Adrio José L
Neol Biosolutions, SA. Avicena, 4. Parque Tecnológico de la Salud, 18016 Granada, Spain.
Biotechnol Bioeng. 2017 Sep;114(9):1915-1920. doi: 10.1002/bit.26337. Epub 2017 May 29.
Oleaginous yeasts have a unique physiology that makes them the best suited hosts for the production of lipids, oleochemicals, and diesel-like fuels. Their high lipogenesis, capability of growing on many different carbon sources (including lignocellulosic sugars), easy large-scale cultivation, and an increasing number of genetic tools are some of the advantages that have encouraged their use to develop sustainable processes. This mini-review summarizes the metabolic engineering strategies developed in oleaginous yeasts within the last 2 years to improve process metrics (titer, yield, and productivity) for the production of lipids, free fatty acids, fatty acid-based chemicals (e.g., fatty alcohols, fatty acid ethyl esters), and alkanes. During this short period of time, tremendous progress has been made in Yarrowia lipolytica, the model oleaginous yeast, which has been engineered to improve lipid production by different strategies including increasing lipogenic pathway flux and biosynthetic precursors, and blocking degradation pathways. Moreover, remarkable advances have also been reported in Rhodosporidium toruloides and Lipomyces starkey despite the limited genetic tools available for these two very promising hosts. Biotechnol. Bioeng. 2017;114: 1915-1920. © 2017 Wiley Periodicals, Inc.
产油酵母具有独特的生理学特性,使其成为生产脂质、油脂化学品和类柴油燃料的最佳宿主。它们的高脂质合成能力、能在多种不同碳源(包括木质纤维素糖)上生长、易于大规模培养以及越来越多的遗传工具,是鼓励人们利用它们来开发可持续工艺的一些优势。本综述总结了过去两年在产油酵母中开发的代谢工程策略,以改善脂质、游离脂肪酸、脂肪酸基化学品(如脂肪醇、脂肪酸乙酯)和烷烃生产的工艺指标(滴度、产率和生产率)。在这段短时间内,模式产油酵母解脂耶氏酵母取得了巨大进展,通过不同策略对其进行了工程改造以提高脂质产量,这些策略包括增加脂质合成途径通量和生物合成前体,以及阻断降解途径。此外,尽管对于这两个非常有前景的宿主可用的遗传工具有限,但在红冬孢酵母和斯达氏油脂酵母中也报道了显著进展。《生物技术与生物工程》2017年;114: 1915 - 1920。© 2017威利期刊公司