首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Cloning, expression and medium optimization of validamycin glycosyltransferase from Streptomyces hygroscopicus var. jinggangensis for the biotransformation of validoxylamine A to produce validamycin A using free resting cells
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Cloning, expression and medium optimization of validamycin glycosyltransferase from Streptomyces hygroscopicus var. jinggangensis for the biotransformation of validoxylamine A to produce validamycin A using free resting cells

机译:吸水链霉菌有效霉素霉素糖基转移酶的克隆,表达及培养基优化井冈山利用游离的静息细胞将有效氧胺A生物转化为有效霉素A

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摘要

Validamycin A is widely used to control Basidiomycetes, which causes sheath blight disease in rice, potatoes, vegetables, and other crops as well as dumping-off disease in vegetable seedlings, cotton, sugar beets, and other plants. In order to improve the content of validamycin A in the commercial products, valG from Streptomyces hygroscopicus was successfully cloned into Escherichia coli BL21(DE3) and was directly employed as the biocatalyst in the biotransformation from validoxylamine A to validamycin A with the existence of d-cellobiose using the free resting cells in the present study. The fermentation medium was optimized through single factor experiment and response surface method. With the optimized medium, which contained lactose 4.7g/L, yeast extract 49.5g/L, ammonium chloride 2.7g/L, potassium phosphate buffer solution 110mL/L, Ca~(2+) 0.0352g/L, the biomass yield and enzyme activity reached 5.5g/L and 1.49U/mL, respectively, which were nearly twice higher than those with initial medium.
机译:Validamycin A被广泛用于控制担子菌,它在水稻,马铃薯,蔬菜和其他农作物中引起鞘枯萎病,并在蔬菜幼苗,棉花,甜菜和其他植物中引起倾倒病。为了提高市售产品中有效霉素A的含量,将吸水链霉菌的valG成功克隆到大肠埃希菌BL21(DE3)中,并在存在d-的情况下直接用作从有效氧胺A向有效霉素A的生物转化的生物催化剂。纤维二糖使用本研究中的自由静息细胞。通过单因素实验和响应面法优化了发酵培养基。优化后的培养基含乳糖4.7g / L,酵母提取物49.5g / L,氯化铵2.7g / L,磷酸钾缓冲溶液110mL / L,Ca〜(2+)0.0352g / L,生物量和酶活性分别达到5.5g / L和1.49U / mL,几乎是初始培养基的两倍。

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