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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Microbial Cell Factory for Efficiently Synthesizing Plant Natural Products via Optimizing the Location and Adaptation of Pathway on Genome Scale
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Microbial Cell Factory for Efficiently Synthesizing Plant Natural Products via Optimizing the Location and Adaptation of Pathway on Genome Scale

机译:微生物细胞厂通过优化途径的位置和适应在基因组规模上的位置和适应来高效地合成植物天然产品

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Plant natural products (PNPs) possess important pharmacological activities and are widely used in cosmetics, health care products, and as food additives. Currently, most PNPs are mainly extracted from cultivated plants, and the yield is limited by the long growth cycle, climate change and complex processing steps, which makes the process unsustainable. However, the complex structure of PNPs significantly reduces the efficiency of chemical synthesis. With the development of metabolic engineering and synthetic biology, heterologous biosynthesis of PNPs in microbial cell factories offers an attractive alternative. Based on the in-depth mining and analysis of genome and transcriptome data, the biosynthetic pathways of a number of natural products have been successfully elucidated, which lays the crucial foundation for heterologous production. However, there are several problems in the microbial synthesis of PNPs, including toxicity of intermediates, low enzyme activity, multiple auxotrophic dependence and uncontrollable metabolic network. Although various metabolic engineering strategies have been developed to solve these problems, optimizing the location and adaptation of pathways on the whole-genome scale is an important strategy in microorganisms. From this perspective, this review introduces the application of CRISPR/Cas9 in editing PNPs biosynthesis pathways in model microorganisms, the influences of pathway location, and the approaches for optimizing the adaptation between metabolic pathways and chassis hosts for facilitating PNPs biosynthesis.
机译:植物天然产品(PNPS)具有重要的药理活动,广泛用于化妆品,保健品和食品添加剂。目前,大多数PNP主要从栽培植物中提取,产量受到长生长周期,气候变化和复杂加工步骤的限制,这使得该过程不可持续。然而,PNP的复杂结构显着降低了化学合成的效率。随着代谢工程和合成生物学的发展,微生物细胞工厂中PNP的异源生物合成提供了有吸引力的替代品。基于基因组和转录组数据的深入挖掘和分析,已成功地阐明了许多天然产物的生物合成途径,为异源生产的关键基础。然而,在PNP的微生物合成中存在若干问题,包括中间体,低酶活性,多种营养营养依赖性和无法控制的代谢网络的毒性。虽然已经开发出各种代谢工程策略来解决这些问题,但优化整个基因组规模的途径的位置和调整是微生物的重要策略。从这种角度来看,本综述介绍了CRISPR / CAS9在模型微生物中编辑PNPS生物合成途径,途径位置的影响以及优化代谢途径与底盘宿主之间的适应方法以促进PNPS生物合成的方法。

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