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Yoshida - 1981 - Fundamentals of Rice Crop Science

Yoshida - 1981 - Fundamentals of Rice Crop Science

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256 FUNDAMENTALS OF RICE CROP SCIENCE<br />

ISHIKAWA, M. 1963. Studies on application <strong>of</strong> green manures to rice Toyama Agric. Exp. Stn., Spec.<br />

Rep. 5. 140 p.<br />

ISHIZUKA, Y. 1965. Nutrient uptake at different stages <strong>of</strong> growth. Pages 199–217 in International <strong>Rice</strong><br />

Research Institute. The mineral nutrition <strong>of</strong> the rice plant. Proceedings <strong>of</strong> a symposium at the<br />

International <strong>Rice</strong> Research Institute, February, 1964. The Johns Hopkins Press, Baltimore, Maryland.<br />

ISHIZUKA, Y. 1969. Engineering for higher yields. Pages 15–25 in J.D. Eastin, F.A. Haskins, C.Y.<br />

Sullivan, C.H.M. van Bavel, eds. Physiological aspects <strong>of</strong> crop yield. American Society <strong>of</strong><br />

Agronomy, <strong>Crop</strong> <strong>Science</strong> Society <strong>of</strong> America, Madison, Wisconsin.<br />

ISHIZUKA, Y. 1971. Physiology <strong>of</strong> the rice plant. Adv. Agron. 23:241–315.<br />

ISHIZUKA, Y., and A. TANAKA. 1958. Nutrio-physiology <strong>of</strong> the rice plant. Agric. Hortic. (Tokyo)<br />

33:1631-1634.<br />

ISHIZUKA, Y., A. TANAKA, and S. FUJITA. 1961. Inorganic nutrition <strong>of</strong> rice plant. 6. Effect <strong>of</strong> iron,<br />

manganese, and copper level in culture solution on yields and chemical composition <strong>of</strong> the plant. J.<br />

Sci. Soil Manure, Jpn. 32:97–100.<br />

ISHIZUKA, Y., and A. TANAKA. 1969. Nutrio-physiology <strong>of</strong> the rice plant. Yokendo Publ. Co. Ltd.,<br />

Tokyo. 364 p.<br />

ISHIZUKA, Y., Y. SHIMAZAKI, A. TANAKA, T. SATAKE, and T. NAKAYAMA. 1973. <strong>Rice</strong> growing in a<br />

cool environment. Food and Fertilizer Technology Center, Asian and South Pacific Council, Taipei,<br />

Taiwan. 98 p.<br />

ISRANKURA, V. 1966. A study on rice production and consumption in Thailand. Ministry <strong>of</strong> Agriculture,<br />

Bangkok, Thailand. 54 p.<br />

ITO, H., and K. HAYASHI. 1969. The changes in paddy field rice varieties in Japan. Pages 13–23 in<br />

Proceedings <strong>of</strong> symposium on optimization <strong>of</strong> fertilizer effect in rice cultivation. September 8–10,<br />

Tokyo, Japan. Agriculture, Forestry, and Fisheries Research Council, Ministry <strong>of</strong> Agriculture and<br />

Forestry, Tokyo.<br />

IWATA, T. 1975. Studies on the occurrence <strong>of</strong> “Tomehagare”, a newly found physiological disease <strong>of</strong><br />

rice and its preventive measures. Spec. Bull. Fukui Agric. Exp. Stn. Jpn. 6:l–66.<br />

JACKSON, B.R., A. YANTASAST, C. PRECHACHART, M.S. CHOWDHURY. and S.M.H. ZAMAN. 1972.<br />

Breeding rice for deep water areas. Pages 517-528 in International <strong>Rice</strong> Research Institute. <strong>Rice</strong><br />

breeding. Los Baños, Philippines.<br />

JACKSON, W.A., and R.S. VOLK. 1970. Photorespiration. Ann. Rev. Plant Physiol. 21:385–432.<br />

JENNINGS, P.R. 1964. Plant type as a rice breeding objective. <strong>Crop</strong> Sci. 4:13–15.<br />

JENNY, H., and R. OVERSTREET. 1938. Contact effects between plant roots and soil colloid. Proc. Natl.<br />

Sci. 24:384–392.<br />

JENSEN, C.R., L.H. STOLZY, and J. LETEY. 1967. Tracer studies <strong>of</strong> oxygen diffusion through roots <strong>of</strong><br />

barley, corn and rice. Soil Sci. 103:23-29.<br />

JOHN, C.D., V. LIMPINUNTANA, and H. GREENWAY. 1974. Adaptation <strong>of</strong> rice to anaerobiosis. Aust. J.<br />

Plant Physiol. 1:513–520.<br />

JOHN, C.D., and H. GREENWAY. 1976. Alcoholic fermentation and activity <strong>of</strong> some enzymes in rice<br />

roots under anaerobiosis. Aust. J. Plant Physiol. 3:325–336.<br />

JOSHI, M.M., I.K.A. IBRAHIM, and J.P. HOLLIS. 1975. Hydrogen sulfide: Effects on the physiology <strong>of</strong><br />

rice plants and relation to straighthead disease. Phytopathology 65: 1165–1170.<br />

JULIANO, B.O. 1972. The rice caryopsis. Pages 16–74 in D.F. Houston. ed. <strong>Rice</strong> chemistry and<br />

technology. American Association <strong>of</strong> Cereal Chemists, Inc., St. Paul. Minnesota.<br />

JUNGK, A., and S.A. BARBER. 1974. Phosphate uptake rate <strong>of</strong> corn roots as related to the proportion <strong>of</strong><br />

the roots exposed to phosphate. Agron. J. 66:554–557.<br />

JUNTHARASRI, S. 1977. Estimation <strong>of</strong> potential evaporation based on climatological data and its relation<br />

to pan evaporation in Thailand. MS thesis, Asian Institute <strong>of</strong> Technology, Bangkok. (unpubl.)<br />

KANDA, M. 1975. Efficiency for solar energy utilization. Pages 187–198 in <strong>Crop</strong> productivity and<br />

solar energy utilization in various climates in Japan. JIBP Synthesis. Vol. 11, Murata, ed.<br />

KATO, I., Y. NAITO, T. TANIGUCHI, and F. KAMOTA. 1965 a. Studies on the evapotranspiration <strong>of</strong><br />

crops. 11. On the transpiration amount <strong>of</strong> paddy rice plants in paddy field and upland field conditions.<br />

Bull. Tokai-Kinki Natl. Agric. Exp. Stn. 12:39–63.<br />

KATO, I., Y. NAITO, T. TANIGUCHI, and F. KAMOTA. 1965 b. Relation between transpiration amount<br />

and leaf area index on various crops. Res. Prog. Rep. Tokai-Kinki Natl. Agric. Exp. Stn. 2:14–18.<br />

KAWAGUCHI, K., and K. KYUMA. 1977. Paddy soils in tropical Asia. The University Press <strong>of</strong> Hawaii,<br />

Honolulu. 258 p.<br />

KAWANO, K., and A. TANAKA. 1968. Growth duration in relation to yield and nitrogen response in the<br />

rice plant. Jpn. J. Breed. 18:46–52.

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