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Variation in tannin content in Vicia faba L.

Published online by Cambridge University Press:  27 March 2009

A. Cabrera
Affiliation:
Departamento de Genética, Escuela Técnica Superior de Ingenieros Agrónomos, Apartado 3048, 14080 Córdoba, Spain
A. Martin
Affiliation:
Departamento de Genética, Escuela Técnica Superior de Ingenieros Agrónomos, Apartado 3048, 14080 Córdoba, Spain

Summary

The tannin content of milled seed of 55 lines of Vicia faba was evaluated and related to flower and testa colour, seed weight and percentage of testa. Tannin content in the lines analysed was related more to flower colour than to testa colour. No relationship existed between tannin content and seed weight. Lines with low tannin content had a low proportion of testa.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1986

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References

REFERENCES

Bond, D. A. (1976). In vitro digestibility of the testa in tannin-free field beans (Vicia faba L.). Journal of Agricultural Science, Cambridge 86, 561566.CrossRefGoogle Scholar
Dickinson, D., Knight, M. & Rees, D. I. (1957). Varieties of broad beans suitable for canning. Chemistry and Industry 16, 1503.Google Scholar
Griffiths, D. W. (1984). An assessment of the potential for improving the nutritive value of field beans (Vicia faba): a progress report. In Vicia faba: Agronomy, Physiology and Breeding (ed. Hebblethwaite, P. D., Dawkins, T. C. K., Heath, M. C. and Lockwood, G.), pp. 271278. The Hague-Boston-Lancaster: Martinus Nijhoff/Junk.CrossRefGoogle Scholar
Harris, H. B. (1969). Bird resistance in sorghum. Proceedings of the 24th Annual Corn and Sorghum Research Conference (Chicago), pp. 113122.Google Scholar
Haslam, E. (1966). Chemistry of Vegetable Tannins. London and New York: Academic Press.Google Scholar
Marquardt, R. R. (1983). Antimetabolites in faba beans: metabolic significance. FABIS 7, 14.Google Scholar
Marqurdt, R. R. & Ward, A. T. (1979). Chick performance as affected by autoclave treatment of tannin-containing and tannin-free cultivars of faba beans. Canadian Journal of Animal Science 59, 781789.CrossRefGoogle Scholar
Martin-Tanguy, J., Guillaume, J. & Kossa, A. (1976). Condensed tannins in horse seeds; chemical structure and effects on the food value of the horse bean in growing poultry. In Protein Quality from Leguminous Crops (ed. Picard, J.), pp. 162182. Brussels and Luxembourg: EC-Commission, EUR 5686 EN.Google Scholar
Picard, J. (1976). Apercu sur l'hérédité du caractére, absence de tanins, dans les graines de féverole (Vicia fabaL.). Annales de l'Amelioration des Plantes 26, 101106.Google Scholar
Rowlands, D. G. & Corner, J. (1962). Genetics of pigmentation in broad beans (Vicia faba L.). Third Congress of Eucarpia, Paris, pp. 229234.Google Scholar
Sjödin, J., Martensson, P. & Magyarosi, T. (1981). Selection for antinutritional substances in field bean (Vicia faba L.). Zeitschrift fúr Pflanzenzüchtung 86, 231247.Google Scholar
Statler, D. G. (1970). Resistance of bean plants to Fusarium solani f. phaseoli. Plant Disease Reporter 54, 698699.Google Scholar
Ward, A. T., Marquardt, R. R. & Campbell, L. D. (1977). Further studies on the isolation of the thermolabile growth inhibitor from the faba bean (Vicia faba L. minor). Journal of Nutrition 107, 13251334.CrossRefGoogle Scholar
Zucker, W. V. (1982). Tannins: does structure determine function? An ecological perspective. American Naturalist 121, 335365.CrossRefGoogle Scholar