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首页> 外文期刊>Plasma Science & Technology >A Study of Mutation Breeding of High-Yielding Tryptophanase Escherichia coli by Low-Energy N+ Ion Beam Implantation
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A Study of Mutation Breeding of High-Yielding Tryptophanase Escherichia coli by Low-Energy N+ Ion Beam Implantation

机译:低能N +离子束注入高产色氨酸酶大肠埃希菌的诱变育种研究

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摘要

Low energy ion beam has been widely applied in microbe breeding, plant breeding, gene transfer and cell modification. In this study, the Escherichia coli (E.coli) strain producing tryptophanase was irradiated by a low energy nitrogen ion beam with an energy of 10 keV at a fluence of 13 x 10(14) N+/cm(2) when glycerin at a 15% concentration was used as a protector. The effect on the biomass of E. coli after N+ implantation was analyzed in detail by statistic methods. The screening methods used in this study were proven to be effective. After continuous mutagenicity, a high-yield tryptophanase strain was selected and both its biomass and enzymatic activity were higher than those of the parent strain. The results of scale-up production showed that the biomass could reach wet weight 8.2 g/L and 110 g L-tryptophan could be formed in the volume of the 1 l enzymatic reaction system.
机译:低能离子束已广泛应用于微生物育种,植物育种,基因转移和细胞修饰。在这项研究中,当色氨酸在甘油中以13 x 10(14)N + / cm(2)的通量通过低能氮离子束以10 keV的能量辐照产生色氨酸酶的大肠杆菌(E.coli)菌株。 15%的浓度用作保护剂。通过统计方法详细分析了N +注入后对大肠杆菌生物量的影响。这项研究中使用的筛选方法被证明是有效的。连续诱变后,选择了高产色氨酸酶菌株,其生物量和酶活性均高于亲本菌株。规模化生产的结果表明,在1升酶促反应体系中,生物量可以达到8.2 g / L的湿重,并且可以形成110 g L-色氨酸。

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