Zhang Yao, Yang Yueping, Zhang Silu, Liu Qing, Dang Wenrui, Song Yuanda
Food Bioengineering and Technology Laboratory, Department of Food Science and Nutrition, College of Culture and Tourism, University of Jinan, 13 Shungeng Road, Jinan, 250022, People's Republic of China.
Colin Ratledge Center for Microbial Lipids, School of Agricultural Engineering and Food Science, Shandong University of Technology, 266 Xincun West Road, Zibo, 255000, People's Republic of China.
Antonie Van Leeuwenhoek. 2023 Apr;116(4):383-391. doi: 10.1007/s10482-023-01810-7. Epub 2023 Jan 19.
Sucrose non-fermenting 1 (SNF1) plays a crucial role in utilizing non-glucose carbon sources and regulating lipid metabolism. However, the mechanism by which SNF1 regulates lipid accumulation in oleaginous filamentous fungi in response to nutrient signals remains unclear. In the present study, by analysing the growth and lipid accumulation of M. circinelloides on xylose under nitrogen limitation, combined with the transcriptional changes of each subunit of SNF1, the regulation of SNF1 between nutrient signal and lipid accumulation was explored. The results showed that with the increase of carbon/nitrogen (C/N) ratio, the xylose consumption and cell growth of M. circinelloides decreased, and the lipid accumulation increased gradually. The optimal C/N ratio was 160:1, and the maximum lipid yield was 4.1 g/L. Two subunits of SNF1, Snf-α1 and Snf-β, are related to the regulation of lipid metabolism in response to nutrient signals from different external nitrogen sources. This is the first report on the transcriptional analysis of SNF1 subunits on xylose metabolism under nitrogen limitation. This study provides a basis for further understanding of lipid synthesis mechanism on xylose in oleaginous fungi, and it also lays a foundation for the genetic engineering of high-lipid strain.
蔗糖非发酵1(SNF1)在利用非葡萄糖碳源和调节脂质代谢中起关键作用。然而,SNF1响应营养信号调节产油丝状真菌中脂质积累的机制仍不清楚。在本研究中,通过分析在氮限制条件下卷枝毛霉在木糖上的生长和脂质积累,并结合SNF1各亚基的转录变化,探索了SNF1在营养信号和脂质积累之间的调控作用。结果表明,随着碳/氮(C/N)比的增加,卷枝毛霉的木糖消耗和细胞生长下降,脂质积累逐渐增加。最佳C/N比为160:1,最大脂质产量为4.1 g/L。SNF1的两个亚基Snf-α1和Snf-β与响应来自不同外部氮源的营养信号调节脂质代谢有关。这是关于氮限制条件下SNF1亚基对木糖代谢转录分析的首次报道。本研究为进一步了解产油真菌中木糖脂质合成机制提供了依据,也为高脂菌株的基因工程奠定了基础。