Biological projectiles (phage, yeast, bacteria) for genetic transformation of plants

被引:6
作者
Kikkert J.R. [1 ]
Humiston G.A. [1 ,2 ]
Roy M.K. [1 ,3 ]
Sanford J.C. [1 ]
机构
[1] Department of Horticultural Sciences, Cornell University, New York Stt. Agric. Exp. Station, Geneva
[2] Sanford Scientific, Waterloo, NY 13165
[3] Garst Seeds, Box 500, Slater
关键词
Bacteriophage lambda; Biolistic; Escherichia coli; Microprojectile bombardment; Particle bombardment; Saccharomyces cerevisiae;
D O I
10.1007/s11627-999-0008-y
中图分类号
学科分类号
摘要
Bacteriophage lambda particles, yeast cells, and bacterial cells were tested as projectiles to deliver marker/reporter genes into plant cells via the biolistic process. When phage particles were complexed to tungsten or gold particles and used to bombard tobacco cells, fewer than 15 cell clusters per plate transiently expressed β-glucuronidase (GUS). Cells of wild-type Saccharomyces cerevisiae were too large to be effective projectiles, but use of a reduced-size mutant resulted in a small number of transformants. Escherichia coli cells complexed with tungsten were the most effective projectile for plant transformation. Various methods to prepare E. coli were tested to reduce particle size, improve binding of bacteria to metal particles, and/or minimize particle clumping. In maize, the number of transformants was highest when bacteria/tungsten particles were air-dried onto macrocarriers from an aqueous solution. When maize cells were bombarded with bacteria/tungsten projectiles, rates of transient gene expression (2000 per plate) and stable transformation (50 per plate) were only two- to threefold lower than when purified DNA was used. Transformation of tobacco with E. coli projectiles was improved when the bacteria were treated with a series of ethanol and ether washes, then dried into a powder. Nevertheless, tobacco transformation was still 24- (transient) and 200-fold (stable) less than when purified DNA was used. Biological projectiles can be effective for plant transformation and are advantageous because once a DNA construct is made and put into the appropriate microorganism, the need to isolate and purify DNA for the biolistic process is eliminated, which saves time and lessens DNA shear. Such projectiles may be especially well suited where high molecular weight DNA constructs are needed.
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页码:43 / 50
页数:7
相关论文
共 26 条
[1]  
Amin M.K., Day M.J., Influence of pH value on viability and transduction frequency of Pseudomonas aeruginosa phage F116, Lett. Appl. Microbiol., 6, pp. 93-96, (1988)
[2]  
Armaleo D., Ye G.N., Klein T.M., Shark K.B., Sanford J.C., Johnston S.A., Biolistic nuclear transformation of saccharomyces cerevisiae and other fungi, Curr. Genet., 17, pp. 97-103, (1990)
[3]  
Cao J., Zhang W., McElroy D., Wu R., Assessment of rice genetic transformation techniques, Rice Biotechnology, pp. 175-198, (1991)
[4]  
Clark-Curtiss J.E., Curtiss R. III, Analysis of recombinant DNA using Escherichia coli minicells, Methods Enzymol., 101, pp. 347-363, (1983)
[5]  
Fromm M.E., Callis J., Taylor L.P., Walbot V., Electroporation of DNA and RNA into plant protoplasts, Methods Enzymol., 153, pp. 351-366, (1987)
[6]  
Fromm M.E., Morrish F., Armstrong C., Williams R., Thomas J., Klein T.M., Inheritance and expression of chimeric genes in the progeny of transgenic maize plants, Bio/Technology, 8, pp. 833-839, (1990)
[7]  
Goldberg S., Doyle R.J., Rosenberg M., Mechanism of enhancement of microbial cell hydrophobicity by cationic polymers, J. Bacteriol., 172, pp. 5650-5654, (1990)
[8]  
Han J.H., Rutter W.J., λGt22, an improved λ vector for the directional cloning of full-length c-DNA, Nucleic Acids Res., 15, (1987)
[9]  
Hershey A.D., Dove W., Introduction to lambda, Lambda II, pp. 3-11, (1983)
[10]  
Hill J.E., Myers A.M., Koerner T.J., Tzagoloff A., Yeast/E. Coli shuttle vectors with multiple unique restriction sites, Yeast, 2, pp. 163-167, (1986)