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Original Articles

Efficacy of copper foliar spray in preventing copper deficiency of rainfed wheat (Triticum aestivum L.) grown in a calcareous soil

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Pages 1617-1626 | Received 03 Oct 2019, Accepted 20 Jan 2020, Published online: 17 Mar 2020

References

  • Adrees, M., S. Ali, M. Rizwan, M. Ibrahim, F. Abbas, M. Farid, M. Zia-Ur-Rehman, M. K. Irshad, and S. A. Bharwana. 2015. The effect of excess copper on growth and physiology of important food crops: A review. Environmental Science and Pollution Research 22 (11):8148–62. doi: 10.1007/s11356-015-4496-5.
  • Aït Houssa, A.,. L. Oubaki, K. Reda-Fathmi, S. Drissi, M. Lamghari, M. Benbella, and H. Chraibi. 2016. Eléments agro-économiques pour réussir la culture du blé tendre en Bour [Agro-economic elements to success in the production of rainfed wheat]. Transfert de Technologie en Agriculture. N° 202. Rabat: Hassan II Institute of Agronomy and Veterinary Sciences (IAV Hassan II).
  • Alloway, B. J. 2008. Micronutrients and crop production: An introduction. In Micronutrient deficiencies in global crop production, ed. B. J. Alloway, 1–40. Dordrecht: Springer.
  • Alloway, B. J. 2012. Heavy metals in soils: Trace metals and metalloids in soils and their bioavailability. Vol. 22 of Environmental Pollution. 3rd ed. Dordrecht: Springer. doi: 10.1007/978-94-007-4470-7.
  • Baker, D. E., and J. P. Senef. 1995. Copper. In Heavy metals in soils, ed. B. J. Alloway, 179–205. 2nd ed. London: Blackie Academic and Professional.
  • Balaghi, R., T. E. Hairech, M. Alaouri, S. Motaouakil, T. Benabdelouahab, F. Mounir, M. Lahlou, R. Arrach, M. Abderrafik, R. P. Colmant, et al. 2016. Climate change impact assessment using MOSAICC in Morocco. Rabat: INRA (National Institute of Agricultural Research) - Morocco.
  • Brennan, R. F. 1990. Effectiveness of some copper compounds applied as foliar sprays in alleviating copper deficiency of wheat grown on copper-deficient soils of Western Australia. Australian Journal of Experimental Agriculture 30 (5):687–91. doi: 10.1071/EA9900687.
  • Del Moral, L. F. G., Y. Rharrabti, S. Elhani, V. Martos, and C. Royo. 2005. Yield Formation in Mediterranean durum wheats under two contrasting water regimes based on path-coefficient analysis. Euphytica 146 (3):203–12. doi: 10.1007/s10681-005-9006-2.
  • Drissi, S., A. A. Houssa, F. Amlal, K. Dhassi, M. Lamghari, and A. Maataoui. 2018. Barley responses to copper foliar spray concentrations when grown in a calcareous soil. Journal of Plant Nutrition 41 (17):2266–72. doi: 10.1080/01904167.2018.1509993.
  • Fageria, N. K., V. C. Baligar, and R. B. Clark. 2002. Micronutrients in crop production. Advances in Agronomy 77:185–268. doi: 10.1016/S0065-2113(02)77015-6.
  • Fageria, N. K., V. C. Baligar, and C. A. Jones. 2010. Growth and mineral nutrition of field crops. 3rd ed. Boca Raton: CRC Press.
  • Fageria, N. K., M. P. Barbosa Filho, A. Moreira, and C. M. Guimaraes. 2009. Foliar fertilization of crop plants. Journal of Plant Nutrition 32 (6):1044–64. doi: 10.1080/01904160902872826.
  • Fageria, N. K., and L. F. Stone. 2008. Micronutrient deficiency problems in South America. In Micronutrient deficiencies in global crop production, ed. B. J. Alloway, 245–65. Dordrecht: Springer Science.
  • Flynn, A. G., J. F. Panozzo, and W. K. Gardner. 1987. The effect of copper deficiency on the baking quality and dough properties of wheat flour. Journal of Cereal Science 6 (1):91–8. doi: 10.1016/S0733-5210(87)80044-9.
  • Giunta, F., R. Motzo, and M. Deidda. 1993. Effect of drought on yield and yield components of durum wheat and triticale in a Mediterranean environment. Field Crops Research 33 (4):399–409. doi: 10.1016/0378-4290(93)90161-F.
  • Graham, R. D. 1975. Male sterility in wheat plants deficient in copper. Nature 254 (5500):514–5. doi: 10.1038/254514a0.
  • Grundon, N. J. 1980. Effectiveness of soil-dressing and foliar sprays of copper sulphate in correcting copper deficiency of wheat (Triticum aestivum) in Queensland. Australian Journal of Experimental Agriculture 20 (107):717–23. doi: 10.1071/EA9800717.
  • Kabata-Pendias, A. 2000. Trace elements in soils and plants. 3rd ed. New York: CRC press.
  • Karamanos, R. E., T. B. Goh, and J. T. Harapiak. 2003. Determining wheat responses to copper in prairie soils. Canadian Journal of Soil Science 83 (2):213–21. doi: 10.4141/S02-059.
  • Karamanos, R. E., G. A. Kruger, and J. W. B. Stewart. 1986. Copper deficiency in cereal and oilseed crops in northern Canadian prairie soils. Agronomy Journal 78 (2):317–23. doi: 10.2134/agronj1986.00021962007800020021x.
  • Malhi, S. S., L. Cowell, and H. R. Kutcher. 2005. Relative effectiveness of various sources, methods, times and rates of copper fertilizers in improving grain yield of wheat on a Cu-deficient soil. Canadian Journal of Plant Science 85 (1):59–65. doi: 10.4141/P04-089.
  • Marschner, H. 2011. Marschner’s mineral nutrition of higher plants. 3rd ed. London: Academic press.
  • Mengel, K., E. A. Kirkby, H. Kosegarten, and T. Appel. 2001. Principles in plant nutrition. 5th ed. Dordrecht: Springer science. doi: 10.1007/978-94-010-1009-2.
  • Michaud, A. M., M. N. Bravin, M. Galleguillos, and P. Hinsinger. 2007. Copper uptake and phytotoxicity as assessed in situ for durum wheat (Triticum turgidum durum L.) cultivated in Cu-contaminated, former vineyard soils. Plant and Soil 298 (1-2):99–111. doi: 10.1007/s11104-007-9343-0.
  • Mitra, G. N. 2015. Regulation of nutrient uptake by plants. New Delhi: Springer. doi: 10.1007/978-81-322-2334-4.
  • Moore, G. A. 2001. Soilguide (Soil guide): a handbook for understanding and managing agricultural soils. Bulletin N°. 4343. Perth, Western Australia: Department of Agriculture and Food.
  • Mortvedt, J. J., and F. R. Cox. 1985. Production, marketing, and use of calcium, magnesium, and micronutrient fertilizers. In Fertilizer technology and use, ed. O.P. Engelstad, 455–81. 3rd ed. Madison: Soil Science Society of America.
  • Paul, A. K., T. K. Bala, S. Shahriar, and H. R. Hira. 2016. Effect of Foliar Application of Zinc on Yield of Wheat Grown under Water Stress Condition. International Journal of Bio-Resource and Stress Management 7 (5):1025–31. doi: 10.23910/IJBSM/2016.7.5.1645b.
  • Rahimi, A., and W. Bussler. 1973. Physiologische Voraussetzungen für die Bildung der Kupfermangelsymptome [Physiological conditions for the development of copper deficiency symptoms]. Journal of Plant Nutrition and Soil Science 136 (1):25–32. doi: 10.1002/jpln.19731360104.
  • Xue, D., M. Chen, M. Zhou, S. Chen, Y. Mao, and G. Zhang. 2008. QTL analysis of flag leaf in barley (Hordeum vulgare L.) for morphological traits and chlorophyll content. Journal of Zhejiang University Science B 9 (12):938–43. doi: 10.1631/jzus.B0820105.

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