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Construction of expression vectors for metabolic engineering of the vanillin-producing actinomycete Amycolatopsis sp. ATCC 39116

机译:用于生产香草醛的放线菌Amycolatopsis sp的代谢工程表达载体的构建。 ATCC 39116

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摘要

Amycolatopsis sp. ATCC 39116 is able to synthesize the important flavoring agent vanillin from cheap natural substrates. The bacterium is therefore of great interest for the industry and used for the fermentative production of vanillin. In order to improve the production of natural vanillin with Amycolatopsis sp. ATCC 39116, the strain has been genetically engineered to optimize the metabolic flux towards the desired product. Extensive metabolic engineering was hitherto hampered, due to the lack of genetic tools like functional promoters and expression vectors. In this study, we report the establishment of a plasmid-based gene expression system for Amycolatopsis sp. ATCC 39116 that allows a further manipulation of the genotype. Four new Escherichia coli– Amycolatopsis shuttle vectors harboring different promoter elements were constructed, and the functionality of these regulatory elements was proven by the expression of the reporter gene gusA, encoding a β-glucuronidase. Glucuronidase activity was detected in all plasmid-harboring strains, and remarkable differences in the expression strength of the reporter gene depending on the used promoter were observed. The new expression vectors will promote the further genetic engineering of Amycolatopsis sp. ATCC 39116 to get insight into the metabolic network and to improve the strain for a more efficient industrial use.
机译:真菌病ATCC 39116能够从廉价的天然底物中合成重要的调味剂香草醛。因此,该细菌在工业上引起极大的兴趣,并被用于香草醛的发酵生产。为了提高天然香草醛与支链淀粉菌种的生产。该菌株已经过ATCC 39116的基因改造,可以优化向所需产品的代谢通量。由于缺乏功能启动子和表达载体等遗传工具,迄今为止,广泛的代谢工程受到阻碍。在这项研究中,我们报告为支链淀粉菌的基于质粒的基因表达系统的建立。 ATCC 39116,允许进一步操作基因型。构建了四个带有不同启动子元件的新的大肠杆菌-支链淀粉菌穿梭载体,这些调控元件的功能已通过编码β-葡萄糖醛酸苷酶的报道基因gusA的表达得以证明。在所有携带质粒的菌株中都检测到了葡糖醛酸糖苷酶的活性,并且观察到的报道基因表达强度的显着差异取决于所用的启动子。新的表达载体将促进淀粉样芽胞杆菌的进一步基因工程。 ATCC 39116可以深入了解代谢网络并改善菌株,以实现更有效的工业应用。

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