225
Views
2
CrossRef citations to date
0
Altmetric
Original Articles

Genetic Diversity of Regeneration Ability in Anther Culture of Rice (Oryza sativa L.)

, &
Pages 387-391 | Received 03 Sep 1999, Accepted 07 Apr 2000, Published online: 03 Dec 2015

References

  • Abe, T. and Futsuhara, Y. 1991. Diallel analysis of callus growth and plant regeneration in rice seed-callus. Jpn. J. Genet. 66 : 129–140.
  • Abe, T., Kudo, M, Oka, Y., Yamaguchi, J. and Sasahara, T. 1996. Changes in aramylase activity during plant regeneration from rice calli. J. Plant Physiol. 149 : 592–598.
  • Chu, C. C, Wang, C. C, Sun, C. S., Hsu, C, Yin, K. C, Chu, C. Y. and Bi, F. Y. 1975. Establishment of an efficient medium for anther culture of rice through comparative experiments on the nitrogen sources. Sci. Sin. 18 : 659–668.
  • Genovesi, A. D. and Magill, C. W. 1979. Improved rate of callus and green plant production from rice anther culture following cold shock. Crop Sci. 19 : 662–664.
  • Guiderdoni, E. 1991. Gametic selection in anther culture of rice (Oryza sativa L.). Theor. Appi. Genet. 81 :406–412.
  • Hayman, B. I. 1954. The theory and analysis of diallel crosses. Genetics 39: 789–809.
  • Henry, Y., Vain, P. and De Buyser, J. 1994. Genetic analysis of in vitro plant tissue culture responses and regeneration capacities. Euphytica 79 :45–58.
  • Imuta, I., Kikuchi, F., Namai, H. and Ukai, Y. 1991. Diallel analysis of callus formation ability in anther culture of rice. Jpn J. Breed. 41: 153–162.
  • Komatsu, S., Masuda, T. and Abe, K. 1996. Phosphorylation of a protein (pp56) is related the regeneration of rice cultured suspension cells. Plant Cell Physiol. 37 : 748–753.
  • Mather, K. and Jinks, J. L. 1971. Biometrical genetics. Chapman and Hall, London. 1–382.
  • Miah, M. A. A., Earle, E. D. and Khush, G. S. 1985. Inheritance of callus formation ability in anther cultures of rice, Oryza sativa L.. Theor. Appi. Genet. 70 : 113–116.
  • Mizobuchi-Fukuoka, R., Yoshida, K., Naito, S. and Takeda, G. 1996. Cloning of a gene that is specifically expressed during somatic and zygotic embryogenesis in rice. Breed. Sci. 46 : 35–38.
  • Morley-Jones, R. 1965. Analysis of variance of the half diallel table. Heredity 20 : 29–40.
  • Nakamura, Y., Hirota, T. and Fujimaki, H. 1985. Direct induction of pollen plants in rice anther culture. Hokuriku Sakumotsu Gakkaiho 20: 1–4.
  • Niizeki, H. and Oono, K. 1971. Rice plants obtained by anther culture. Colloques internationaux C. N. R. S. No. 193-Les Cultures de Tissue de Plantes : 251–257.
  • Ogawa, T., Fukuoka, H. and Ohkawa, Y. 1995. Plant regeneration through direct culture of isolated pollen grains in rice. Breed. Sci. 45:301–307.
  • Oono, K. 1975. Production of haploid plants of rice (Oryza sativa L.) By anther culture and their use for breeding. Bull. Natl. Inst. Agrie. Sci. D26: 139–222.
  • Peng, J. and Hodges, T. K. 1989. Genetic analysis of plant regeneration in rice (Oryza sativa L.). In Vitro Cell. Develop. Biol. 25 : 91–94.
  • Quimio, C. A. and Zapata, F. J. 1990. Diallel analysis of callus induction and green-plant regeneration in rice anther culture. Crop Sci. 30: 188–192.
  • Sasaki, T. 1986. Rice cultivars having high capacity for regenerating plants from anther callus and their genealogies. Jpn. J. Breed. 36 : 64–65.
  • Sugimoto, K. and Takeoka, Y. 1998. Genetic analysis of plant regeneration ability in anther culture of rice (Oryza sativa L.). Breed. Sci. 48: 115–122.
  • Sugimoto, K., Miyake, H. and Takeoka, Y. 1999. Somaclonal variation in regenerants derived from anther culture of rice (Oryza sativa L.). Plant Prod. Sci. 2 : 71–76.
  • Taguchi-Shiobara, F., Komatsuda, T. and Oka, S. 1997a. Comparison of two indices for evaluating regeneration ability in rice (Oryza sativa L.) through a diallel analysis. Theor. Appi. Genet. 94: 378–382.
  • Taguchi-Shiobara, F., Lin, S. Y., Tanno, K., Komatsuda, T., Yano, M., Sasaki, T. and Oka, S. 1997b. Mapping quantitative trait loci associated with regeneration ability of seed callus in rice, Oryza sativa L. Theor. Appi. Genet. 95 : 828–833.
  • Tsugawa, H. and Matsunaga, K. 1991. Three-step rice anther culture. Proc. of the 12th Plant Tissue Cult. Conf. : 223.
  • Tsukahara, M., Hirosawa, T., Nagai, E., Kato, H., Ikeda, R. and Maruyama, K. 1995. Genetic analysis of plant regeneration ability in cell suspension cultures of rice (Oryza sativa L.). Breed. Sci. 45 : 425–428.
  • Ukai, Y. 1989. A microcomputer program DIALL for diallel analysis of quantitative characters. Jpn. J. Breed. 39 : 107–109.
  • Xie, J. H., Gao, M. W., Liang, Z. Q., Shu, Q. Y., Cheng, X. Y. and Xue, Q. Z. 1997. The effect of cool-pretreatment on the isolated microspore culture and the free amino acid change of anthers in japonica rice (Oryza sativa L.). J. Plant Physiol. 151 : 79–82.
  • Yamagishi, M., Yano, M., Fukuta, Y., Fukui, K., Otani, M. and Shimada, T. 1996. Distorted segregation of RFLP markers in regenerated plants derived from anther culture of an Fx hybrid of rice. Genes Genet. Syst. 71 : 37–41.
  • Yamagishi, M., Otani, M., Higashi, M., Fukuta, Y., Fukui, K., Yano, M. and Shimada, T. 1998. Chromosomal regions controlling anther culturability in rice (Oryza sativa L.). Euphytica 103 : 227–234.
  • Yan, J., Xue, Q. and Zhu, J. 1996. Genetic studies of anther culture ability in rice ( Oryza sativa). Plant Cell Tissue Organ Cult. 45 : 253–258.
  • Yoshida, K. T., Fujii, S., Sakata, M. and Takeda, G. 1994. Control of organogenesis and embryo-genesis in rice calli. Breed. Sci. 44: 355–360.
  • Yoshida, K. T., Mizobuchi-Fukuoka, R., Sakata, M. and Takeda, G. 1995. Detection of embryogenesis- and organogenesis-specific glycoproteins in rice calli. Breed. Sci. 45 : 493–496.
  • Zhang, L. and Hattori, K. 1996. Genetic analysis of regeneration ability in rice seed-callus. Genes Genet. Syst. 71 : 313–317.