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通过黄柄曲霉的基因工程提高阿斯波卡拉斯菌素D的产量。

Enhanced production of aspochalasin D through genetic engineering of Aspergillus flavipes.

作者信息

Yang Zhaopeng, Liu Huiling, Su Zengping, Xu Huibin, Yuan Zhenbo, Rao Yijian

机构信息

Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, 214122, China.

出版信息

Appl Microbiol Biotechnol. 2023 May;107(9):2911-2920. doi: 10.1007/s00253-023-12501-8. Epub 2023 Apr 1.

Abstract

Aspochalasin D (AD) belongs to the polyketide-amino acid hybrid natural products with anti-cancer, anti-bacterial, and anti-fouling bioactivities. However, the low production limits its further application. In this study, AD was separated and identified from Aspergillus flavipes 3.17641. Next, besides the optimization of culture conditions using a single-factor experiment and response surface methodology, metabolic engineering was employed to increase the AD production. It shows that the deletion of the shunt gene aspoA and overexpression of the pathway-specific regulator aspoG significantly improve the AD production. Its production reached to 812.1 mg/L under the optimized conditions, with 18.5-fold increase. Therefore, this study not only provides a general method for improving the production of similar natural products in other fungi, but also enables the further biological function development of AD in agriculture and pharmaceutical. KEY POINTS: • The Aspochalasin D (AD) production was improved by optimizing culture conditions. • The deletion of the shunt gene aspoA increased the AD production. • Overexpression of the pathway regulator aspoG further improved the AD production.

摘要

曲霉聚酮菌素D(AD)属于具有抗癌、抗菌和防污生物活性的聚酮-氨基酸杂合天然产物。然而,其低产量限制了它的进一步应用。在本研究中,从黄曲霉菌株3.17641中分离并鉴定出了AD。接下来,除了使用单因素实验和响应面法优化培养条件外,还采用了代谢工程来提高AD的产量。结果表明,敲除分流基因aspoA和过表达途径特异性调节因子aspoG显著提高了AD的产量。在优化条件下,其产量达到812.1 mg/L,提高了18.5倍。因此,本研究不仅为提高其他真菌中类似天然产物产量提供了通用方法,也为AD在农业和制药领域的进一步生物功能开发提供了可能。要点:• 通过优化培养条件提高了曲霉聚酮菌素D(AD)的产量。• 敲除分流基因aspoA提高了AD的产量。• 过表达途径调节因子aspoG进一步提高了AD的产量。

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