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利用金属胁迫技术,通过响应面法增强富集,从海洋放线菌菌株H1003生产抗生素肠球菌素。

Production of an antibiotic enterocin from a marine actinobacteria strain H1003 by metal-stress technique with enhanced enrichment using response surface methodology.

作者信息

Hassan Syed Shamsul, Shah Sayed Asmat Ali, Pan Chengqian, Fu Leilei, Cao Xun, Shi Yutong, Wu Xiaodan, Wang Kuiwu, Wu Bin

机构信息

Ocean College, Zhejiang University, Hangzhou, China.

Center of Analysis and Measurement, Zhejiang University, Hangzhou, China.

出版信息

Pak J Pharm Sci. 2017 Jan;30(1 Suppl):313-324.

Abstract

Elicitation by chemical means including heavy metals is one of a new technique for drug discoveries. In this research, the effect of heavy metals on marine actinobacteria Streptomyces sp. H-1003 for the production of enterocin, with a strong broad spectrum activity, along optimized fermented medium was firstly investigated. The optimum metal stress conditions consisted of culturing marine actinobacteria strain H-1003 with addition of cobalt ions at 2mM in optimized Gause's medium having starch at 20mg/L for 10 days at 180 revolution/min. Under these conditions, enterocin production was enhanced with a value of 5.33mg/L, which was totally absent at the normal culture of strain H-1003 and much higher than other tested metal-stress conditions. This work triumphantly announced a prodigious effect of heavy metals on marine actinobacteria with fringe benefits as a key tool of enterocin production.

摘要

包括重金属在内的化学诱导方法是药物发现的新技术之一。在本研究中,首次研究了重金属对海洋放线菌链霉菌属H-1003产生具有强广谱活性的肠球菌素以及优化发酵培养基的影响。最佳金属胁迫条件包括在含有20mg/L淀粉的优化高氏培养基中添加2mM钴离子,以180转/分钟培养海洋放线菌菌株H-1003 10天。在这些条件下,肠球菌素产量提高到5.33mg/L,而在菌株H-1003的正常培养中完全没有产生,且远高于其他测试的金属胁迫条件。这项工作成功地揭示了重金属对海洋放线菌有巨大影响,且作为生产肠球菌素的关键工具具有额外的好处。

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