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Agronomy & Crop Ecology

SPAD Values and Nitrogen Nutrition Index for the Evaluation of Rice Nitrogen Status

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Pages 81-92 | Received 30 Apr 2013, Accepted 03 Aug 2013, Published online: 03 Dec 2015

References

  • Bélanger, G., Gastal, F., 2000. Nitrogen utilization by forage grasses. Can. J. Plant Sci. 80: 11-20.
  • Bélanger, G., Walsh, J.R., Richards, J.E., Milburn, P.H. and Ziadi, N. 2001. Critical nitrogen curve and nitrogen nutrition index for potato in eastern Canada. Am. J. Potato Res. 78: 355-364.
  • Bélanger, G., Walsh, J.R., Richards, J.E., Milburn, P.H. and Ziadi, N. 2003. Critical petiole nitrate concentration of two processing potato cultivars in eastern Canada. Am. J. Potato Res. 80: 251-262.
  • Colnenne, C., Meynard, J.M., Reau, R., Justes, E., and Merrien, A. 1998. Determination of a critical nitrogen dilution curve for winter oilseed rape, Ann. Bot. 81: 311-317.
  • Colnenne, C., Meynard, J.M., Roche, R., and Reau. R. 2002. Effects of nitrogen deficiencies on autumnal growth of oilseed rape. Eur. J. Agron. 17: 11-28.
  • Debaeke, P., Rouet, P. and Justes, E. 2006. Relationship between the normalized SPAD index and the nitrogen nutrition index: application to durum wheat. J. Plant Nutr. 29: 75-92.
  • Duchenne, T., Machet, J.M. and Martin, M. 1997. Potatoes. In G. Lemaire ed., Diagnosis of the Nitrogen Status in Crops. Springer-Verlag, Berlin, Germany. 119-130.
  • Duru, M. 2002. Evaluation of chlorophyll meter to assess nitrogen status of cocksfoot sward. J. Plant Nutr. 25: 275-286.
  • Errecart, P.M., Agnusdei, M.G., Lattanzi, F.A. and Marino, M.A. 2012. Leaf nitrogen concentration and chlorophyll meter readings as predictors of tall fescue nitrogen nutrition status. Field Crops Res. 129: 46-58.
  • Esfahani, M., Ali Abbasi, H.R., Rabiei, B. and Kavousi, M. 2008. Improvement of nitrogen management in rice paddy fields using chlorophyll meter (SPAD). Paddy Water Environ. 6: 181-188.
  • Fernandez, C.J., Mclnnes, K.J. and Cothren, J.T. 1996. Water status and leaf area production in water- and nitrogen-stressed cotton. Crop Sci. 36: 1224-1233.
  • Greenwood, D.J., Lemaire, G., Gosse, G., Cruz, P., Draycott, A. and Neeteson, J.J. 1990. Decline in percentage N of C3 and C4 crops with increasing plant mass. Ann. Bot. 66: 425-436.
  • Hawkins, J.A., Sawyer, J.E., Barker, D.W. and Lundvall, J.P. 2007. Using relative chlorophyll meter values to determine nitrogen application rates for corn. Agron. J. 99: 1034-1040.
  • Hoel, B.O. and Solhaug, K.A. 1998. Effect of irradiance on chlorophyll estimation with the Minolta SPAD-502 leaf chlorophyll meter. Ann. Bot. 82: 389-392.
  • Huang, H.F., Zhao, H.Y., Guan, Y.Z. and Ge, C.Q. 2006. Cultivated characters and keys of Hang43 (late japonica). Shanghai Agric. Sci. Technol. 3: 20-21.
  • Huang, J., He, F., Cui, K., Buresh, R.J., Xu, B., Gong, W. and Peng, S. 2008. Determination of optimal nitrogen rate for rice genotypes using a chlorophyll meter. Field Crops Res. 105: 70-80.
  • Hussain, F., Bronson, K.F., Singh, Y., Singh, B. and Peng, S.B. 2000. Use of chlorophyll meter sufficiency indices for nitrogen management of irrigated rice in Asia. Agron. J. 92: 875-879.
  • Jiang, J.P., Yang, J.P., Yang, Z.C., Zou, J.L. and Ge, C.S. 2012. Dynamic characteristics of SPAD value of rice leaf and adjacent leaf under different N application rates. J. ZheJiang Univ. (Agric. Life Sci.) 38: 166-174.
  • Ju, X.T., Xing, G.X., Chen, X.P., Zhang, S.L., Zhang, L.J., Liu, X.J., Cui, Z.L., Yin, B., Christie, P., Zhu, Z.L. and Zhang, F.S. 2009. Reducing environmental risk by improving N management in intensive Chinese agricultural systems. Proceedings of the National Academy of Sciences of the United States of America 106: 3041-3046.
  • Jung, S., Rickert, D.A., Deak, N.A., Aldin, E.D., Recknor, J., Johnson, L.A. and Murphy, P.A. 2003. Comparison of Kjeldahl and Dumas methods for determining protein concentrations of soybean products. J. Am. Oil Chem. Soc. 80: 1169-1173.
  • Justes, E., Mary, B., Meynard, J.M., Machet, J.M. and Thelier-Huché, L.h. 1994. Determination of a critical nitrogen dilution curve for winter wheat crops. Ann. Bot. 74: 397-407.
  • Justes, E., Jeuffroy, M.H. and Mary, B. 1997. Wheat, barley, and durum wheat. In G. Lemaire ed., Diagnosis of the Nitrogen Status in Crops. Springer Verlag., Berlin. 73-91.
  • Lemaire, G. and Salette, J. 1984. Relationship between growth and nitrogen uptake in a pure grass stand: I. Environmental effects. Agronomie 4: 423-430.
  • Lemaire, G. and Chartier, M. 1992. Relationship between growth dynamics and nitrogen uptake for individual sorghum plants growing at different plant densities. Proceedings of the second ESA Congress, Warwich University, England. 98-99.
  • Lemaire, G., Jeuffroy, M.H. and Gastal, F. 2008. Diagnosis tool for plant and crop N status in vegetative stage theory and practices for crop N management. Eur. J. Agron. 28: 614-624.
  • Li, G.H., Xue, L.H., You, J. Wang, S.H., Oing, Y.F., Wu, H. and Yang, W.X. 2007. Spatial distribution of leaf N content and SPAD value and determination of the suitable leaf for N diagnosis in rice. Sci. Agric. Sin. 40: 1127-1134.
  • Li, J.W., Yang, J.P., Fei, P.P., Song, J.L., Li, D.S., Ge, C.S. and Chen, W.Y. 2009. Responses of rice leaf thickness, SPAD readings and chlorophyll a/b ratios to different nitrogen supply rates in paddy field. Field Crops Res. 114: 426-432.
  • Li, J.W., Yang, J.P., Li, D.S., Fei, P.P., Guo, T.T., Ge, C.S. and Chen, W.Y. 2011. Chlorophyll meter’s estimate of weight-based nitrogen concentration in rice leaf is influenced by leaf thickness. Plant Prod. Sci. 14: 177-183.
  • Lin, F.F., Qiu, L.F., Deng, J.S., Shi, Y.Y., Chen, L.S. and Wang, K. 2010. Investigation of SPAD meter-based indices for estimating rice nitrogen status. Comput. Electron. Agric. 71: 60-65.
  • Mary, B. 1997. N hazards to crops and environment. In G. Lemaire ed., Diagnosis of the Nitrogen Status in Crops. Springer Verlag, Berln. 229-236.
  • Ney, B., Doré, T. and Sagan, M. 1997. The nitrogen requirement of major agricultural crops: grains legumes. In G. Lemaire ed., Diagnosis on the Nitrogen Status in Crops. Springer Verlag, Heidelberg. 107-117.
  • Peng, S.B., Garcia, F.V., Laza, R.C. and Cassman, K.G. 1993. Adjustment for specific leaf weight improves chlorophyll meter’s estimate of rice leaf nitrogen content. Agron. J. 85: 987-990.
  • Peng, S.B., Laza, R.C., Garcia, F.C. and Cassman, K.G. 1995. Chlorophyll meter estimates leaf area-based N concentration of rice. Commun. Soil Sci. Plant Anal. 26: 927-935.
  • Peng, S.B., Garcia, F.V., Laza, R.C., Sanico, A.L., Visperas, R.M. and Cassman, K.G. 1996. Increased N-use efficiency using a chlorophyll meter on high-yielding irrigated rice. Field Crops Res. 47: 243-252.
  • Peng, S.B., Huang, J.L., Zhong, X.H., Yang, J.C., Wang, G.H., Zou, Y.B., Zhang, F.S., Zhu, Q.S., Buresh, R. and Witt, C. 2002. Challenge and opportunity in improving fertilizer-nitrogen use efficiency of irrigated rice in China. Agric. Sci. China 1: 776-785.
  • Peng, S.B., Buresh, R.J., Huang, J.L., Yang, J.C., Zou, Y.B., Zhong, X.H., Wang, G.H. and Zhang, F.S. 2006. Strategies for overcoming low agronomic nitrogen use efficiency in irrigated rice systems in China. Field Crops Res. 96: 37-47.
  • Piekielek, W.P., Fox, R.H., Toth, J.D. and Macneal, K.E. 1995. Use of a chlorophyll meter at the early dent stage of corn to evaluate nitrogen sufficiency. Agron. J. 87: 403-408.
  • Plénet,, D. and Cruz, P. 1997. The nitrogen requirement of major agricultural crops: maize and sorghum. In G. Lemaire ed., Diagnosis on the Nitrogen Status in Crops. Springer Verlag, Heidelberg. 93-106.
  • Plénet, D. and Lemaire, G. 2000. Relationships between dynamics of nitrogen uptake and dry matter accumulation in maize crops: Determination of critical N concentration. Plant Soil 216: 65-82.
  • Prost, L. and Jeuffroy, M.H. 2007. Replacing the nitrogen nutrition index by the chlorophyll meter to assess wheat N status. Agron. Sustain. Dev. 27: 321-330.
  • Scharf, P. C., Brouder, S. M. and Hoeft, R.G. 2006. Chlorophyll meter readings can predict nitrogen need and yield response of corn in the North-Central USA. Agron. J. 98: 655-665.
  • Sheehy, J.E., Dionora, M.J.A., Mitchell, P.L., Peng, S., Cassman, K.G., Lemaire G. and Williams, R.L. 1998. Critical concentrations: implications for high yielding rice (Oryza sativa L.) cultivars in tropics. Field Crops Res. 59: 31-41.
  • Siband, P., Loyce, C., Witt, C. and Dingkuhn, M. 2001. Evaluer le statut azote du riz irrigué. In E. Malézieux, G. Trébuil and M. Jaeger eds., Modélisation des Agroécosystémes et Aide aá la Decision [Evaluation of Nitrogen Status in Irrigated Rice]. 95-106.
  • Singh, V., Singh, Y., Singh, B., Thind, H.S., Kumar, A. and Vashistha, M. 2011. Calibrating the leaf colour chart for need based fertilizer nitrogen management in different maize (Zea mays L.) genotypes. Field Crops Res. 120: 276-282.
  • Tei, F., Benincasa, P. and Guiducci, M. 2002. Critical nitrogen concentration in processing tomato. Eur. J. Agron. 18: 45-55.
  • Thiyagarajan T.M., Geetha, S.A. and Balasubramanian, V. 2000. Assessing genotypic variation in N requirements of rice with a chlorophyll meter. Int. Rice Res. Notes. 25: 23-24.
  • Ulrich, A. 1952. Physiological bases for assessing the nutritional requirements of plants. Annu. Rev. Plant Physiol. 3: 207-228.
  • Varvel, G.E., Schepers, J.S. and Francis, D.D. 1997. Ability for inseason correction of nitrogen deficiency in corn using chlorophyll meters. Soil Sci. Soc. Am. J. 61: 1233-1239.
  • Vouillot, M.O., Huet, P. and Boissard, P. 1998. Early detection of N deficiency in a wheat crop using physiological and radiometric methods. Agronomie 18: 117-130.
  • Wang, G.H., Dobermann, A., Witt, C., Sun, Q.Z. and Fu, R.X. 2001. Performance of site-specific nutrient management for irrigated rice in southeast China. Agron. J. 93: 869-878.
  • Wang, S.H., Zhu, Y., Jiang, H.D. and Cao, W.X. 2006. Positional differences in nitrogen and sugar concentrations of upper leaves relate to plant N status in rice under different N rates. Field Crop Res. 96: 224-234.
  • Waskom, R.M., Westfall, D.G., Spellman, D.E. and Soltanpour, P.N. 1996. Monitoring nitrogen status of corn with a portable chlorophyll meter. Commun. Soil Sci. Plant Anal. 27: 545-560.
  • Wu, F.B., Wu, L.H. and Xu, F.H. 1998. Chlorophyll meter to predict nitrogen sidedress requirements for short-season cotton (Gossypium hirsutum L.). Field Crops Res. 56: 309-314.
  • Yan, D.Z. 2011. The research on paddy nitrogen absorption and utilization in Tai lake region. Jiangsu Agric. Sci. 39(6): 119-121.
  • Zhao, D. and Oosterhuis, D.M. 2000. Nitrogen application effect on leaf photosynthesis, nonstructural carbohydrate concentrations and yield of field-grown cotton. In D.M. Oosterhuis ed., AAES Special Report. Proceedings of the 2000 Arkansas Cotton Research 198: 69-71.
  • Ziadi, N., Bélanger, G., Cambouris, A.N., Tremblay, N., Nolin, M.C. and Claessens, A. 2007. Relationship between P and N concentrations in corn. Agron. J. 99: 833-841.
  • Ziadi, N., Brassard, M., Bélanger, G., Claessens, A., Tremblay, N., Cambouris, A.N., Nolin, M.C. and Parent, L.E. 2008. Chlorophyll Measurements and Nitrogen Nutrition Index for the Evaluation of Corn Nitrogen Status. Agron. J. 100: 1264-1273.