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首页> 外文期刊>Microbial Biotechnology >Harnessing novel chromosomal integration loci to utilize an organosolv‐derived hemicellulose fraction for?isobutanol production with engineered Corynebacterium glutamicum
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Harnessing novel chromosomal integration loci to utilize an organosolv‐derived hemicellulose fraction for?isobutanol production with engineered Corynebacterium glutamicum

机译:利用新的染色体整合基因座,利用有机溶剂衍生的半纤维素级分与工程改造的谷氨酸棒杆菌一起生产异丁醇

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Summary A successful bioeconomy depends on the manifestation of biorefineries that entirely convert renewable resources to valuable products and energies. Here, the poorly exploited hemicellulose fraction (HF) from beech wood organosolv processing was applied for isobutanol production with Corynebacterium glutamicum . To enable growth of C.?glutamicum on HF, we integrated genes required for D ‐xylose and l ‐arabinose metabolization into two of 16 systematically identified and novel chromosomal integration loci. Under aerobic conditions, this engineered strain CArXy reached growth rates up to 0.34?±?0.02?h ?1 on HF. Based on CArXy, we developed the isobutanol producer strain CIsArXy, which additionally (over)expresses genes of the native l ‐valine biosynthetic and the heterologous Ehrlich pathway. CIsArXy produced 7.2?±?0.2?mM (0.53?±?0.02?g?L ?1 ) isobutanol on HF at a carbon molar yield of 0.31?±?0.02 C‐mol isobutanol per C‐mol substrate ( d ‐xylose + l ‐arabinose) in an anaerobic zero‐growth production process.
机译:总结成功的生物经济取决于生物精炼厂的表现,这些精炼厂将可再生资源完全转化为有价值的产品和能源。在这里,来自山毛榉木有机溶剂加工的利用不充分的半纤维素部分(HF)被用于谷氨酸棒杆菌生产异丁醇。为了使谷氨酸棒杆菌能够在HF上生长,我们将D-木糖和l-阿拉伯糖代谢所需的基因整合到16个系统确定的新颖染色体整合基因座中的两个中。在有氧条件下,该工程菌株CArXy在HF上的生长速率高达0.34?±?0.02?h?1。基于CArXy,我们开发了异丁醇生产菌株CIsArXy,该菌株另外(过量)表达了天然1-缬氨酸生物合成和异源Ehrlich途径的基因。 CIsArXy在HF上产生7.2?±?0.2?mM(0.53?±?0.02?g?L?1)异丁醇,碳摩尔产率为0.31?±?0.02 C-mol异丁醇/ C-mol底物(d-木糖+ l-阿拉伯糖)在厌氧的零增长生产过程中。

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