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作 者:李传鹏[1] 李会[1] 吴燕[1] 李恒[1] 张汝金 张峥斌 史劲松[1] 许正宏[1]
机构地区:[1]江南大学药学院,江苏无锡214122 [2]浙江仙居君业药业有限公司,浙江台州317300
出 处:《生物工程学报》2014年第1期147-156,共10页Chinese Journal of Biotechnology
基 金:国家高技术研究发展计划(863 计划) (No. 2011AA02A211);国家自然科学基金(No. 21206055);江苏省自然科学基金(No. BK2012127) 资助~~
摘 要:结合酮康唑抗性筛选法,采用亚硝基胍和低能氮离子注入复合诱变方法筛选得到一株高效生物转化去氢表雄酮(D H E A)为3β,7α,1 5α-三羟基雄甾-5-烯-1 7-酮(7α,1 5α-d i O H-D H E A)的菌株亚麻刺盘孢C o l l e t o t r i c h u m l i n i S T-1,该突变株在底物D H E A投料浓度为1 0 g/L时产物摩尔得率达到3 4.2%,较出发菌株提高了4 6.2%。在此基础上进行培养基组分的优化,采用P l a c k e t t-B u r m a n实验设计考察转化培养基中各组分对产物摩尔得率的影响,有效筛选出葡萄糖、酵母粉和M g S O4·7 H2O浓度对产物摩尔得率影响显著,继而采用最陡爬坡路径逼近最大响应区域,并利用中心组合响应面设计实验对3个显著性因素的最佳水平进行研究,得到最适转化培养基组分为(g/L):葡萄糖2 6.3 4;酵母粉1 2.1 5;玉米浆3.0 0;F e S O4·7 H2O 0.0 1 5;M g S O4·7 H2O0.1 4;K H2P O40.9 0。采用该优化培养基,菌株C.l i n i S T-1的产物摩尔得率达到4 9.3%,较优化前提高了4 4.2%。Combined with method of ketoconazole resistance screening, a 7α,15α-diOH-DHEA high-producing mutant Colletotrichum lini ST-1 was obtained by compound mutation of NTG and low energy N~ ion beam implantation. With the substrate concentration of 10 g/L DHEA, the molar yield of 7α,15α-diOH-DHEA reached 34.2%, increased by 46.2% than that of the original strain. Then we optimized the medium. First, Plackett-Burman design was used to evaluate the effects of medium components on molar yield of the product. Results show that glucose, yeast extract and MgSO4·7H2O were the important parameters for the biotransformation process. Subsequently, the path of steepest ascent was used to approach the optimal levels. To obtain the optimal levels, central composite design and response surface analysis were carried out. The optimal medium was as follows (g/L): glucose 26.34, yeast extract 12.15, corn flour 3.00, FeSO4·7H2O 0.015, MgSO4·7H20 0.14, KH2PO4 0.90. Under the optimal conditions, the molar yield of 7α,15α-diOH-DHEA reached 49.3%, which was 44.2% higher than that of using the medium before optimization.
关 键 词:亚麻刺盘孢 生物转化 复合诱变 培养基优化 响应面法
分 类 号:TQ920.6[轻工技术与工程—发酵工程]
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