1.Studies and Applications on Mkrobial Mixed Fermentation
Microbiology 1992;0(03):-
Owing to the positive interactions between different microorganisms, mixed fermentation has been found more and more effective in practice. Apparent progress has been made on the application and mechanism of mixed fermentation in past ten years, including: (1) degradation and utilization of cellulose, bagasse, cornstalk, etc; (2) degradation of environmental pollution, like Diazinon and PVA; (3) production of specifically metabolite; (4) optimized technics of mixed fermentation. The latest progress on the application, related mechanism, microorganisms, and conditions of mixed fermentation is reviewed in this article.
2.Physicochemical properties of medicinal fungus Polyporus umbellatus sclerotial exudate.
Yong-Mei XING ; Hong-Lian LI ; Shun-Xing GUO
China Journal of Chinese Materia Medica 2014;39(1):40-43
This study was conducted to investigate the physicochemical properties of Polyporus umbellatus sclerotial exudate. Morphological characteristics of the sclerotia and its exudate were observed during different stages of sclerotial formation. The pH of the exudate was detected at different time during cultivation. A phenol-sulfuric acid method was employed to determine the polysaccharide content of P. umbellatus sclerotial exudate during cultivating time. Additionally, the protein content was measured by means of BCA protein assay. Furthermore, CAT content was detected using ultraviolet absorption method. That the protein content of the exudate and CAT specific activity rose gradually during the passage of the cultivating time indicated a high level of oxidative stress during P. umbellatus sclerotial exudate formation. The results showed that the pH of the exudate increased gradually and then dropped down during sclerotial formation. That the pH of the exudate maintained the acidity state during the cultivation indirectly indicated that acidic environment would help sclerotial formation. The exudate produced gradually and was absorbed by the sclerotia itself.
Culture Media
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chemistry
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metabolism
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Fungal Proteins
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chemistry
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metabolism
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Fungi
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chemistry
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metabolism
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Hydrogen-Ion Concentration
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Medicine, Chinese Traditional
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methods
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Oxidative Stress
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Polyporus
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chemistry
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metabolism
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Polysaccharides
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chemistry
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metabolism
3.Application of in vitro bionic digestion and biomembrane extraction for metal speciation analysis, bioavailability and risk assessment in lianhua qingwen capsule.
Lu-Xiu LIN ; Shun-Xing LI ; Feng-Ying ZHENG
China Journal of Chinese Materia Medica 2014;39(12):2330-2335
One of the causes of the high cost of pharmaceuticals and the major obstacles to rapidly assessing the bioavailability and risk of a chemical is the lack of experimental model systems. A new pre-treatment technology, in vitro bionic digestion was designed for metal analysis in Lianhua Qingwen capsule. The capsule was digested on 37 degrees C under the acidity of the stomach or intestine, and with the inorganic and organic compounds (including digestive enzymes) found in the stomach or intestine, and then the chyme was obtained. Being similar to the biomembrane between the gastrointestinal tract and blood vessels, monolayer liposome was used as biomembrane model Affinity-monolayer liposome metals (AMLMs) and water-soluble metals were used for metal speciation analysis in the capsule. Based on the concentration of AMLMs, the main absorption site of trace metals was proposed. The metal total contents or the concentration of AMLMs in the capsule were compared to the nutritional requirements, daily permissible dose and heavy metal total contents from the "import and export of medicinal plants and preparation of green industry state standards". The metal concentrations in the capsule were within the safety baseline levels for human consumption. After in vitro bionic digestion, most of trace metals were absorbed mainly in intestine. The concentration of As, Cd, Pb was 0.38, 0.07, 1.60 mg x kg(-1), respectively, far less than the permissible dose from the "import and export of medicinal plants and preparation of green industry state standards".
Biological Availability
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Capsules
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adverse effects
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pharmacokinetics
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Digestion
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Drugs, Chinese Herbal
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adverse effects
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pharmacokinetics
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Humans
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Metals, Heavy
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adverse effects
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pharmacokinetics
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Models, Biological
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Stomach
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metabolism
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Trace Elements
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adverse effects
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pharmacokinetics
5.Resource characteristics and propagation techniques of Anoectochilus roxburghii in China
Xin-kai LÜ ; Li-si ZHOU ; Shun-xing GUO
Acta Pharmaceutica Sinica 2022;57(7):2057-2067
italic>Anoectochilus roxburghii (Wall.) Lindl. is a medicinal species belonging to the Orchidaceae, whose whole plant can be used as a medicinal herb, known as "JinXianLian". It has antidiabetic, liver-protecting, anti-inflammatory, etc.
6.Ecological distribution and diversity of medical Ferula species produced in Xinjiang.
Jun ZHU ; Xiao-Jin LI ; Li SUN ; Shun-xing GUO ; Juan CHEN
China Journal of Chinese Materia Medica 2015;40(2):356-361
To study the ecological distribution and diversity of endophytic fungi associated with Ferula of medicinal plants in Xinjiang. The endophytic fungi were isolated from roots, stems and leaves of Ferula by microbiology research methods and technology. The endophytic fungi were identified using ITS rDNA sequence analysis and morphology analysis. The composition, diversity and preference of endophytic fungal community were analyzed with Shannon-Wiener biodiversity index (H') and Sorensen coefficient (Cs). A total of 337 strains endophytic fungi were isolated and classified into 38 genera, Alternaria, Aureobasidium and Fusarium were the dominant genera. Among the 337 isolates, the endophytic fungi of F. sinkiangensis were the most, The Shannon-Wiener biodiversity index (H') associated with roots of F. fukanensis was the highest, reached 1.85. The highest Sorensen coefficient ( Cs) was between leaf of F. sinkiangensis and leaf of F. ovina, reached 0.75. From the result, endophytic fungi were widely distributed in six Ferula, there are some notable differences between distribution and composition of the endophytic fungi isolated from different issues and different species of Ferula, show a certain degree of species and tissue preference. The results obtained in this study will provide realistic basis and theoretical basis for further study the secondary metabolites of endophytic fungi associated with Ferula, and the relationship between endophytic fungi and their host plants.
Biodiversity
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Ecology
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Endophytes
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isolation & purification
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Ferula
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microbiology
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Fungi
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classification
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isolation & purification
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metabolism
7.Cloning and expression analysis of a zinc-regulated transporters (ZRT), iron-regulated transporter (IRT)-like protein encoding gene in Dendrobium officinale.
Gang ZHANG ; Yi-Min LI ; Biao LI ; Da-Wei ZHANG ; Shun-Xing GUO
China Journal of Chinese Materia Medica 2015;40(1):42-47
The zinc-regulated transporters (ZRT), iron-regulated transporter (IRT)-like protein (ZIP) plays an important role in the growth and development of plant. In this study, a full length cDNA of ZIP encoding gene, designed as DoZIP1 (GenBank accession KJ946203), was identified from Dendrobium officinale using RT-PCR and RACE. Bioinformatics analysis showed that DoZIP1 consisted of a 1,056 bp open reading frame (ORF) encoded a 351-aa protein with a molecular weight of 37.57 kDa and an isoelectric point (pI) of 6.09. The deduced DoZIP1 protein contained the conserved ZIP domain, and its secondary structure was composed of 50.71% alpha helix, 11.11% extended strand, 36.18% random coil, and beta turn 1.99%. DoZIP1 protein exhibited a signal peptide and eight transmembrane domains, presumably locating in cell membrane. The amino acid sequence had high homology with ZIP proteins from Arabidopsis, alfalfa and rice. A phylogenetic tree analysis demonstrated that DoZIP1 was closely related to AtZIP10 and OsZIP3, and they were clustered into one clade. Real time quantitative PCR analysis demonstrated that the transcription level of DoZIP1 in D. officinale roots was the highest (4.19 fold higher than that of stems), followed by that of leaves (1.12 fold). Molecular characters of DoZIP1 will be useful for further functional determination of the gene involving in the growth and development of D. officinale.
Amino Acid Sequence
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Cloning, Molecular
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Dendrobium
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chemistry
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classification
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genetics
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metabolism
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Gene Expression Regulation, Plant
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Iron
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metabolism
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Membrane Transport Proteins
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chemistry
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genetics
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metabolism
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Molecular Sequence Data
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Phylogeny
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Plant Proteins
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chemistry
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genetics
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metabolism
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Plants
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chemistry
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classification
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genetics
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Sequence Alignment
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Zinc
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metabolism
8.Simultaneous determination of seven components and their distribution in Anoectochilus roxburghii by UHPLC-MS/MS
Xin-kai LÜ ; Hai-xin DIAO ; Li-si ZHOU ; Shun-xing GUO
Acta Pharmaceutica Sinica 2023;58(1):201-207
Based on ultra high-performance liquid chromatography-tandem mass spectrometry (UHPLC-MS/MS), a rapid and simultaneous quantitative method for the measurement of seven components (kinsenoside; rutin; kaempferol-3-
9.Isolation of Strain LW-3 Capable of Degrading Chlorimuron-ethyl and Its Biological Characteristics
Zhe WANG ; Ji-Quan SUN ; Ji-Ping MA ; Xing HUANG ; Shun-Peng LI ;
Microbiology 2008;0(12):-
A bacterium(designated as LW-3), capable of degrading Chlorimuron-ethyl, was isolated from the long-term contaminated soil by Chlorimuron-ethyl. Based on physiological and biochemical analyses and sequences comparison of 16S rDNA, strain LW-3 was identified as Pseudomonas sp. LW-3 could use Chlorimuron-ethyl as sole nitrogen source for growth. The optimum pH and temperature for degradation of Chlorimuron-ethyl were pH 6.5~7.2 and 30?C~35?C, at same temperature the pH change to the Chlorimuron -ethyl degrading influence is large. When the pH and temperature were pH 6.5 and 32?C, 50 mg/L Chlori- muron-ethyl could be degraded to 70%~80% level within 7 days.
10.Isolation and differential expression of a novel MAP kinase gene DoMPK4 in Dendrobium officinale.
Gang ZHANG ; Yi-Min LI ; Ben-Xiang HU ; Da-Wei ZHANG ; Shun-Xing GUO
Acta Pharmaceutica Sinica 2014;49(7):1076-1083
Mitogen-activated protein kinases (MAPKs) are important signaling transduction components well conserved in eukaryotes and play essential roles in various physiological, developmental and hormonal responses in plant. In the present study, a MAPK gene, designated as DoMPK4 (GenBank accession No. JX297597), is identified from a rare endangered medicinal orchid species D. officinale using the reverse transcription polymerase chain reaction (RT-PCR) and rapid amplification of cDNA ends (RACE) methods. The full length cDNA of DoMPK4 is 1 518 bp in length and encoded a 369 aa protein with a molecular weight of 42.42 kD and an isoelectric point of 5.55. DoMPK4 protein contained a serine/threonine protein kinase active site (158-170), a MAP kinase site (71-174), and eight conserved motifs. DoMPK4 had a transmembrane (214-232) but no signal peptide. Multiple sequence alignment showed that DoMPK4 shared high identities (74.9%-80.6%) with MAPK proteins from various plants. Phylogenetic analysis demonstrated that DoMPK4 belonged to group A of the MAPK evolutionary tree, and is closely related to monocots. Real time quantitative PCR (qPCR) analysis revealed that DoMPK4 is differentially expressed among the five organs including leaf, stem, root, seed, and protocorm-like body (PLB). The transcription level of DoMPK4 is the highest in the PLBs with 17.65 fold, followed by seeds, roots, and stems with 5.84, 2.28, and 1.64 fold, respectively. The progressive enhancement of DoMPK4 transcripts in the developing PLBs compared to that in the germinating seeds, suggests a role of DoMPK4 during the development of embryogenic PLBs formation in D. officinale.
Amino Acid Sequence
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DNA, Complementary
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genetics
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DNA, Plant
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genetics
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Dendrobium
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enzymology
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genetics
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Gene Expression Regulation, Plant
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Mitogen-Activated Protein Kinases
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genetics
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metabolism
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Phylogeny
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Plant Leaves
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metabolism
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Plant Proteins
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genetics
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metabolism
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Plant Roots
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metabolism
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Plant Stems
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metabolism
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Seeds
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metabolism
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Sequence Alignment