Ma Wang, Wang Yu-Zhou, Nong Fang-Tong, Du Fei, Xu Ying-Shuang, Huang Peng-Wei, Sun Xiao-Man
School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, 2 Xuelin Road, Qixia District, Nanjing, People's Republic of China.
Biotechnol Biofuels. 2021 Dec 31;14(1):247. doi: 10.1186/s13068-021-02097-4.
The oleaginous microorganism Schizochytrium sp. is widely used in scientific research and commercial lipid production processes. However, low glucose-to-lipid conversion rate (GLCR) and low lipid productivity of Schizochytrium sp. restrict the feasibility of its use.
Orlistat is a lipase inhibitor, which avoids triacylglycerols (TAGs) from hydrolysis by lipase. TAGs are the main storage forms of fatty acids in Schizochytrium sp. In this study, the usage of orlistat increased the GLCR by 21.88% in the middle stage of fermentation. Whereas the productivity of lipid increased 1.34 times reaching 0.73 g/L/h, the saturated fatty acid and polyunsaturated fatty acid yield increased from 21.2 and 39.1 to 34.9 and 48.5 g/L, respectively, indicating the advantages of using a lipase inhibitor in microbial lipids fermentation. Similarly, the system was also successful in Thraustochytrid Aurantiochytrium. The metabolic regulatory mechanisms stimulated by orlistat in Schizochytrium sp. were further investigated using transcriptomics and metabolomics. The results showed that orlistat redistributed carbon allocation and enhanced the energy supply when inhibiting the TAGs' degradation pathway. Therefore, lipase in Schizochytrium sp. prefers to hydrolyze saturated fatty acid TAGs into the β-oxidation pathway.
This study provides a simple and effective approach to improve lipid production, and makes us understand the mechanism of lipid accumulation and decomposition in Schizochytrium sp., offering new guidance for the exploitation of oleaginous microorganisms.
产油微生物裂殖壶菌属广泛应用于科学研究和商业脂质生产过程。然而,裂殖壶菌属的低葡萄糖 - 脂质转化率(GLCR)和低脂质生产率限制了其使用的可行性。
奥利司他是一种脂肪酶抑制剂,可避免三酰甘油(TAGs)被脂肪酶水解。TAGs是裂殖壶菌属中脂肪酸的主要储存形式。在本研究中,奥利司他的使用在发酵中期使GLCR提高了21.88%。脂质生产率提高了1.34倍,达到0.73 g/L/h,饱和脂肪酸和多不饱和脂肪酸产量分别从21.2和39.1增加到34.9和48.5 g/L,表明在微生物脂质发酵中使用脂肪酶抑制剂的优势。同样,该系统在破囊壶菌金黄藻中也取得了成功。利用转录组学和代谢组学进一步研究了奥利司他在裂殖壶菌属中刺激的代谢调控机制。结果表明,奥利司他在抑制TAGs降解途径时重新分配了碳分配并增强了能量供应。因此,裂殖壶菌属中的脂肪酶更倾向于将饱和脂肪酸TAGs水解进入β - 氧化途径。
本研究提供了一种简单有效的提高脂质产量的方法,并使我们了解了裂殖壶菌属中脂质积累和分解的机制,为产油微生物的开发提供了新的指导。