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Interaction of Light, Soil Moisture, and Temperature with Weed Suppression by Hairy Vetch Residue

Published online by Cambridge University Press:  12 June 2017

John R. Teasdale*
Affiliation:
Plant Physiol., Weed Sci. Lab., U. S. Dep. Agric, Agric. Res. Serv., Beltsville, MD 20705

Abstract

The influence of light, soil moisture, and temperature on establishment of selected species through hairy vetch residue on the soil surface was investigated under controlled conditions in the greenhouse. Hairy vetch residue at rates ranging from 0 to 616 g m−2 had no effect on corn, slightly reduced velvetleaf and green foxtail establishment, and severely inhibited common lambsquarters establishment under full sunlight conditions. The same rates of hairy vetch residue reduced velvetleaf, green foxtail, and common lambsquarters establishment more under a shade cloth with 9% light transmittance than under full sunlight. Day/night temperatures of 24/16 or 32/26 C had no effect and soil moistures of 50 or 133% field capacity had little effect on response of all species to residue rates. Weed establishment was similar under shade cloth without residue as under residue with an equivalent light transmittance, suggesting that light was more important than allelopathy or physical impedance for weed suppression by hairy vetch residue.

Type
Weed Biology and Ecology
Copyright
Copyright © 1993 by the Weed Science Society of America 

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References

Literature Cited

1. Baskin, C. C. and Baskin, J. M. 1988. Germination ecophysiology of herbaceous plant species in a temperate region. Am. J. Bot. 75:286305.Google Scholar
2. Blevins, R. L., Herbek, J. H., and Frye, W. W. 1990. Legume cover crops as a nitrogen source for no-till corn and sorghum. Agron. J. 82:769772.Google Scholar
3. Henson, I. E. 1970. The effects of light, potassium nitrate and temperature on the germination of Chenopodium album . Weed Res. 10:2739.Google Scholar
4. Holderbaum, J. F., Decker, A. M., Meisinger, J. J., Mulford, F. R., and Vough, L. R. 1990. Fall-seeded legume cover crops for no-tillage corn in the humid east. Agron. J. 82:117124.Google Scholar
5. Horowitz, M. and Taylorson, R. B. 1984. Hardseededness and germinability of velvetleaf as affected by temperature and moisture. Weed Sci. 32:111115.Google Scholar
6. Khosravi, Gh. R. and Anderson, I. C. 1990. Pre-emergence flooding and nitrogen atmosphere effects on germinating corn inbreds. Agron. J. 82:495499.Google Scholar
7. LaCroix, L. J. and Staniforth, D. W. 1964. Seed dormancy in velvetleaf. Weeds 12:171174.Google Scholar
8. McVay, K. A., Radcliffe, D. E., and Hargrove, W. L. 1989. Winter legume effects on soil properties and nitrogen fertilizer requirements. Soil Sci. Soc. Am. J. 53:18561862.Google Scholar
9. Putnam, A. R. 1985. Weed allelopathy. Pages 131155 in Duke, S. O., ed. Weed Physiology. Vol. I. Reproduction and Ecophysiology. CRC Press, Boca Raton, FL.Google Scholar
10. Taylorson, R. B. 1970. Changes in dormancy and viability of weed seeds in soils. Weed Sci. 18:265269.Google Scholar
11. Teasdale, J. R. and Mohler, C. L. 1992. Weed suppression by residue from hairy vetch and rye cover crops. Proc. First Int. Weed Control Congr. 2:516518.Google Scholar
12. Teasdale, J. R. and Mohler, C. L. 1993. Light transmittance, soil temperature, and soil moisture under residue of hairy vetch and rye. Agron. J. (in press.) CrossRefGoogle Scholar
13. Vanden Born, W. H. 1971. Green foxtail: seed dormancy, germination and growth. Can. J. Plant Sci. 51:5359.CrossRefGoogle Scholar
14. Wagger, M. G. 1989. Time of desiccation effects on plant composition and subsequent nitrogen release from several winter annual cover crops. Agron. J. 81:236241.Google Scholar
15. Wagger, M. G. 1989. Cover crop management and nitrogen rate in relation to growth and yield of no-till corn. Agron. J. 81:533538.CrossRefGoogle Scholar
16. White, R. H., Worsham, A. D., and Blum, U. 1989. Allelopathic potential of legume debris and aqueous extracts. Weed Sci. 37:674679.Google Scholar
17. Worsham, A. D. and Blum, U. 1992. Allelopathic cover crops to reduce herbicide inputs in cropping systems. Proc. First Int. Weed Control Congr. 2:577579.Google Scholar