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Crop Physiology & Ecology

Growth of Rice (Oryza Sativa L.) Cultivars Under Upland Conditions With Different Levels of Water Supply3. Root System Development, Soil Moisture Changeand Plant Water Status

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Pages 3-13 | Received 26 Aug 2005, Accepted 19 May 2006, Published online: 03 Dec 2015

References

  • Abe, J. and Morita, S. 1994. Growth Direction of Nodal Roots In Rice–Its Contribution To Root-System Formation. Plant Soil 165 : 333–337.
  • Angus, J.F., Hasegawa, S., Hsiao, T.C., Liboon, P.S. and Zandstra, H.G. 1983. The Water B alance of Post Monsoonal Dryland Crops. J. Agric. Sci. 101 : 699–710.
  • Araki, H. and Iijima, M. 1998. Rooting Node of Deep Root In Rice and Maize Grown In A Long Tube. Plant Prod. Sci. 1 : 242–247.
  • Araki, H., Hirayama, M., Hirasawa, H. and Iijima, M. 2000. Which Roots Penetrate The Deepest In Rice and Maize Root Systems? Plant Prod. Sci. 3 : 281–288.
  • Araki, H. and Iijima, M. 2001. Deep Rooting In Winter Wheat : Rooting Nodes of Deep Roots In Two Cultivars With Deep and Shallow Root Systems. Plant Prod. Sci. 4 : 215–219.
  • Araki, H., Morita, S., Tatsumi, J. and Iijima, M. 2002. Physiolmorphological Analysis On Axile Root Growth In Upland Rice. Plant Prod. Sci. 5 : 286–293.
  • Asseng, S., Ritchie, J.T., Smucker, A.J.M. and Robertson, M.J. 1998. Root Growth and Water Uptake During Water Deficit and Recovering In Wheat. Plant Soil 201 : 265–273.
  • Azhiri-Sigari, T.A., Yamauchi, A., Kamoshita, A. and Wade, L.J. 2000. Genotypic Variation In Response of Rainfed Lowland Rice To Drought and Rewatering. 2. Root Growth. Plant Prod. Sci. 3 : 180–188.
  • Beyrouty, C.A., Wells, B.R., Norman, R.J., Marvel, J.N. and Jaroot, P. 1988. Growth Dynamics of A Rice Cultivar Grown At 2 Locations. Agron. J. 80 : 1001–1004.
  • Boonjung, H. 1993. Modelling Growth and Yield of Upland Rice Grown Under Water Limiting Conditions. Phd Thesis, The University of Queensland, Brisbane, Australia. 201.
  • Champoux, M.C., Wang, G., Sarkarung, S., Mackill, D.J., O’Toole, J.C., Huang, N. and Mccouch, S.R. 1995. Locating Genes Associated With Root Morphology and Drought Avoidance In Rice Via Linkage To Molecular Markers. Theor. Appl. Genet. 90 : 969–981.
  • Ephrath, J.E., Silberbush, M. and Berliner, P.R. 1999. Calibration of Minirhizotron Readings Against Root Length Density Data Obtained From Soil Cores. Plant Soil 209 : 201–208.
  • Fukai, S. and Inthapan, P. 1988. Growth and Yield of Rice Cultivars Under Sprinkler Irrigation In South-Eastern Queensland : 3. Water Extraction and Plant Water Relations ― Comparison With Maize and Grain Sorghum―. Aust. J. Exp. Agric. 28 : 249–252.
  • Garrity, D.P. and O’Toole, J.C. 1994. Screening Rice For Drought Resistance At The Reproductive Phase. Field Crops Res. 39 : 99–110.
  • Gaskin, G.J. and Miller, J.D. 1996. Measurement of Soil Water Content Using A Simplified Impedance Measuring Technique. J. Agr. Eng. Res. 63 : 153–160.
  • Hirasawa, T., Takei, M. and Ishihara, K. 1995. A Minirhizotron Method For Measuring Root System of Soybean Plant Growing In The Field. Jpn. J. Crop Sci. 64 : 78–85.
  • Hirasawa, H., Nemoto, H., Suga, T., Ishihara, M., Hirayama, M., Okamoto, K. and Miyamoto, M. 1998. Breeding of A New Upland Rice Variety “Yumenohatamochi” With High Drought Resistance and Good Eating Quality. Breed. Sci. 48 : 415–419.
  • Ingram, K.T., Bueno, F.D., Namuco, O.S., Yambao, E.B. and Beyrouty, C.A. 1994. Rice Root Traits For Drought Resistance and Their Genetic Variation. In G.J.D. Kirk Ed., Rice Root : Nutrient and Water Use. International Rice Research Institute, Los BañOs, Philippines. 67–77.
  • Inthapan, P. and Fukai, S. 1988. Growth and Yield of Rice Cultivars Under Sprinkler Irrigation In South-Eastern Queensland : 2.Comparison With Maize and Grain Sorghum Under Wet and Dry Conditions. Aust. J. Exp. Agric. 28 : 243–248.
  • Jongdee, B., Fukai, S. and Cooper, M. 2002. Leaf Water Potential and Osmotic Adjustment As Physiological Traits To Improve Drought Tolerance In Rice. Field Crops Res. 76 : 153–163.
  • Kamoshita, A., Wade, L.J. and Yamauchi, A. 2000. Genotypic Variation In Response of Rainfed Lowland Rice To Drought and Rewatering. 3. Water Extraction During The Drought Period. Plant Prod. Sci. 3 : 189–196.
  • Kamoshita, A., Wade, L.J., Ali, M.L., Pathan, M.S., Zhang, J., Sarkarung, S. and Nguyen, H.T. 2002A. Mapping Qtls For Root Morphology of A Rice Population Adapted To Rainfed Lowland Conditions. Theor. Appl. Genet. 104 : 880–893.
  • Kamoshita, A., Zhang, J., Siopongico, J., Sarkarung, S., Nguyen, H.T. and Wade, L.J. 2002B. Effects of Phenotyping Environment On Identification of Quantitative Trait Loci For Rice Root Morphology Under Anaerobic Conditions. Crop Sci. 42 : 255–265.
  • Kamoshita, A., Rodriguez, R., Yamauchi, A. and Wade, L.J. 2004. Genotypic Variation In Response of Rainfed Lowland Rice To Prolonged Drought and Rewatering. Plant Prod. Sci. 7 : 406–420.
  • Kato, Y., Kamoshita, A., Yamagishi, J. and Abe, J. 2006A. Growth of Rice (Oryza Sativa L.) Cultivars Under Upland Conditions With Different Levels of Water Supply. 1. Nitrogen Uptake and Dry Matter Production. Plant Prod. Sci. 9 : 422–434.
  • Kato, Y., Kamoshita, A. and Yamagishi, J. 2006B. Growth of Rice (Oryza Sativa L.) Cultivars Under Upland Conditions With Different Levels of Water Supply. 2. Grain Yield. Plant Prod. Sci. 9 : 435–445.
  • Kato, Y., Kamoshita, A., Abe, J. and Yamagishi, J. 2007. Improvement of Rice (Oryza Sativa L.) Growth In Upland Conditions With Deep Tillage and Mulch. Soil Till. Res. 92 : 30–44.
  • Kobata, T., Okuno, T. and Yamamoto, T. 1996. Contributions of Capacity For Soil Water Extraction and Water Use Efficiency To Maintenance of Dry Matter Production In Rice Subjected To Drought. Jpn. J. Crop Sci. 65 : 652–662.
  • Kondo, M., Maddala, V.R. and Aragones, D.V. 2000. Characteristics of Root Growth and Water Uptake From Soil In Upland Rice and Maize Under Water Stress. Soil Sci. Plant Nutr. 46 : 721–732.
  • Kondo, M., Pablico, P.P., Aragones, D.V., Agbisit, R., Abe, J., Morita, S. and Courtois, B. 2003. Genotypic and Environmental Variations In Root Morphology In Rice Genotypes Under Upland Field Conditions. Plant Soil 255 : 189–200.
  • Lilley, J.M. and Fukai, S. 1994A. Effect of Timing and Severity of Water Deficit On Four Diverse Rice Cultivars : 1. Rooting Pattern and Soil Water Extraction. Field Crops Res. 37 : 205–213.
  • Lilley, J.M. and Fukai, S. 1994B. Effect of Timing and Severity of Water Deficit On Four Diverse Rice Cultivars : 3. Phenological Development, Crop Growth and Grain Yield. Field Crops Res. 37 : 225–234.
  • Mambani, B. and Lal, R. 1983. Response of Upland Rice Varieties To Drought Stress. 2. Experimenting Rice Varieties By Means of Variable Moisture Regimes Along A Toposequence. Plant Soil 73 : 73–94.
  • Manabe, T., Hirayama, M., Miyamoto, M., Okamoto, K., Okano, K. and Ishii, T. 2005. Mapping of Quantitative Trait Loci Associated With Deep Root Dry Weight In Rice. In Proceedings of 10Th International Congress of Sabrao, 22–23 August 2005, Tsukuba, Japan. D-18.
  • Maruyama, S., Kabaki, N. and Tajima, K. 1985. Water Consumption In Japonica and Indica Rice Varieties. Jpn. J. Crop Sci. 54 : 32–38.
  • Merrill, S.D. and Upchurch, D.R. 1994. Converting Root Numbers Observed At Minirhizotrons To Equivalent Root Length Density. Soil Sci. Soc. Am. J. 58 : 1061–1067.
  • Mitchell, J.H., Siamhan, D., Wamala, M.H., Risimeri, J.B., Chinyamakobvu, E., Henderson, S.A. and Fukai, S. 1998. The Use of Seedling Leaf Death Score For Evaluation of Drought Tolerance of Rice. Field Crops Res. 55 : 129–139.
  • Nemoto, K., Morita, S. and Baba, T. 1995. Shoot and Root Development In Rice Related To The Phyllochron. Crop Sci. 35 : 24–29.
  • Oyanagi, A., Nakamoto, T. and Wada, M. 1993. Relationship Between Root Growth Angle of Seedlings and Vertical Distribution of Roots In The Field In Wheat Cultivars. Jpn. J. Crop Sci. 62 : 565–570.
  • Passioura, J.B. 1982. The Role of Root System Characteristics In The Drought Resistance of Crop Plants. In O’Toole, J.C. Ed., Drought Resistance In Crops With The Emphasis On Rice. International Rice Research Institute, Los BañOs, Philippines. 71–82.
  • Price, A.H., Steele, K.A., Gorham, J., Bridges, J.M., Moore, B.J., Evans, J.L., Richardson, P. and Jones, R.G.W. 2002. Upland Rice Grown In Soil-Filled Chambers and Exposed To Contrasting Water-Deficit Regimes 1. Root Distribution, Water Use and Plant Water Status. Field Crops Res. 76 : 11–24.
  • Saini, H.S. and Westgate, M.E. 2000. Reproductive Development In Grain Crops During Drought. Adv. Agron. 68 : 59–96.
  • Samson, B.K. and Sinclair, T.R. 1994. Soil Core and Minirhizotron Comparison For The Determination of Root Length Density. Plant Soil 161 : 225–232.
  • Sibounheuang, V., Basnayake, J., Fukai, S. and Cooper, M. 2001. Leaf–Water Potential As A Drought Resistance Character In Rice. In Fukai. and Basnayake, J. Eds., Increased Lowland Rice Production In The Mekong Region, Vol. 101. Aciar Proceedings. Aciar, Canberra, Australia. 86–95.
  • Tennant, D. 1975. A Test of A Modified Line Intersect Method of Estimating Root Length. J. Ecol. 63 : 995–1001.
  • Tolk, J.A., Howell, T.A., Steiner, J.L. and Evett, S.R. 1997. Grain Sorghum Growth, Water Use, and Yield In Contrasting Soils. Agric. Water Manage. 35 : 29–42.
  • Urasaki, K., Kamoshita, A., Abe, J. and Morita, S. 2002. Effects of Soil Manipulation Methods On The Growth of Rice Under Rainfed Upland and Lowland Conditions. 2. Soil Physical Properties and Root System Development. Jpn. J. Crop Sci. 71 (Extra Issue 1) : 194–195.
  • Yamagishi, J., Nakamoto, T. and Richner, W. 2003. Stability and Variability of Wheat and Maize Biomass In A Small Field Managed Under Two Contrasting Tillage Systems Over 3 Years. Field Crops Res. 81 : 95–108.
  • Yambao, E.B., Ingram, K.T. and Real, J.G. 1992. Root Xylem Influence On The Water Relations and Drought Resistance of Rice. J. Exp. Bot. 43 : 925–932.
  • Yoshida, S. and Hasegawa, S. 1982. The Rice Root System : Its Development and Function. In O’Toole, J.C. Ed., Drought Resistance In Crops With The Emphasis On Rice. International Rice Research Institute, Los BañOs, Philippines. 97–114.