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Original Articles

Higher Leaf Area Growth Rate Contributes to Greater Vegetative Growth of F1 Rice Hybrids in the Tropics

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Pages 184-188 | Received 20 Apr 2000, Accepted 19 Feb 2001, Published online: 03 Dec 2015

References

  • Agata, W. 1990. Mechanism of high yield achievement in Chinese Fl rice compared with cultivated rice varieties. Jpn. J. Crop Sci. 59 (Extra issue 2) : 270–273.
  • Akita, S., Blanco, L.G. and Virmani, S.S. 1986. Physiological analysis of heterosis in rice plant. Jpn. J. Crop Sci. 55 (Extra issue 1) : 14–15.
  • Akita, S. 1988. Physiological bases of heterosis in rice. In Hybrid Rice. Proc. Int. Symp. Hybrid Rice. IRRI. 67–77.
  • Akita, S. and Blanco, L.G. 1989. Productivity of Fx hybrids and parents at two nitrogen levels : growth and yield analysis. In Database on Growth and Yield Characteristics of Recent High Yield Rice Cultivars. IRRI. 33–54.
  • Akita, S., Blanco, L.G. and Katayama, K. 1990. Physiological mechanism of heterosis in seedling growth of indica Fl rice hybrids. Jpn. J. Crop Sci. 59 : 548–556.
  • Blanco, L.C., Casal, G., Akita, S. and Virmani, S.S. 1990. Biomass, grain yield, and harvest index of Fx rice hybrids and inbreds. Int. Rice Res. Newsl. 15 : 9–10.
  • Deng, H. 1988. Biochemical basis of heterosis in rice. In Hybrid Rice. Proc. Int. Symp. Hybrid Rice. IRRI. 55–66.
  • Jones, J.W. 1924. Hybrid vigor in rice. Agron. J. 18 : 423–428.
  • Kabaki, N. 1993. Growth and yield of japonica-indica hybrid rice. JARQ 27 : 88–94.
  • Kawano, K. and Tanaka, A. 1969. Vegetative vigor in relation to yield and nitrogen response in the rice plant. Jpn. J. Breed. 19:277–285.
  • Maruyama, S., Miyazato, K. and Nose, A. 1987. Studies on matter production of Fx hybrid in rice. Jpn. J. Crop Sci. 51 (Extra issue 2) : 85–86.
  • Peng, S., Yang, J., Garcia, F.V., Laza, R.C., Visperas, R.M., Sanico, A.L., Chavez, A.Q. and Virmani, S.S. 1998. Physiology-based crop management for yield maximization of hybrid rice. In S.S. Virmani, E.A. Siddiq and K. Muralidhar-an, eds., Advances in Hybrid Rice Technology. IRRI. 157–176.
  • Ponnuthurai, S., Virmani, S.S. and Vergara, B.S. 1984. Comparative studies on the growth and grain yield of some Fx rice (Oryza sativa L.) hybrids. Philipp. J. Crop Sci. 9 : 183–193.
  • Sen, P.K, and Mitra, G.N. 1958. Inheritance of photoperiodic reaction in rice. Nature 182 : 119–120.
  • Song, X., Agata, W., and Kawamitsu, Y. 1990. Studies on dry matter and grain production of Fx hybrid rice in China. I. Characteristics of dry matter production. Jpn. J. Crop Sci. 59 : 19–28.
  • Yamada, N. 1963. Spacing. In M. Matsubayashi, T. Nomoto, T. Takase and N. Yamada eds., Theory and Practice of Rice Growing. Ministry Agric.For. Tokyo, 172–182.
  • Yamauchi, M. 1994. Physiological bases of higher yield potential in Fj hybrids. In S.S. Virmani ed., Hybrid Rice Technology : New Developments and Future Prospects. IRRI, 71–80.
  • Yamauchi, M. and Yoshida, S. 1985. Heterosis in net photosynth-etic rate, leaf area, tillering, and some physiological characters of 35 Fi rice hybrids. J. Exp. Bot. 36 : 274–278.
  • Ying, J., Peng, S., He, Q.R., Yang, H., Yang, CD., Visperas, R.M. and Gassman, K.G. 1998. Comparison of high-yield rice in tropical and subtropical environments. I. Determinants of grain and dry matter yields. Field Crops Res. 57 : 71–84.