Last modified 27 January 2007
Austin, H.A. and W.A. Cress. 1994. The dectection of agrobacterial Ti transformation in soybean. S. A. J. Sci. 90:299-302.
Baldes, R., M. Moos, and K. Geider. 1987. Transformation of soybean protoplasts from permanent suspension cultures by cocultivation with cells of Agrobacterium tumefaciens. Plant Mol. Biol. 9:135-145.
Bond, J.E., R.E. McDowell, and P.M. Gresshoff. 1996. Susceptibility of nodulation mutants of soybean (Glycine max) to Agrobacterium tumefaciens. J. Plant Physiol. 148:684-692.
Byrne, M.C., R.E. McDonnell, M.S. Wright, and M.C. Carnes. 1987. Strain and cultivar specificity in Agrobacterium-soybean interaction. Plant Cell Tissue Organ Cult. 8:3-15.
Christou, P., J.E. Murphy, and W.F. Swain. 1987. Stable transformation of soybean by electroporation and root formation from transformed callus. Proc. Natl. Acad. Sci. USA 84:3962-3966.
Christou, P., D.E. McCabe, and W.F. Swain. 1988. Stable transformation of soybean callus by DNA-coated gold particles. Plant Physiol. 87:671-674.
Delzer, B.W., D.A. Somers, and J.H. Orf. 1990. Agrobacterium tumefaciens susceptibility and plant regeneration of 10 soybean genotypes in maturity groups 00 to II. Crop Sci. 30:320-322.
Dhir, S.K., S. Dhir, A. Hepburn, and J.M. Widholm. 1991a. Factors affecting transient gene expression in electroporated Glycine max protoplasts. Plant Cell Rep. 10:106-110.
Di Mauro, A. O., Martins de N�brega, J. C., Di Mauro, S. M. Z., and Collins, G. B. (2000). Interactions in the Agrobacterium-soybean system and capability of some Brazilian soybean cultivars to produce somatic embryos. Genetics and Molecular Biology 23:217-220.
Droste, A., M.H. Bodanese Zanetti, E. Mundstock, and C.Y. Hu. 1994. Susceptability of Brazilian soybean cultivars to Agrobacterium tumefaciens. Rev. Brail. Genet. 17:83-88.
Facciotti, D., J.K. O’Neil, S. Lee, and C.K. Shewmaker. 1985. Light-inducible expression of a chimeric gene in soybean tissue transformed with Agrobacterium. Bio/Technol. 3:241-246.
Finer, K. R. and Finer, J. J. (2000). Use of Agrobacterium expressing green fluorescent protein to evaluate colonization of sonication-assited Agrobacterium-mediated transformation-treated soybean cotyledons. Lett Appl Microbiol 30:406-410.
Godwin, I., G. Todd, B. Ford-Lloyd, and H.J. Newbury. 1991. The effects of acetosyringone and pH on Agrobacterium-mediated transformation vary according to plant species. Plant Cell Rep. 9:671-675.
Hawes, M.C. and S.G. Pueppke. 1987. Correlation between binding of Agrobacterium tumefaciens by root cap cells and susceptibility of plants to crown gall. Plant Cell Rep. 6:287-290.
Hood, E.E., G. Jen, L. Kayer, J. Kramer, R.T. Fraley, and M.-D. Chilton. 1984. Restriction endonuclease map of pTiBo542, a potential Ti plasmid vector for genetic engineering of plants. Bio/Technol. 2:702-709.
Hood, E.E., W.S. Chilton, M.-D. Chilton, and R.T. Fraley. 1986. T-DNA and opine synthetic loci in tumors incited by Agrobacterium tumefaciens A281 on soybean and alfalfa plants. J. Bacteriol. 168:1283-1290.
Jin, S., T. Komari, M.P. Gordon, and E.W. Nester. 1987. Genes responsible for the supervirulence phenotype of Agrobacterium tumefaciens A281. J. Bacteriol. 169:4417-4425.
Kov�cs L & Pueppke SG (1993) The chromosomal background of Agrobacterium tumefaciens Chry5 conditions high virulence on soybean. Molecular Plant-Microbe Interactions 6:601-608
Kudirka, D.T., S.M. Colburn, M.A. Hinchee, and M.S. Wright. 1986. Interactions of Agrobacterium tumefaciens with soybean (Glycine max (L.) Merr.) leaf explants in tissue culture. Can. J. Gen. Cytol. 28:808-817.
Lianzheng, W., Y. Guanchu, L. Jiaofen, L. Bojun, W. Jian, Y. Zhenchun, L. Xiulan, S. Qiquan, J. Xingchun, and Z. Zeqi. 1983. Tumor induction and gene transfer and gene transfer in annual species of Glycine by Agrobacterium tumefaciens. Proc.First Intl.Symp.of Soybean in Tropical and Subtropical Countries 137-141.
Lianzheng, W., Y. Guangchu, L. Jiaofen, L. Bojun, W. Jian, Y. Zhenchun, L. Xiulan, S. Qiquan, J. Xingcun, and Z. Zeqi. 1984. A study on tumor formation of soybean and gene transfer. Sci.Sin. 27:391-397.
Lin, W., J.T. Odell, and R.M. Screiner. 1987. Soybean protoplast culture and direct gene uptake and expression by cultured soybean protoplasts. Plant Physiol. 84:856-861.
Luo, G., A. Hepburn, and J. Widholm. 1994. A simple procedure for the expression of genes in transgenic soybean callus tissue. Plant Cell Rep. 13:632-636.
Mauro, A.O., T.W. Pfeiffer, and G.B. Collins. 1995. Inheritance of soybean susceptibility ot Agrobacterium tumefaciens and its relationship to transformation. Crop Sci. 35:1152-1156.
Moore, P.J., A.J. Moore, and G.B. Collins. 1994. Genotypic and developmental regulation of transient expression of a reporter gene in soybean zygotic cotyledons. Plant Cell Rep. 13:556-560.
Owens, L.D. and D.E. Cress. 1985. Genotypic variability of soybean response to Agrobacterium strains harboring Ti or Ri plasmids. Plant Physiol. 77:87-94.
Owens, L.D. and A.C. Smigocki. 1988. Transformation of soybean cells using mixed strains of Agrobacterium tumefaciens and phenolic compounds. Plant Physiol. 88:570-573.
Pederson, H.C., J. Christiansen, and R. Wyndaele. 1983. Induction and in vitro culture of soybean crown gall tumors. Plant Cell Rep. 2:201-204.
Shoemaker, R.C. 1989. Biotechnology and the soybean. p. 47-55. In: A.J. Pascale (ed.) World Soybean Research Conference. Buenos Aires.
Simpson, R.B., A. Spielman, L. Margossan, and T.D. McKnight. 1986. A disarmed binary vector from Agrobacterium tumefaciens functions in Agrobacterium rhizogenes. Plant Mol. Biol. 6:403-415.
Takeuchi, Y., M. Dotson, and N.T. Keen. 1992. Plant transformation: a simple particle bombardment device based on flowing helium. Plant Mol. Biol. 18:835-839.
Torisky, R.S., L. Kovacs, S. Avdiushko, J.D. Newman, A.G. Hunt, and G.B. Collins. 1997. Development of a binary vector system for plant transformation based on the supervirulent Agrobacterium tumefaciens strain Chry5. Plant Cell Rep. 17:102-108.
Vain, P., N. Keen, J. Murillo, C. Rathus, C. Nemes, and J.J. Finer. 1993. Development of the particle inflow gun. Plant Cell Tissue Organ Cult. 33:237-246.
Wang, Y.-C., T.M. Klein, M. Fromm, J. Cao, J.C. Sanford, and R. Wu. 1988. Transient expression of foreign genes in rice, wheat and soybean cells following particle bombardment. Plant Mol. Biol. 11:433-439.
Wyndaele, R., H. van Onckelen, J. Christiansen, P. Rudelsheim, R. Hernans, and J. de Greef. 1985. Dynamics of endogenous IAA and cytokinins during the growth cycle of soybean crown gall and untransformed callus. Plant Cell Physiol. 26:1147-1154.
Xingcun, J., S. Qiquan, Z. Zeqi, W. Lianzheng, Y. Guangchu, and L. Bojun. 1986. Establishment of T-DNA-containing soybean cell lines. Sci.Sin.Ser.B 29:374-377.
Yukawa K, Kaku H, Tanaka H, Koga-Ban Y, Fukuda M (2007) Characterization and host range determination of soybean supper virulent Agrobacterium tumefaciens KAT23. Bioscience Biotechnology and Biochemistry 71:1676-1682.
