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Original Articles

Contribution of Post-Anthesis Growth and Manganese Dynamics to Differential Grain Yield in Different Wheat Species

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Pages 1770-1781 | Received 17 Nov 2011, Accepted 29 Apr 2012, Published online: 27 Jun 2014

REFERENCES

  • Adams, F. 1974. Soil solution. In: The Plant Root and its Environment, ed. E.W. Carson, pp. 441–481. Charlottesville, VA: University of Virginia Press.
  • Birsin, M.A., M.S. Adak, A. Inal, A. Aksu, and A. Gunes. 2010. Mineral element distribution and accumulation patterns within two barley cultivars. Journal of Plant Nutrition 33: 267–284.
  • Blake, G.R., and K.H. Hartge. 1986. Bulk density. In: Methods of Soil Analysis Part I. Physical and Mineralogical Methods, ed. A. Klute, pp. 363–375. Madison, WI: American Society of Agronomy-Soil Science Society of America.
  • Dias, A.S., F.C. Lidon, and J.C. Ramalho. 2009 Heat stress in Triticum: Kinetics of Fe and Mn accumulation. Brazilian Journal of Plant Physiology 21: 153–164.
  • Epstein, E. 1971. Mineral metabolism. In: Mineral Nutrition of Plants: Principles and Perspectives, pp. 285–322. New York: Wiley Publishing.
  • Fang, Z., Z. An, and Y. Li. 2008. Dynamic change of organic acids secreted from wheat roots in Mn deficiency. Frontiers of Agriculture in China 2: 50–54.
  • Gherardi, M.J., and Z. Rengel. 2004. The effect of manganese supply on exudation of carboxylates by roots of lucerne (Medicago sativa). Plant and Soil 260: 271–282.
  • Hannam, R.J., R.D. Graham, and J.L. Riggs. 1985. Redistribution of manganese in maturing Lupinus angustifoilius cv. Illyarrie in relation to levels of previous accumulation. Annals of Botany 56: 821–834.
  • Hocking, P.J., J.S. Pate, S.C. Wee, and A.J. McCoomb. 1977. Manganese nutrition of Lupinus spp. especially in relation to developing seed. Annals of Botany 41: 677–688.
  • Huang, C., M.J. Webb, and R.D. Graham. 1994. Manganese efficiency is expressed in barley growing in soil system but not in solution culture. Journal of Plant Nutrition 17: 83–95.
  • Jiang, W.Z., and C.R. Ireland. 2005. Characterization of manganese use efficiency in U.K. wheat cultivars grown in a solution culture system and in the field. Journal of Agricultural Sciences 143: 151–160.
  • Khabaz-Saberi, H., R.D. Graham, J.S. Ascher, and A.J. Rathjen. 2000. Quantification of the confounding effect of seed manganese content in screening for manganese efficiency in durum wheat (Triticum turgidum L. var. durum). Journal of Plant Nutrition 23: 855–866.
  • Krähmer, R., and B. Sattelmacher. 2001. Determination of Cu and Mn efficiency of crop plants in pot experiments. In: Plant Nutrition: Food Security and Sustainability of Agro-Ecosystem through Basic and Applied Research, ed. W.J. Horst,pp. 118–119. Dordrecht, the Netherlands: Kluwer Academic Publishers.
  • Lindsay, W.L., and W.A. Norvell. 1978. Development of a DTPA soil test for zinc, iron, manganese and copper. Soil Science Society of America Journal 42: 421–428.
  • Loneragan, J.F. 1988. Distribution and movement of manganese in plants. In: Manganese in Soils and Plants, eds. R.D. Graham, R.J. Hannam, and N.C. Uren, pp. 113–124. Dordrecht, the Netherlands: Kluwer Academic Publishers.
  • Lucas, R.E., and B.D. Knezek. 1972. Climatic and soil conditions promoting micronutrient deficiencies in plants. In: Micronutrients in Agriculture, eds. J.J. Mortvedt, P.M. Giordano, and W.L. Lindsay, pp. 265–288. Madison, WI: Soil Science Society of America.
  • Marschner, H. 1995. Mineral Nutrition of Higher Plants, 3rd ed. New York: Academic Press.
  • Merwin, H.D., and M. Peech. 1951. Exchangeability of soil potassium in the sand, silt and clay fractions as influenced by the nature of the complimentary exchangeable cation. Soil Science Society of America Proceedings 15: 125–128.
  • Nogueira, M.A., U. Nehls, R. Hampp, K. Poralla, and E.J. B. N. Cardoso. 2007. Mycorrhiza and soil bacteria influence extractable iron and manganese in soil and uptake by soybean. Plant and Soil 298: 273–284.
  • Olsen, S.R., C.V. Cole, F.S. Watanabe, and L.A. Dean. 1954. Estimation of available phosphorus in soils by extraction with sodium biocarbonate. U.S. Department of Agriculture Circ. 939. Washington, DC: USDA.
  • Page, V., and U. Feller. 2005. Selective transport of zinc, manganese, nickel, cobalt and cadmium in the root system and transfer to the leaves in young wheat plants. Annals of Botany 96: 425–434.
  • Pearson, J.N., and Z. Rengel. 1994. Distribution and remobilization of Zn and Mn during grain development in wheat. Journal of Experimental Botany 45: 1829–1835.
  • Pearson, J.N., Z. Rengel, and R.D. Graham. 1999. Regulation of zinc and manganese transport into developing wheat grains having different zinc and manganese concentrations. Journal of Plant Nutrition 22: 1141–1152.
  • Pearson, J.N., Z. Rengel, C.F. Jenner, and R.D. Graham. 1996. Manipulation of xylem transport affects Zn and Mn transport into developing wheat grains of cultured ears. Physiologia Plantarum 98: 229–234.
  • Pedas, P., A. Christopher, J.K. S. Hebbern, E.H. Peter, and H. Søren. 2005. Differential capacity for high-affinity manganese uptake contributes to differences between barley genotypes in tolerance to low manganese availability. Plant Physiology 139: 1411–1420.
  • Posta, K., H. Marschner, and V. Romheld. 1994. Manganese reduction in the rhizosphere of mycorrhizal and non mycorrhizal maize. Mycorrhiza 5: 119–124.
  • Prihar, S.S., and B.S. Sandhu. 1968. A rapid method for soil moisture determination. Soil Science 105: 142–144.
  • Riesen, O., and U. Feller. 2005. Redistribution of nickel, cobalt, manganese, zinc, and cadmium via the phloem in young and maturing wheat. Journal of Plant Nutrition 28: 421–430.
  • Sadana, U.S., L. Kusum, and N. Claassen. 2002. Manganese efficiency of wheat cultivars as related to root growth and internal manganese requirement. Journal of Plant Nutrition 25: 2677–2688.
  • Sadana, U.S., P. Sharma, N. Castañeda Ortiz, D. Samal, and N. Claassen. 2005. Manganese uptake and Mn efficiency of wheat cultivars are related to Mn-uptake kinetics and root growth. Journal of Plant Nutrition 168: 581–589.
  • Subbiah, B.V., and G.L. Asija. 1956. A rapid procedure for the estimation of the available nitrogen in soil. Current Science 25: 259–260.
  • Walkley, A.. and C.A. Black. 1932. An examination of the degtjaref method for determining soil organic matter and a proposed method of the chronic acid titration method. Soil Science 37: 29–39.

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