Laboratory of Biotechnology, School of Chemistry and Food, Federal University of Rio Grande, Rio Grande, RS, 96203-900, Brazil.
Laboratory of Biochemistry and Microbiology, School of Chemistry and Food, Federal University of Rio Grande, Rio Grande, RS, 96203-900, Brazil.
World J Microbiol Biotechnol. 2023 Aug 31;39(11):290. doi: 10.1007/s11274-023-03732-y.
This study aimed at estimating cultivation conditions to enable Yarrowia lipolytica NNRL Y-1095 to produce extracellular lipase and at evaluating the influence of magnetic fields (MF) on the lipase production and on its catalytic conditions. Culture conditions of carbon sources and surfactant defined to produce extracellular lipase were 10 g L glucose, 15 g L olive oil and 2 g L Triton X-100. The highest lipase activity (34.8 U mL) was reached after 144 h when MFs were applied from 72 to 144 h of culture. It corresponds to an increase of 287.5% by comparison with the highest lipase activity in the control culture. MF application from 72 to 144 h did not change the optimal temperature of lipase, which was 37 °C, by comparison with the control. However, the optimal pH of the control was 7.0 while the one of lipase produced with MF was 8.0. Findings highlighted that the presence of MFs led to increase in synthesis of lipase by Y. lipolytica, with changes in the catalytic profile. This is one of the first studies of MF application to Y. lipolytica NRRL Y-1095 cultures to produce lipase.
本研究旨在确定培养条件,使解脂耶氏酵母 NNRL Y-1095 能够产生细胞外脂肪酶,并评估磁场 (MF) 对脂肪酶生产及其催化条件的影响。确定产生细胞外脂肪酶的碳源和表面活性剂的培养条件为 10 g/L 葡萄糖、15 g/L 橄榄油和 2 g/L Triton X-100。当从培养的第 72 小时到第 144 小时施加 MF 时,脂肪酶的最高活性(34.8 U/mL)达到 144 小时。与对照培养物中的最高脂肪酶活性相比,这增加了 287.5%。与对照相比,MF 从第 72 小时到第 144 小时的施加并没有改变脂肪酶的最适温度,为 37°C。然而,对照的最适 pH 值为 7.0,而 MF 产生的脂肪酶的最适 pH 值为 8.0。研究结果表明,磁场的存在导致解脂耶氏酵母脂肪酶的合成增加,并改变了催化谱。这是 MF 首次应用于解脂耶氏酵母 NRRL Y-1095 培养物生产脂肪酶的研究之一。