School of Pharmaceutical Sciences, EPGL, University of Geneva, University of Lausanne, Quai Ernest-Ansermet 30, CH-1211 Geneva 4, Switzerland.
J Nat Prod. 2013 Jun 28;76(6):1157-65. doi: 10.1021/np400258f. Epub 2013 Jun 4.
The co-cultivation of fungi has recently been described as a promising strategy to induce the production of novel metabolites through possible gene activation. A large screening of fungal co-cultures in solid media has identified an unusual long-distance growth inhibition between Trichophyton rubrum and Bionectria ochroleuca. To study metabolite induction in this particular fungal interaction, differential LC-MS-based metabolomics was performed on pure strain cultures and on their co-cultures. The comparison of the resulting fingerprints highlighted five de novo induced compounds, which were purified using software-oriented semipreparative HPLC-MS. One metabolite was successfully identified as 4″-hydroxysulfoxy-2,2″-dimethylthielavin P (a substituted trimer of 3,5-dimethylorsellinic acid). The nonsulfated form, as well as three other related compounds, were found in the pure strain culture of B. ochroleuca.
真菌的共培养最近被描述为一种有前途的策略,可以通过可能的基因激活来诱导新代谢物的产生。在固体培养基中对大量真菌共培养物进行的筛选发现,红色毛癣菌和胶膜孢菌素之间存在异常的长距离生长抑制。为了研究这种特殊真菌相互作用中的代谢物诱导,对纯菌株培养物及其共培养物进行了基于 LC-MS 的差异代谢组学研究。对所得指纹图谱的比较突出了五个新诱导的化合物,使用面向软件的半制备 HPLC-MS 对其进行了纯化。一种代谢物被成功鉴定为 4″-羟基磺氧基-2,2″-二甲基噻嗪 P(3,5-二甲基奥尔西啉酸的取代三聚体)。在胶膜孢菌素的纯菌株培养物中发现了非硫酸化形式以及另外三种相关化合物。