Instituto Superior de Investigaciones Biológicas (INSIBIO, CONICET-Universidad Nacional de Tucumán), Tucumán, Argentina.
Planta Piloto de Procesos Industriales Microbiológicos (PROIMI-CONICET), Tucumán, Argentina.
J Biotechnol. 2020 Feb 20;310:21-31. doi: 10.1016/j.jbiotec.2020.01.012. Epub 2020 Jan 28.
Some Rhodotorula spp. have been characterized as oleaginous yeasts. Under certain culture conditions they can accumulate neutral lipids, which are mainly triglycerides (TAG). Microbial TAG that can be used as raw material for biodiesel synthesis are attractive for the biofuel industry. In this study, the ability to synthesize lipids of Rhodotorula glutinis R4, isolated in Antarctica, was compared with eight strains belonging to the genera Rhodotorula and Yarrowia with the aim of proposing a novel source of oils for biodiesel synthesis. All strains were cultured under nitrogen (N) limiting conditions and an excess of carbon (C) in the culture medium. We found that yeasts accumulated between 9-48.9 % (w/w) of lipids. Among them, R. glutinis R4 showed the highest growth (14 g L, μmax 0,092 h) and lipid production (7 g L; 47 % w/w). Microbial oils produced by R. glutinis R4 are similar to vegetable oils, with 61 % of oleic acid, indicating that it is adequate for biodiesel synthesis. Our results demonstrate that biodiesel derived from R. glutinis R4 complies with international fuel standards ASTM D6751 and EN 14214. Therefore, this work demonstrates that Rhodotorula glutinis R4 is a novel and valuable source of microbial oils for biodiesel synthesis.
一些红酵母已被鉴定为产油酵母。在某些培养条件下,它们可以积累中性脂质,主要是三酰基甘油(TAG)。可作为生物柴油合成原料的微生物 TAG 对生物燃料工业具有吸引力。在这项研究中,比较了分离自南极洲的粘红酵母 R4 合成脂质的能力与属于红酵母属和假丝酵母属的 8 个菌株,旨在为生物柴油合成提出一种新型油脂来源。所有菌株均在氮(N)限制条件下和培养基中过量的碳(C)下培养。我们发现酵母积累了 9-48.9%(w/w)的脂质。其中,粘红酵母 R4 表现出最高的生长(14 g L,μmax 0.092 h)和脂质生产(7 g L;47% w/w)。粘红酵母 R4 产生的微生物油与植物油相似,含有 61%的油酸,表明其适合生物柴油合成。我们的结果表明,由粘红酵母 R4 衍生的生物柴油符合国际燃料标准 ASTM D6751 和 EN 14214。因此,这项工作表明,粘红酵母 R4 是一种新型、有价值的微生物油脂来源,可用于生物柴油合成。