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产油酵母红酵母中乙二醇的代谢

Ethylene glycol metabolism in the oleaginous yeast Rhodotorula toruloides.

作者信息

Senatore Vittorio Giorgio, Reķēna Alīna, Mapelli Valeria, Lahtvee Petri-Jaan, Branduardi Paola

机构信息

Department of Biotechnology and Biosciences, University of Milano-Bicocca, Piazza Della Scienza 2, 20126, Milan, Italy.

Department of Chemistry and Biotechnology, Tallinn University of Technology, Akadeemia Tee 15, Tallinn, Estonia.

出版信息

Appl Microbiol Biotechnol. 2025 May 8;109(1):114. doi: 10.1007/s00253-025-13504-3.

Abstract

The agro-food chain produces an impressive amount of waste, which includes not only lignocellulosic biomass, but also plastic, used for both protective films and packaging. Thanks to advances in enzymatic hydrolysis, it is now possible to imagine an upcycling that valorizes each waste through microbial fermentation. With this goal in mind, we first explored the ability of the oleaginous red yeast Rhodotorula toruloides to catabolize ethylene glycol (EG), obtained by the hydrolysis of polyethylene terephthalate (PET), in the presence of glucose in batch bioreactor experiments. Secondly, we focused on the physiology of EG catabolism in the presence of xylose as a sole carbon source, and in a mixture of glucose and xylose. Our results show that EG is metabolized to glycolic acid (GA) in all tested conditions. Remarkably, we report for the first time that the consumption of EG improves xylose bioprocess, possibly alleviating a cofactor imbalance by regenerating NAD(P)H. Consumption of EG in the presence of glucose started after the onset of the nitrogen limitation phase, while no significant differences were observed with the control; a 100% mol mol yield of GA was obtained, which has never been reported for yeasts. Finally, a putative EG oxidative pathway was proposed by in silico analyses supported with the existing omics data. Our results propose R. toruloides as a promising candidate for the production of GA from EG that could be exploited simultaneously for the sustainable production of microbial oils from residual hemicellulosic biomasses. KEY POINTS: • Ethylene glycol (EG) is not assimilated as a carbon source by Rhodotorula toruloides • With glucose, EG is oxidized to glycolic acid (GA) with a yield of 100% (mol mol) • With xylose, EG to GA is associated with improved growth and xylose uptake rate.

摘要

农业食品链产生的废弃物数量惊人,其中不仅包括木质纤维素生物质,还包括用于保护膜和包装的塑料。由于酶水解技术的进步,现在可以设想一种升级循环利用方式,通过微生物发酵使每种废弃物都具有价值。出于这个目标,我们首先在分批式生物反应器实验中,研究了产油红酵母(Rhodotorula toruloides)在葡萄糖存在的情况下分解由聚对苯二甲酸乙二酯(PET)水解得到的乙二醇(EG)的能力。其次,我们重点研究了以木糖作为唯一碳源以及在葡萄糖和木糖混合物存在的情况下EG分解代谢的生理过程。我们的结果表明,在所有测试条件下EG都能代谢为乙醇酸(GA)。值得注意的是,我们首次报道EG的消耗改善了木糖生物过程,可能通过再生NAD(P)H缓解了辅因子失衡。在葡萄糖存在的情况下,EG的消耗在氮限制阶段开始后启动,而与对照相比未观察到显著差异;获得了100%(摩尔/摩尔)的GA产率,这在酵母中从未有过报道。最后,通过现有的组学数据支持的计算机分析提出了一个假定的EG氧化途径。我们的结果表明,产油红酵母是从EG生产GA的有前景的候选菌株,可同时用于从残余半纤维素生物质中可持续生产微生物油脂。要点:• 产油红酵母不能将乙二醇(EG)作为碳源同化 • 在有葡萄糖的情况下,EG被氧化为乙醇酸(GA),产率为100%(摩尔/摩尔) • 在有木糖的情况下,EG转化为GA与生长改善和木糖摄取率提高相关

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d39/12062128/c1417a63e501/253_2025_13504_Fig1_HTML.jpg

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