Department of Zoology, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand.
Interdisciplinary Graduate Program in Bioscience, Faculty of Science, Kasetsart University, Bangkok 10900, Thailand.
Genomics. 2020 Jan;112(1):629-636. doi: 10.1016/j.ygeno.2019.04.015. Epub 2019 Apr 22.
The responsive mechanism of C. militaris TBRC7358 on xylose utilization was investigated by comparative analysis of transcriptomes, growth kinetics and cordycepin productions. The result showed that the culture grown on xylose exhibited high production yield of cordycepin on dry biomass. Comparing xylose to other carbon sources, a set of significantly up-regulated genes in xylose were enriched in pentose and glucuronate interconversion, and cordycepin biosynthesis. After validating up-regulated genes using quantitative real-time PCR, interestingly, putative alternative 3'-AMP-associated metabolic route on cordycepin biosynthesis was identified. Through reporter metabolites analysis of C. militaris, significant metabolites (e.g., AMP, glycine and L-glutamate) were identified guiding involvement of growth and cordycepin production. These findings suggested that there was a cooperative mechanism in transcriptional control of the supplying precursors pool directed towards the cordycepin biosynthesis through main and putative alternative metabolic routes for leverage of cell growth and cordycepin production on xylose of C. militaris strain TBRC7358.
通过对转录组、生长动力学和蛹虫草素产量的比较分析,研究了 C. militaris TBRC7358 对木糖利用的响应机制。结果表明,在木糖上培养的虫草素产量较高。与其他碳源相比,一组在木糖中显著上调的基因富集在戊糖和葡萄糖醛酸相互转化以及蛹虫草素生物合成中。通过定量实时 PCR 验证上调基因后,有趣的是,鉴定出了蛹虫草素生物合成中与 3'-AMP 相关的替代代谢途径。通过对蛹虫草的报告代谢物分析,确定了一些重要的代谢物(如 AMP、甘氨酸和 L-谷氨酸),这表明在转录控制中存在一种协同机制,通过主要和替代代谢途径为细胞生长和蛹虫草素生产提供前体池,从而利用木糖生产 C. militaris TBRC7358 的蛹虫草素。