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Bioconversion of Pinoresinol Diglucoside and Pinoresinol from Substrates in the Phenylpropanoid Pathway by Resting Cells of Phomopsis sp.XP-8

机译:拟南芥sp.XP-8的静止细胞从苯丙酮类途径中的底物生物转化松脂醇二葡萄糖苷和松脂醇。

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摘要

Pinoresinol diglucoside (PDG) and pinoresinol (Pin) are normally produced by plant cells via the phenylpropanoid pathway. This study reveals the existence of a related pathway in Phomopsis sp. XP-8, a PDG-producing fungal strain isolated from the bark of the Tu-chung tree (Eucommiaulmoides Oliv.). After addition of 0.15 g/L glucose to Phomopsis sp. XP-8, PDG and Pin formed when phenylalanine, tyrosine, leucine, cinnamic acid, and p-coumaric acid were used as the substrates respectively. No PDG formed in the absence of glucose, but Pin was detected after addition of all these substrates except leucine. In all systems in the presence of glucose, production of PDG and/or Pin and the accumulation of phenylalanine, cinnamic acid, or p-coumaric acid correlated directly with added substrate in a time- and substrate concentration- dependent manner. After analysis of products produced after addition of each substrate, the mass flow sequence for PDG and Pin biosynthesis was defined as: glucose to phenylalanine, phenylalanine to cinnamic acid, then to p-coumaric acid, and finally to Pin or PDG. During the bioconversion, the activities of four key enzymes in the phenylpropanoid pathway were also determined and correlated with accumulation of their corresponding products. PDG production by Phomopsis sp. exhibits greater efficiency and cost effectiveness than the currently-used plant-based system and will pave the way for large scale production of PDG and/or Pin for medical applications.
机译:松脂醇二葡萄糖苷(PDG)和松脂醇(Pin)通常是植物细胞通过苯丙烷途径产生的。这项研究揭示了Phomopsis sp。中存在相关途径。 XP-8,一种从PD中树(Eucommiaulmoides Oliv。)的树皮中分离出的可产生PDG的真菌菌株。将0.15 g / L葡萄糖添加到拟南芥属后。当分别使用苯丙氨酸,酪氨酸,亮氨酸,肉桂酸和对香豆酸作为底物时,会形成XP-8,PDG和Pin。在没有葡萄糖的情况下没有PDG形成,但是在添加了除亮氨酸以外的所有这些底物后,检测到Pin。在所有存在葡萄糖的系统中,PDG和/或Pin的产生以及苯丙氨酸,肉桂酸或对香豆酸的积累均与时间和底物浓度相关,与添加的底物直接相关。在分析了添加每种底物后产生的产物后,PDG和Pin生物合成的质量流顺序定义为:葡萄糖生成苯丙氨酸,苯丙氨酸生成肉桂酸,然后生成对香豆酸,最后生成Pin或PDG。在生物转化过程中,还确定了苯丙烷途径中四种关键酶的活性,并与它们相应产物的积累相关。 Phomopsis sp。的PDG生产。与目前使用的基于工厂的系统相比,它具有更高的效率和成本效益,并将为大规模生产用于医疗应用的PDG和/或Pin铺平道路。

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