Grant L. Priess
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Also affiliated: University of Arkansas System (2021–2022)
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Biography and Research Information
OverviewAI-generated summary
Grant L. Priess's research focuses on weed control and herbicide applications across various agricultural systems. His work investigates the mechanisms of herbicide resistance in common weeds such as Palmer amaranth and barnyardgrass, examining how these plants develop tolerance to herbicides like glufosinate, florpyrauxifen-benzyl, and cyhalofop-butyl. Priess also studies the absorption, translocation, and metabolism of specific herbicides within resistant plant populations. His research includes field evaluations of herbicide performance, such as assessing the physical drift and volatility of 2,4-D choline in cotton, and optimizing weed management strategies using combinations of dicamba and glufosinate in eligible crop systems. He has published 14 papers, with an h-index of 7 and 129 citations, and collaborates with researchers at the University of Arkansas, including Jason K. Norsworthy and Trenton L. Roberts.
Metrics
- h-index: 7
- Publications: 14
- Citations: 136
Selected Publications
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Optimizing weed control using dicamba and glufosinate in eligible crop systems (2022)
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Large‐scale evaluation of physical drift and volatility of 2,<scp>4‐</scp>D choline in cotton: a four‐year field study (2022)
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Absorption, translocation, and metabolism of florpyrauxifen-benzyl and cyhalofop-butyl in cyhalofop-butyl-resistant barnyardgrass [Echinochloa crus-galli (L.) P. Beauv.] (2021)
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Non‐target‐site resistance mechanism of barnyardgrass [<scp><i>Echinochloa crus‐galli</i></scp> (L.) P. Beauv.] to florpyrauxifen‐benzyl (2021)
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Soybean growth and incidence of soil‐borne fungi as influenced by metribuzin (2020)
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Impact of postemergence herbicides on soybean injury and canopy formation (2020)
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Flumioxazin effects on soybean canopy formation and soil-borne pathogen presence (2020)
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Weed control and soybean injury from preplant vs. preemergence herbicide applications (2020)
Collaboration Network
Top Collaborators
- Non‐target‐site resistance mechanism of barnyardgrass [<scp><i>Echinochloa crus‐galli</i></scp> (L.) P. Beauv.] to florpyrauxifen‐benzyl
- Absorption, translocation, and metabolism of florpyrauxifen-benzyl and cyhalofop-butyl in cyhalofop-butyl-resistant barnyardgrass [Echinochloa crus-galli (L.) P. Beauv.]
- Impact of postemergence herbicides on soybean injury and canopy formation
- Large‐scale evaluation of physical drift and volatility of 2,<scp>4‐</scp>D choline in cotton: a four‐year field study
- Optimizing weed control using dicamba and glufosinate in eligible crop systems
Showing 5 of 8 shared publications
- Impact of postemergence herbicides on soybean injury and canopy formation
- Optimizing weed control using dicamba and glufosinate in eligible crop systems
- Weed control and soybean injury from preplant vs. preemergence herbicide applications
- Flumioxazin effects on soybean canopy formation and soil-borne pathogen presence
- Soybean growth and incidence of soil‐borne fungi as influenced by metribuzin
- Non‐target‐site resistance mechanism of barnyardgrass [<scp><i>Echinochloa crus‐galli</i></scp> (L.) P. Beauv.] to florpyrauxifen‐benzyl
- Absorption, translocation, and metabolism of florpyrauxifen-benzyl and cyhalofop-butyl in cyhalofop-butyl-resistant barnyardgrass [Echinochloa crus-galli (L.) P. Beauv.]
- Large‐scale evaluation of physical drift and volatility of 2,<scp>4‐</scp>D choline in cotton: a four‐year field study
- Optimizing weed control using dicamba and glufosinate in eligible crop systems
- Impact of postemergence herbicides on soybean injury and canopy formation
- Weed control and soybean injury from preplant vs. preemergence herbicide applications
- Soybean growth and incidence of soil‐borne fungi as influenced by metribuzin
- Non‐target‐site resistance mechanism of barnyardgrass [<scp><i>Echinochloa crus‐galli</i></scp> (L.) P. Beauv.] to florpyrauxifen‐benzyl
- Absorption, translocation, and metabolism of florpyrauxifen-benzyl and cyhalofop-butyl in cyhalofop-butyl-resistant barnyardgrass [Echinochloa crus-galli (L.) P. Beauv.]
- Large‐scale evaluation of physical drift and volatility of 2,<scp>4‐</scp>D choline in cotton: a four‐year field study
- Non‐target‐site resistance mechanism of barnyardgrass [<scp><i>Echinochloa crus‐galli</i></scp> (L.) P. Beauv.] to florpyrauxifen‐benzyl
- Absorption, translocation, and metabolism of florpyrauxifen-benzyl and cyhalofop-butyl in cyhalofop-butyl-resistant barnyardgrass [Echinochloa crus-galli (L.) P. Beauv.]
- Large‐scale evaluation of physical drift and volatility of 2,<scp>4‐</scp>D choline in cotton: a four‐year field study
- Flumioxazin effects on soybean canopy formation and soil-borne pathogen presence
- Soybean growth and incidence of soil‐borne fungi as influenced by metribuzin
- Non‐target‐site resistance mechanism of barnyardgrass [<scp><i>Echinochloa crus‐galli</i></scp> (L.) P. Beauv.] to florpyrauxifen‐benzyl
- Absorption, translocation, and metabolism of florpyrauxifen-benzyl and cyhalofop-butyl in cyhalofop-butyl-resistant barnyardgrass [Echinochloa crus-galli (L.) P. Beauv.]
- Absorption, translocation, and metabolism of florpyrauxifen-benzyl and cyhalofop-butyl in cyhalofop-butyl-resistant barnyardgrass [Echinochloa crus-galli (L.) P. Beauv.]
- Large‐scale evaluation of physical drift and volatility of 2,<scp>4‐</scp>D choline in cotton: a four‐year field study
- Large‐scale evaluation of physical drift and volatility of 2,<scp>4‐</scp>D choline in cotton: a four‐year field study
- Large‐scale evaluation of physical drift and volatility of 2,<scp>4‐</scp>D choline in cotton: a four‐year field study
- Optimizing weed control using dicamba and glufosinate in eligible crop systems
- Optimizing weed control using dicamba and glufosinate in eligible crop systems
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