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首页> 外文期刊>Applied Microbiology and Biotechnology >Structure identification and fermentation characteristics of pinoresinol diglucoside produced by Phomopsis sp. isolated from Eucommia ulmoides Oliv
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Structure identification and fermentation characteristics of pinoresinol diglucoside produced by Phomopsis sp. isolated from Eucommia ulmoides Oliv

机译:Phomopsis sp。产生的松脂醇二葡萄糖苷的结构鉴定和发酵特性。分离自杜仲

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摘要

Pinoresinol diglucoside (PDG) is the important antihypertensive compound in Eucommia ulmoides Oliv., a traditional Chinese herb medicine. The research objective was to certify the possibility of producing PDG through fermentation. PDG-producing endophytic fungi were isolated from E. ulmoides Oliv., and the highest PDG-yielding (11.65 mg/L) isolate, XP-8, was identified as Phomopsis sp. according to the morphological characteristics and the phylogenetic tree constructed on the basis of the gene sequence in the internal transcribed spacers district. The microbial PDG was isolated by using S-8 resin and purified to a purity of 98.7% using preparative high-performance liquid chromatography (HPLC). Information obtained from the UV spectrum (277 and 227 nm, in water solution), infra-red spectrum (3,428; 2,930; 2,877; 1,637; 1,600; and 1,513; 1,460; 1,421; 1,269; 1,223; 1,075; 658 cm−1, in powder), molecular weight (682 Da, measured using HPLC-electrospray ionization mass spectrometry (ESI/MS) and tandem mass spectrometry), and nuclear magnetic resonance analysis show the microbial PDG is (+)-1-pinoresinol 4,4′-di-O-β-d-glucopyranoside, same as the plant-derived PDG. The microbial PDG is stable in pH range from 3 to 11 but less stable at temperature higher than 90 °C and in light exposure. During the fermentation, PDG production outside cells starts at the later stage of cell growth when the residual sugar in the medium was low. The study reveals the possibility for production of PDG by fermentation.
机译:松脂醇二葡萄糖苷(PDG)是中草药杜仲(Ecomumia ulmoides Oliv。)中重要的降压化合物。研究目的是证明通过发酵生产PDG的可能性。从产油性大肠埃希菌中分离出产生PDG的内生真菌,并且将产量最高的PDG(11.65mg / L)分离物XP-8鉴定为Phomopsis sp.。根据内部转录间隔区的基因序列,根据形态特征和系统发育树进行构建。使用S-8树脂分离出微生物PDG,并使用制备型高效液相色谱(HPLC)将其纯化至98.7%的纯度。从UV光谱(在水溶液中为277和227 nm),红外光谱(3,428; 2,930; 2,877; 1,637; 1,600;和1,513; 1,460; 1,421; 1,269; 1,223; 1,075; 658 cm)获得的信息-1 (以粉末计),分子量(682 Da,使用HPLC-电喷雾电离质谱法(ESI / MS)和串联质谱法测量)和核磁共振分析表明,微生物PDG为(+)- 1-松脂醇4,4'-di-O-β-d-吡喃葡萄糖苷,与植物来源的PDG相同。微生物PDG在3至11的pH范围内稳定,但在高于90°C的温度下以及在光照下稳定性较差。在发酵过程中,当培养基中的残留糖含量低时,细胞外PDG的产生开始于细胞生长的后期。该研究揭示了通过发酵生产PDG的可能性。

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