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Incorporating comparative genomics into the design-test-learn cycle of microbial strain engineering

机译:将比较基因组学纳入了微生物应变工程的设计测试学习循环

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摘要

Engineering microbes with new properties is an important goal in industrial engineering, to establish biological factories for production of biofuels, commodity chemicals and pharmaceutics. But engineering microbes to produce new compounds with high yield remains a major challenge toward economically viable production. Incorporating several modern approaches, including synthetic and systems biology, metabolic modeling and regulatory rewiring, has proven to significantly advance industrial strain engineering. This review highlights how comparative genomics can also facilitate strain engineering, by identifying novel genes and pathways, regulatory mechanisms and genetic background effects for engineering. We discuss how incorporating comparative genomics into the design-test-learn cycle of strain engineering can provide novel information that complements other engineering strategies.
机译:具有新特性的工程微生物是工业工程中的一个重要目标,建立生物燃料,商品化学品和药剂的生物燃料生物工厂。 但工程微生物以生产高收益率的新化合物仍然是经济上可行的生产的重大挑战。 纳入了几种现代方法,包括合成和系统生物学,代谢建模和监管重新灌注,已被证明是显着推进的工业应变工程。 本综述凸显了比较基因组学还可通过鉴定新的基因和途径,监管机制和工程遗传背景效果来促进应变工程。 我们讨论如何将比较基因组学纳入设计测试 - 学习的应变工程循环可以提供重写其他工程策略的新颖信息。

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