Marciset O, Mollet B
Nestlé Research Center, Nestlé Ltd., Vers-chez-les-Blanc, P.O. Box 44, 1000 Lausanne 26, Switzerland.
Biotechnol Bioeng. 1994 Mar 15;43(6):490-6. doi: 10.1002/bit.260430609.
A multifactorial process was used to optimize transformation of Streptococcus thermophilus by electroporation. Simple experimental designs were applied to study three, four, or five factors in eight experiments. Four qualitative factors, growth and recovering media, and plasmid and bacterial strains, were studied empirically. Eight quantitative factors, including electrical, physiological, and chemical parameters, were studied by fractional factorial designs. Effects of individual parameters as well as interactions between them were investigated and optimized. Optimization was performed for one S. thermophilus strain, ST11, and proved to work for all other tested strains of the same species. Transformation efficiencies of 9 x 10(2) to 6 x 10(5) transformants per microgram DNA were achieved, depending on the strains and vectors used. (c) 1994 John Wiley & Sons, Inc.
采用多因素方法通过电穿孔优化嗜热链球菌的转化。在八个实验中应用简单的实验设计来研究三个、四个或五个因素。通过经验研究了四个定性因素,即生长和复苏培养基、质粒和细菌菌株。通过分数析因设计研究了八个定量因素,包括电学、生理学和化学参数。研究并优化了各个参数的效应及其之间的相互作用。对一株嗜热链球菌ST11进行了优化,并证明对同一物种的所有其他测试菌株均有效。根据所使用的菌株和载体,每微克DNA的转化效率达到了9×10²至6×10⁵个转化体。(c) 1994约翰·威利父子公司。