Koreti Deepali, Kosre Anjali, Jadhav Shailesh Kumar, Chandrawanshi Nagendra Kumar
School of Studies in Biotechnology, Pt. Ravishankar Shukla University, Raipur, Chhattisgarh, India.
Bioresour Bioprocess. 2022 Apr 22;9(1):47. doi: 10.1186/s40643-022-00527-1.
Due to continuously increasing population, industrialization, and environmental pollution, lead to generating high energy demand which suitable for our environment. Biodiesel is an alternative renewable fuel source. According to the feedstock of production, biodiesel has been categorized into four generations. The main disadvantage of the first and second generation is the raw material processing cost that the challenge for its industrial-level production. Oleaginous bacteria that contain more than 20% lipid of their cellular biomass can be a good alternative and sustainable feedstock. Oleaginous bacteria used as feedstock have numerous advantages, such as their high growth rate, being easy to cultivate, utilizing various substrates for growth, genetic or metabolic modifications possible. In addition, some species of bacteria are capable of carbon dioxide sequestration. Therefore, oleaginous bacteria can be a significant resource for the upcoming generation's biodiesel production. This review discusses the biochemistry of lipid accumulation, screening techniques, and lipid accumulation factors of oleaginous bacteria, in addition to the overall general biodiesel production process. This review also highlights the biotechnological approach for oleaginous bacteria strain improvement that can be future used for biodiesel production and the advantages of using general biodiesel in place of conventional fuel, along with the discussion about global policies and the prospect that promotes biodiesel production from oleaginous bacteria.
由于人口持续增长、工业化进程以及环境污染,导致产生了适合我们环境的高能源需求。生物柴油是一种替代性可再生燃料来源。根据生产原料,生物柴油已被分为四代。第一代和第二代生物柴油的主要缺点是原料加工成本,这对其工业化生产构成了挑战。细胞生物质中脂质含量超过20%的产油细菌可以成为一种良好的替代性可持续原料。用作原料的产油细菌具有许多优点,例如生长速度快、易于培养、能利用各种底物生长、可进行基因或代谢改造。此外,某些细菌物种能够固定二氧化碳。因此,产油细菌可以成为下一代生物柴油生产的重要资源。本综述除了讨论生物柴油的总体生产过程外,还探讨了产油细菌脂质积累的生物化学、筛选技术以及脂质积累因素。本综述还强调了可用于未来生物柴油生产的产油细菌菌株改良生物技术方法,以及使用普通生物柴油替代传统燃料的优势,同时讨论了全球政策以及促进利用产油细菌生产生物柴油的前景。