Ge Jingping, Wang Changli, Huang Shoufeng, Du Renpeng, Liu Kun, Song Gang, Ping Wenxiang
a Key Laboratory of Microbiology, College of Life Science , Heilongjiang University , Harbin , P. R. China.
Prep Biochem Biotechnol. 2017 Oct 21;47(9):939-944. doi: 10.1080/10826068.2017.1365244. Epub 2017 Aug 17.
Natamycin has been widely applied in medical treatments and food protection widely due to its effective inhibition to the growth of yeast and mold. As polyene macrolide antibiotic, the biosynthesis pathway of natamycin is relatively clear. To regulate the biosynthesis of natamycin, additions of precursors affecting cell growth and natamycin production were investigated. The results showed that 0.003% (w/v) potassium ferrocyanide and sodium propionate: n-butanol at a ratio of 4:1 was added into the broth at 0 and 24 hr, respectively, and they contributed to yield natamycin, reaching 1.62 g L (174.6% higher than control). Furthermore, response surface methodology was undertaken to enhance natamycin production by Streptomyces natalensis HDMNTE-01 (a wild strain). The optimum conditions determined were: glucose 3.97%; soya peptone 2%; yeast extract 0.5%; original pH 7.0; inoculum volume 6%; growth in a 250-mL flask containing 24.68 mL of medium; shaken (220 rpm) at 28°C for 4 days. Under the optimized conditions, the yield was 2.81 g L natamycin in 5-L fermentor when the fermentation was processed.
纳他霉素因其对酵母和霉菌生长的有效抑制作用而被广泛应用于医学治疗和食品保鲜。作为一种多烯大环内酯类抗生素,纳他霉素的生物合成途径相对清晰。为了调控纳他霉素的生物合成,研究了添加影响细胞生长和纳他霉素产量的前体物质。结果表明,分别在0小时和24小时向发酵液中添加0.003%(w/v)的亚铁氰化钾和比例为4:1的丙酸钠:正丁醇,它们有助于提高纳他霉素产量,达到1.62 g/L(比对照高174.6%)。此外,采用响应面法提高纳塔尔链霉菌HDMNTE - 01(野生菌株)的纳他霉素产量。确定的最佳条件为:葡萄糖3.97%;大豆蛋白胨2%;酵母提取物0.5%;初始pH 7.0;接种量6%;在装有24.68 mL培养基的250 mL摇瓶中培养;于28°C以220 rpm振荡培养4天。在优化条件下,当在5 L发酵罐中进行发酵时,纳他霉素产量为2.81 g/L。