Bio-Rad Gene Pulser Xcell™ Electroporation Systems User Manual

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Section 9
References

Anderson, M.L.M., Spandidos, D.A., and Coggins, J.R., Electroporation of lymphoid cells: factors
affecting the efficiency of transfection, J. Biochem. Biophys. Meth., 22, 207 (1991)

Andreason, G.L. and Evans, G.A., Optimization of electroporation for transfection of mammalian cell
lines, Anal. Biochem. 180, 279 (1989)

Apolinario, E., Nocero, M., Jin, M., and Hoffman, C.S., Cloning and manipulation of the
Schizosaccharomyces pombe his7+ gene as a new selectable marker for molecular genetic studies, Curr.
Genet. 24, 491 (1993)

Ausubel, F.M., Brent, R., Kingston, R.E., Moore, D.D., Seidman, J.G., Smith, J.A., and Struhl, K. (eds.)
Current Protocols in Molecular Biology, John Wiley & Sons, NY (1987)

Barsoum, J., “Stable integration of vectors at high copy number for high-level expression in animal cells,”
in Methods in Molecular Biology, vol. 48, Nickoloff, J.A. (ed.), Humana Press, Totowa, NJ, 225 (1995)

Becker, D.M. and Guarente, L., High-efficiency transformation of yeast by electroporation, Methods
Enzymol. vol. 194, Academic Press, San Diego, CA, 182 (1991)

Böttger, E. C., High-efficiency generation of plasmid cDNA libraries using electro-transformation,
BioTechniques 6, 878 (1988)

Bringel, F. and Hubert, J.-C., Optimized transformation by electroporation of Lactobacillus
plantarum strains with plasmid vectors, Appl. Microbiol. Biotechnol., 33, 664 (1990)

Calvin, N.M. and Hanawalt, P.C., High-efficiency transformation of bacterial cells by electroporation, J.
Bacteriol. 170, 2796 (1988)

Chaffin, D.O. and Rubens, C.E., Blue/white screening of recombinant plasmids in Gram-positive bacteria
by interruption of alkaline phosphatase gene (phoZ) expression, Gene 219, 91 (1998)

Change, D.C., Chassy, B.M., Saunders, J.A., and Sowers, A.E. (eds.) Guide to Electroporation and
Electrofusion, Academic Press, Inc., San Diego (1992)

Chu, G., Hayakawa, H., and Berg, P., Electroporation for the efficient transfection of mammalian cells
with DNA, Nuc. Acids Res. 15, 1311 (1987)

Cregg, J.M. and Russell, K.A., “Transformation,” in Methods in Molecular Biology, vol. 103, Higgins,
D.R. and Cregg, J.M. (eds.), Humana Press, Totowa, NJ, 27 (1998)

DeBacker, M.D., Maes, D., Vandoninck, S., Logghe, M., Contreras, R., and Luyten, W.H.M.L.,
Transformation of Candida albicans by electroporation, Yeast 15, 1609 (1999)

Dekeyser, R.A., Claes, B., deRycke, R.M.U., Habets, M.E., vanMontagu, M.C., and Caplan, A.B.,
Transient gene expression in intact and organized rice tissues, The Plant Cell 2, 591 (1990)

Dennis, J.J. and Sokol, P.A., “Electrotransformation of Pseudomonas,” in Methods in Molecular Biology,
vol. 47, Nickoloff, J.A. (ed.), Humana Press, Totowa, NJ, 125 (1995)

Dower, W. J., “Electroporation of bacteria: a general approach to genetic transformation,” in Genetic
Engineering—Principles and Methods, vol 12, Plenum Publishing Corp., NY, 275

(1990)

Dower, W. J., Miller, J. F., and Ragsdale, C. W., High efficiency transformation of E. coli by high voltage
electroporation, Nuc. Acids Res. 16, 6127 (1988)

Dower, W.J., Chassy, B.M., Trevors, J.T., and Blaschek, H.P., “Protocols for the transformation of bacteria
by electroporation,” in Guide to Electroporation and Electrofusion, Change, D. C., Chassy, B. M.,
Saunders, J. A., and Sowers, A. E. (eds.), Academic Press Inc., 485, San Diego (1992)

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