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Streamlining Natural Products Biomanufacturing With Omics and Machine Learning Driven Microbial Engineering

机译:简化天然产品的生物化制造与常规和机器学习驱动的微生物工程

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摘要

Increasing demands for the supply of biopharmaceuticals have propelled the advancement of metabolic engineering and synthetic biology strategies for biomanufacturing of bioactive natural products. Using metabolically engineered microbes as the bioproduction hosts, a variety of natural products including terpenes, flavonoids, alkaloids, and cannabinoids have been synthesized through the construction and expression of known and newly found biosynthetic genes primarily from model and non-model plants. The employment of omics technology and machine learning (ML) platforms as high throughput analytical tools has been increasingly leveraged in promoting data-guided optimization of targeted biosynthetic pathways and enhancement of the microbial production capacity, thereby representing a critical debottlenecking approach in improving and streamlining natural products biomanufacturing. To this end, this mini review summarizes recent efforts that utilize omics platforms and ML tools in strain optimization and prototyping and discusses the beneficial uses of omics-enabled discovery of plant biosynthetic genes in the production of complex plant-based natural products by bioengineered microbes.
机译:增加对生物制药供应的需求推动了对生物活性天然产物的生物制造的代谢工程和合成生物学策略的进步。使用代谢工程微生物作为生物处理宿主,通过施工和表达主要来自模型和非模型植物,已经合成了包括Terpenes,Flavonoids,生物碱和大麻素,包括萜烯,黄酮类化合物,生物碱和大麻素的各种天然产物。 OMICS技术和机器学习(ML)平台的就业越来越多地利用了促进有针对性的生物合成途径的数据引导优化和微生物生产能力的增强,从而代表了改善和简化自然的关键脱丝瓜方法产品生物化制造。为此,这种迷你评论总结了利用OMICS平台和ML工具在应变优化和原型中的工具的最新努力,并探讨了通过生物工程微生物的复杂植物基天然产物在生产复杂植物生物合成基因中的有益用途。

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