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Original Articles

Nitrogen doses on physiological attributes and yield of sugarcane grown under subsurface drip fertigation

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Pages 227-238 | Received 03 Apr 2014, Accepted 03 Jun 2016, Published online: 07 Dec 2016

References

  • Alfonsi, R. R., M. J. Pedro Junior, O. Brunini, and V. Barbieri. 1987. Climatic conditions for sugarcane. In: Sugarcane: Cultivation and Use, ed. S.B. Paranhos, pp. 42–55. Campinas, Brazil: Fundação Cargill ( in Portuguese).
  • Baker, N., and E. Rosenqvist. 2004. Applications of chlorophyll fluorescence can improve crop production strategies: An examination of future possibilities. Journal of Experimental Botany 55: 1607–1621.
  • Bartels, D., and R. Sunkar. 2005. Drought and salt tolerance in plants. Critical Reviews in Plant Sciences 24: 23–58.
  • Dalri, A. B., and R. L. Cruz. 2008. Productivity of sugarcane fertigation with NK by subsurface drip. Engenharia Agrícola 28: 516–524 ( in Portuguese).
  • Dalri, A. B., R. L. Cruz, C. J. B. Garcia, and L. H. Duenhas. 2008. Subsurface drip irrigation on sugarcane yield and quality. Irriga 13: 1–11 ( in Portuguese).
  • Fontes, R. V., M. P. Santos, A. R. Falqueto, and D. M. Silva. 2008. Nitrate reductase activity and chlorophyll a fluorescence in papaya. Revista Brasileira de Fruticultura 30: 251–254 ( in Portuguese).
  • Force, L., C. Critchley, and J. J. S. Van Rensen. 2003. New fluorescence parameters for monitoring photosynthesis in plants. Photosynthesis Research 78: 17–33.
  • Gava, G. J. C., P. C O. Trivelin, M. W. Oliveira, and C. P. Penatti. 2001. Growth and accumulation of nitrogen by sugarcane cultivated in soil covered with cane trash. Pesquisa Agropecuária Brasileira 36: 1347–1354 ( in Portuguese).
  • Glaz, B., S. T. Reed, and J. P. Albano. 2008. Sugarcane response to nitrogen fertilization on a histosol with shallow water table and periodic flooding. Journal of Agronomy and Crop Science 194: 369–379.
  • Howell, T. A., and S. R. Evett. 2004. The Penman-Monteith Method. Washington, DC: USDA-Agricultural Research Service, Conservation & Production Research Laboratory.
  • Kawamitsu, Y., B. J. Nelson, and Y. Tamaki. 1999. Effects of nitrogen supply on growth characteristics and leaf photosynthesis in sugarcane. Science Bulletin of the Faculty of Agriculture 46: 1–14.
  • Kopsell, D. A., D. E. Kopsell, and J. Curran-Celentano. 2007. Carotenoid pigments in kale are influenced by nitrogen concentration and form. Journal of the Science of Food and Agriculture 87: 900–907.
  • Krause, G. H., and E. Weis. 1991. Chlorophyll fluorescence and photosynthesis: The basics. Annual Review of Plant Physiology and Plant Molecular Biology 42: 313–349.
  • Lefsrud, M. G., D. A. Kopsell, and D. E. Kopsell. 2007. Nitrogen levels influence biomass, elemental accumulations, and pigment concentrations in spinach. Journal of Plant Nutrition 30: 171–185.
  • Lichtenthaler, H. K. 1987. Chlorophylls and carotenoids: Pigments of photosynthetic biomembranes. Methods in Enzymology 148: 350–382.
  • Meschede, D. K., E. D. Velini, C. A. Carbonari, and J. R. M. Silva. 2011. Physiological alteration in sugarcane influenced by glyphosate and sulfumeturon-methyl application. Planta Daninha 29: 413–419 ( in Portuguese).
  • Muchow, R. C., M. J. Robertson, A. W. Wood, and B. A. Keating. 1996. Effect of nitrogen on the time-course of sucrose accumulation in sugarcane. Field Crops Research 47: 143–153.
  • Ng Kee Kwong, K. F., J. P. Paul, and J. Deville. 1999. Drip-fertigation - a means for reducing fertilizer nitrogen to sugarcane. Experimental Agriculture 35: 31–37.
  • Oliveira, R. A., E. Daros, J. L. C. Zambon, H. Weber, O. T. Ido, K. C. Zuffellato-Ribas, H. S. Koehler, and D. K. T. Silva. 2005. Growth development of three varieties of sugarcane, in cane-plant, in the Paraná state: Growth indexs. Scientia Agraria 6: 85–89 ( in Portuguese).
  • Onoda, Y., K. Hikosaka, and T. Hirose. 2004. Allocation of nitrogen to cell walls decreases photosynthetic nitrogen-use efficiency. Functional Ecology 18: 419–425.
  • Pedó, T., J. Borella, T. Z. Aumonde, L. Amarante, D. M. Moraes, T. B. G. A. Morselli, and C. R. Mauch. 2012. Growth of cabbage seedlings and content of photosynthetic pigments under the influence of nitrogen sources. Tecnologia e Ciência Agropecuária 6: 23–27 ( in Portuguese).
  • Phogat, V., M. A. Skewes, J. W. Cox, J. Alam, G. Grigson, and J. Simunek. 2013. Evaluation of water movement and nitrate dynamics in a lysimeter planted with an orange tree. Agricultural Water Management 127: 74–84.
  • Politycka, B., and A. Golcz. 2004. Content of chloroplast pigments and anthocyanins in the leaves of Ocimum basilicum L. depending on nitrogen doses. Folia Horticulture 16: 23–29.
  • Ramesh, P. 2000. Effect of different levels of drought during the formative phase on growth parameters and its relationship with dry matter accumulation in sugarcane. Journal of Agronomy and Crop Science 185: 83–89.
  • Roberts, T. L. 2008. Improving nutrients use efficiency. Turkish Journal of Agriculture and Forestry 32: 177–182.
  • Sandhu, H. S., R. A. Gilbert, J. M. Mccray, R. Perdomo, B. Eiland, G. Powell, and G. Montes. 2012. Relationships among leaf area index, visual growth ratings, and sugarcane yield. Journal American Society of Sugar Cane Technologists 32: 1–14.
  • Santos, C. L. V., A. Campos, H. Azevedo, and G. Caldeira. 2001. In situ and in vitro senescence induced by KCl stress: Nutritional imbalance, lipid peroxidation and antioxidant metabolism. Journal of Experimental Botany 52: 351–360.
  • Scarpari, M. S., and E. G. F. Beauclair. 2009. Physiological model to estimate the maturity of sugarcane. Scientia Agricola 66: 622–628.
  • Shekinah, D. E., B. Sundara, and P. Rakkiyappan. 2012. Relative significance of N nutrition on yield, quality and ethanol in sugarcane (Saccharum species hybrid) plant: Ratoon system. Sugar Tech 14: 134–137.
  • Silva, M. A., J. L. Jifon, J. A G. Silva, and V. Sharma. 2007. Use of physiological parameters as fast tools to screen for drought tolerance in sugarcane. Brazilian Journal of Plant Physiology 19: 193–201.
  • Silva, M. A., J. A. G. Silva, J. Enciso, V. Sharma, and J. Jifon. 2008. Yield components as indicators of drought tolerance of sugarcane. Scientia Agricola 65: 620–627.
  • Silveira, P. M., A. J. B. P. Braz, and A. D. Didonet. 2003. Chlorophyll meter to evaluate the necessity of nitrogen in dry beans. Pesquisa Agropecuária Brasileira 38: 1083–1087 ( in Portuguese).
  • Taiz, L., and E. Zeiger. 2010. Plant Physiology. Sunderland, MA: Sinauer Associates.
  • Teruel, D. A., V. Barbieri, and L. A. Ferraro. 1997. Sugarcane leaf area index modeling under different soil water conditions. Scientia Agrícola 54: 39–44.
  • Torres Netto, A., E. Campostrini, J. G. O. Oliveira, and R. E. Bressan-Smith. 2005. Photosynthetic pigments, nitrogen, chlorophyll a fluorescence and SPAD-502 readings in coffee leaves. Scientia Horticulturae 104: 199–209.
  • Vale, D. W., R. M. Prado, H. Cantarella, I. M. Fonseca, C. C. AvalhãesM. A. R. Correia, and M. P. Barbosa. 2013. Ammonium and nitrate in soil and ratoon sugarcane grown in function of nitrogen on oxisol. Journal of Plant Nutrition 36: 201–213.
  • Van Raij, B., H. Cantarella, J. A. Quaggio, and A. M. C. Furlani. 1997. Fertilizing and Liming Recommendations for the State of São Paulo. ( Boletim Técnico, 100). 2nd ed. Campinas, Brazil: Instituto Agronômico/Fundação IAC ( in Portuguese).
  • Vieira, M. X., P. C. O. Trivelin, H. C. J. Franco, R. Otto, and C. E. Faroni. 2010. Ammonium chloride as nitrogen source in sugarcane harvested without burning. Revista Brasileira de Ciência do Solo 34: 1165–1174.
  • Vitti, A. C., H. Cantarella, P. C. O. Trivelin, and R. Rossetto. 2010. Nitrogen. In: Sugarcane, eds. L. L. Dinardo-Miranda, A. C. M. Vasconcelos, and M. G. A. Landell, pp. 239–270. Campinas, Brazil: Instituto Agronômico ( in Portuguese).
  • Wiedenfeld, R. P. 2000. Water stress during different sugarcane growth periods on yield and response to N fertilization. Agricultural Water Management 43: 173–182.
  • Wiedenfeld, B., and J. Enciso. 2008. Sugarcane responses to irrigation and nitrogen in semiarid south Texas. Agronomy Journal 100: 665–671.

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