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The relationship of soil mineral NO3-N with stem NO3-N concentration, and of fertilizer-N with the amount of nitrogen taken up by winter wheat, in experiments testing nitrogen fertilizer in combination with aphicide and fungicides, from 1980 to 1982

Published online by Cambridge University Press:  27 March 2009

R. J. Darby
Affiliation:
Rothamsted Experimental Station, Harpenden, Herts., AL5 2JQ
F. V. Widdowson
Affiliation:
Rothamsted Experimental Station, Harpenden, Herts., AL5 2JQ
E. Bird
Affiliation:
Rothamsted Experimental Station, Harpenden, Herts., AL5 2JQ
M. V. Hewitt
Affiliation:
Rothamsted Experimental Station, Harpenden, Herts., AL5 2JQ

Summary

Experiments on winter wheat were made from 1980 to 1982 to test fungicide and aphicide sprays in factorial combination with four amounts of nitrogen fertilizer, applied in either one or two dressings in spring. The wheat was grown on three farms with contrasting calcareous clay soils from three soil series; each year it followed a 2-year break on one farm, a cereal rotation on the second and continuous wheat on the third. Soils were sampled to a depth of 0·9 m at seedling emergence in autumn, and again in February and April, to determine the NO3-N and NH4-N in each 0·3 m horizon. Crops were sampled for growth analysis at monthly intervals from March onwards and analysed for nitrogen content. Measurements of stem sap NO3-N concentration were also made at 2-weekly intervals from February or March to late June.

Measurements of soil mineral N were used to calculate the fertilizer nitrogen dressings used in the experiments. The concentration of NO3-N in the stem sap was related to NO3-N in soil; concentiations remained high until most of the soil NO3-N had been removed by the crop. The time at which stem sap NO3-N concentration declined therefore acted as an index of soil N supply, and the data showed that fertilizer-N was needed when the NO3-N concentration fell below a 200 μg/ml threshold. Yields benefited from N applied in February or March only when stem sap NO3-N concentration fell below the threshold at this time.

Apparent fertilizer nitrogen efficiency exceeded 70 % where yields were very large, but ranged between 53 and 64% where yields were smaller because either soil physical problems or disease restraints were present.

A severe attack by take-all (Gaeumannomyces cerealis) caused premature senescence at one centre in 1980; this apparently prevented previously assimilated nitrogen from moving into the grain.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1986

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References

Anon. (1978). La fertilisation azotée du blé. Paris Institut Technique des Céréales et Fourrages.Google Scholar
Darby, R. J., Widdowson, F. V. & Bird, E. (1983). Nitrate N in wheat stems. Rothamsted Experimental Station Report for 1982, part 1, pp. 258259.Google Scholar
Darby, R. J., Widdowson, F. V. & Hewitt, M. V. (1984). Comparisons between the establishment, growth and yield of winter wheat on three clay soils, in experiments testing nitrogen fertilizer in combination with aphicide and fungicides, from 1980 to 1982. Journal of Agricultural Science, Cambridge 103, 595611.CrossRefGoogle Scholar
Litchfield, M. H. (1967). The automated analysis of nitrite and nitrate in blood. Analyst, London 92, 132136.CrossRefGoogle ScholarPubMed
Prew, R. D., Church, B. M., Dewar, A. M., Lacey, J., Penny, A., Plumb, R. T., Thorne, G. N., Todd, A. D., Williams, T. D. (1983). Effects of eight factors on the growth and nutrient uptake of winter wheat and on the incidence of pests and diseases. Journal of Agricultural Science, Cambridge 100, 363382.CrossRefGoogle Scholar
Prew, R. D., Church, B. M., Dewar, A. M., Lacey, J., Magan, N., Penny, A., Plumb, R. T., Thorne, G. N., Todd, A. D. & Williams, T. D. (1985). Some factors limiting the growth and yield of winter wheat and their variation in two seasons. Journal of Agrictdtural Science, Cambridge 104, 135162.CrossRefGoogle Scholar
Remy, J. C. & Viaux, P. (1982). The use of nitrogen fertilizers in intensive wheat growing in France. The Fertilizer Society, London, Proceedings No. 211, pp. 6792.Google Scholar
Thorne, G. N., Dewar, A. M., Williams, T. D., Lacey, J., Plumb, R. T., Prew, R. D., Penny, A., Church, B. M. & Todd, A. D. (1981). Factors limiting yield of winter wheat. Rothamsted Experimental Station, Report for 1980, part 1, pp. 1723.Google Scholar
Thorne, G. N., Dewar, A. M., Williams, T. D., Lacey, J., Plumb, R. T., Prew, R. D., Penny, A., Church, B. M. & Todd, A. D. (1982). Factors limiting yield of winter wheat. Rothamsted Experimental Station, Report for 1981, part 1, pp. 1925.Google Scholar
Varley, J. A. (1966). Automatic methods for the determination of nitrogen, phosphorus and potassium in plant material. Analyst, London 91, 119126.CrossRefGoogle Scholar
Widdowson, F. V. (1982). The prediction of nitrogen fertilizer rates from mineral N in the soil in spring. Rothamsted Experimental Station, Report for 1981, part 1, p. 251.Google Scholar
Widdowson, F. V., Darby, R. J., Penny, A. & Hewitt, M. V. (1982). Yield variation. Rothamsted Experimental Station, Report for 1981, part 1, pp. 245246.Google Scholar
Widdowson, F. V., Darby, R. J., Penny, A., Hewitt, M. V., Welbank, P. J. & Taylor, P. J. (1981 a). Yield variation. Rothamsted Experimental Station, Report for 1980, part 1, pp. 243245.Google Scholar
Widdowson, F. V., Darby, R. J., Penny, A., Hewitt, M. V., Welbank, P. J. & Thorne, G. N. (1983). Studies on yield variation. Rothamsted Experimental Station, Report for 1982, part 1, pp. 255257.Google Scholar
Widdowson, F. V., Penny, A., Darby, R. J. & Bird, E. (1984). The effect of sowing date and of leaching on soil nitrogen supply for winter wheat, at Rothamsted and Woburn, 1981. In ADAS/MAFF Reference book 385, The Nitrogen Requirement of Cereals (ed. Needham, P.), pp. 125128. London: H.M.S.O.Google Scholar
Widdowson, F. V., Williams, R. J. B., Darby, R. J. & Bird, E. (1981 b). NO3-N in wheat stems; andn nitrogen in soils under winter wheat during winter. Rothamsted Experimental Station, Report for 1980 part 1, p. 245.Google Scholar
Williams, R. J. B. (1969). The rapid determination of nitrate in crops, soils, drainage and rainwater by a simple field method using diphenylamine or diphenylbenzidine with glass fibre paper. Chemistry and Industry, pp. 17351736.Google Scholar