三角褐指藻
硅藻
生物燃料
脂肪酸
生物化学
生物柴油
生物柴油生产
还原酶
食品科学
生物
化学
植物
生物技术
酶
催化作用
作者
Guang Ye,Zi-Hao Qin,Xiaoyun Bin,Jin-Hua Mou,Carol Sze Ki Lin,Hong-Ye Li,Xiang Wang
出处
期刊:Fuel
[Elsevier]
日期:2022-10-01
卷期号:325: 124844-124844
被引量:2
标识
DOI:10.1016/j.fuel.2022.124844
摘要
Due to its high lipid accumulation capability, Phaeodactylum tricornutum has attracted considerable attention as a promising candidate for biofuel production. However, the derived lipid cannot satisfy the industrial biofuel manufacturing requirements given its poor fatty acid characteristics. Genetic engineering, as a prospective approach, has been employed to overcome this bottleneck. Relevant research indicates that the fabG gene plays a crucial role in fatty acid biosynthesis in bacteria, but its significance in microalgae remains unclear. In this study, FabG was successfully introduced, transcribed, and overexpressed in P. tricornutum. FabG overexpression significantly enhanced lipid (1.49-fold) and fatty acid (1.31-fold) biosynthesis without altering growth and photosynthesis, and this method thus exhibits great potential in high-quality biodiesel production. Moreover, increased saturation of fatty acids (e.g., C16:0) and improved antioxidative activities enhanced the tolerance of transgenic P. tricornutum to high temperature stress. To conclude, this study reports a feasible approach for high-quality algae-based biofuel production via the unprecedented roles of FabG retrieved from diatom.
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