By D S Brar; B Hardy
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Additional resources for Advances in rice genetics
Genetics of the thermosensitive genic male sterility trait in rice. Int. Rice Res. Notes 23(2):9-10. Li Rongbai, Pandey MP. 1999. ). J. Genet. Breed. 53:11-17. Maruyama K, Araki H, Kato H. 1991. Thermosensitive genic male sterility induced by irradiation. In: Rice genetics II. Manila (Philippines): International Rice Research Institute. p 227235. Pandey MP, Li Rongbai, Singh JP, Mani SC, Singh H, Singh S. 1998. The identification and nature of a new thermosensitive genic male sterility source, UPRI 95-140 in rice.
Tandojam (Pakistan): AEARC. p 207-239. Epstein E, Kingsbury RW, Norlyn JD, Rush DW. 1979. Production of food crops and other biomass by seawater culture. In: Hollaender A, Aller JC, Epstein E, San Pietro A, Zaborsky OR, editors. The biosaline concept: an approach to the utilization of underexploited resources. New York: Plenum. p 7779. Yeo AR, Flowers TJ. 1984. Mechanisms of salinity resistance in rice and their role as physiological criteria in plant breeding. In: Staples RC, Toenniessen GH, editors.
Growth and yield of japonica-indica hybrid rice. Bull. Hokuriku Natl. Agric. Exp. Stn. 34:111-139. Maruyama K. 1989. Hybrid rice breeding. Nogyo Gijutsu 44:183188. ) Shinjo C. 1975. Genetic studies of cytoplasmic male sterility and fertility restoration in rice. Sci. Bull. Coll. Univ. Ryukyus 22:157. aN level = standard (90 kg ha–1 ), ripening condition for 1994 = hot, 1995 = medium, 1996 = cool. Table 2. 6 (100) Notes aN level = standard (90 kg ha–1 ). THR3 = ms-TML1/Ukei 581 (japonica-indica hybrid).
Advances in rice genetics by D S Brar; B Hardy