1.The role of jasmonic acid in stress resistance of plants: a review.
Lehuan ZHANG ; Changyu ZOU ; Tianxiang ZHU ; Meixia DU ; Xiuping ZOU ; Yongrui HE ; Shanchun CHEN ; Qin LONG
Chinese Journal of Biotechnology 2024;40(1):15-34
Jasmonic acid (JA), a plant endogenously synthesized lipid hormone, plays an important role in response to stress. This manuscript summarized the biosynthesis and metabolism of JA and its related regulatory mechanisms, as well as the signal transduction of JA. The mechanism and regulatory network of JA in plant response to biotic and abiotic stresses were systematically reviewed, with the latest advances highlighted. In addition, this review summarized the signal crosstalk between JA and other hormones in regulating plant resistance to various stresses. Finally, the problems to be solved in the study of plant stress resistance mediated by JA were discussed, and the application of new molecular biological technologies in regulating JA signaling to enhance crop resistance was prospected, with the aim to facilitate future research and application of plant stress resistance.
Signal Transduction
;
Cyclopentanes
;
Oxylipins
;
Plant Growth Regulators
2.Cloning and function analysis of promoter of DcCDPK8 from Dendrobium catenatum.
Yuan WANG ; Yan-Hui GAO ; Yu-Qiu ZHU ; Jin-Ping SI
China Journal of Chinese Materia Medica 2019;44(2):293-297
DcCDPK8 involved in abiotic stress such as low temperature and signal transduction of hormones ABA and MeJA,but the transcriptional regulation is still unclear. In order to study the core promoter region of DcCDPK8 gene in Dendrobium catenatum and explore its transcriptional regulation mechanism,the DcCDPK8 gene promoter sequence was cloned by PCR from D. catenatum. Promoter sequence function was studied by fusion of 5 'terminal deletion and GUS gene. The results showed that the promoter sequence of DcCDPK8 gene has a low-temperature responsive element( LTR) between~(-1) 749 bp and-614 bp,two MeJA responsive elements between~(-1) 749 bp and-230 bp,and one ABA responsive elements between-614 bp and-230 bp. Three 5'-end different deletion fragments were constructed to fuse the eukaryotic expression vectors p BI121 with GUS,which were transformed into tobacco leaves. The GUS activity under cold stress treatment was DcCDPK8-p1>DcCDPK8-p2>DcCDPK8-p3. GUS activity under exogenous ABA induction was DcCDPK8-p1>DcCDPK8-p2>DcCDPK8-p3,and GUS activity under exogenous MeJA induction was DcCDPK8-p1>DcCDPK8-p2>DcCDPK8-p3. It is speculated that the ABA response element( ARE) in the promoter sequences of DcCDPK8 is positive regulatory role in response to exogenous ABA,the MeJA cis-acting element plays a negative role in response to exogenous MeJA.
Abscisic Acid
;
Acetates
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Cloning, Molecular
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Cold Temperature
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Cyclopentanes
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Dendrobium
;
genetics
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Gene Expression Regulation, Plant
;
Oxylipins
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Plant Proteins
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genetics
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Plants, Genetically Modified
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Promoter Regions, Genetic
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Response Elements
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Stress, Physiological
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Tobacco
3.Cloning and functional identification of a new NADPH-cytochrome P450 reductase in Andrographis paniculata.
Meng-Die QI ; Jian WANG ; Xiao-Jing MA ; Quan ZHANG ; Fang-Fang WANG ; Ying KANG ; Hui-Xin LIN ; Yong LIU
China Journal of Chinese Materia Medica 2018;43(2):309-315
Andrographolide is a main active ingredient in traditional Chinese medicine Andrographis paniculata,with a variety of pharmacological activity,widely used in clinical practice. However its biosynthetic pathway has not been resolved. Cytochrome P450 reductase provides electrons for CYP450 and plays an important role in the CYP450 catalytic process. In this study,the coding sequence of A. paniculata CPR was screened and cloned by homologous alignment,named ApCPR4. The ApCPR4 protein was obtained by prokaryotic expression. After isolation and purification,the enzyme activity was identified . The results showed that ApCPR4 could reduce the cytochrome c and ferricyanide in NADPH-dependent manner. In order to verify its function,ApCPR4 and CYP76AH1 were co-transformed into yeast engineering bacteria. The results showed that ApCPR4 could help CYP76AH1 catalyze the formation of rustols in yeast. Real-time quantitative PCR results showed that the expression of ApCPR4 increased gradually in leaves treated with methyl jasmonate (MeJA). The expression pattern was consistent with the trend of induction and accumulation of andrographolide by MeJA,suggesting that ApCPR4 was associated with biosynthesis of andrographolide.
Acetates
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Andrographis
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enzymology
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genetics
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Biosynthetic Pathways
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Cloning, Molecular
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Cyclopentanes
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Diterpenes
;
metabolism
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NADPH-Ferrihemoprotein Reductase
;
genetics
;
Oxylipins
;
Plant Leaves
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enzymology
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Plant Proteins
;
genetics
4.Effects of methyl jasmonate on metabolism of topical alkaloids and expression of relate genes in Atropa belladonna.
Yi YANG ; Cui-Ping ZHANG ; Xing LIU ; Yue WEI ; Neng-Biao WU
China Journal of Chinese Materia Medica 2018;43(20):4044-4049
Hyoscyamine and scopolamine are important secondary metabolites of tropane alkaloid in Atropa belladonna with pharmacological values in many aspects.In this study, the seedlings of A.belladonna were planted by soil culture and treated with different concentrations of methyl jasmonate (MeJA). The contents of hyoscyamine and scopolamine,the upstream products in alkaloid synthesis,and the expression levels of key enzyme genes PMT, TR Ⅰ and H6H in secondary metabolites of A. belladonna seedlings were measured to clarify the mechanism of MeJA regulating alkaloids synthesis.The results showed that MeJA(200 μmol·L⁻¹) treatment was more favorable for the accumulation of alkaloids.The content of putrescine was almost consistent with the change of key enzymes activities in the synthesis of putrescine,the both increased first and then decreased with the increased MeJA concentration and the content of putrescine reached the highest at 200 μmol·L⁻¹ MeJA.Further detection of gene expression of PMT, TR Ⅰ and H6H in TAs synthesis pathway showed that no significant trend in PMT gene expression levels.The expression levels of TR Ⅰ and H6H in leaves and roots under 200 μmol·L⁻¹ MeJA were the highest.It can be speculated that the regulation of the formation of hyoscyamine and scopolamine by MeJA mainly through affecting the expression of key enzyme genes.Appropriate concentration of MeJA increased the gene expression of TR Ⅰ in both leaves and roots as well as H6H in roots,promoting the accumulation of alkaloids and the conversion of hyoscyamine to scopolamine.
Acetates
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pharmacology
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Atropa belladonna
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drug effects
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genetics
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metabolism
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Cyclopentanes
;
pharmacology
;
Gene Expression Regulation, Plant
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Hyoscyamine
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metabolism
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Oxylipins
;
pharmacology
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Plant Leaves
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metabolism
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Plant Roots
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metabolism
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Scopolamine
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metabolism
5.Role of jasmonic acid in improving tolerance of rapeseed (Brassica napus L.) to Cd toxicity.
Essa ALI ; Nazim HUSSAIN ; Imran Haider SHAMSI ; Zahra JABEEN ; Muzammil Hussain SIDDIQUI ; Li-Xi JIANG
Journal of Zhejiang University. Science. B 2018;19(2):130-146
The well-known detrimental effects of cadmium (Cd) on plants are chloroplast destruction, photosynthetic pigment inhibition, imbalance of essential plant nutrients, and membrane damage. Jasmonic acid (JA) is an alleviator against different stresses such as salinity and drought. However, the functional attributes of JA in plants such as the interactive effects of JA application and Cd on rapeseed in response to heavy metal stress remain unclear. JA at 50 µmol/L was observed in literature to have senescence effects in plants. In the present study, 25 µmol/L JA is observed to be a "stress ameliorating molecule" by improving the tolerance of rapeseed plants to Cd toxicity. JA reduces the Cd uptake in the leaves, thereby reducing membrane damage and malondialdehyde content and increasing the essential nutrient uptake. Furthermore, JA shields the chloroplast against the damaging effects of Cd, thereby increasing gas exchange and photosynthetic pigments. Moreover, JA modulates the antioxidant enzyme activity to strengthen the internal defense system. Our results demonstrate the function of JA in alleviating Cd toxicity and its underlying mechanism. Moreover, JA attenuates the damage of Cd to plants. This study enriches our knowledge regarding the use of and protection provided by JA in Cd stress.
Brassica napus/metabolism*
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Cadmium/toxicity*
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Catalase/metabolism*
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Cyclopentanes/pharmacology*
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Oxylipins/pharmacology*
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Photosynthesis
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Plant Leaves/metabolism*
;
Superoxide Dismutase/metabolism*
6.An oriental melon 9-lipoxygenase gene CmLOX09 response to stresses, hormones, and signal substances.
Li-Jun JU ; Chong ZHANG ; Jing-Jing LIAO ; Yue-Peng LI ; Hong-Yan QI
Journal of Zhejiang University. Science. B 2018;19(8):596-609
In plants, lipoxygenases (LOXs) play a crucial role in biotic and abiotic stresses. In our previous study, five 13-LOX genes of oriental melon were regulated by abiotic stress but it is unclear whether the 9-LOX is involved in biotic and abiotic stresses. The promoter analysis revealed that CmLOX09 (type of 9-LOX) has hormone elements, signal substances, and stress elements. We analyzed the expression of CmLOX09 and its downstream genes-CmHPL and CmAOS-in the leaves of four-leaf stage seedlings of the oriental melon cultivar "Yumeiren" under wound, hormone, and signal substances. CmLOX09, CmHPL, and CmAOS were all induced by wounding. CmLOX09 was induced by auxin (indole acetic acid, IAA) and gibberellins (GA3); however, CmHPL and CmAOS showed differential responses to IAA and GA3. CmLOX09, CmHPL, and CmAOS were all induced by hydrogen peroxide (H2O2) and methyl jasmonate (MeJA), while being inhibited by abscisic acid (ABA) and salicylic acid (SA). CmLOX09, CmHPL, and CmAOS were all induced by the powdery mildew pathogen Podosphaera xanthii. The content of 2-hexynol and 2-hexenal in leaves after MeJA treatment was significantly higher than that in the control. After infection with P. xanthii, the diseased leaves of the oriental melon were divided into four levels-levels 1, 2, 3, and 4. The content of jasmonic acid (JA) in the leaves of levels 1 and 3 was significantly higher than that in the level 0 leaves. In summary, the results suggested that CmLOX09 might play a positive role in the response to MeJA through the hydroperoxide lyase (HPL) pathway to produce C6 alcohols and aldehydes, and in the response to P. xanthii through the allene oxide synthase (AOS) pathway to form JA.
Abscisic Acid
;
Acetates/chemistry*
;
Aldehyde-Lyases/metabolism*
;
Aldehydes/chemistry*
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Cucurbitaceae/genetics*
;
Cyclopentanes/chemistry*
;
Cytochrome P-450 Enzyme System/metabolism*
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Gene Expression Profiling
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Gene Expression Regulation, Plant
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Hormones/metabolism*
;
Hydrogen Peroxide/metabolism*
;
Intramolecular Oxidoreductases/metabolism*
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Lipoxygenase/metabolism*
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Oxylipins/chemistry*
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Plant Leaves/genetics*
;
Plant Proteins/metabolism*
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Promoter Regions, Genetic
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Salicylic Acid/chemistry*
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Seedlings/metabolism*
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Signal Transduction
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Stress, Physiological
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Transgenes
7.Anti-inflammatory and membrane stabilizing properties of methyl jasmonate in rats.
Solomon UMUKORO ; Akinyinka Oladipo ALABI ; Anthony Taghogho EDUVIERE ; Abayomi Mayowa AJAYI ; Oluwafemi Gabriel OLUWOLE
Chinese Journal of Natural Medicines (English Ed.) 2017;15(3):202-209
The present investigation was carried out to evaluate anti-inflammatory and membrane stabilizing properties of methyl jasmonate (MJ) in experimental rat models of acute and chronic inflammation. The effects of MJ on acute inflammation were assessed using carrageenan-induced rat's paw edema model. The granuloma air pouch model was employed to evaluate the effects of MJ on chronic inflammation produced by carrageenan in rats. The number of white blood cells (WBC) in pouch exudates was estimated using light microscopy. The levels of biomarkers of oxidative stress, such as malondialdehyde (MDA), glutathione (GSH) and activity of antioxidant enzymes in the exudates, were determined using spectrophotometry. The membrane stabilizing property of MJ was assessed based on inhibition of hemolysis of rat red blood cells (RBC) exposed to hypotonic medium. Our results indicated that MJ (25-100 mg·kg, i.p.) produced significant anti-inflammatory activity in carrageenan-induced paw edema in rats (P < 0.05). MJ reduced the volume of pouch exudates and the number of WBC in carrageenan-induced granulomatous inflammation. It also exhibited potent antioxidant and membrane stabilizing activities. In conclusion, these findings suggest the therapeutic potentials of methyl jasmonate in disease conditions associated with inflammation and its anti-inflammatory activity may be related to its antioxidant and membrane stabilizing activities.
Acetates
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administration & dosage
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Animals
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Anti-Inflammatory Agents
;
administration & dosage
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Cell Membrane
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chemistry
;
drug effects
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immunology
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Cyclopentanes
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administration & dosage
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Disease Models, Animal
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Edema
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drug therapy
;
immunology
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Erythrocytes
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chemistry
;
drug effects
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Glutathione
;
immunology
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Humans
;
Male
;
Malondialdehyde
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immunology
;
Oxylipins
;
administration & dosage
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Plant Extracts
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administration & dosage
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Rats
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Rats, Wistar
8.Effects of elicitors on growth of adventitious roots and contents of secondary metabolites in Tripterygium wilfordii Hook. f.
Yan LI ; Lei ZHAO ; Lei CUI ; Jiamin LEI ; Xing ZHANG
Chinese Journal of Biotechnology 2015;31(5):734-743
To study the effects of the extract of fungal elicitor, AgNO3, MeJA and yeast on the growth and content of secondary metabolites of adventitious roots in Tripterygium wilfordii. The above elicitors were supplemented to the medium, the growth and the content of secondary metabolites were measured. When the medium was supplemented with the elicitor Glomerella cingulata or Collectotrichum gloeosporioides, the content of triptolide was increased by 2.24 and 1.93-fold, the alkaloids content was increased by 2.02 and 2.07-fold, respectively. The optimal concentration of G. cingulata was 50 μg/mL for accumulation of triptolide, alkaloids and for the growth of adventitious roots. AgNO3 inhibited the growth of adventitious roots and the accumulation of the alkaloids, whereas it (at 25 μmol/L) increased the accumulation of triptolide by 1.71-fold compared to the control. The growth of adventitious roots, the contents of triptolide and alkaloids were increased 1.04, 1.64 and 2.12-folds, respectively when MeJA was at 50 μmol/L. When the concentration of yeast reached 2 g/L, the content of triptolide increased 1.48-folds. This research demonstrated that supplementation of AgNO3 and yeast enhanced the biosynthesis of triptolide in adventitious roots and the synergism of G. cingulata and MeJA could promote the biosynthesis of both triptolide and alkaloids.
Acetates
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pharmacology
;
Alkaloids
;
biosynthesis
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Colletotrichum
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Cyclopentanes
;
pharmacology
;
Diterpenes
;
metabolism
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Drugs, Chinese Herbal
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Epoxy Compounds
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metabolism
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Oxylipins
;
pharmacology
;
Phenanthrenes
;
metabolism
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Phyllachorales
;
Plant Roots
;
drug effects
;
growth & development
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Secondary Metabolism
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Tripterygium
;
drug effects
;
growth & development
;
metabolism
9.Expression analyses of BcUGT3 and BcUGT6, and their in vitro expression in Escherichia coli.
Yun-Wen TAO ; Jie-Sen XU ; Jing SUN ; Jian-He WEI ; Juan LIU ; Chun SUI
China Journal of Chinese Materia Medica 2014;39(2):185-191
The tissue-specific and MeJA-induced transcriptional levels of BcUGT3 and BcUGT6 in Bupleurum chinense were analyzed in the present study. The transcriptional levels of BcUGT3 in root, leaf, flower and fruit were similar and they all were higher than those in stem. The transcriptional level of BcUGT6 was the highest in leaf and the lowest in flower among in all tested tissues. With non-treated adventitious roots as control, BcUGT6's transcriptional levels were elevated to nearly 2 folds for 2 h, 8 h, 24 h, 2 d and 4 d in MeJA-treated adventitious roots of B. chinense. It showed that the transcriptional level of BcUGT6 was slightly affected by MeJA. While, BcUGT3's transcriptional levels were gradually elevated, and till 4 d after MeJA treatment, the expression level was about 7 folds than that of non-treated control. Using pET-28a (+), the expressions of two genes was investigated. Induced by IPTG, the target proteins were expressed in E. coli and then purified. All the results obtained in the present study will be helpful for follow-up bio-function analysis of BcUGT3 and BcUGT6.
Acetates
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pharmacology
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Bupleurum
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cytology
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enzymology
;
genetics
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Cell Membrane
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metabolism
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Cyclopentanes
;
pharmacology
;
Escherichia coli
;
genetics
;
Gene Expression
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Gene Expression Regulation, Plant
;
drug effects
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Hexosyltransferases
;
chemistry
;
genetics
;
isolation & purification
;
metabolism
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Intracellular Space
;
metabolism
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Oxylipins
;
pharmacology
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Protein Sorting Signals
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Protein Structure, Secondary
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Protein Transport
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Sequence Analysis
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Transcription, Genetic
;
drug effects
10.Effect of methyl jasmonate on salidroside and polysaccharide accumulation in Rhodiola sachalinensis callus.
Yang LI ; Mei-Lan LIAN ; Chun-Hui SHAO ; Chan JIN ; Xuan-Chun PIAO
China Journal of Chinese Materia Medica 2014;39(21):4252-4257
OBJECTIVETo provide a new material for producing the Rhodiolasachalinensis products, the effect of methyl jasmonate (MeJA) on callus biomass and effective compound accumulation of Rhodiolasachalinensis was studied.
METHODThe calluses-cultured in 3 L-air lift balloon type bioreactor were treated with MeJA after 20 d of bioreactor culture and the effect of MeJA concentration and treatment days on callus biomass, salidroside or polysaccharide accumulation and superoxide dismutase (SOD) and peroxidase (POD) activities were investigated.
RESULTThe callus biomass was not significantly different after MeJA treatment (125) for 0-6 d but obviously decreased after 6 d treatment. The maximum salidroside or polysaccharide contents and SOD or POD activities were found after 4 d treatment of MeJA. MeJA concentration significantly affected callus biomass and effective compound accumulation, biomass decreased at MeJA concentrations higher than 125 μmol x L(-1). However, the effective compound contents were determined at higher MeJA concentration, and the highest salidroside and polysaccharide accumulation was found at 225 and 275 μmol x L(-1) MeJA, respectively and the maximum SOD and POD activities was found at 225 μmol x L(-1) MeJA. The effective compound contents in callus were compared with field-grown plants. Salidroside contents in calluses were 1.1-fold and 2. 4-fold more than in plant roots and stem or leave, respectively. Polysaccharide content in calluses were 3. 6-fold and 8.0-fold more than in plant roots and stem or leave, respectively.
CONCLUSIONSalidorside and polysaccharide in Rhodiolasachalinensiscalluses improved by MeJA treatment, 225 μmol x L(-1) MeJA and 4 d treatment were optimal. The effective compound contents in callus were obviously higher than in field-grown plants. Therefore, bioreactor culture is efficient for obtaining mass effective compounds of Rhodiolasachalinensis by culturing calluses. This method could provide an alternative material source for production of Rhodiolasachalinensis products.
Acetates ; pharmacology ; Biomass ; Bioreactors ; Cyclopentanes ; pharmacology ; Glucosides ; metabolism ; Oxylipins ; pharmacology ; Peroxidase ; metabolism ; Phenols ; metabolism ; Polysaccharides ; metabolism ; Rhodiola ; metabolism ; Superoxide Dismutase ; metabolism

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