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在Pharmamedia商业培养基上生长的枯草芽孢杆菌MZ-7合成表面活性素。

Production of surfactin from Bacillus subtilis MZ-7 grown on pharmamedia commercial medium.

作者信息

Al-Ajlani Muaaz Mutaz, Sheikh Muhammad Abid, Ahmad Zeeshan, Hasnain Shahida

机构信息

Department of Microbiology and Molecular Genetics, University of the Punjab, Quaid-e- Azam Campus, Lahore, Pakistan.

出版信息

Microb Cell Fact. 2007 Jun 5;6:17. doi: 10.1186/1475-2859-6-17.

Abstract

BACKGROUND

Commercial medium (Pharmamedia) was investigated for the production of surfactin by Bacillus subtilis MZ-7. Different media (defined, semi-defined, and complex media) were compared for the production of surfactin after fixing the least influential variables in standardized fermentation conditions. Carbohydrate and nitrogen supplements were also tried to improve production in Pharmamedia.

RESULTS

Surfactin production was confirmed using PCR along with other analytical techniques and monitored by RP-HPLC and MALDI-TOF-MS. We found that optimized and brain heart infusion media were best for production of surfactin (280 mg/L) and a relatively comparable production with Pharmamedia (220 mg/L), however, supplementing Pharmamedia with Fe+ (4.0 mM) and sucrose (2 g/L) leads to a maximum production of about (300 mg/L).

CONCLUSION

Cottonseed-derived medium proved to be a suitable substrate for the production of bioactive substances including surfactin, a useful compound in both medical and biotechnological fields. The medium provided not only higher product accumulations but at considerably lower cost with potential for large scale industrial applications.

摘要

背景

研究了商业培养基(Pharmamedia)用于枯草芽孢杆菌MZ - 7生产表面活性素的情况。在标准化发酵条件下固定影响最小的变量后,比较了不同培养基(限定培养基、半限定培养基和复合培养基)用于表面活性素生产的效果。还尝试了添加碳水化合物和氮源以提高在Pharmamedia中的产量。

结果

使用PCR及其他分析技术确认了表面活性素的生产,并通过反相高效液相色谱(RP - HPLC)和基质辅助激光解吸电离飞行时间质谱(MALDI - TOF - MS)进行监测。我们发现优化培养基和脑心浸液培养基最适合生产表面活性素(280毫克/升),且与Pharmamedia的产量相对可比(220毫克/升),然而,向Pharmamedia中添加铁离子(4.0毫摩尔)和蔗糖(2克/升)可使产量最高达到约300毫克/升。

结论

棉籽衍生培养基被证明是生产包括表面活性素在内的生物活性物质的合适底物,表面活性素在医学和生物技术领域都是一种有用的化合物。该培养基不仅能实现更高的产物积累,而且成本相当低,具有大规模工业应用的潜力。

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