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低频交变磁场对解脂耶氏酵母赤藓糖醇生产的影响。

Effect of low frequency alternating magnetic field for erythritol production in Yarrowia lipolytica.

机构信息

College of Food and Biology, Hebei University of Science and Technology, Shijiazhuang, 050018, China.

Fermentation Technology Innovation Center of Hebei Province, Hebei University of Science and Technology, Shijiazhuang, 050018, China.

出版信息

Arch Microbiol. 2024 Sep 4;206(10):392. doi: 10.1007/s00203-024-04115-z.

Abstract

Numerous works have reported that magnetic fields serve as signals capable of influencing microbial metabolism. However, little is known about the effect of magnetic field on erythritol production by the model microorganism Yarrowia lipolytica (Y. lipolytica). Therefore, we investigated the effect of low-frequency alternating magnetic fields (LF-AMF) with different magnetic field intensities (0-1.5 mT) and different magnetic field treatment times (1-10 days) on the production of erythritol by Y. lipolytica -JZ204. The optimal treatment condition was 0.5 mT for 8 days. As a result, a maximal erythritol yield was achieved 63.74 g/L, the biomass was reached 37 g/L, and the specific erythritol yield per unit of biomass was 1.7227 g/g, which were 60.72%, 32.09%, and 24.85% higher than the control, respectively. We investigated the internal mechanism of magnetic fields impact by using transcriptomics and RT-qPCR technology. This study demonstrated the effectiveness of LF-AMF in enhancing erythritol production by Y. lipolytica JZ-204, providing insights for the application of magnetic field in assisting microbial fermentation and improving the synthesis of beneficial products.

摘要

已有大量研究报道称磁场可作为影响微生物代谢的信号。然而,目前对于磁场对模型微生物解脂耶氏酵母(Yarrowia lipolytica,简称 Y. lipolytica)生产赤藓糖醇的影响知之甚少。因此,我们研究了低频交变磁场(LF-AMF)不同磁场强度(0-1.5 mT)和不同磁场处理时间(1-10 天)对 Y. lipolytica-JZ204 生产赤藓糖醇的影响。最佳处理条件为 0.5 mT 持续 8 天。结果表明,最大赤藓糖醇产量达到 63.74 g/L,生物量达到 37 g/L,单位生物质的特定赤藓糖醇产率为 1.7227 g/g,分别比对照组提高了 60.72%、32.09%和 24.85%。我们通过转录组学和 RT-qPCR 技术研究了磁场影响的内在机制。本研究证明了 LF-AMF 增强 Y. lipolytica JZ-204 生产赤藓糖醇的有效性,为磁场在辅助微生物发酵和提高有益产物合成方面的应用提供了新的思路。

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