1.Thirteen new peptaibols with antimicrobial activities from Trichoderma sp.
Pan TANG ; Dan HUANG ; Kai-Xuan ZHENG ; Dan HU ; Ping DAI ; Chuan-Hui LI ; Sheng-Ying QIN ; Guo-Dong CHEN ; Xin-Sheng YAO ; Hao GAO
Chinese Journal of Natural Medicines (English Ed.) 2023;21(11):868-880
From the fungus Trichoderma sp., we isolated seven novel 18-residue peptaibols, neoatroviridins E-K (1-7), and six new 14-residue peptaibols, harzianins NPDG J-O (8-13). Additionally, four previously characterized 18-residue peptaibols neoatroviridins A-D (14-17) were also identified. The structural configurations of the newly identified peptaibols (1-13) were determined by comprehensive nuclear magnetic resonance (NMR) and high-resolution electrospray ionization tandem mass spectrometry (HR-ESI-MS/MS) data. Their absolute configurations were further determined using Marfey's method. Notably, compounds 12 and 13 represent the first 14-residue peptaibols containing an acidic amino acid residue. In antimicrobial assessments, all 18-residue peptaibols (1-7, 14-17) exhibited moderate inhibitory activities against Staphylococcus aureus 209P, with minimum inhibitory concentration (MIC) values ranging from 8-32 μg·mL-1. Moreover, compound 9 exhibited moderate inhibitory effect on Candida albicans FIM709, with a MIC value of 16 μg·mL-1.
Peptaibols/chemistry*
;
Trichoderma/metabolism*
;
Tandem Mass Spectrometry/methods*
;
Anti-Infective Agents/pharmacology*
;
Spectrometry, Mass, Electrospray Ionization/methods*
2.Antagonistic activity of volatile metabolites from Trichoderma asperellum.
Lingyun TAO ; Yiwen ZHANG ; Yaqian LI ; Laipeng LUO ; Zenglu ZHANG ; Jie CHEN
Chinese Journal of Biotechnology 2020;36(6):1181-1189
Trichoderma spp. is a kind of filamentous fungi with important biocontrol value. Twelve strains of Trichoderma spp. were isolated from the soils of different types of crops in Shaoxing, Zhejiang and Foshan, Guangdong. The antagonistic resistance to Fusarium oxysporum was compared by plate confrontation test. The further analysis of volatile secondary metabolites for two strains were carried out using HS-SPME-GC-MS analysis. The results showed that T. asperellum ZJSX5003 and GDFS1009 had fast growth ability, and the inhibition effects on F. oxysporum were 73% and 74% respectively. Six identical volatile metabolites were detected as follows 2-Methyl-1-propanol, 3-Methyl-1-butanol, 3-Methyl-3-buten-1-ol, Acetyl methyl carbinol, Butane-2,3-diol and 6-n-pentyl-2H-pyran-2-one (6-PAP). Among them, 6-PAP was validated to have a higher inhibitory effect on F. oxysporum in vitro. This study will provide basis for the development of biocontrol agents with metabolites of Trichoderma, such as 6-PAP.
Antibiosis
;
Antifungal Agents
;
pharmacology
;
Fusarium
;
drug effects
;
physiology
;
Gas Chromatography-Mass Spectrometry
;
Trichoderma
;
chemistry
;
metabolism
3.Effect of Glomus versiforme and Trichoderma harzianum on growth and quality of Salvia miltiorrhiza.
Xue WANG ; Mei-Lan CHEN ; Guang YANG ; Xiao-Ming LI ; Peng-Ying LI ; Min CHEN
China Journal of Chinese Materia Medica 2014;39(9):1574-1578
The present study aimed to investigate the effect of Glomus versiforme and Trichodema harzianum on the growth and quality of Salvia miltiorrhiza continuous cropping under field conditions. The field plot experiment was conducted, these active components in the plant were analyzed by HPLC, the root diseases incidence rate of S. miltiorrhiza determined by observation and counting, and relative parameters were measured. The data was statistically processed. The result showed that inoculation of G. versiforme and combined inoculation of G. versiforme with T. harzianum significantly decreased the root diseases incidence rate of S. miltiorrhiza, and combined inoculation of G. versiforme with T. harzianum was better than other treatments. All treatments improved accumulation of active ingredients in root. Inoculation of G. versiforme and combined inoculation of G. versiforme with T. harzianum significantly increased the content of salvianolic acid B and cryptotanshinone of root (P < 0.05), Inoculation of G. versiforme, T. harzianum and combined inoculation of G. versiforme with T. harzianum significantly enhanced the content of tanshinone I and tanshinone II(A) of the root (P < 0.05). It may conclude that inoculation of G. versiforme and combined inoculation of G. versiforme with T. harzianum can effectively reduce the root diseases incidence of continuous cropping S. miltiorrhiza, and improve the quality of S. miltiorrhiza.
Antibiosis
;
physiology
;
Benzofurans
;
metabolism
;
Diterpenes, Abietane
;
metabolism
;
Glomeromycota
;
physiology
;
Host-Pathogen Interactions
;
Phenanthrenes
;
metabolism
;
Plant Diseases
;
microbiology
;
Plant Roots
;
growth & development
;
metabolism
;
microbiology
;
Salvia miltiorrhiza
;
growth & development
;
metabolism
;
microbiology
;
Trichoderma
;
physiology
4.Display cellulolytic enzymes on Saccharomyces cerevisiae cell surface by using Flo1p as an anchor protein for cellulosic ethanol production.
Chunling MO ; Yueyue YANG ; Ning CHEN ; Xiushan YANG ; Shen TIAN
Chinese Journal of Biotechnology 2014;30(9):1401-1413
In this study, we constructed a yeast consortium surface-display expression system by using Flo1 as an anchor protein. Endoglucanase II (EGII) and cellobiohydrolase II (CBHII) from Trichoderma reesei, and β3-glucosidase 1 (BGLI) from Aspergillus aculeatus were immobilized on Saccharomyces cerevisiae Y5. We constructed the cellulose-displaying expression yeast consortium (Y5/fEGII:Y5/fCBHII:Y5/fBGLI = 1:1:1) and investigated the enzymatic ability and ethanol fermentation. The displayed cellulolytic enzymes was stabile during the 96-h fermentation. The yeast consortium produced 0.77 g/L ethanol from 10 g/L phosphoric acid swollen cellulose (PASC) within 96 h. The yield (in grams of ethanol produced per gram of carbohydrate consumed) was 0.35 g/g, which correspond to 68.6% of the theoretical yield.
Aspergillus
;
enzymology
;
Cellulase
;
genetics
;
Cellulose
;
metabolism
;
Cellulose 1,4-beta-Cellobiosidase
;
genetics
;
Enzymes, Immobilized
;
genetics
;
Ethanol
;
metabolism
;
Fermentation
;
Glucosidases
;
genetics
;
Mannose-Binding Lectins
;
metabolism
;
Protein Binding
;
Saccharomyces cerevisiae
;
genetics
;
metabolism
;
Saccharomyces cerevisiae Proteins
;
metabolism
;
Trichoderma
;
enzymology
5.Direct biosynthesis of ethylene.
Chinese Journal of Biotechnology 2013;29(10):1431-1440
Ethylene is the most widely used petrochemical feedstock globally. The development of bio-ethylene is essential due to limited fossil fuels and rising oil prices. Bio-ethylene is produced primarily by the dehydration of ethanol, but can alternatively be directly produced from ethylene biosynthesis pathways in plants, algae, or microorganisms by using cheap and renewable substrates. This review addressed the biosynthesis of ethylene in plants and microorganisms, the characterization of key enzymes, genetic engineering strategies for ethylene biosynthesis in microorganisms, and evaluated its perspective and successful cases toward the industrial application. The direct production of bio-ethylene from a biological process in situ is promising to supplement and even replace the petrochemical ethylene production.
Ethylenes
;
biosynthesis
;
Industrial Microbiology
;
methods
;
Metabolic Engineering
;
methods
;
Plants
;
genetics
;
metabolism
;
Saccharomyces cerevisiae
;
metabolism
;
Synechocystis
;
genetics
;
metabolism
;
Trichoderma
;
metabolism
6.Cost-effective production of protein by using cellulose-binding domain fusion tag in Corynebacterium glutamicum.
Zhijing ZHAO ; Huan JIANG ; Wenting SHEN ; Lianyan SONG ; Guang HU
Chinese Journal of Biotechnology 2013;29(5):691-694
The CBD gene from Trichoderma reesei was cloned into the Corynebacterium glutamicum secretion expression vector pXMJ19-sp, in which green fluorescent protein was inserted to obtain pXMJ19-sp-GFP-CBD. After induced by 0.5 mmol/L IPTG, GFP-CBD was expressed in Corynebacterium glutamicum at high level of 200 mg/L. The GFP-CBD could be purified to high purity with cellulose column. The results indicated CBD can be successfully used in Corynebacterium glutamicum expression system and thus offer an extremely simple, effective and scalable way for production of recombinant proteins.
Base Sequence
;
Cellulases
;
biosynthesis
;
genetics
;
Cellulose
;
chemistry
;
genetics
;
Cloning, Molecular
;
Corynebacterium glutamicum
;
genetics
;
metabolism
;
Cost-Benefit Analysis
;
Genetic Vectors
;
genetics
;
Green Fluorescent Proteins
;
genetics
;
metabolism
;
Molecular Sequence Data
;
Protein Engineering
;
Recombinant Fusion Proteins
;
biosynthesis
;
genetics
;
Trichoderma
;
genetics
7.Identification and secondary metabolites of endophytic fungal strain PR35 from Paeonia delavayi.
Juan HU ; Jiao WANG ; Cuiping MIAO ; Qicun XUAN ; Yingzhe ZHAI ; Fei SONG ; Youwei CHEN ; Shaohua WU
China Journal of Chinese Materia Medica 2012;37(11):1602-1606
OBJECTIVETo identify the endophytic fungal strain PR35 separated from Paeonia delavayi and study chemical constituents of its secondary metabolites.
METHODThe fungal strain PR35 was identified by morphological observation and ITS rDNA sequence analysis. Various chromatographic methods were adopted to separate and purify its secondary metabolites, and their structures were identified by physiochemical properties and spectral data
RESULTThe fungal strain PR35 was identified as Trichoderma longibrachiatum. Five compounds were separated from fermentation products of fungal strain PR35 and identified as 1-(2,6-dihydroxyphenyl)-3-hydroxybutan-1-one (1), 1-(2,6-dihydroxypheny) propan-1-one (2), 1-(2,4,6-trihydroxyphenyl) butan-1-one (3), 4-methoxy-1-naphthol (4), and cerevisterol (5). Among them, compounds 1-3 showed notable antifungal activities against Botrytis cinerea, Fusarium avenaceum and Hormodendrum compactum.
CONCLUSIONThe endophytic fungus T. longibrachiatum was separated from the plant P. delavayi for the first time. Five compounds were first separated from endophytic fungus of P. delavayi. Among them, compound 4 was separated from microbial fermentation products for the first time.
DNA, Fungal ; genetics ; DNA, Intergenic ; genetics ; Endophytes ; classification ; genetics ; isolation & purification ; metabolism ; Paeonia ; microbiology ; Phylogeny ; Trichoderma ; classification ; genetics ; isolation & purification ; metabolism
8.Study of a novel compound 2460A with activities produced by fungus.
Xiao-qiang QI ; Feng-chang ZHU ; Yang ZHANG ; Lian-hong GUO ; Rong JIANG ; Qi-yang HE ; Yuan LI
Acta Pharmaceutica Sinica 2011;46(2):165-169
With IL-6R as target, a new compound 2460A was identified from fungus using HTS screening model. The taxonomics of the produced strain was confirmed to be Trichoderma hazianum rifai after sequencing analysis of rDNA-ITS (internal transcribed spacer). Results showed that this compound has a binding activity on IL-6R competed with IL-6, thus it is a new ligand of IL-6R originating from microbe. With MTT assay, the anti-tumor activities of 2460A were demonstrated on CM126 and HT-29 cell lines separately, the IC50 are 2.17 x 10(-5) mol x L(-1) and 1.8 x 10(-5) mol x L(-1) respectively. The compound affected lightly the HT-29 cell cycle at S phase. Studies for the anti-tumor activity of 2460A in vivo are in progress in our lab.
Antineoplastic Agents
;
isolation & purification
;
metabolism
;
pharmacology
;
Binding, Competitive
;
Bone Marrow Neoplasms
;
pathology
;
Cell Cycle
;
drug effects
;
Cell Line, Tumor
;
Cell Proliferation
;
drug effects
;
HT29 Cells
;
High-Throughput Screening Assays
;
Humans
;
Interleukin-6
;
metabolism
;
Ligands
;
Receptors, Interleukin-6
;
metabolism
;
Trichoderma
;
chemistry
9.Enhancing stability of Trichoderma reesei xylanase (XYN II) by site-directed mutagenesis.
Chengye HAN ; Shiyuan YU ; Jia OUYANG ; Xin LI ; Juan ZHOU ; Yan XU
Chinese Journal of Biotechnology 2010;26(5):623-629
We engineered a disulphide bridge between two adjacent double-layered beta-sheet at the N-terminal region of Trichoderma reesei endo-1,4-beta-xylanase II(XYN II) by site-directed mutagenesis. The native xylanase XYN-OU and the mutated xylanase XYN-HA12 (T2C, T28C and S156F) were separately expressed in Pichia pastoris. Both xylanases were purified and characterized. The optimum temperature of XYN-HA12 was increased from 50 degrees C to 60 degrees C, relative to XYN-OU. At 70 degrees C, the halftime of inactivation for XYN-OU and XYN-HA12 were 1 min and 14 min, respectively. The optimum pH of XYN-HA12 was 5.0, similar to XYN-OU. However, XYN-HA12 could retain over 50% activity from pH 3.0 to 10.0 at 50 degrees C for 30 min. As for XYN-OU, it could retain over 50% activity from the pH value 4.0 to 9.0 at 50 degrees C in 30 min. The result of the mutated xylanase indicated that constructed disulphide bridge could improve its thermostability at relatively higher temperature.
Amino Acid Substitution
;
Disulfides
;
chemistry
;
metabolism
;
Endo-1,4-beta Xylanases
;
biosynthesis
;
chemistry
;
genetics
;
Enzyme Stability
;
genetics
;
Mutagenesis, Site-Directed
;
Pichia
;
genetics
;
metabolism
;
Protein Engineering
;
methods
;
Recombinant Proteins
;
biosynthesis
;
chemistry
;
Trichoderma
;
enzymology
;
genetics
10.Antagonistic mechanisms of trichoderma spp. against Phytophthora nicotianae.
Xixi YI ; Wanlong DING ; Yong LI
China Journal of Chinese Materia Medica 2010;35(11):1386-1390
Antagonistic mechanisms of Trichoderma viride M3, Tv04-2, and T. harzianum ThB, were studied against Phytophthora nicotianae, the pathogen of stem blight disease on Schizonepeta tenuifolia by dual-culture, hydrolase activity, volatile and nonvolatile substances. Results indicated that competitive, mycoparasitism and antagonism were the antagonistic mechanisms of three Trichoderma spp. against P. nicotianae. Hydrolase activity showed that M3 was the highest for beta-1, 3-glucanases activity while ThB was the highest for proteases activity among the three T. strains, and they could produce volatile and non-volatile substances, also.
Fungal Proteins
;
metabolism
;
Hydrolases
;
metabolism
;
Lamiaceae
;
parasitology
;
Peptide Hydrolases
;
metabolism
;
Pest Control, Biological
;
Phytophthora
;
microbiology
;
physiology
;
Plant Diseases
;
parasitology
;
Trichoderma
;
enzymology
;
physiology

Result Analysis
Print
Save
E-mail