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Response of maize to magnesium in tropical rainforest and savannah region

Published online by Cambridge University Press:  27 March 2009

G. O. Kayode
Affiliation:
National Cereals Research Institute, Moor Plantation, P.M.B. 5042, Ibadan, Nigeria

Extract

Magnesium deficiency has been recognized to occur on acid (pH 5·5 or lower), sandy and highly leached soils or in soils whioh have received heavy application of fertilizers especially with materials which are lacking in magnesium or high in potassium (Berger, 1962; Foy & Barber, 1958). In addition to absolute deficiencies, induced forms can also occur, especially when K:Mg ratio in the soil exceeds 5:1 (Caldwell, Hooper & Little, 1968).

Type
Short Notes
Copyright
Copyright © Cambridge University Press 1985

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References

Agbim, N. N. (1981). Interactions of phosphorus, magnesium and zinc on the yield and nutrient content of maize. Journal of Agricultural Science, Cambridge 96, 509514.CrossRefGoogle Scholar
Agboola, A. A. & Corey, R. B. (1973). The relationship between soil pH, organic matter, available phosphorus, exchangeable potassium, calcium, magnesium and nine elements in the maize tissue. Soil Science 115, 367375.CrossRefGoogle Scholar
Berger, J. (1962). Maize production and the manuring of maize. Centre d'etude de l'azote 5, Geneva.Google Scholar
Bray, R. H. & Kurtz, L. T. (1945). Determination of total, organic and available forms of phosphorus in soils. Soil Science 59, 3945.CrossRefGoogle Scholar
Caldwell, T. H., Hooper, L. J. & Little, R. C. (1968). Magnesium in agriculture. N.N.A.N.S. paper S. London: Ministry of Agriculture, Fisheries and Food.Google Scholar
Foy, C. D. & Barber, S. A. (1958). Magnesium deficiency and maize yield on two acid Indiana soils. Soil Science Society of America Proceedings 22, 145148.CrossRefGoogle Scholar
Holmes, M. R. (1962). Field experiments on the magnesium requirements of potatoes in Great Britain. Journal of Agricultural Science, Cambridge 58, 281283.CrossRefGoogle Scholar
Jackson, M. L. (1962). Soil Chemical Analysis. Englewood Cliffs, New Jersey: Prentice Hall.Google Scholar
Kayode, G. O. & Agboola, A. A. (1981). Effect of different nitrogen levels, plant population and soil nutrient status on yield and yield components of maize (Zea mays L.) in different ecological zones of Nigeria. Fertilizer Research 2, 177191.CrossRefGoogle Scholar
Key, J. I. & Kurtz, L. T. (1960). Response of maize and soybeans to magnesium fertilizer. Agronomy Journal 52, 300.CrossRefGoogle Scholar
Lombin, G. & Fayemi, A. A. A. (1978). Prospects of magnesium deficiency in soils of Western Nigeria as assessed under field conditions. Tropical Agriculture 55, 157167.Google Scholar
McElroy, W. D. & Nason, A. (1954). Mechanism of action of micronutrients elements in enzyme systems. Annual Review of Plant Physiology 5, 130.CrossRefGoogle Scholar
Truog, E., Goates, R. J., Gerloff, G. C. & Berger, K. C. (1947). Magnesium phosphorus relationships in plant nutrition. Soil Science 63, 1825.CrossRefGoogle Scholar
United States Department of Agriculture, Soil Survey Staff (1975). Soil classification. A comprehensive system (7th approximation) United States Department of Agriculture, Washington DC, 266 pp.Google Scholar
Walkkey, A. & Black, I. A. (1934). An examination of the Degtjareff method for determining soil organic matter, and a proposed modification of the chromic acid titration method. Soil Science 37, 2938.CrossRefGoogle Scholar
Zimmerman, M. (1947). Magnesium in plants. Soil Science 63, 112.Google Scholar