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Enhancing the Production of the Fungal Pigment Aurofusarin in Fusarium graminearum

机译:提高禾谷镰刀菌真菌色素Aurofusarin的产量

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There is an increasing demand for products from natural sources, which includes a growing market for naturally-produced colorants. Filamentous fungi produce a vast number of chemically diverse pigments and are therefore explored as an easily accessible source. In this study we examine the positive regulatory effect of the transcription factor AurR1 on the aurofusarin gene cluster in Fusarium graminearum . Proteomic analyses showed that overexpression of AurR1 resulted in a significant increase of five of the eleven proteins belonging to the aurofusarin biosynthetic pathway. Further, the production of aurofusarin was increased more than threefold in the overexpression mutant compared to the wild type, reaching levels of 270 mg/L. In addition to biosynthesis of aurofusarin, several yet undescribed putative naphthoquinone/anthraquinone analogue compounds were observed in the overexpression mutant. Our results suggest that it is possible to enhance the aurofusarin production through genetic engineering.
机译:对天然来源产品的需求不断增长,其中包括天然色素的市场不断增长。丝状真菌可产生大量化学上多样化的色素,因此被认为是一种容易获得的来源。在这项研究中,我们研究了转录因子AurR1对禾谷镰刀菌aurofusarin基因簇的积极调节作用。蛋白质组学分析表明,AurR1的过表达导致11种蛋白质中的5种显着增加,这些蛋白质属于aurofusarin生物合成途径。此外,与野生型相比,过表达突变体中金葡菌素的产量增加了三倍以上,达到了270 mg / L的水平。除了生物合成aurofusarin之外,在过表达突变体中还观察到了几种尚未描述的推定的萘醌/蒽醌类似物。我们的结果表明,可以通过基因工程提高金葡菌素的产量。

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