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Tolerance of Sorghum to Postemergence Applications of Atrazine

Published online by Cambridge University Press:  12 June 2017

E. W. Chamberlain
Affiliation:
Analytical Department, Geigy Chemical Corporation, Ardsley, New York
A. J. Becton
Affiliation:
Analytical Department, Geigy Chemical Corporation, Ardsley, New York
H. M. LeBaron
Affiliation:
Analytical Department, Geigy Chemical Corporation, Ardsley, New York

Abstract

Grain sorghum (Sorghum bicolor (L.) Moench, var. RS-610) grown under field conditions during 1965 to 1967 on three soils in the High Plains of west Texas, was treated at different stages of plant growth with 2-chloro-4-(ethylamino)-6-(isopropylamino)s-triazine (atrazine). Maximum injury was caused by supplemental sprinkler irrigation. Tolerance of grain sorghum to atrazine increased as height of sorghum plants increased. Treatments on 1 and 3-inch sorghum reduced grain yields significantly, but plants treated when 6 inches or more in height produced yields similar to hand-weeded plots, except on Brownfield loamy sand where yields were reduced even at ½ lb/A. Similar trends were observed in 1966 with a forage sorghum (Lindsey 101F). However, yield reductions occurred only when atrazine was applied at 2 and 4 lb/A to sorghum plants I inch tall. Results show that atrazine can be used effectively and safely for weed control in sorghum grown on fine sandy loam or heavier soils in the southern High Plains, providing the crop is at least 6 inches tall when treated.

Type
Research Article
Copyright
Copyright © 1970 Weed Science Society of America 

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References

Literature Cited

1. Burnside, O. C. and Wicks, G. A. 1964. Cultivation and herbicide treatments of dryland sorghum. Weeds 12:307310.CrossRefGoogle Scholar
2. Burnside, O. C. and Wicks, G. A. 1969. Influence of weed competition on sorghum growth. Weed Sci. 17:332334.CrossRefGoogle Scholar
3. Burnside, O. C., Wicks, G. A., and Fenster, C. R. 1964. Influence of tillage, row spacing, and atrazine on sorghum and weed yields from nonirrigated sorghum across Nebraska. Weeds 12:211215.CrossRefGoogle Scholar
4. Pafford, J. and Harvey, C. 1967. The effect of pigweed on the yield of irrigated grain sorghum. Proc. So. Weed Conf. 20:36 (Abstr.).Google Scholar
5. Phillips, W. M. 1964. A new technique of controlling weeds in sorghum in a wheat-sorghum-fallow rotation in the Great Plains. Weeds 12:4244.Google Scholar
6. Robinson, R. G., Nelson, W. W., Thompson, R. L., and Thompson, J. R. 1964. Herbicides and mixtures for annual weed control in grain sorghum. Weeds 12:7779.CrossRefGoogle Scholar
7. Wiese, A. F. 1967. Competition among weeds and sorghum. Proc. So. Weed Conf. 20:3435.Google Scholar
8. Wiese, A. F. and Rea, H. E. 1962. Treating irrigated grain sorghums with pre-emergence herbicides. Crop Sci. 2:2931.Google Scholar