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首页> 外文期刊>Computational and Structural Biotechnology Journal >Optimizing cultivation of Cordyceps militaris for fast growth and cordycepin overproduction using rational design of synthetic media
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Optimizing cultivation of Cordyceps militaris for fast growth and cordycepin overproduction using rational design of synthetic media

机译:用合成介质理性设计优化冬虫夏草军团培养和冬虫氏素产量

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Cordyceps militaris is an entomopathogenic fungus which is often used in Asia as a traditional medicine developed from age-old wisdom. Presently, cordycepin from C. militaris is a great interest in medicinal applications. However, cellular growth of C. militaris and the association with cordycepin production remain poorly understood. To explore the metabolism of C. militaris as potential cell factories in medical and biotechnology applications, this study developed a high-quality genome-scale metabolic model of C. militaris , i NR1329, based on its genomic content and physiological data. The model included a total of 1329 genes, 1821 biochemical reactions, and 1171 metabolites among 4 different cellular compartments. Its in silico growth simulation results agreed well with experimental data on different carbon sources. i NR1329 was further used for optimizing the growth and cordycepin overproduction using a novel approach, POPCORN, for rational design of synthetic media. In addition to the high-quality GEM i NR1329, the presented POPCORN approach was successfully used to rationally design an optimal synthetic medium with C:N ratio of 8:1 for enhancing 3.5-fold increase in cordycepin production. This study thus provides a novel insight into C. militaris physiology and highlights a potential GEM-driven method for synthetic media design and metabolic engineering application. The i NR1329 and the POPCORN approach are available at the GitHub repository: https://github.com/sysbiomics/ Cordyceps_militaris -GEM .
机译:Cordyceps Militaris是一种昆虫致病真菌,通常用于亚洲,作为从古老的智慧中发育的传统医学。目前,来自C. MILITARIS的冬虫夏素是对药用应用的兴趣。然而,C. MILITARIS的细胞生长和与冬虫氏素产量的关系仍然明白很差。为了探讨C. MILITARIS作为医疗和生物技术应用中的潜在细胞工厂的C. MILITARIS的新陈代谢,本研究基于其基因组内容和生理数据,开发了一种高质量的C.IL1329的C.IL1329的基因组级代谢模型。该模型包括共1329个基因,1821个生物化学反应和1171种不同的细胞室中的代谢物。其在硅的生长模拟结果中符合不同碳源的实验数据。 I NR1329还用于优化使用新方法爆米花,用于合成介质的合理设计的生长和冬虫氏素产量。除了高质量的宝石I NR1329之外,所呈现的爆米花方法还成功地合理地设计了最佳的合成培养基,C:N比为8:1,用于提高冬虫氏素产量的3.5倍。因此,本研究为C. MILITARIS生理学提供了新颖的洞察力,并突出了一种用于合成介质设计和代谢工程应用的潜在的宝石驱动方法。 I NR1329和爆米花方法可在GitHub存储库中获得:https://github.com/sysbiomics/ cordyceps_militaris-gem。

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