Wang Shuai, He Jia-Nuo, Wang Ying-Jie, Zhao Wen-Ya, Yang Qing-Xia, Wang Ya-Na, Zhang Yang, Zhang Li-Ping, Liu Hong-Wei
School of Pharmaceutical Sciences, Liaocheng University, Liaocheng, 252000, Shandong, People's Republic of China.
Laboratory of Microbiology, Institute of Biology, Hebei Academy of Sciences, 15, Shijiazhuang, 050081, Hebei, People's Republic of China.
Biochem Genet. 2024 Jun 15. doi: 10.1007/s10528-024-10866-7.
Endophytic fungi associated with plants may contain undiscovered bioactive compounds. Under standard laboratory conditions, most undiscovered compounds are inactive, whereas their production could be stimulated under different cultivation conditions. In this study, six endophytic fungi were isolated from the bark of Koelreuteria paniculata in Quancheng Park, Jinan City, Shandong Province, one of which was identified as a new subspecies of Aureobasidium pullulans, named A. pullulans KB3. Additionally, metabolomic tools were used to screen suitable media for A. pullulans KB3 fermentation, and the results showed that peptone dextrose medium (PDM) was more beneficial to culture A. pullulans KB3 for isolation of novel compounds. Sphaerolone, a polyketone compound, was initially isolated from A. pullulans KB3 via scaled up fermentation utilizing PDM. Additionally, the whole-genome DNA of A. pullulans KB3 was sequenced to facilitate compound isolation and identify the biosynthesis gene clusters (BGCs). This study reports the multi-omics (metabolome and genome) analysis of A. pullulans KB3, laying the foundation for discovering novel compounds of silent BGCs and identifying their biosynthesis pathway.
与植物相关的内生真菌可能含有未被发现的生物活性化合物。在标准实验室条件下,大多数未被发现的化合物是无活性的,而在不同的培养条件下它们的产生可能会受到刺激。在本研究中,从山东省济南市泉城公园的栾树树皮中分离出六种内生真菌,其中一种被鉴定为出芽短梗霉的一个新亚种,命名为出芽短梗霉KB3。此外,利用代谢组学工具筛选出适合出芽短梗霉KB3发酵的培养基,结果表明蛋白胨葡萄糖培养基(PDM)更有利于培养出芽短梗霉KB3以分离新化合物。通过利用PDM进行放大发酵,最初从出芽短梗霉KB3中分离出一种聚酮化合物球孢醇。此外,对出芽短梗霉KB3的全基因组DNA进行测序,以促进化合物分离并鉴定生物合成基因簇(BGCs)。本研究报道了出芽短梗霉KB3的多组学(代谢组和基因组)分析,为发现沉默BGCs的新化合物及其生物合成途径的鉴定奠定了基础。