Liliana Florez‐Palacios
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
Also affiliated: United States Department of Agriculture (2024–2025); University of Arkansas System (2013–2026)
Faculty Researcher
Crop, Soil and Environmental Sciences
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Liliana Florez‐Palacios' research focuses on the genetics and breeding of soybean, with a particular emphasis on seed composition and stress tolerance. Her work investigates the genetic architecture of seed components, such as protein and oil content, and explores quantitative trait loci (QTL) associated with these traits. Florez‐Palacios has also examined the influence of environmental factors, like planting date and flooding, on edamame and soybean quality, harvest windows, and yield. Her research includes developing high-throughput methods for screening soybean germplasm for hypoxia tolerance and investigating the response to selection for flood tolerance using different breeding strategies. She has registered a high-protein conventional soybean germplasm line, R18‐14147. Florez‐Palacios collaborates with researchers at the University of Arkansas at Fayetteville, including Leandro Mozzoni, Andrea Acuña, Chengjun Wu, and Derrick Harrison.
Metrics
- h-index: 10
- Publications: 53
- Citations: 368
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 ‘R19C‐1012’: A high‐yielding soybean cultivar with improved flooding tolerance at early vegetative stages (2025)
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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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Genomic analysis and characterization of new loci associated with seed protein and oil content in soybeans (2023)
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Registration of soybean germplasm line R14‐1422 with high yield and moderate resistance to southern root knot nematode (2023)
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Genome-Wide Detection of Quantitative Trait Loci and Prediction of Candidate Genes for Seed Sugar Composition in Early Mature Soybean (2023)
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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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Genetics of seed protein and oil inherited from “BARC-7” soybean in two F<sub>2</sub>-derived mapping populations (2022)
Collaboration Network
Top Collaborators
- Effect of Planting Date and Cultivar Maturity in Edamame Quality and Harvest Window
- Across-environment seed protein stability and genetic architecture of seed components in soybean
- Response to selection to different breeding methods for soybean flood tolerance
- Genetics of seed protein and oil inherited from “BARC-7” soybean in two F<sub>2</sub>-derived mapping populations
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
Showing 5 of 14 shared publications
- Effect of Planting Date and Cultivar Maturity in Edamame Quality and Harvest Window
- Across-environment seed protein stability and genetic architecture of seed components in soybean
- Response to selection to different breeding methods for soybean flood tolerance
- Genetics of seed protein and oil inherited from “BARC-7” soybean in two F<sub>2</sub>-derived mapping populations
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
Showing 5 of 13 shared publications
- Effect of Planting Date and Cultivar Maturity in Edamame Quality and Harvest Window
- 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 soybean germplasm line R14‐1422 with high yield and moderate resistance to southern root knot nematode
Showing 5 of 10 shared publications
- 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 R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
- Registration of R18‐14147: A high‐protein conventional soybean germplasm line
Showing 5 of 8 shared publications
- Response to selection to different breeding methods for soybean flood tolerance
- Genetics of seed protein and oil inherited from “BARC-7” soybean in two F<sub>2</sub>-derived mapping populations
- Developing a high‐throughput method to screen soybean germplasm for hypoxia tolerance in a hydroponic system
- Genomic analysis and characterization of new loci associated with seed protein and oil content in soybeans
- Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
Showing 5 of 6 shared publications
- Effect of Planting Date and Cultivar Maturity in Edamame Quality and Harvest Window
- 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 soybean germplasm line R14‐1422 with high yield and moderate resistance to southern root knot nematode
- Registration of ‘R13‐13997’ soybean cultivar
- Registration of soybean germplasm line R14‐1422 with high yield and moderate resistance to southern root knot nematode
- Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
- Registration of R18‐14147: A high‐protein conventional soybean germplasm line
- Registration of ‘R13‐13997’ soybean cultivar
- Registration of ‘R19C‐1012’: A high‐yielding soybean cultivar with improved flooding tolerance at early vegetative stages
- Genetics of seed protein and oil inherited from “BARC-7” soybean in two F<sub>2</sub>-derived mapping populations
- Registration of soybean germplasm line R14‐1422 with high yield and moderate resistance to southern root knot nematode
- Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
- Impact of Delaying Irrigation on Wilting, Seed Yield, and Other Agronomic Traits of Determinate MG5 Soybean
- Spatial models for seed yield, wilting, and maturity in furrow-irrigated soybean plots
- Across-environment seed protein stability and genetic architecture of seed components in soybean
- Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
- 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 ‘R19C‐1012’: A high‐yielding soybean cultivar with improved flooding tolerance at early vegetative stages
- 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
- Impact of Delaying Irrigation on Wilting, Seed Yield, and Other Agronomic Traits of Determinate MG5 Soybean
- Across-environment seed protein stability and genetic architecture of seed components in soybean
- Registration of R16‐45 as a flood‐tolerant, high‐yielding soybean germplasm line
- Registration of R18‐14147: A high‐protein conventional soybean germplasm line
- Registration of R19‐42848 as a drought‐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
- Effect of Planting Date and Cultivar Maturity in Edamame Quality and Harvest Window
- 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 soybean germplasm line R14‐1422 with high yield and moderate resistance to southern root knot nematode
- Registration of ‘R13‐13997’ soybean cultivar
- Registration of ‘R19C‐1012’: A high‐yielding soybean cultivar with improved flooding tolerance at early vegetative stages
- Genetics of seed protein and oil inherited from “BARC-7” soybean in two F<sub>2</sub>-derived mapping populations
- Registration of soybean germplasm line R14‐1422 with high yield and moderate resistance to southern root knot nematode
- Registration of ‘R13‐13997’ soybean cultivar
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