Resistance to Aryloxyphenoxypropionate and Cyclohexanedione Herbicides in Wild Oat (Avena fatua)

Author:

Heap Ian M.,Murray Bruce G.,Loeppky Heather A.,Morrison Ian N.

Abstract

Resistance to aryloxyphenoxypropionate and cyclohexanedione herbicides was identified in four wild oat populations from western Canada. Populations UM1, UM2, and UM3 originated from northwestern Manitoba and UM33 from south-central Saskatchewan. Field histories indicated that these populations were exposed to repeated applications of diclofop-methyl and sethoxydim over the previous 10 yr. The populations differed in their levels and patterns of cross-resistance to these and five other acetyl-CoA carboxylase inhibitors (ACCase inhibitors). UM1, UM2, and UM3 were resistant to diclofop-methyl, fenoxaprop-p-ethyl, and sethoxydim. In contrast, UM33 was resistant to the aryloxyphenoxy propionate herbicides but not to sethoxydim. The dose of sethoxydim required to reduce growth of UM1 by 50% was 150 times greater than for a susceptible population (UM5) or UM33 based on shoot dry matter reductions 21 d after treatment. This population differed from UM2 and UM3 that had R/S ratios of less than 10. In the field UM1 also exhibited a very high level of resistance to sethoxydim. In contrast to susceptible plants that were killed at the recommended dosage, shoot dry matter of resistant plants treated at eight times the recommended dosage was reduced by only 27%. In growth chamber experiments none of the four populations was cross-resistant to herbicides from five different chemical families.

Publisher

Cambridge University Press (CUP)

Subject

Plant Science,Agronomy and Crop Science

Reference24 articles.

1. Diclofop-methyl tolerance in cultivated oats (Avena sativa L.)

2. Superior Oil Concentrate, 83% paraffin base petroleum oil and 17% polyol fatty acid esters and polyethoxylated derivatives. ICI. Chipman, Inc., P.O. Box 9910, Stoney Creek, Ontario, L8G 3Z1.

3. Abbreviations: ACCase, acetyl-coenzyme A carboxylase; GR50, herbicide dosage required to inhibit plant growth by 50% relative to untreated controls.

4. Diclofop resistance in wild oat (Avena fatua);Joseph;Weed Sci.,1990

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