-free Chinese herbal medicines should be conformed to the principles, requirements, and the kinds of fertilizers allowed or limited for use, which were stipulated by the standard of DB13/T454. Furthermore, the plant protection policy of priority to prevention and synthetical prevention should be followed; improving ecological environment and strengthening cultivation management should be served as the basics. Agricultural measures, and biological and physical control strategies should be preferred to use; and high toxicity, residue pesticide and its mixture should be inhibited; the use of chemical pesticides should be minimized and then to decrease contamination and residue. Additionally, the quality of products should be reached to the standard of pollution-free Chinese herbal medicines; high toxicity and detection rate of pesticide residues and the contents of heavy metal and harmful elements (e.g. plumbum, cadmium, mercury, arsenic and cuprum) should accord with the common criteria of pollution-free Chinese herbal medicines. Application of technical regulations for production of pollution-free Chinese herbal medicines guarantees significantly social, economic and ecological benefits.


Subject(s)
Drug Contamination/prevention & control , Drugs, Chinese Herbal/standards , Metals, Heavy , Pesticide Residues , Soil Pollutants
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