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Systems biology solutions for biochemical production challenges

机译:生物化学生产挑战的系统生物学解决方案

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摘要

There is an urgent need to significantly accelerate the development of microbial cell factories to produce fuels and chemicals from renewable feedstocks in order to facilitate the transition to a biobased society. Methods commonly used within the field of systems biology including omics characterization, genome-scale metabolic modeling, and adaptive laboratory evolution can be readily deployed in metabolic engineering projects. However, high performance strains usually carry tens of genetic modifications and need to operate in challenging environmental conditions. This additional complexity compared to basic science research requires pushing systems biology strategies to their limits and often spurs innovative developments that benefit fields outside metabolic engineering. Here we survey recent advanced applications of systems biology methods in engineering microbial production strains for biofuels and -chemicals.
机译:迫切需要显着加速微生物细胞厂的发展,从可再生原料生产燃料和化学物质,以便于向生物社会过渡。 常用于系统生物学领域的方法,包括OMICS表征,基因组级代谢建模和自适应实验室演化可以容易地部署在代谢工程项目中。 然而,高性能菌株通常携带数十种遗传修饰,并且需要在挑战环境条件下运行。 与基础科学研究相比,这种额外的复杂性需要将系统生物学策略推向他们的限制,并且经常刺激新的新代谢工程领域的创新发展。 在这里,我们在工程微生物生产菌株中进行了近期系统生物学方法的先进应用,用于生物燃料和化学品。

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  • 来源
    《BioTechniques》 |2017年第2期|共7页
  • 作者单位

    Tech Univ Denmark Novo Nordisk Fdn Ctr Biosustainabil Bldg 220 DK-2800 Lyngby Denmark;

    Tech Univ Denmark Novo Nordisk Fdn Ctr Biosustainabil Bldg 220 DK-2800 Lyngby Denmark;

    Tech Univ Denmark Novo Nordisk Fdn Ctr Biosustainabil Bldg 220 DK-2800 Lyngby Denmark;

    Tech Univ Denmark Novo Nordisk Fdn Ctr Biosustainabil Bldg 220 DK-2800 Lyngby Denmark;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
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