Affiliation:
1. University of Guelph, Ridgetown Campus, 120 Main Street E., Ridgetown, Ontario, Canada N0P 2C0
2. Agriculture and Agri-Food Canada, 5403-1 Avenue South, PO Box 3000, Lethbridge, Alberta, Canada T1J 4B1
3. Department of Plant Science, University of Manitoba, 222 Agriculture Building, 66 Dafoe Rd., Winnipeg, Manitoba, Canada R3T 2N2
Abstract
McNaughton, K. E., Blackshaw, R. E., Waddell, K. A., Gulden, R. H., Sikkema, P. H. and Gillard, C. L. 2015. Effect of five desiccants applied alone and in combination with glyphosate in dry edible bean (Phaseolus vulgaris L.). Can. J. Plant Sci. 95: 1235–1242. Application of dry bean desiccants just prior to crop maturity is common practice by Canadian producers. As dry beans are grown for human consumption it is critical that producers pick desiccants that do not affect crop yield, seed quality, or result in desiccant seed residue levels above accepted levels. In this study the efficacy of glyphosate, diquat, glufosinate, carfentrazone, flumioxazin, and saflufenacil as desiccants was examined for navy, cranberry, pinto, and great northern dry bean. Seed herbicide residues were also tested for each of the dry bean classes tested. Navy, cranberry, pinto, and great northern dry bean yields were not impacted by use of the desiccants diquat, carfentrazone, flumioxazin, or saflufenacil when applied at labelled rates and application timings. Additionally, herbicide residues in seed following application remained lower than maximum residue limits (MRL) established by primary Canadian dry bean export partners. Generally, dry bean colour, irrespective of class, was not altered by desiccant use; diquat and flumioxazin caused minor increases in the degree of red and yellow seed pigmentation for cranberry bean only. Although colour differences were noted using a Chroma meter the differences were slight and would not likely be of economic importance. Application of glyphosate did not affect crop yield, and seed residue levels were below MRLs for navy, pinto, and great northern bean. However, seed glyphosate residue levels were above the MRL for cranberry bean when glyphosate was applied alone or tankmixed with carfentrazone, flumioxazin, or saflufenacil. Seed residue levels were also above listed MRLs for some export countries when glufosinate was applied to navy, cranberry, and pinto bean, although crop yield and seed quality remained unaffected. These findings suggest that growers and contractors should avoid using glufosinate as a dry bean desiccant at least for some markets and that care should be taken when selecting glyphosate as a desiccant, especially for cranberry bean. Across all market classes desiccation progress of bean leaf, stem, and pod tissue was slowest when glyphosate and carfentrazone were used.
Publisher
Canadian Science Publishing
Subject
Horticulture,Plant Science,Agronomy and Crop Science
Reference10 articles.
1. Desiccant Activity of Short Chain Fatty Acids
2. The use of the area under the disease-progress curve (AUDPC) to assess quantitative disease resistance in crop cultivars
3. Ontario Ministry of Agriculture and Food–Ministry of Rural Affairs. 2013. Beans (Adzuki, dry common, lima & snap). Pages 101–110 in Guide to weed control. Publ. 75. Queen's Printer for Ontario, Toronto, ON.
4. SAS Institute Inc. 2014. The SAS system for windows. Release 9.2. SAS Institute, Inc., Cary, NC.
5. The Area Under the Disease Progress Stairs: Calculation, Advantage, and Application
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