Determining the critical period for broadleaf weed control in high-yielding cotton using mungbean as a mimic weed

Title
Determining the critical period for broadleaf weed control in high-yielding cotton using mungbean as a mimic weed
Publication Date
2020-10
Author(s)
Charles, Graham W
Sindel, Brian M
( author )
OrcID: https://orcid.org/0000-0002-4100-218X
Email: bsindel@une.edu.au
UNE Id une-id:bsindel
Cowie, Annette L
Knox, Oliver G G
( author )
OrcID: https://orcid.org/0000-0002-0414-5771
Email: oknox@une.edu.au
UNE Id une-id:oknox
Type of document
Journal Article
Language
en
Entity Type
Publication
Publisher
Cambridge University Press
Place of publication
United Kingdom
DOI
10.1017/wet.2020.38
UNE publication id
une:1959.11/29887
Abstract
Research using the critical period for weed control (CPWC) has shown that high-yielding cotton crops are very sensitive to competition from grasses and large broadleaf weeds, but the CPWC has not been defined for smaller broadleaf weeds in Australian cotton. Field studies were conducted over five seasons from 2003 to 2015 to determine the CPWC for smaller broadleaf weeds, using mungbean as a mimic weed. Mungbean was planted at densities of 1, 3, 6, 15, 30, and 60 plants m−2 with or after cotton emergence and added and removed at approximately 0, 150, 300, 450, 600, 750, and 900 degree days of crop growth (GDD). Mungbean competed strongly with cotton, with season-long interference; 60 mungbean plants m−2 resulted in an 84% reduction in cotton yield. A dynamic CPWC function was developed for densities of 1 to 60 mungbean plants m−2 using extended Gompertz and exponential curves including weed density as a covariate. Using a 1% yield-loss threshold, the CPWC defined by these curves extended for the full growing season of the crop at all weed densities. The minimum yield loss from a single weed control input was 35% at the highest weed density of 60 mungbean plants m−2. The relationship for the critical time of weed removal was further improved by substituting weed biomass for weed density in the relationship.
Link
Citation
Weed Technology, 34(5), p. 689-698
ISSN
1550-2740
0890-037X
Start page
689
End page
698

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