| 1. |
Smith, R. and Hood, E.E. (1995) Agrobacterium tumefaciens transformation of monocotyledons. Crop Sci.
35, 301–309.
|
| |
| 2. |
Schafer, W., Gorz, A., and Kahl, G. (1987) T-DNA integration and expression in a monocot crop plant after induction of Agrobacterium. Nature
327, 529–532.
|
| |
| 3. |
Raineri, D.M., Bottino, P., Gordon, M.P., and Nester, E.W. (1990) Agrobacterium-mediated transformation of rice (Oryza sativa L.). Nat. Biotechnol.
8, 33–38.
|
| |
| 4. |
Gould, J., Devey, M., Hasegawa, O., Ulian, E.C., Peterson, G., and Smith, R.H. (1991) Transformation of Zea mays L. using Agrobacterium tumefaciens and the shoot tip. Plant Physiol.
95, 426–434.
|
| |
| 5. |
Li, X.-Q., Liu, C.-N., Ritchie, S.W., Peng, J.-Y., Gelvin, S.B., and Hodges, T.K. (1992) Factors influencing Agrobacterium-mediated transient expression of gusA in rice. Plant Mol. Biol.
20, 1037–1048.
|
| |
| 6. |
Chan, M.-T., Lee, T.-M., and Chang, H.-H. (1992) Transformation of indica rice (Oryza sativa L.) mediated by Agrobacterium tumefaciens. Plant Cell Physiol.
33, 577–583.
|
| |
| 7. |
Chan, M.-T., Chang, H.-H., Ho, S.-L., Tong, W.-F., and Yu, S.-M. (1993) Agrobacterium-mediated production of transgenic rice plants expressing a chimeric α-amylase promoter/β-glucuronidase gene. Plant Mol. Biol.
22, 491–506.
|
| |
| 8. |
Ritchie, S.W., Liu, C.N., Sellmer, J.C., Kononowicz, H., Hodges, T.K., and Gelvin, S.B. (1993) Agrobacterium tumefaciens-mediated expression of gusA in maize tissues. Transgenic Res.
2, 252–265.
|
| |
| 9. |
Hiei, Y., Ohta, S., Komari, T., and Kumashiro, T. (1994) Efficient transformation of rice (Oryza sativa L.) mediated by Agrobacterium and sequence analysis of the boundaries of the T-DNA. Plant J.
6, 271–272.
|
| |
| 10. |
Aldemita, R.R. and Hodges, T.K. (1996) Agrobacterium tumefaciens-mediated transformation of japonica and indica rice varieties. Planta
199, 612–617.
|
| |
| 11. |
Ishida, Y., Saito, H., Ohta, S., Hiei, Y., Komari, T., and Kumashiro, T. (1996) High efficiency transformation of maize (Zea mays L.) mediated by Agrobacterium tumefaciens. Nat. Biotechnol.
14, 745–750.
|
| |
| 12. |
Cheng, M., Fry, J.E., Pang, S., et al. (1997) Genetic transformation of wheat mediated by Agrobacterium tumefaciens. Plant Physiol.
115, 971–980.
|
| |
| 13. |
Tingay, S., McElroy, D., Kalla, R., et al. (1997) Agrobacterium tumefaciens-mediated barley transformation. Plant J.
11, 1369–1376.
|
| |
| 14. |
Zhao, Z.-Y., Gu, W., Cai, T., et al. (1998) Molecular analysis of T0 plants transformed by Agrobacterium and comparison of Agrobacterium-mediated transformation with bombardment transformation in maize. Maize Genet. Coop Newsl.
72, 34–37.
|
| |
| 15. |
Zhao, Z.-Y., Cai, T., Tagliani, L., et al. (2000) Agrobacterium-mediated sorghum transformation. Plant Mol. Biol.
44, 789–798.
|
| |
| 16. |
Lupotto, E., Reali, A., Oassera, S., and Chan, M.T. (1999) Maize elite inbred lines are susceptible to Agrobacterium tumefaciens-mediated transformation. Maydica
44, 211–218.
|
| |
| 17. |
Enriquez-Obregon, G.A., Prieto-Samsonov, D.L., de la Riva, G.A., Perez, M., Selman-Housein, G., and Vazquez-Padron, R.I. (1999)
Agrobacterium-mediated Japonica rice transformation: a procedure assisted by an antinecrotic treatment. Plant Cell Tissue Organ Cult.
59, 159–168.
|
| |
| 18. |
Frame, B.R., Shou, H., Chikwamba, R.K., et al. (2002) Agrobacterium tumefaciens-mediated transformation of maize embryos using a standard binary vector system. Plant Physiol.
129, 13–22.
|
| |
| 19. |
Yu, T.T., Skinner, D.Z., Liang, G.H., Trick, H.N., Huang, B., and Muthukrishnan, S. (2000) Agrobacterium-mediated transformation of creeping bentgrass using GFP as a reporter gene. Hereditas
133, 229–233.
|
| |
| 20. |
Zilinskas, B.A. (1999) Agrobacterium-mediated transformation of turfgrass. USA PCT Patent application 98-0087PCT.
|
| |
| 21. |
Bai, Y. and Qu, R. (2001) Genetic transformation of elite turf-type cultivars of tall fescue. Intl. Turf. Soci. Res. J.
9, 129–133.
|
| |
| 22. |
Bai, Y. and Qu, R. (2001) Factors influencing tissue culture responses of mature seeds and immature embryos in turf-type tall
fescue. Plant Breeding
120, 239–242.
|
| |
| 23. |
Luo, H., Hu, Q., Nelson, K., et al. (2004) Agrobacterium tumefaciens-mediated creeping bentgrass (Agrostis stolonifera L.) transformation using phosphinothricin selection results in a high frequency of single-copy transgene integration. Plant Cell Rep.
22, 645–652.
|
| |
| 24. |
Zhong, H., Bolyard, M.G., Srinivasan, C., and Stricklen, M.B. (1993) Transgenic plants of turfgrass (Agrostis palustris Huds.) from microprojectile bombardment of embryogenic callus. Plant Cell Rep.
3, 1–6.
|
| |
| 25. |
Hartman, C.L., Lee, L., Day, P.R., and Turner, N.E. (1994) Herbicide resistant turfgrass (Agrostis palustris Huds.) by biolistic transformation. Nat. Biotechnol.
12, 919–923.
|
| |
| 26. |
Lee, L., Hartman, C., Laramore, C., Turner, N., and Day, P. (1995) Herbicide-resistant creeping bentgrass. USGA Green Section Record
33(3), 16–18.
|
| |
| 27. |
Hoekema, A., Hirsch, P.R., Hooykaas, P.J.J., and Schilperoort, R.A. (1983) A binary plant vector strategy based on separation
of vir-and T region of the Agrobacterium tumefaciens Ti-plasmid. Nature
303, 179–180.
|
| |
| 28. |
Murashige, T. and Skoog, F. (1962) A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol. Plant
15, 473–497.
|
| |
| 29. |
Sambrook, J., Fritsch, E.F. and Maniatis, T. (1989) Molecular Cloning: A Laboratory Manual, 2nd ed., Cold Spring Harbor Laboratory
Press, New York.
|
| |