1.Transcriptome sequencing reveals molecular mechanism of seed dormancy release of Zanthoxylum nitidum.
Chang-Qian QUAN ; Dan-Feng TANG ; Jian-Ping JIANG ; Yan-Xia ZHU
China Journal of Chinese Materia Medica 2025;50(1):102-110
The transcriptome sequencing based on Illumina Novaseq 6000 Platform was performed with the untreated seed embryo(DS), stratified seed embryo(SS), and germinated seed embryo(GS) of Zanthoxylum nitidum, aiming to explore the molecular mechanism regulating the seed dormancy and germination of Z. nitidum and uncover key differentially expressed genes(DEGs). A total of 61.41 Gb clean data was obtained, and 86 386 unigenes with an average length of 773.49 bp were assembled. A total of 29 290 DEGs were screened from three comparison groups(SS vs DS, GS vs SS, and GS vs DS), and these genes were annotated on 134 Kyoto Encyclopedia of Genes and Genomes(KEGG) pathways. KEGG enrichment analysis revealed that the plant hormone signal transduction pathway is the richest pathway, containing 226 DEGs. Among all DEGs, 894 transcription factors were identified, which were distributed across 34 transcription factor families. These transcription factors were also mainly concentrated in plant hormone signal transduction and mitogen-activated protein kinase(MAPK) signaling pathways. Further real-time quantitative polymerase chain reaction(RT-qPCR) validation of 12 DEGs showed that the transcriptome data is reliable. During the process of seed dormancy release and germination, a large number of DEGs involved in polysaccharide degradation, protein synthesis, lipid metabolism, and hormone signal transduction were expressed. These genes were involved in multiple metabolic pathways, forming a complex regulatory network for dormancy and germination. This study lays a solid foundation for analyzing the molecular mechanisms of seed dormancy and germination of Z. nitidum.
Zanthoxylum/metabolism*
;
Plant Dormancy/genetics*
;
Seeds/metabolism*
;
Gene Expression Regulation, Plant
;
Plant Proteins/metabolism*
;
Transcriptome
;
Gene Expression Profiling
;
Germination
;
Transcription Factors/metabolism*
;
Plant Growth Regulators/genetics*
;
Signal Transduction
2.Research advance on structure and function of amides in Zanthoxylum plants.
Qian-Nv YE ; Xiao-Feng SHI ; Jun-Li YANG
China Journal of Chinese Materia Medica 2023;48(9):2406-2418
Zanthoxylum belongs to the Rutaceae family, and there are 81 Zanthoxylum species and 36 varieties in China. Most of the Zanthoxylum plants are used as culinary spice. In recent years, scholars in China and abroad have carried out in-depth research on Zanthoxylum plants, and found that the peculiar numbing sensation of Zanthoxylum plants originates from amides. It is also determined that amides are an important material basis for exerting pharmacological effects, especially in anti-inflammatory analgesia, anesthesia and other aspects. In this paper, 123 amides in 26 Zanthoxylum plants and their pharmacological activity that have been reported were summarized, which provided scientific reference for the clinical application of Zanthoxylum plants and the research and development of new drugs, and also facilitated the sustainable development and utilization of Zanthoxylum plant resources.
Zanthoxylum/chemistry*
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Amides/chemistry*
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Plant Extracts/pharmacology*
;
China
3.Extract from Zanthoxylum piperitum Induces Apoptosis of AGS Gastric Cancer Cells Through Akt/MDM2/p53 Signaling Pathway.
Ye Seul PARK ; Gun He NAM ; Kyung Jo JO ; Hye Won KAWK ; Sang Yung KIM ; Young Min KIM
Chinese journal of integrative medicine 2021;27(10):752-759
OBJECTIVE:
To determine the effect of Zanthoxylum piperitum extracet (ZPE) on apoptosis and analyze anticancer substances in ZPE, changes in proteins related to apoptosis, and pathological changes in tumors in mouse.
METHODS:
Fifteen 4-week-old female BALB/c nu/nu mice were divided into 3 groups depending on ZPE dose, with 5 in each group. AGS gastric carcinoma cells (1 × 10
RESULTS:
High performance liquid chromatography (HPLC) analysis showed that ZPE contained organic sulfur compounds such as alliin and S-allylcysteine. MTT assay results revealed that ZPE (10-85 µ g/mL) could effectively inhibit the growth of AGS gastric cancer cells at higher concentrations (P<0.05, P<0.01). The annexin V & dead cell staining assay and cell cycle arrest assay confirmed a dose-dependent increase in the apoptosis rate and G
CONCLUSION
ZPE decreases AGS cell proliferation and induces apoptosis by inhibiting Akt and MDM2 expression.
Animals
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Apoptosis
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Cell Line, Tumor
;
Cell Proliferation
;
Female
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Mice
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Mice, Inbred BALB C
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Plant Extracts/therapeutic use*
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Proto-Oncogene Proteins c-akt/metabolism*
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Signal Transduction
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Stomach Neoplasms/drug therapy*
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Tumor Suppressor Protein p53/metabolism*
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Zanthoxylum/metabolism*
4.Genetic diversity and antibacterial activity of endophytic fungi from Zanthoxylum nitidum.
Yong-Zhi HU ; Xin-Feng YANG ; Ya-Qin ZHOU ; Li-Ying YU ; Xiao-Ming TAN ; Li-Chun ZHAO ; Zhong-Heng SHI ; Shi-Yi HU
China Journal of Chinese Materia Medica 2021;46(13):3349-3355
In order to reveal the distribution and population characteristics of endophytic fungi from Zanthoxylum nitidum and the antibacterial potential,this study performed molecular identification and analyzed the genetic diversity and antibacterial activity of endophytic fungi from Z. nitidum in Guangxi. Through culture and molecular identification,35 strains,belonging to 15 genera,12 families,10 orders,4 classes,and 2 phyla,were isolated from various tissues of Z. nitidum,of which Colletotrichum and Fusarium were the dominant genera,respectively accounting for 20% of total strains. The diversity of endophytic fungi was significantly different among roots,stems,and leaves,as manifested by the significantly higher Shannon index( H') in stems( 1. 678) than in roots( 0. 882 1) and leaves( 0. 515 4). The antimicrobial activity analysis showed that 14. 28% of endophytic fungi inhibited at least one indicator pathogen. Among them,Fusarium sp. ZN-34 and Fusarium sp. ZN-26 separately demonstrated the strongest inhibitory effect on Escherichia coli and Staphylococcus aureus. In general,Fusarium sp. ZN-26 and Phialemoniopsis plurioloculosa ZN-35 were advantageous in suppressing the two bacteria owing to the broad spectrum and strong efficacy. In summary,Z. nitidum in Guangxi boasts rich endophytic fungi with the majority showing strong antibacterial activity,which can be used as candidates for the extraction and separation of basic antibacterial substances and the development of natural antibacterial agents.
Anti-Bacterial Agents/pharmacology*
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Anti-Infective Agents
;
China
;
Colletotrichum
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Endophytes/genetics*
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Fungi/genetics*
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Genetic Variation
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Humans
;
Microbial Sensitivity Tests
;
Zanthoxylum
5.Phenylpropanoids from Zanthoxylum species and their pharmacological activities: a review.
Hai-Mei YUAN ; Lu QIU ; Yu SONG ; Liang ZOU ; Long-Fei YANG ; Qiang FU
China Journal of Chinese Materia Medica 2021;46(22):5760-5772
Phenylpropanoids are one of the major chemical constituents in Zanthoxylum species. They include simple phenylpropanoids, coumarins, and lignans and possess anti-tumor, anti-inflammatory, anti-platelet aggregation, anti-bacterial, anti-viral, insecticidal, and antifeedant activities. This review summarizes the chemical constituents and pharmacological activities from the Zanthoxylum plants in hopes of providing reference for the research and application of phenylpropanoids from this genus.
Anti-Inflammatory Agents/pharmacology*
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Coumarins/pharmacology*
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Lignans
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Plant Extracts
;
Zanthoxylum
6.Transcriptome and quality evaluation of Sichuan Dao-di herbs Zanthoxylum bungeanum.
Hua HUA ; Zhi-Xiang YAN ; Wei-Wei TIAN ; Li LIU ; Hong-Bing SUN ; Xian-Jian ZHOU ; Liang-Chun YAN ; Jun-Ning ZHAO
China Journal of Chinese Materia Medica 2020;45(4):732-738
"Huajiao" is dried ripe fruit peel of Zanthoxylum bungeanum or Z. schinifolium, is konwn as geoherbs, especially the "Dahongpao" cultivated in Hanyuan, Maoxian and Jiulong of Sichuan province. However, the genetic basis of Dao-di "Huajiao" is virtually unknown. The transcriptome of the fruit and leaf from Sichuan(Hanyuan, Jiulong, Lixian, Maoxian), Gansu(Wudu) province and Shaanxi(Fengxian) province was sequenced. Trinity de novo assembling resulted in a total of 177 616 unigenes. Through the KEGG, NR, SwissProt, Trembl, KOG/COG, GO, Pfam database comparision 106 644 annotated Unigene finally, 4 574 deferentially expressed genes were found in fruit between Sichuan and other provinces, including 3 740 up-regulated genes and 834 down-regulated genes. Among the up-regulated genes, 27 up-regulated genes were raleted to terpenoids, and 8 up-regulated genes were related to isoquinoline alkaloid bio-synthesis. Furthermore, it was also showed remarkable differences in groups which enrichment ratio of the diffe-rent expressed gene compared. The different expressed genes were annotated by the KEGG database into plant-pathogen interaction, plant hormone signal transduction and phenylpropanoid biosynthesis in fruit and leaf, but isoflavonoid bio-synthesis and betaine bio-synthesis were significantly different in fruit and leaf. The study laid a certain reference basis for comparison of quality and different expressed gene of Z. bungeanum from different groups.
China
;
Fruit/chemistry*
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Gene Expression Profiling
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Plant Leaves/chemistry*
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Plants, Medicinal/chemistry*
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Secondary Metabolism
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Transcriptome
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Zanthoxylum/chemistry*
7.Effect and mechanism of essential oil from Zanthoxylum bungeanum in microemulsion gel preparation on percutaneous delivery of complex components.
Xin-Yan LIU ; Ling-Yan XU ; Yong-Jie WANG ; Xin LIU ; Ying ZHAO ; Hai LAN ; Qing WU
China Journal of Chinese Materia Medica 2019;44(21):4627-4633
This study aimed to investigate the transdermal enhancing effect of essential oil from Zanthoxylum bungeanum(Z. bungeanum oil) in microemulsion gel(ZO-ME-gel) on permeation of different components,and reveal the transdermal enhancing mechanism of ZO-ME-gel. A series of components with different log P values were selected as model drugs and encapsulated in ZO-ME-gel to simplify and characterize the complex components of traditional Chinese medicine. The transdermal behavior of the model drugs was further examined using the improved Franz diffusion cell method. Then attenuated total reflection Fourier transform infrared spectroscopy(ATR-FTIR),differential scanning calorimetry(DSC) studies and hematoxylin-eosin(HE) staining were used to investigate the effects of Z. bungeanum oil and ZO-ME-gel on keratin,intercellular lipids and microstructure of the stratum corneum(SC). The results showed that Z. bungeanum oil and ZO-ME-gel had a good transdermal enhancing effect on both hydrophilic and lipophilic drugs,and the best effect was achieved when log P value was-0. 5. The transdermal enhancing mechanism of Z. bungeanum oil and ZO-ME-gel was related to affecting the order of the SC lipids,changing lipid fluidity and protein conformation,and disrupting the integrity of the SC structure. 5% Z. bungeanum oil had greater transdermal enhancing effect and destruction of SC structure than ZO-ME-gel. These results suggested that Z. bungeanum oil loaded in microemulsion gel still had a good transdermal enhancing effect although the effect was not as great as Z. bungeanum oil itself,in addition,ZO-ME-gel was less irritating to the skin and safer to use,which had a guiding role in the development and clinical application of Z. bungeanum oil-containing traditional Chinese medicine topical preparations.
Administration, Cutaneous
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Oils, Volatile
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Skin
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Skin Absorption
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Zanthoxylum
8.Chemical and cytotoxic constituents of Zanthoxylum nitidum.
Li-Na ZHAO ; Jia WANG ; Zhe WANG ; Ning-Hua TAN
China Journal of Chinese Materia Medica 2018;43(23):4659-4664
Ten compounds were isolated from the methanol extract of Zanthoxylum nitidum through silica gel, Sephadex LH-20, RP-18 and HPLC chromatography techniques. Their structures were elucidated by the MS and NMR spectra as zanthonitidine B(1), cyclo-(Leu-Leu-Leu-Leu-Ile)(2),6S-10-O-demethylbocconoline(3), liriodenine(4), isoplatydesmine(5), 5, 5'-dimethoxylariciresinol(6), syringaresinol (7), episyringaresinol (8), marmesin (9) and syringaldehyde (10). Among them,1 is a new alkaloid,2 is a cyclopentapeptide isolated from plant kingdom for the first time, and 3 is from the genus Zanthoxylum for the first time. Compounds 3 and 4 exhibited cytoxoxicity against three human cancer cell lines HT29, A549 and MDA-MB-231 with IC₅₈ values of 27.37, 24.10, 33.58 μmol·L⁻¹ and 9.12,6.05, 11.35 μmol·L⁻¹, respectively.
Alkaloids
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Chromatography, High Pressure Liquid
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Humans
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Zanthoxylum
9.Evaluation of the diuretic effects of crude stem bark extraction of Zanthoxylum heitzii (Rutaceae) in Wistar rats.
Fidèle NTCHAPDA ; E-mail: NTCHAPDA71@YAHOO.FR. ; Maguirgue KAKESSE ; Michel Archange Tagne FOKAM ; Olivier Mbouemboue PANCHA ; Djedouboum ABAKAR ; Théophile DIMO
Journal of Integrative Medicine 2015;13(5):326-335
OBJECTIVEZanthoxylum heitzii is a medicinal plant widely used in central Africa for the treatment of many diseases, especially cardiovascular diseases and hypertension. The diuretic effects of crude stem bark extraction were determined and its safety in rats was evaluated.
METHODSThe diuretic effects of crude stem bark extraction of Z. heitzii 250 g ± 10 g) of both sexes. The crude stem bark extraction of Z. heitzii at the doses of 225, 300 and 375 mg/kg was administered to rats at 5 mL/kg body weight. Urine volume was determined 1, 2, 3, 4, 5, 6 and 24 h after administration of the extract. Kinetics of electrolyte elimination in response to a single oral administration dose of acute treatment was measured. The experiments were performed under the same conditions with two synthetic pharmacological diuretics considered as reference (furosemide and hydrochlorothiazide). Urinary and plasma concentrations of sodium and potassium ions were determined using flame photometry. Concentrations of creatinine, urea, glucose, albumin and electrolytes in the plasma and urine samples were evaluated using a two-way digital bidirectional spectrophotometer. The osmolarity of plasma and urine samples was measured by cytometry using an osmometer. Aldosterone was measured by radioimmunoassay.
RESULTSThe plant extract accelerated the elimination of overloaded fluid and increased urine volume and the excretion of Na+, K+ and Cl- 24 h after administration (P<0.05). The increase in elimination of Na+, K+, and Cl- induced by caused alkalinization of the urine, and showed a strong inhibitory effect on carbonic anhydrase and saluretic. These effects were mainly observed at the dose of 375 mg/kg. At the maximum diuretic response, urinary osmolarity decreased significantly (P<0.05) when compared to controls. The stability of aldosterone level, the absence of correlation with the plasma levels of Na+, and increased clearance of free water in the animals treated with indicated that increased diuresis and natriuresis were tubular in origin. No significant (P>0.05) changes were observed in the body temperature of the animals.
CONCLUSIONThe significant increase in urine volume 24 h after treatment followed a dose-response pattern. The excretion of Na+, K+ and Cl- caused a decrease in urine osmolarity. The stability of aldosterone, the absence of correlation with the plasma levels of sodium, and increased clearance of free water in animals treated with aqueous extract suggest that increased diuresis and moderate natriuresis elevation were of tubular origin.
Animals ; Carbonic Anhydrase Inhibitors ; pharmacology ; Diuretics ; pharmacology ; Electrolytes ; metabolism ; Female ; Furosemide ; pharmacology ; Hydrochlorothiazide ; pharmacology ; Kidney ; drug effects ; physiology ; Male ; Plant Bark ; Plant Extracts ; pharmacology ; Rats ; Rats, Wistar ; Zanthoxylum ; chemistry
10.Research progress on alkaloids constituents from Zanthoxylum and their pharmacological activities.
Hai-mei YUAN ; Lu QIU ; Zhen-jian XIE ; Liang ZOU ; Jin ZHENG ; Qiang FU
China Journal of Chinese Materia Medica 2015;40(23):4573-4584
There are 250 species of Zanthoxylum (Rutaceae) in the world. This genus distributed in tropical and subtropical regions. Alkaloids are the major and representative ingredients in these plants including quinolines, isoquinolines, and amide alkaloids, with such biological activities as anti-tumor, anti-inflammatory, analgesic, anti-virus, anti-platelet aggregation, anti-bacteria and anti- oxidant. These species have been used for a long time to treat toothache, urinary and venereal diseases, lumbago and rheumatism. This review summarizes the chemical constituents and pharmacological activities from the Z. sppplants, in an effort to the systematic research and application of the alkaloids of this genus.
Alkaloids
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chemistry
;
pharmacology
;
Animals
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Drugs, Chinese Herbal
;
chemistry
;
pharmacology
;
Humans
;
Molecular Structure
;
Zanthoxylum
;
chemistry

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