Madla S, Isaka M, Wongsa P
BIOTEC Central Research Unit, National Center for Genetic Engineering and Biotechnology, Klong Luang, Pathumthani, Thailand.
Lett Appl Microbiol. 2008 Aug;47(2):74-8. doi: 10.1111/j.1472-765X.2008.02382.x. Epub 2008 Jun 28.
This work aimed to improve the production of anti-tubercular hirsutellones by the insect pathogenic fungus Hirsutella nivea BCC 2594.
The fungus was cultivated under different carbon/nitrogen sources and aerations (shake vs static flasks) to improve the production of the anti-tubercular alkaloids, hirsutellones A-D. Under the basal conditions, static cultivation at 25 degrees C in minimum salt medium, only hirsutellone B and C were detected with maximum concentrations of 139.00 and 18.27 mg l(-1). Substitution of fructose for glucose and peptone for yeast extract increased the titres of hirsutellones A, B and C about two- to threefold. However, hirsutellone D was not detected in this medium. Culture agitation induced the production of hirsutellone D. As a result, the significant amounts of hirsutellones A-D were obtained with the concentration of 29.93, 169.63, 22.65 and 15.71 mg l(-1) within 15 days.
Improved titres of hirsutellones in H. nivea BCC 2549 were achieved with an agitated (200 rev min(-1)) fructose-peptone medium at 25 degrees C.
Improved yields of hirsutellones B-D will enable medicinal chemistry modifications leading to a development of a potential candidate for tuberculosis therapy.
本研究旨在提高昆虫病原真菌雪白丝穗霉BCC 2594产抗结核菌素的产量。
在不同碳源/氮源及通气条件(摇瓶培养与静置培养)下培养该真菌,以提高抗结核生物碱——丝穗菌素A-D的产量。在基础条件下,于25℃在最低盐培养基中静置培养,仅检测到丝穗菌素B和C,最高浓度分别为139.00和18.27 mg l⁻¹。用果糖替代葡萄糖,用蛋白胨替代酵母提取物,使丝穗菌素A、B和C的产量提高了约两到三倍。然而,在该培养基中未检测到丝穗菌素D。培养振荡诱导了丝穗菌素D的产生。结果,在15天内获得了大量的丝穗菌素A-D,浓度分别为29.93 mg l⁻¹、169.63 mg l⁻¹、22.65 mg l⁻¹和15.71 mg l⁻¹。
在25℃下,使用振荡(200转/分钟)的果糖-蛋白胨培养基,雪白丝穗霉BCC 2549中丝穗菌素的产量得到了提高。
提高丝穗菌素B-D的产量将有助于进行药物化学修饰,从而开发出一种潜在的结核病治疗候选药物。