School of Life Science and Biotechnology, Dalian University of Technology, Dalian 116024, China.
J Biotechnol. 2013 Jan 10;163(1):61-8. doi: 10.1016/j.jbiotec.2012.10.020. Epub 2012 Nov 9.
Scenedesmus obliquus belongs to green microalgae, which is attracting attention as a feedstock for biofuels production and biorefinery as well as in bioremediation of environmental pollutants, making its genetic modifications for more efficient growth and accumulation of aimed metabolites significant. However, the genetic transformation system of S. obliquus is still not well established. In the current work, S. obliquus was transformed via electroporation using a plasmid containing chloramphenicol resistance gene (CAT) as a selectable marker and the green fluorescent protein gene (gfp) as a reporter. Using the optimized transformation conditions, the transformation efficiency was 494±48 positive transgenic clones per 10(6) recipient cells, which is more efficient comparing with those reported in other microalgal transformation studies. Green fluorescence was observed after six months of cultivation, and CAT-specific products were also detected in the transformants by PCR, Southern blot and RT-PCR analysis. This is the first report on establishing such an efficient and stable transformation system for S. obliquus, a prerequisite for both functional genomic studies and strain improvement for other biotechnology applications of this important microalgal species.
斜生栅藻属于绿色微藻,它作为生物燃料生产和生物炼制的原料以及环境污染物生物修复的材料而受到关注,因此对其进行遗传修饰以提高目标代谢物的生长和积累效率具有重要意义。然而,斜生栅藻的遗传转化系统尚未完全建立。在本研究中,我们通过电穿孔法将含有氯霉素抗性基因(CAT)作为选择标记和绿色荧光蛋白基因(gfp)作为报告基因的质粒转化入斜生栅藻。使用优化的转化条件,转化效率为每 10(6)个受体细胞中有 494±48 个阳性转基因克隆,与其他微藻转化研究相比,这一效率更高。在培养 6 个月后观察到绿色荧光,并且通过 PCR、Southern blot 和 RT-PCR 分析也在转化体中检测到 CAT 特异性产物。这是首次建立斜生栅藻的高效稳定转化系统,为该重要微藻种的功能基因组研究和其他生物技术应用的菌株改良奠定了基础。