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Competition studies in diploid and tetraploid varieties of Lolium perenne: 2. The inhibition of germination

Published online by Cambridge University Press:  27 March 2009

J. H. Harries
Affiliation:
Department of Agricultural Botany, University College of Wales, Aberystwyth
J. Norrington-Davies
Affiliation:
Department of Agricultural Botany, University College of Wales, Aberystwyth

Summary

Seed extracts prepared by soaking ryegrass seed in water were tested for their ability to suppress germination. The tests were carried out by sowing seed on to sand-filled basins moistened with seed extract.

Extracts prepared from the two diploid varieties, S. 24 and Hora and the tetraploid variety Terhoy were able to reduce both the rate of germination and the final percentage germination when applied to the sown seed. The details were as follows, (i) When S. 24 perennial ryegrass seed was used to obtain the extract inhibition was found to be related to the concentration of the extract, (ii) The final germination of diploid seed was reduced by 16% in the presence of its own seed extract and by 27% when tetraploid seed extract was applied, (iii) The final germination percentage of the tetraploid seed was reduced by 14% in the presence of either its own extract or that prepared from the diploid seed, (iv) Simple chemical tests carried out on the seed extract, although not conclusive, gave some indication that the inhibitory substance may have been a member of the alkaloid group.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1977

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References

Bonner, J. (1950). The role of toxic substances in the interactions of higher plants. Botanical Review 16, 51‐65.CrossRefGoogle Scholar
Charles, A. H. (1961). Differential survival of oultivars of Lolium, Dactylis and Phleum. Journal of the British Grassland Society 16, 6975.CrossRefGoogle Scholar
Dawson, B. M. C, Elliott, D. C, Elliott, W. H. & Jones, K. M. (1969). Data for Biochemical Research, 2nd ed.Oxford: Clarendon Press.Google Scholar
Evanabi, M. (1949). Germination inhibitors. Botanical Review 15 (3), 153–94.Google Scholar
Evanari, M. (1957). The physiological action and biological importance of germination inhibitors. Symposia of the Society for Experimental Biology, XI. Biological Action of Growth Substances, pp. 2143.Google Scholar
Garb, S. (1961). Differential growth inhibitors produoed by plants. Botanical Review 27, 422–43.CrossRefGoogle Scholar
Muller, C. H. (1966). The role of germination inhibitors (allelopathy) in vegetational composition. Bulletin of the Torrey Botanical Club 93, 332–51.CrossRefGoogle Scholar
Norrington-Davtes, J. & Harries, J. H. (1977). Competition studies in diploid and tetraploid varieties of Lolium perenne. I. The influence of density and proportion of sowing. Journal of Agricultural Science, Cambridge 88, 405–10.CrossRefGoogle Scholar
Osvald, H. (1950). On antagonism between plants. 7th International Botanical Congress, Stockholm, pp. 167–70.Google Scholar
Willaman, J. J. & Schubert, B. G. (1961). Alkaloid bearing plants and their contained alkaloids. Agricultural Research Service. United States Department of Agriculture Technical Bulletin, no. 1234, pp. 8991.Google Scholar