Turgeon Nathalie, Laflamme Christian, Ho Jim, Duchaine Caroline
Institut universitaire de cardiologie et de pneumologie, Hôpital Laval, Université Laval, Quebec City, Québec, Canada.
J Microbiol Methods. 2006 Dec;67(3):543-8. doi: 10.1016/j.mimet.2006.05.005. Epub 2006 Jul 3.
An electro-transformation procedure was established for Bacillus cereus ATCC 14579. Using early growth-stage culture and high electric field, the ectroporation efficiency was up to 2 x 10(9) cfu microg(-1) ml(-1) with pC194 plasmid DNA. The procedure was tested with three other plasmids, of various sizes, replication mechanisms and selection markers, and the transformation efficiencies ranged between 2 x 10(6) and 1 x 10(8) cfu microg(-1) ml(-)(1). The effects of two wall-weakening agents on electroporation rates were also evaluated. The transformation rate that was reached with our procedure is 10(3) times higher than that previously obtained with members of the Bacillus genus with similar plasmids, and 10(6) times superior than that achieved with available protocols for B. cereus. The proposed method is quick, simple, efficient with small rolling circle plasmids and large theta replicating plasmids with low copy number per cell, and suitable for many genetic manipulations that are not possible without high-efficiency transformation protocols.
已为蜡样芽孢杆菌ATCC 14579建立了一种电转化程序。使用生长早期培养物和高电场,用pC194质粒DNA时,电穿孔效率高达2×10⁹ cfu μg⁻¹ ml⁻¹。该程序用另外三种不同大小、复制机制和选择标记的质粒进行了测试,转化效率在2×10⁶至1×10⁸ cfu μg⁻¹ ml⁻¹之间。还评估了两种细胞壁弱化剂对电穿孔率的影响。我们的程序所达到的转化率比先前用具有相似质粒的芽孢杆菌属成员所获得的转化率高10³倍,比蜡样芽孢杆菌现有方案所达到的转化率高10⁶倍。所提出的方法快速、简单,对于小的滚环质粒和每个细胞低拷贝数的大的θ复制质粒很有效,并且适用于许多没有高效转化方案就不可能进行的基因操作。