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基于通量平衡分析的工程化解脂耶氏酵母生物过程优化及其番茄红素生产

Flux Balance Analysis Inspired Bioprocess Upgrading for Lycopene Production by a Metabolically Engineered Strain of Yarrowia lipolytica.

机构信息

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, China.

INRA, UMR1319 Micalis, Domaine de Vilvert, F-78352 Jouy-en-Josas, France.

出版信息

Metabolites. 2015 Dec 21;5(4):794-813. doi: 10.3390/metabo5040794.

Abstract

Genome-scale metabolic models embody a significant advantage of systems biology since their applications as metabolic flux simulation models enable predictions for the production of industrially-interesting metabolites. The biotechnological production of lycopene from Yarrowia lipolytica is an emerging scope that has not been fully scrutinized, especially for what concerns cultivation conditions of newly generated engineered strains. In this study, by combining flux balance analysis (FBA) and Plackett-Burman design, we screened chemicals for lycopene production from a metabolically engineered strain of Y. lipolytica. Lycopene concentrations of 126 and 242 mg/L were achieved correspondingly from the FBA-independent and the FBA-assisted designed media in fed-batch cultivation mode. Transcriptional studies revealed upregulations of heterologous genes in media designed according to FBA, thus implying the efficiency of model predictions. Our study will potentially support upgraded lycopene and other terpenoids production from existing or prospect bioengineered strains of Y. lipolytica and/or closely related yeast species.

摘要

基因组规模代谢模型体现了系统生物学的一个显著优势,因为它们作为代谢通量模拟模型的应用可以预测工业上有价值的代谢产物的生产。从解脂耶氏酵母中生物合成番茄红素是一个新兴的领域,尚未得到充分的研究,特别是在新生成的工程菌株的培养条件方面。在这项研究中,我们通过结合通量平衡分析(FBA)和 Plackett-Burman 设计,从解脂耶氏酵母的代谢工程菌株中筛选出用于生产番茄红素的化学品。在分批补料培养模式下,分别从 FBA 独立和 FBA 辅助设计的培养基中获得了 126 和 242mg/L 的番茄红素浓度。转录研究表明,根据 FBA 设计的培养基中异源基因的表达上调,这意味着模型预测的效率。我们的研究将有可能支持从现有或预期的生物工程化的解脂耶氏酵母和/或密切相关的酵母物种中升级番茄红素和其他萜类化合物的生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0561/4693195/e03f8585c5a0/metabolites-05-00794-g001.jpg

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