Department of Occupational and Environmental Health, School of Public Health, Lanzhou University, Lanzhou, 730000, Gansu, People's Republic of China.
Advanced Materials and Nano-Research Centre (AMNRC), Najran University, Najran, 11001, Saudi Arabia.
World J Microbiol Biotechnol. 2024 Oct 3;40(11):337. doi: 10.1007/s11274-024-04145-1.
Biocomponents (such as lipids) accumulate in oleaginous microorganisms and could be used for renewable energy production. Oleaginous microbes are characterized by their ability to accumulate high levels of lipids, which can be converted into biodiesel. The oleaginous microbes (including microalgae, bacteria, yeast, and fungi) can utilize diverse substrates. Thus, in this study, commercially viable oleaginous microorganisms are comparatively summarized for their growth conditions, substrate utilization, and applications in biotechnological processes. Lipid content is species-dependent, as are culture conditions (such as temperature, pH, nutrients, and culture time) and substrates. Lipid production can be increased by selecting suitable microorganisms and substrates, optimizing environmental conditions, and using genetic engineering techniques. In addition, the emphasis on downstream processes (including harvesting, cell disruption, lipid extraction, and transesterification) highlights their critical role in enhancing cost-effectiveness. Oleaginous microorganisms are potential candidates for lipid biosynthesis and could play a key role in meeting the energy needs of the world in the future.
生物成分(如脂质)在产油微生物中积累,可用于可再生能源生产。产油微生物的特点是能够积累高水平的脂质,这些脂质可以转化为生物柴油。产油微生物(包括微藻、细菌、酵母和真菌)可以利用各种底物。因此,在本研究中,对商业上可行的产油微生物进行了比较总结,以了解它们的生长条件、底物利用以及在生物技术过程中的应用。脂质含量取决于物种,培养条件(如温度、pH 值、营养物质和培养时间)和底物也是如此。通过选择合适的微生物和底物、优化环境条件以及使用基因工程技术,可以提高脂质产量。此外,对下游工艺(包括收获、细胞破碎、脂质提取和酯交换)的重视突出了它们在提高成本效益方面的关键作用。产油微生物是脂质生物合成的潜在候选者,可能在未来满足世界能源需求方面发挥关键作用。