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Innovative Chemicals and Materials from Bacterial Aromatic Catabolic Pathways

机译:来自细菌芳族分解代谢途径的创新化学品和材料

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摘要

To drive innovation in chemical and material applications beyond what has been afforded by the mature petrochemical industry, new molecules that possess diverse chemical functionality are needed. One source of such molecules lies in the varied metabolic pathways that soil microbes utilize to catabolize aromatic compounds generated during plant decomposition. Here, we have engineered Pseudomonas putida KT2440 to convert these aromatic compounds to 15 catabolic intermediates that exhibit substantial chemical diversity. Biore-actor cultivations, analytical methods, and bench-scale separations were developed to enable production (up to 58 g/L), detection, and purification of each target molecule. We further engineered strains for production of a subset of these molecules from glucose, achieving a 41% molar yield of muconic acid. Finally, we produce materials from three compounds to illustrate the potential for realizing performance-advantaged properties relative to petroleum-derived analogs.
机译:为了推动成熟石化工业所提供的化学和材料应用中的创新,需要具有多样化化学功能的新分子。这种分子的一个来源位于变化的代谢途径中,土壤微生物利用用于在植物分解期间产生的芳族化合物进行分类。在这里,我们已经设计了Pseudomonas普赖达KT2440,将这些芳族化合物转化为15分解代谢的中间体,其表现出实质性化学多样性。开发了Biore-Actor培养,分析方法和台阶分离,以实现每种靶分子的生产(高达58克/升),检测和纯化。我们进一步设计用于生产这些分子的子集的菌株,从葡萄糖中达到41%的粘液产率。最后,我们生产来自三种化合物的材料,以说明相对于石油衍生的类似物实现性能优缺点的可能性。

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  • 来源
    《Joule》 |2019年第6期|1523-1537|共15页
  • 作者单位

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA These authors contributed equally;

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA These authors contributed equally;

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA These authors contributed equally;

    Biosciences Center National Renewable Energy Laboratory Golden CO 80401 USA These authors contributed equally;

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA These authors contributed equally;

    Biosciences Center National Renewable Energy Laboratory Golden CO 80401 USA These authors contributed equally;

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA;

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA Present address: Department of Computer Science University of Colorado Boulder Boulder CO 80309 USA;

    Biosciences Division Oak Ridge National Laboratory Oak Ridge TN 37830 USA Present address: Biological Sciences Division Pacific Northwest National Laboratory Richland WA 99354 USA;

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA;

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA Present address: GreenLight Biosciences Inc. Medford MA 02155 USA;

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA;

    Biosciences Center National Renewable Energy Laboratory Golden CO 80401 USA;

    Biosciences Center National Renewable Energy Laboratory Golden CO 80401 USA;

    Biosciences Center National Renewable Energy Laboratory Golden CO 80401 USA;

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA;

    Biosciences Center National Renewable Energy Laboratory Golden CO 80401 USA;

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA;

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA;

    Biosciences Center National Renewable Energy Laboratory Golden CO 80401 USA;

    Biosciences Center National Renewable Energy Laboratory Golden CO 80401 USA;

    Biosciences Division Oak Ridge National Laboratory Oak Ridge TN 37830 USA;

    National Bioenergy Center National Renewable Energy Laboratory Golden CO 80401 USA Lead Contact;

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