Department of Food, Environmental and Nutritional Sciences, University of Milan, Italy.
Versalis SPA, Green Chemistry CRNO, Novara, Italy.
Bioresour Technol. 2017 Aug;238:281-289. doi: 10.1016/j.biortech.2017.03.188. Epub 2017 Apr 1.
The influence of cultural conditions on lipid production was investigated in two species, Trichosporon oleaginosus and Rhodosporidium azoricum. We showed that nitrogen limitation is not the main factor triggering the mechanism of lipid accumulation in T. oleaginosus. Moreover, a scarce availability of oxygen negatively affected lipid synthesis to a lesser extent in T. oleaginosus than in R. azoricum. This highlights how the importance of controlling fermentation parameters is strictly linked to the yeast species employed. We showed that these parameters affect the activity of important enzymes, influencing the metabolic fluxes into different pathways, in particular pentose phosphate pathway and cytoplasmic pyruvate bypass. Furthermore, T. oleaginosus exhibited wider substrate flexibility, faster growth and higher lipid accumulation in fed-batch cultivation. Microbial oils obtained from both yeasts proved a valuable feedstock, alternative to vegetable oils, for advanced diesel biofuel production.
研究了两种酵母,油脂酵母(Trichosporon oleaginosus)和南海油脂酵母(Rhodosporidium azoricum),探讨了培养条件对产脂的影响。结果表明,氮限制并不是油脂酵母积累油脂的主要触发机制。此外,氧的有限可用性对油脂合成的负面影响在油脂酵母中比在南海油脂酵母中要小。这突出表明控制发酵参数的重要性与所使用的酵母种类密切相关。研究表明,这些参数会影响重要酶的活性,影响代谢通量进入不同途径,特别是磷酸戊糖途径和细胞质丙酮酸旁路。此外,油脂酵母在补料分批培养中表现出更宽的底物灵活性、更快的生长速度和更高的油脂积累。从两种酵母中获得的微生物油脂是一种有价值的替代植物油的原料,可用于生产先进的柴油生物燃料。