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首页> 外文期刊>Biotechnology Advances: An International Review Journal >Combinatorial genetic perturbation to refine metabolic circuits for producing biofuels and biochemicals. (Special Issue: 'Bioenergy and Biorefinery from Biomass' through innovative technology development.)
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Combinatorial genetic perturbation to refine metabolic circuits for producing biofuels and biochemicals. (Special Issue: 'Bioenergy and Biorefinery from Biomass' through innovative technology development.)

机译:组合遗传扰动可改善代谢回路,以生产生物燃料和生物化学物质。 (特刊:通过创新技术开发获得的“来自生物质的生物能源和生物炼制”。)

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摘要

Recent advances in metabolic engineering have enabled microbial factories to compete with conventional processes for producing fuels and chemicals. Both rational and combinatorial approaches coupled with synthetic and systematic tools play central roles in metabolic engineering to create and improve a selected microbial phenotype. Compared to knowledge-based rational approaches, combinatorial approaches exploiting biological diversity and high-throughput screening have been demonstrated as more effective tools for improving various phenotypes of interest. In particular, identification of unprecedented targets to rewire metabolic circuits for maximizing yield and productivity of a target chemical has been made possible. This review highlights general principles and the features of the combinatorial approaches using various libraries to implement desired phenotypes for strain improvement. In addition, recent applications that harnessed the combinatorial approaches to produce biofuels and biochemicals will be discussed.Digital Object Identifier http://dx.doi.org/10.1016/j.biotechadv.2013.03.010
机译:代谢工程学的最新进展使微生物工厂能够与生产燃料和化学药品的传统工艺竞争。合理的方法和组合的方法以及合成的和系统的工具都在代谢工程中发挥中心作用,以创建和改善选定的微生物表型。与基于知识的理性方法相比,利用生物多样性和高通量筛选的组合方法已被证明是改善各种目标表型的更有效工具。特别地,已经有可能识别出前所未有的靶标以重新连接代谢回路,以使靶标化学品的产率和生产率最大化。这篇综述着重介绍了使用各种库来实现所需表型以改善菌株的组合方法的一般原理和特征。此外,还将讨论利用组合方法生产生物燃料和生化产品的最新应用。数字对象标识符http://dx.doi.org/10.1016/j.biotechadv.2013.03.010

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