Lab Bioquímica y Biología Molecular. Departamento de Química y Ciencia de Materiales, Facultad de Ciencias Experimentales, Universidad de Huelva, Avda. Fuerzas Armadas s/n, 21007, Huelva, Spain.
Biotechnol Prog. 2013 Mar-Apr;29(2):319-28. doi: 10.1002/btpr.1690. Epub 2013 Mar 6.
Despite the biotechnological interest of microalgae, no robust and stable methods for genetic transformation of most microalgal strains exist. The scanty and disperse data about the efficiency of heterologous promoters in microalgae and the use of different transformation methods, DNA quantities and reporter genes in the existing studies makes very difficult a real comparison of their efficiency. Using Chlamydomonas reinhardtii as a host, we have evaluated the efficiency of the heterologous promoters of cauliflower mosaic virus 35S (CaMV 35S) and Agrobacterium nopaline synthase (NOS) genes. These promoters were fused to the paromomycin conferring-resistance aminoglycoside 3'-phosphotransferase encoding gene (APHVIII), and C. reinhardtii was transformed by the glass beads agitation method. The transformation efficiency and the APHVIII transcript and protein levels were evaluated in a series of transformants for each promoter. The chimeric promoter HSP70A/RBCS2 and the promoter-less APHVIII marker gene were used for comparison. We found significantly higher transformation efficiencies and higher level of APHVIII expression in those transformants harboring the NOS promoter than in those transformed with CaMV 35S promoter. The NOS promoter, widely used for genetic manipulation of higher plants, has been very rarely used for the transformation of microalgae. The results shown here suggest the possibilities of this heterologous promoter as an efficient system for the genetic manipulation of microalgae.
尽管微藻具有生物技术方面的应用价值,但大多数微藻菌株的遗传转化方法还不够稳健和稳定。关于异源启动子在微藻中的效率以及不同转化方法、DNA 用量和报告基因在现有研究中的应用的数据很少且分散,这使得很难对它们的效率进行真正的比较。我们以莱茵衣藻(Chlamydomonas reinhardtii)为宿主,评估了花椰菜花叶病毒 35S(CaMV 35S)和农杆菌胭脂碱合成酶(NOS)基因的异源启动子的效率。这些启动子与赋予对巴龙霉素抗性的氨基糖苷 3′-磷酸转移酶编码基因(APHVIII)融合,并通过玻璃珠搅拌法转化莱茵衣藻。我们在一系列转化体中评估了每个启动子的转化效率以及 APHVIII 转录本和蛋白水平。我们还使用了 HSP70A/RBCS2 嵌合启动子和无启动子的 APHVIII 标记基因进行比较。我们发现,携带 NOS 启动子的转化体的转化效率显著更高,APHVIII 的表达水平也更高。NOS 启动子广泛用于高等植物的遗传操作,而在微藻的转化中很少使用。这里显示的结果表明,该异源启动子作为微藻遗传操作的有效系统具有可能性。