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Recovery and germination rates of seeds of Mediterranean medics and clovers offered to sheep at a single meal or continuously

Published online by Cambridge University Press:  27 March 2009

E. F. Thomson
Affiliation:
International Center for Agricultural Research in the Dry Areas (ICARDA), P.O. Box 5466, Aleppo, Syria
S. Rihawi
Affiliation:
International Center for Agricultural Research in the Dry Areas (ICARDA), P.O. Box 5466, Aleppo, Syria
P. S. Cocks
Affiliation:
International Center for Agricultural Research in the Dry Areas (ICARDA), P.O. Box 5466, Aleppo, Syria
A. E. Osman
Affiliation:
International Center for Agricultural Research in the Dry Areas (ICARDA), P.O. Box 5466, Aleppo, Syria
L. Russi
Affiliation:
International Center for Agricultural Research in the Dry Areas (ICARDA), P.O. Box 5466, Aleppo, Syria

Summary

Measurements were made of the recovery and germination rates of seed of eight species of annual medic (Medicago spp.) and three of clover (Trifolium spp.) after ingestion by sheep. Recovery of medic seed was measured as the number of seeds collected from faeces after feeding, in addition to a basal diet, either (i) 200 g of pods at a single meal, or (ii) a quantity of pods estimated to contain 30000 seeds at a single meal or (iii) 200 g of pods daily for 21 days. Only the first method was applied to the clovers.

There were large differences (P < 0·001) in seed recovery between species, from < 2% to nearly 20% in medics, and up to 59% in T. campestre, which has low single-seed mass. Although there was a curvilinear decrease in seed recovery as single-seed mass increased (r2 = 0·80), the high recovery of M. rotata, a fairly large-seeded species, suggests that there are important differences between species, irrespective of seed size.

When 200 g of medic pods was offered to sheep at a single meal, mean seed recovery was slightly lower than when 200 g of medic pods was offered daily for 21 days. Seed recovery of medics was much higher (P < 0·001) when 30000 seeds were offered at one meal.

Germination rate before ingestion was 1·9–6·5% (P < 0·001) for hard-seeded medics and 2·7–9·7% (P < 0·001) for clovers with low single-seed mass; passage through the digestive tract increased (P < 0·001) germination rate in both medics and clovers.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1990

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References

REFERENCES

Abd El Moneim, A. & Cocks, P. S. (1986). Adaptation of Medicago rigidula to a cereal pasture rotation in northwest Syria. Journal of Agricultural Science, Cambridge 107, 179186.CrossRefGoogle Scholar
Carter, E. D. (1980). The survival of medic seeds following ingestion of intact pods by sheep. In unpublished Proceedings of the Australian Agronomy Conference, Lawes, Queensland, Australia, p. 178.Google Scholar
Carter, E. D. (1983). Seed and seedling dynamics of annual medic pastures in South Australia. Proceedings of the 14th International Grassland Congress (Eds Smith, J. A. & Hays, V. W.), pp. 447450. Boulder, Colorado: Westview Press.Google Scholar
Cocks, P. S. (1988). Seed production and seed survival under grazing of annual medics (Medicago spp.) in north Syria. Journal of Agricultural Science, Cambridge 110, 455464.Google Scholar
Cocks, P. S. & Ehrman, T. A. M. (1987). The geographic origin of frost tolerance in Syrian pasture legumes. Journal of Applied Ecology 24, 673683.CrossRefGoogle Scholar
International Center for Agricultural Research in the Dry Areas (1986). Annual Report 1985, Pasture, Forage and Livestock Program, pp. 57. Aleppo, Syria: ICARDA.Google Scholar
International Center for Agricultural Research in the Dry Areas (1988). Annual Report 1987, Pasture, Forage and Livestock Program, pp. 5254. Aleppo, Syria: ICARDA.Google Scholar
Jones, R. M. & Simão Neto, M. (1987). Recovery of pasture seed ingested by ruminants. 3. The effects of the amount of seed in the diet and of diet quality on seed recovery from sheep. Australian Journal of Experimental Agriculture 27, 253256.CrossRefGoogle Scholar
Poppi, D. P., Norton, B. W., Minson, D. J. & Hendricksen, R. E. (1980). The validity of the critical size theory for particles leaving the rumen. Journal of Agricultural Science, Cambridge 94, 275280.Google Scholar
Springborg, R. (1986). Impediments to the transfer of Australian dryland agricultural technology to the Middle East. Agriculture, Ecosystems and Environment 17, 229251.Google Scholar
Steel, R. G. D. & Torrie, J. H. (1980). Principles and Procedures of Statistics: A Biomelrical Approach, 2nd Edn.New York: McGraw-Hill.Google Scholar
Thomson, E. F. & Bahhady, F. A. (1988). A note on the effect of live weight at mating on the fertility of Awassi ewes in semi-arid north-west Syria. Animal Production 47, 505508.Google Scholar