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首页> 外文期刊>Journal of microbiology and biotechnology >Enhanced 2,5-Furandicarboxylic Acid (FDCA) Production in Raoultella ornithinolytica BF60 by Manipulation of the Key Genes in FDCA Biosynthesis Pathway
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Enhanced 2,5-Furandicarboxylic Acid (FDCA) Production in Raoultella ornithinolytica BF60 by Manipulation of the Key Genes in FDCA Biosynthesis Pathway

机译:通过操纵FDCA生物合成途径的关键基因,增强了Raoultella Ornithinolytica BF60的增强的2,5-呋喃羧酸(FDCA)生产

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The compound 2,5-furandicarboxylic acid (FDCA), an important bio-based monomer for the production of various polymers, can be obtained from 5-hydroxymethylfurfural (HMF). However, efficient production of FDCA from HMF via biocatalysis has not been well studied. In this study, we report the identification of key genes that are involved in FDCA synthesis and then the engineering of Raoultella ornithinolytica BF60 for biocatalytic oxidation of HMF to FDCA using its resting cells. Specifically, previously unknown candidate genes, adhP3 and alkR, which were responsible for the reduction of HMF to the undesired product 2,5-bis(hydroxymethyl) furan (HMF alcohol), were identified by transcriptomic analysis. Combinatorial deletion of these two genes resulted in 85.7% reduction in HMF alcohol formation and 23.7% improvement in FDCA production (242.0 mM). Subsequently, an aldehyde dehydrogenase, AldH, which was responsible for the oxidation of the intermediate 5-formyl-2-furoic acid (FFA) to FDCA, was identified and characterized. Finally, FDCA production was further improved by overexpressing AldH, resulting in a 96.2% yield of 264.7 mM FDCA. Importantly, the identification of these key genes not only contributes to our understanding of the FDCA synthesis pathway in R. ornithinolytica BF60 but also allows for improved FDCA production efficiency. Moreover, this work is likely to provide a valuable reference for producing other furanic chemicals.
机译:化合物2,5-呋喃羧酸(FDCA)是用于生产各种聚合物的重要生物基单体,可以从5-羟甲基糠醛(HMF)获得。然而,通过生物分析的HMF有效地产生FDCA的生产并未得到很好的研究。在这项研究中,我们报告了鉴定涉及FDCA合成的关键基因,然后使用其静止细胞进行Raoultella Ornithinolytica BF60的Raoultella Ornithinolytica BF60的工程。具体而言,通过转录组分析鉴定了先前未知的候选基因,ADHP3和ALKR,其负责将HMF减少到不需要的产物2,5-双(羟甲基)呋喃(HMF醇)中。这些两个基因的组合缺失导致HMF醇形成的85.7%降低和FDCA生产的23.7%(242.0mm)。随后,鉴定并表征了对中间体5-甲酰-2-糠醛(FFA)氧化的醛脱氢酶ALDH,其负责氧化中间体5-甲酰-2-糠醛(FFA)。最后,通过过表达ALDH进一步改善FDCA生产,导致96.2%的264.7mm FDCA的产率为96.2%。重要的是,这些关键基因的鉴定不仅有助于我们对R. Ornithinolytica BF60中的FDCA合成途径的理解,而且还可以改善FDCA生产效率。此外,这项工作很可能为生产其他富植物化学品提供有价值的参考。

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