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Effects of harvesting programme and sowing date on leaf growth in forage barley in Cyprus

Published online by Cambridge University Press:  27 March 2009

D. Wilman
Affiliation:
Department of Agriculture, University College of Wales, Aberystwyth, Dyfed, 8Y23 3DD
D. N. Droushiotis
Affiliation:
Agricultural Research Institute, Nicosia, Cyprus

Summary

All combinations of four harvesting treatments and two sowing dates were compared in each of 2 years in field experiments near Nicosia. In one of the years, two levels of applied nitrogen were compared. The harvesting treatments were: (1) a milk-stage cut, (2) a boot-stage cut and a regrowth cut, (3) a grazing-stage cut and a regrowth cut, and (4) three grazing-stage cuts and a regrowth cut. The sowing dates were (1) normal (12 November) and (2) early (15 October), with sufficient irrigation to ensure establishment.

Applied nitrogen had virtually no effect on leaf growth, evidently because of high reserves of available nitrogen in the soil. Early sowing increased the rates of leaf emergence, extension and expansion up to the time of the first ‘grazing’ cut (when the first node was showing) and reduced the number of leaves which died in that period. Where growth was uninterrupted to the milk stage, early sowing did not affect the number of leaves produced by a main stem or primary tiller, but increased the longevity of the later leaves. Where there were three ‘grazing’ cuts, early sowing allowed time for the production of more and larger leaf blades, with longer sheaths, between the third 'grazing’ cut and the final harvest.

The ‘grazing’ cuts considerably reduced the rates of extension and expansion and the final size of the leaves which emerged soon after a cut. There was good recovery subsequently, however, in rates of extension and expansion and final leaf size, particularly with October sowing.

During almost all the period of leaf production on a main stem or primary tiller, several leaves (up to six) were expanding at the same time. The stage, during the period between emergence and death, at which a leaf blade reached its full length was typically half-way between emergence and death. Where growth was uninterrupted, area per leaf blade was positively correlated with both the number of days between the emergence of successive leaves and the number of days between emergence and death.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1988

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References

Biscoe, P. V. & Gallagher, J. N. (1978). A physiological analysis of cereal yield. I. Production of dry matter. Agricultural Progress 53, 3450.Google Scholar
Droushiotis, D. N. (1986). The growth and digestibility of barley (Hordeum vulgare L.) grown as a forage crop. Ph.D. thesis, University College of Wales, Aberystwyth.Google Scholar
Droushiotis, D. N. & Wilman, D. (1987). Effects of harvesting programme and sowing date on the forage yield, digestibility, nitrogen concentration, tillers and crop fractions of barley in Cyprus. Journal of Agricultural Science, Cambridge 109, 95106.CrossRefGoogle Scholar
Kemp, C. D. (1960). Methods of estimating the leaf area of grasses from linear measurements. Annals of Botany New Series 24, 491499.CrossRefGoogle Scholar
Lal, K. N. & Subba Rao, M. S. (1950). A new formula for estimation of leaf area in barley. Science and Culture (Calcutta) 15, 355356.Google Scholar
Pearse, P. J. & Wilman, D. (1984). Effects of applied nitrogen on grass leaf initiation, development and death in field swards. Journal of Agricultural Science, Cambridge 103, 405413.CrossRefGoogle Scholar
Scott, R. K. & Dennis-Jones, R. (1976). The physiological background of barley. Journal of the National Institute of Agricultural Botany 14, 182187.Google Scholar
Vine, D. A. (1983). Sward structure changes within a perennial ryegrass sward: leaf appearance and death. Grass and Forage Science 38, 231242.CrossRefGoogle Scholar
Wilman, D., Droushiotis, D., Mzamane, M. N. & Shim, J. S. (1977). The effect of interval between harvests and nitrogen application on initiation, emergence and longevity of leaves, longevity of tillers and dimensions and weights of leaves and ‘stems’ in Loliwm. Journal of Agricultural Science, Cambridge 89, 6579.CrossRefGoogle Scholar
Wilman, D. & Mohamed, A. A. (1981). Response to nitrogen application and interval between harvests in five grasses. 2. Leaf development. Fertilizer Research 2, 320.CrossRefGoogle Scholar
Wilman, D. & Wright, P. T. (1983). Some effects of applied nitrogen on the growth and chemical composition of temperate grasses. Herbage Abstracts 53, 387393.Google Scholar