Derrick Harrison
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Also affiliated: University of Arkansas System (2026)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Derrick Harrison's research program focuses on understanding the genetic basis of plant traits and responses to environmental factors, particularly within soybean (Glycine max). His work has investigated the genetic architecture of seed composition and its stability across different environments, as well as the impact of specific environmental stresses like flooding on soybean yield and seed quality. Harrison has also explored plant breeding strategies, including response to selection for flood tolerance using different breeding methods.
His research interests extend to the application of speed breeding techniques and the influence of light wavelength on plant growth and development. He collaborates with a network of researchers at the University of Arkansas at Fayetteville, including Andrea Acuña, Chengjun Wu, Liliana Florez‐Palacios, and Leandro Mozzoni, with whom he has co-authored numerous publications. Harrison's scholarship metrics include an h-index of 6, with 21 total publications and 126 citations.
Metrics
- h-index: 4
- Publications: 17
- Citations: 74
Selected Publications
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Quantitative trait loci analysis identifying novel genomic regions for off-target dicamba tolerance in soybean [Glycine max (L.) Merr.] (2026)
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Phenotypic and genotypic analyses of large‐seeded soybean germplasm for vegetable soybean breeding (2026)
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Registration of high‐yielding conventional soybean ‘R18‐14502’ with broad adaptability in the U.S. Mid‐South (2026)
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Registration of ‘R18C‐13665’: A high‐yielding conventional soybean cultivar (2026)
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Registration of R19‐42848 as a drought‐tolerant, high‐yielding soybean germplasm line (2025)
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Across-environment seed protein stability and genetic architecture of seed components in soybean (2024)
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Registration of R18‐14147: A high‐protein conventional soybean germplasm line (2024)
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Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line (2024)
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Spatial models for seed yield, wilting, and maturity in furrow-irrigated soybean plots (2022)
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Impact of Delaying Irrigation on Wilting, Seed Yield, and Other Agronomic Traits of Determinate MG5 Soybean (2022)
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Response to selection to different breeding methods for soybean flood tolerance (2021)
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Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system (2021)
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Effect of light wavelength on soybean growth and development in a context of speed breeding (2020)
Collaboration Network
Top Collaborators
- Effect of light wavelength on soybean growth and development in a context of speed breeding
- Across-environment seed protein stability and genetic architecture of seed components in soybean
- Response to selection to different breeding methods for soybean flood tolerance
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
- Registration of R18‐14147: A high‐protein conventional soybean germplasm line
Showing 5 of 12 shared publications
- Effect of light wavelength on soybean growth and development in a context of speed breeding
- Across-environment seed protein stability and genetic architecture of seed components in soybean
- Response to selection to different breeding methods for soybean flood tolerance
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
- Registration of R19‐42848 as a drought‐tolerant, high‐yielding soybean germplasm line
Showing 5 of 10 shared publications
- Effect of light wavelength on soybean growth and development in a context of speed breeding
- Across-environment seed protein stability and genetic architecture of seed components in soybean
- Response to selection to different breeding methods for soybean flood tolerance
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
- Registration of R18‐14147: A high‐protein conventional soybean germplasm line
Showing 5 of 10 shared publications
- Effect of light wavelength on soybean growth and development in a context of speed breeding
- Across-environment seed protein stability and genetic architecture of seed components in soybean
- Response to selection to different breeding methods for soybean flood tolerance
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
- Registration of R18‐14147: A high‐protein conventional soybean germplasm line
Showing 5 of 9 shared publications
- Across-environment seed protein stability and genetic architecture of seed components in soybean
- Registration of R18‐14147: A high‐protein conventional soybean germplasm line
- Registration of R19‐42848 as a drought‐tolerant, high‐yielding soybean germplasm line
- Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
- Quantitative trait loci analysis identifying novel genomic regions for off-target dicamba tolerance in soybean [Glycine max (L.) Merr.]
- Effect of light wavelength on soybean growth and development in a context of speed breeding
- Impact of Delaying Irrigation on Wilting, Seed Yield, and Other Agronomic Traits of Determinate MG5 Soybean
- Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
- Spatial models for seed yield, wilting, and maturity in furrow-irrigated soybean plots
- Response to selection to different breeding methods for soybean flood tolerance
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
- Impact of Delaying Irrigation on Wilting, Seed Yield, and Other Agronomic Traits of Determinate MG5 Soybean
- Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
- Across-environment seed protein stability and genetic architecture of seed components in soybean
- Registration of R18‐14147: A high‐protein conventional soybean germplasm line
- Registration of R19‐42848 as a drought‐tolerant, high‐yielding soybean germplasm line
- Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
- Effect of light wavelength on soybean growth and development in a context of speed breeding
- Response to selection to different breeding methods for soybean flood tolerance
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
- Response to selection to different breeding methods for soybean flood tolerance
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
- Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
- Response to selection to different breeding methods for soybean flood tolerance
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
- Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
- Response to selection to different breeding methods for soybean flood tolerance
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
- Response to selection to different breeding methods for soybean flood tolerance
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
- Registration of R18‐14147: A high‐protein conventional soybean germplasm line
- Impact of Delaying Irrigation on Wilting, Seed Yield, and Other Agronomic Traits of Determinate MG5 Soybean
- Registration of R18‐14147: A high‐protein conventional soybean germplasm line
- Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
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