Université Paris-Saclay, Institut Micalis, Diversité génomique et fonctionnelle des levures, domaine de Vilvert, 78350, Jouy-en-Josas, France.
Department of Molecular Sciences, Swedish University of Agricultural Sciences, PO Box 7015, SE-750 07, Uppsala, Sweden.
Appl Microbiol Biotechnol. 2021 Jun;105(12):4879-4897. doi: 10.1007/s00253-021-11354-3. Epub 2021 Jun 10.
Strains of the yeast genus Blastobotrys (subphylum Saccharomycotina) represent a valuable biotechnological resource for basic biochemistry research, single-cell protein, and heterologous protein production processes. Species of this genus are dimorphic, non-pathogenic, thermotolerant, and can assimilate a variety of hydrophilic and hydrophobic substrates. These can constitute a single-cell oil platform in an emerging bio-based economy as oleaginous traits have been discovered recently. However, the regulatory network of lipogenesis in these yeasts is poorly understood. To keep pace with the growing market demands for lipid-derived products, it is critical to understand the lipid biosynthesis in these unconventional yeasts to pinpoint what governs the preferential channelling of carbon flux into lipids instead of the competing pathways. This review summarizes information relevant to the regulation of lipid metabolic pathways and prospects of metabolic engineering in Blastobotrys yeasts for their application in food, feed, and beyond, particularly for fatty acid-based fuels and oleochemicals. KEY POINTS: • The production of biolipids by heterotrophic yeasts is reviewed. • Summary of information concerning lipid metabolism regulation is highlighted. • Special focus on the importance of diacylglycerol acyltransferases encoding genes in improving lipid production is made.
酵母属 Blastobotrys(子囊菌亚门 Saccharomycotina)的菌株是基础生物化学研究、单细胞蛋白和异源蛋白生产过程的宝贵生物技术资源。该属的物种是二态的、非致病性的、耐热的,并且可以同化各种亲水性和疏水性底物。这些可以构成新兴生物基经济中的单细胞油平台,因为最近发现了油性特征。然而,这些酵母中脂肪生成的调控网络知之甚少。为了跟上对脂质衍生产品不断增长的市场需求,了解这些非常规酵母中的脂质生物合成对于确定是什么控制了碳通量优先进入脂质而不是竞争途径至关重要。这篇综述总结了与脂质代谢途径调控相关的信息,并展望了在酵母属 Blastobotrys 中的代谢工程应用,用于食品、饲料等领域,特别是用于基于脂肪酸的燃料和油脂化学品。
异养酵母生物合成生物脂的研究进展。
突出了有关脂质代谢调控信息的总结。
特别强调了二酰甘油酰基转移酶编码基因在提高脂质生产中的重要性。