Crops News

University researchers offer weed management advice

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As the 2020 corn-growing season draws to a close, Syngenta engaged university agricultural researchers from across the U.S. to analyze the agronomic challenges farmers encountered this season and offer tips on how they can best control weeds and preserve yields heading into 2021. Although weed pressures vary by geography, weed management fundamentals remain consistent throughout the U.S.

Researchers agree that the time to set a weed management strategy for 2021 is now. “The end of the season is the time to take inventory of whatever you did, how well it worked and then consider how you might improve on that for next year,” said Wayne Keeling, Ph.D., professor in the Department of Soil and Crop Sciences at the Texas A&M AgriLife Research Center at Lubbock.

Across the board, the researchers emphasized early-season weed control as the path to maximizing yield potential. “For corn, early-season weed control is especially important because key elements of yield potential are determined early in the growing season,” said Sarah Lancaster, Ph.D., assistant professor and extension specialist at Kansas State University. “Any limitations created by weeds during that time will limit the yield potential of the crop.”

Researchers underscored the significance of weed control during this early-season timing. “Control is mostly emphasized on weeds that germinate before or shortly after corn emergence, because controlling those weeds plays a large role in preserving yield potential within that crop,” said Erin Burns, Ph.D., assistant professor and extension weed scientist at Michigan State University.

This crucial control period is defined as the vegetative stages between V3 and V12. “If you let weeds stay in the field past the V2 stage of corn growth, you start to see 10 percent to 20 percent yield reductions,” said Bill Johnson, Ph.D., professor of weed science at Purdue University. “If you leave them out there until the corn is knee- to waist-high, you can start seeing 20 percent to 50 percent yield reductions.”  

In addition to the physical competition for resources, several experts mentioned the physiology of weed presence in the field. “We discovered that plants can actually detect their neighbors. They know who’s around them, and they respond,” said Clarence Swanton, Ph.D., professor emeritus at the University of Guelph, Canada. “Even without touching the plant, a weed can reduce that plant’s capability to photosynthesize. The plant has to expend energy to heal itself after it experiences the presence of a weed, and that’s part of why the yield potential changes so dramatically. What you and I as humans experience under stress, a plant does, too.”

Aaron Hager, Ph.D., associate professor of extension weed science at the University of Illinois, agreed. “We call them weeds, but they’re plants,” he said. “They have a lot of the same requirements that the crop has — moisture, nutrients, sunlight — and the resources that the weeds use up become resources that the crop does not have access to.”

Syngenta consulted with these leading university researchers to highlight ways troublesome weeds impact yield potential. “We want to provide our growers with the knowledge and tools they need to effectively manage their top weed pressures so they can maximize their yield potential next season and for many seasons to come,” said Steve Gomme, herbicide product marketing lead for Syngenta. “And we have a robust portfolio of premixes, like Acuron corn herbicide, that enable us to offer weed management solutions for every acre.”

Acuron provides consistency across various weed spectrums, weather conditions, and soil types. 

“The bottom line is less weed competition means more nutrients, sunlight and water are available for the growing corn crop,” said Gomme. “This leads to stronger, healthier plants that produce more bushels and, ultimately, more revenue potential at harvest.”

Any views or opinions expressed in this article are those of the author and do not reflect those of AGDAILY. Comments on this article reflect the sole opinions of their writers.
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