Division of Integrated Sciences for Life, Graduate School of Integrated Sciences for Life, Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima, Hiroshima, 739-8526, Japan.
School of Life Science and Technology, Tokyo Institute of Technology, 4259-B-65 Nagatsuta-cho, Midori-ku, Yokohama, Kanagawa, 226-8501, Japan.
Sci Rep. 2022 Feb 15;12(1):2480. doi: 10.1038/s41598-022-06495-y.
Algal lipids are expected to become a basis for sustainable fuels because of the highly efficient lipid production by photosynthesis accompanied by carbon dioxide assimilation. Molecular breeding of microalgae has been studied to improve algal lipid production, but the resultant gene-modified algae containing transgenes are rarely used for outdoor culture because the use of genetically modified organisms (GMOs) is strictly restricted under biocontainment regulations. Recently, it was reported that plasmids containing yeast centromere and autonomous replication sequence (CEN/ARS) behaved as episomes in Nannochloropsis species. We previously reported that the Platinum TALEN (PtTALEN) system exhibited high activity in Nannochloropsis oceanica. Therefore, we attempted to develop a genome editing system in which the expression vectors for PtTALEN can be removed from host cells after introduction of mutations. Using all-in-one PtTALEN plasmids containing CEN/ARS, targeted mutations and removal of all-in-one vectors were observed in N. oceanica, suggesting that our all-in-one PtTALEN vectors enable the construction of mutated N. oceanica without any transgenes. This system will be a feasible method for constructing non-GMO high-performance algae.
藻类脂质有望成为可持续燃料的基础,因为光合作用伴随着二氧化碳的同化,能够高效地生产脂质。为了提高藻类脂质的产量,已经对微藻进行了分子育种研究,但由于生物安全法规严格限制使用转基因生物 (GMO),因此很少将产生的基因修饰藻类用于户外培养。最近有报道称,含有酵母着丝粒和自主复制序列 (CEN/ARS) 的质粒在拟南芥物种中表现为附加体。我们之前曾报道过,Platinum TALEN (PtTALEN) 系统在海洋拟南芥中表现出很高的活性。因此,我们试图开发一种基因组编辑系统,在引入突变后,可以从宿主细胞中去除 PtTALEN 的表达载体。使用含有 CEN/ARS 的一体式 PtTALEN 质粒,观察到了海洋拟南芥中的靶向突变和一体式载体的去除,这表明我们的一体式 PtTALEN 载体能够构建没有任何转基因的突变海洋拟南芥。该系统将是构建非转基因高性能藻类的可行方法。