Gim Geun Ho, Ryu Jaewon, Kim Moon Jong, Kim Pyung Il, Kim Si Wouk
Department of Environmental Engineering, Chosun University, Gwangju, 61452, Republic of Korea.
Department of Energy Convergence, Chosun University, Gwangju, 61452, Republic of Korea.
J Ind Microbiol Biotechnol. 2016 May;43(5):605-16. doi: 10.1007/s10295-016-1741-y. Epub 2016 Feb 8.
We attempted to enhance the growth and total lipid production of three microalgal species, Isochrysis galbana LB987, Nannochloropsis oculata CCAP849/1, and Dunaliella salina, which are capable of accumulating high content of lipid in cells. Low nitrogen concentration under photoautotrophic conditions stimulated total lipid production, but a decreasing total lipid content and an increasing biomass were observed with increasing nitrogen concentration. Among the different carbon sources tested for heterotrophic cultivation, glucose improved the growth of all three strains. The optimal glucose concentration for growth of I. galbana LB987 and N. oculata CCAP849/1 was 0.02 M, and that of D. salina was 0.05 M. Enhanced growth occurred when they were cultivated under heterotrophic or mixotrophic conditions compared with photoautotrophic conditions. Meanwhile, high total lipid accumulation in cells occurred when they were cultivated under photoautotrophic or mixotrophic conditions. During mixotrophic cultivation, biomass production was not affected significantly by light intensity; however, both chlorophyll concentration and total lipid content increased dramatically with increasing light intensity up to 150 µmol/m(2)/s. The amount and composition ratio of saturated and unsaturated fatty acids in cells were different from each other depending on both species and light intensity. The highest accumulation of total fatty acid (C16-C18) among the three strains was found from cells of N. oculata CCAP849/1, which indicates that this species can be used as a source for production of biodiesel.
我们试图提高三种微藻的生长速度和总脂质产量,这三种微藻分别是等鞭金藻LB987、眼点拟微绿球藻CCAP849/1和盐生杜氏藻,它们能够在细胞中积累高含量的脂质。光自养条件下低氮浓度刺激了总脂质产量,但随着氮浓度的增加,总脂质含量下降,生物量增加。在用于异养培养的不同碳源中,葡萄糖促进了所有三种菌株的生长。等鞭金藻LB987和眼点拟微绿球藻CCAP849/1生长的最佳葡萄糖浓度为0.02 M,盐生杜氏藻的最佳葡萄糖浓度为0.05 M。与光自养条件相比,它们在异养或混合营养条件下培养时生长增强。同时,它们在光自养或混合营养条件下培养时,细胞中会积累大量的总脂质。在混合营养培养过程中,生物量产量受光强度的影响不显著;然而,叶绿素浓度和总脂质含量都随着光强度增加到150 μmol/m²/s而显著增加。细胞中饱和脂肪酸和不饱和脂肪酸的含量及组成比例因物种和光强度而异。在这三种菌株中,眼点拟微绿球藻CCAP849/1细胞中的总脂肪酸(C16 - C18)积累量最高,这表明该物种可作为生物柴油生产的原料。