812
Views
7
CrossRef citations to date
0
Altmetric
Crop Physiology & Ecology

Effect of Brassinolide Applied at the Meiosis and Flowering Stages on the Levels of Endogenous Plant Hormones during Grain-Filling in Rice Plant (Oryza salivaL.)

, , , , , & show all
Pages 36-42 | Received 11 Jun 2000, Accepted 09 Aug 2002, Published online: 03 Dec 2015

References

  • Biswas, A.K. and Choudhuri, M.A. 1986. Regulation by kinetin and abscisic acid of correlative senescence in relation to grain maturation, source-sink relationship and yield of rice (Oryza sativa L.). Plant Growth Regul. 4 : 239–245.
  • Fujii, S. and Saka, H. 1992. Growth regulating action of bras¬sinolide on plant. Effect of brassinolide on the translocation of assimilate in rice plants during the ripening stage. Jpn. J. Crop Sci. 61 : 193–199*.
  • Fujii, S. and Saka, H. 2001a. Distribution of assimilates to each organ in rice plants exposed to a low temperature at the ripening stage, and the effect of brassinolide on the distribution. Plant Prod. Sci. 4: 136–144.
  • Fujii, S. and Saka, H. 2001b. The promotive effect of brassinolide on lamina joint-cell elongation, germination and seedling growth under low-temperature stress in rice (Oryza sativaL.). Plant Prod. Sci. 4:210–214.
  • Fujioka, S. 1999. Natural occurrence of brassinosteroids in the plant kingdom. In Sakurai, A., Yokota, T. and Clouse, S. P. eds., Brassinosteroids -Steroidal Plant Hormones-. Springer, Tokyo, p.21–45.
  • Hirai, K., Fujii, S. and Honjo, K. 1991. Plant growth regulating action of brassinolide. The effect of brassinolide on the ripening of rice plants under the low temperature condition. Jpn. J. Crop Sci. 50 : 29–35*.
  • Kato,T., Sakurai, N. and Kuraishi, S. 1993. The changes of endogenous abscisic acid in developing grain of two rice cultivars with different grain size. Jpn. Crop. Sci. 62 : 456–461.
  • Kobayashi, M., Yamaguchi, I., Murofushi, N., Ota, Y.and Taka-hashi, N. 1988. Fluctuation and localization of endogenous gibberellins in rice. Agric. Biol. Chem. 52 : 1189–1194.
  • Kobayashi, M., Sakurai, A., Saka, H. and Takahashi, N. 1989a. Quantitative analysis of endogenous gibberellins in normal and dwarf cultivars of rice. Plant Cell Physiol. 30 : 963–969.
  • Kobayashi, M., Sakurai, A., Saka, H. and Takahashi, N. 1989b. Fluctuation of the endogenous IAA level in rice during its life cycle. Agric. Biol. Chem. 53 : 1089–1094.
  • Kokubun, M. and Honda, I. 2000. Intra-raceme variation in pod -set probability is associated with cytokinin content in soybeans. Plant Prod. Sci. 3 : 354–359.
  • Lee, M-h., Seo, S. W. and Ota,Y. 1981. Studies on the physio¬logical activity of ethylene in rice plants. Ill Diurnal variation in ethylene evolution in leaf and panicle. Jpn. J. Crop. Sci. 50 : 396–400*.
  • Michiyama, H. and Saka, H. 1991. Growth dependent changes of endogenous ethylene levels in leaf sheaths and panicles in the life cycle of rice paints. Jpn. J. Crop Sci. 60 : 306–311.
  • Nakamura, T. and Nakajima, T. 1997. Promotion effects of ABA in grain filling of rice (Oryza sativaL.). Jpn. J. Crop Sci. 66 (Extra Issue 1) : 286–287.**
  • Nishikawa, N., Toyama, S., Shida, A. and Futatsuya, F. 1994. The uptake and the transport of 14C-labeled epibrassinolide in intact seedlings of cucumber and wheat. J. Plant Res. 107 : 125 -130.
  • Saka, H., Kogen, A., Okumura, M. and Watanabe, S. 1992. Fluctuation of ethylene production in excised panicles and flag leaf blades during grain ripening in rice (Oryza sativaL.). Jpn. J. Crop Sci. 61 : 285–291.
  • Satake, T. 1972. Circular dense-culture of rice plants in pots as a purpose of obtaining many uniform panicles with main stem. Jpn. J. Crop Sci. 41 : 361–362**.
  • Suzuki, Y., Kurofushi, S., Murofushi, N., Ota, Y. and Takahashi, N. 1981. Seasonal changes of GA1; GA19 and abscisic acid in three rice cultivars. Plant Cell Physiol. 22 : 1085–1093.
  • Takagi, M., Yokota, T., Murofushi, N., Ota, Y. and Takahashi, N. 1985. Fluctuation of endogenous cytokinin contents in rice during its life cycle. Quantification of cytokinins by selected ion monitoring using deuterium-labeled internal standards. Agric. Biol.Chem. 49:3271–3277.
  • Takagi, M., Yokota, T., Murofushi, N.,Saka, H. and Takahashi, N. 1989. Quantitative changes of free-base, riboside, ribotide and glucose cytokinins in developing rice grains. Plant Growth Regul. 8 : 349–364.
  • Tsukaguchi, T., Horie, T. and Koshioka, M. 1999. Dynamics of abscisic acid levels during grain-filling in rice : Comparisons between superior and inferior spikelets. Plant Prod. Sci. 2 : 223 -226.
  • Watanabe, S., Kobayashi, M. and Saka, H. 1989. Fluorescent analysis of indoleacetic acid in rice seedlings and the effect of plant growth retardant to its content. Jpn. J. Crop Sci. 58 (Extra issue 1) : 156–157**.