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首页> 外文期刊>Scientific reports. >Uncovering global metabolic response to cordycepin production in Cordyceps militaris through transcriptome and genome-scale network-driven analysis
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Uncovering global metabolic response to cordycepin production in Cordyceps militaris through transcriptome and genome-scale network-driven analysis

机译:通过转录组和基因组规模的网络驱动分析,揭示虫草中虫草素生产的全球代谢反应

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The cellular metabolic adaptations of Cordyceps militaris have been progressively studied. In particular, the cordycepin pathway is of interest in medicinal applications. Even though the metabolic pathways for cordycepin production are known to be related to different carbon sources, the regulatory mechanisms at a systems level are poorly characterized. To explore the regulatory mechanisms, this study therefore aimed to investigate the global metabolic response to cordycepin production in C. militaris through transcriptome analysis and genome-scale network-driven analysis. Here, transcriptome analysis of 16,805 expressed genes in C. militaris strain TBRC6039 grown on different carbon sources was performed. Of these genes, 2,883 were significantly differentially expressed genes, uncovering sucrose- and glucose-mediated changes in the transcriptional regulation of central carbon metabolism in C. militaris, which was shown using the CmSNF1 mechanism as an example. After applying genome-scale metabolic network-driven analysis, reporter metabolites and key metabolic subnetworks involving adenosine, cordycepin and methionine were proposed through the up-regulation of cordycepin biosynthetic genes. Our findings suggest that the transcriptional regulation of these pathways is a ubiquitous feature in response to specific culture conditions during cordycepin overproduction.
机译:Cord虫草的细胞代谢适应性已得到逐步研究。特别地,虫草素途径在医学应用中是令人关注的。即使已知用于生产虫草素的代谢途径与不同的碳源有关,但在系统水平上的调节机制却很差。因此,为了探索调节机制,本研究旨在通过转录组分析和基因组规模网络驱动的分析,研究to虫草中虫草素生产的全球代谢反应。在这里,转录组分析了在不同碳源上生长的氏梭菌TBRC6039菌株中16,805个表达的基因。在这些基因中,有2883个是显着差异表达的基因,它们揭示了糖和葡萄糖介导的鱼中央碳代谢转录调控的变化,使用CmSNF1机制作为一个例子。在应用基因组规模代谢网络驱动的分析后,通过上调虫草素生物合成基因,提出了涉及腺苷,虫草素和蛋氨酸的报告子代谢物和关键的代谢子网络。我们的发现表明,在虫草素生产过剩期间,对特定培养条件的响应,这些途径的转录调控是普遍存在的特征。

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