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Enhancement of ascomycin production via a combination of atmospheric and room temperature plasma mutagenesis in Streptomyces hygroscopicus and medium optimization

机译:通过结合吸气链霉菌中的常温和室温血浆诱变和培养基优化来增强子囊霉素的生产

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摘要

Ascomycin, a key intermediate for chemical synthesis of immunosuppressive drug pimecrolimus, is produced by Streptomyces hygroscopicus var. ascomyceticus. In order to improve the strain production, the original S. hygroscopicus ATCC 14891 strain was treated here with atmospheric and room temperature plasma to obtain a stable high-producing S. hygroscopicus SFK-36 strain which produced 495.3 mg/L ascomycin, a 32.5% increase in ascomycin compared to the ATCC 14891. Then, fermentation medium was optimized using response surface methodology to further enhance ascomycin production. In the optimized medium containing 81.0 g/L soluble starch, 57.4 g/L peanut meal, and 15.8 g/L soybean oil, the ascomycin yield reached 1466.3 mg/L in flask culture. Furthermore, the fermentation process was carried out in a 5 L fermenter, and the ascomycin yield reached 1476.9 mg/L, which is the highest ascomycin yield reported so far. Therefore, traditional mutagenesis breeding combined with medium optimization is an effective approach for the enhancement of ascomycin production.Electronic supplementary materialThe online version of this article (10.1186/s13568-019-0749-x) contains supplementary material, which is available to authorized users.
机译:子囊霉素是一种化学合成免疫抑制药物吡美莫司的关键中间体,它是由吸水链霉菌变种产生的。子囊菌。为了提高菌株的产量,将原吸水链球菌ATCC 14891菌株在此处用大气和室温等离子体处理,以获得稳定的高产吸水链球菌SFK-36菌株,该菌株产生495.3 mg / L子囊霉素,占32.5%与ATCC 14891相比增加了子囊霉素的含量。然后,使用响应面方法对发酵培养基进行了优化,以进一步提高子囊霉素的产量。在含有81.0 g / L可溶性淀粉,57.4 g / L花生粉和15.8 g / L豆油的优化培养基中,烧瓶培养中子囊霉素的产量达到1466.3 mg / L。此外,发酵过程是在5 L发酵罐中进行的,子囊霉素产量达到1476.9 mg / L,这是迄今为止报道的最高的子囊霉素产量。因此,传统诱变育种与培养基优化相结合是提高子囊霉素产量的有效方法。电子补充材料本文的在线版本(10.1186 / s13568-019-0749-x)包含补充材料,授权用户可以使用。

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