Reiofeli A. Salas-Perez
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Also affiliated: Clemson University (2018)
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
Reiofeli A. Salas-Perez's research focuses on understanding and managing herbicide resistance in agricultural weed populations. Her work investigates the biochemical and genetic mechanisms underlying resistance to various herbicide classes, including PPO inhibitors and ACCase inhibitors. Recent publications examine resistance in economically significant weeds such as Palmer amaranth ( *Amaranthus palmeri* ) and Lolium multiflorum. Salas-Perez also studies factors that influence herbicide efficacy, such as the role of ammonium sulfate in enhancing glyphosate activity under water stress conditions. Her scholarship metrics include an h-index of 9, 15 total publications, and 442 total citations. She has collaborated on multiple publications with Nilda R. Burgos and Gulab Rangani at the University of Arkansas at Fayetteville.
Metrics
- h-index: 9
- Publications: 15
- Citations: 480
Selected Publications
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Resistance to Acetyl Coenzyme A Carboxylase (ACCase) Inhibitor in Lolium multiflorum: Effect of Multiple Target-Site Mutations (2024)
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Assessment of Efficacy and Mechanism of Resistance to Soil-Applied PPO Inhibitors in Amaranthus palmeri (2023)
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Mechanism of Resistance to S-metolachlor in Palmer amaranth (2021)
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Ammonium sulfate improves the efficacy of glyphosate on South African lovegrass (Eragrostis plana) under water stress (2021)
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A Novel Single-Site Mutation in the Catalytic Domain of Protoporphyrinogen Oxidase IX (PPO) Confers Resistance to PPO-Inhibiting Herbicides (2019)
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High [CO2] and Temperature Increase Resistance to Cyhalofop-Butyl in Multiple-Resistant Echinochloa colona (2019)
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New directions for integrated weed management: Modern technologies, tools and knowledge discovery (2019)
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Differential Response of Arkansas Palmer Amaranth (Amaranthus palmeri) to Glyphosate and Mesotrione (2018)
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RNA-Seq transcriptome analysis of Amaranthus palmeri with differential tolerance to glufosinate herbicide (2018)
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Frequency of Gly-210 Deletion Mutation among Protoporphyrinogen Oxidase Inhibitor–Resistant Palmer Amaranth (Amaranthus palmeri) Populations (2017)
Collaboration Network
Top Collaborators
- New directions for integrated weed management: Modern technologies, tools and knowledge discovery
- A Novel Single-Site Mutation in the Catalytic Domain of Protoporphyrinogen Oxidase IX (PPO) Confers Resistance to PPO-Inhibiting Herbicides
- RNA-Seq transcriptome analysis of Amaranthus palmeri with differential tolerance to glufosinate herbicide
- High [CO2] and Temperature Increase Resistance to Cyhalofop-Butyl in Multiple-Resistant Echinochloa colona
- Mechanism of Resistance to S-metolachlor in Palmer amaranth
Showing 5 of 10 shared publications
- A Novel Single-Site Mutation in the Catalytic Domain of Protoporphyrinogen Oxidase IX (PPO) Confers Resistance to PPO-Inhibiting Herbicides
- Mechanism of Resistance to S-metolachlor in Palmer amaranth
- Frequency of Gly-210 Deletion Mutation among Protoporphyrinogen Oxidase Inhibitor–Resistant Palmer Amaranth (Amaranthus palmeri) Populations
- Assessment of Efficacy and Mechanism of Resistance to Soil-Applied PPO Inhibitors in Amaranthus palmeri
- Resistance to Acetyl Coenzyme A Carboxylase (ACCase) Inhibitor in Lolium multiflorum: Effect of Multiple Target-Site Mutations
- New directions for integrated weed management: Modern technologies, tools and knowledge discovery
- High [CO2] and Temperature Increase Resistance to Cyhalofop-Butyl in Multiple-Resistant Echinochloa colona
- Ammonium sulfate improves the efficacy of glyphosate on South African lovegrass (Eragrostis plana) under water stress
- A Novel Single-Site Mutation in the Catalytic Domain of Protoporphyrinogen Oxidase IX (PPO) Confers Resistance to PPO-Inhibiting Herbicides
- Ammonium sulfate improves the efficacy of glyphosate on South African lovegrass (Eragrostis plana) under water stress
- Resistance to Acetyl Coenzyme A Carboxylase (ACCase) Inhibitor in Lolium multiflorum: Effect of Multiple Target-Site Mutations
- Frequency of Gly-210 Deletion Mutation among Protoporphyrinogen Oxidase Inhibitor–Resistant Palmer Amaranth (Amaranthus palmeri) Populations
- Differential Response of Arkansas Palmer Amaranth (Amaranthus palmeri) to Glyphosate and Mesotrione
- High [CO2] and Temperature Increase Resistance to Cyhalofop-Butyl in Multiple-Resistant Echinochloa colona
- Frequency of Gly-210 Deletion Mutation among Protoporphyrinogen Oxidase Inhibitor–Resistant Palmer Amaranth (Amaranthus palmeri) Populations
- A Novel Single-Site Mutation in the Catalytic Domain of Protoporphyrinogen Oxidase IX (PPO) Confers Resistance to PPO-Inhibiting Herbicides
- Mechanism of Resistance to S-metolachlor in Palmer amaranth
- A Novel Single-Site Mutation in the Catalytic Domain of Protoporphyrinogen Oxidase IX (PPO) Confers Resistance to PPO-Inhibiting Herbicides
- Assessment of Efficacy and Mechanism of Resistance to Soil-Applied PPO Inhibitors in Amaranthus palmeri
- Assessment of Efficacy and Mechanism of Resistance to Soil-Applied PPO Inhibitors in Amaranthus palmeri
- Resistance to Acetyl Coenzyme A Carboxylase (ACCase) Inhibitor in Lolium multiflorum: Effect of Multiple Target-Site Mutations
- Frequency of Gly-210 Deletion Mutation among Protoporphyrinogen Oxidase Inhibitor–Resistant Palmer Amaranth (Amaranthus palmeri) Populations
- Frequency of Gly-210 Deletion Mutation among Protoporphyrinogen Oxidase Inhibitor–Resistant Palmer Amaranth (Amaranthus palmeri) Populations
- Frequency of Gly-210 Deletion Mutation among Protoporphyrinogen Oxidase Inhibitor–Resistant Palmer Amaranth (Amaranthus palmeri) Populations
- Frequency of Gly-210 Deletion Mutation among Protoporphyrinogen Oxidase Inhibitor–Resistant Palmer Amaranth (Amaranthus palmeri) Populations
- RNA-Seq transcriptome analysis of Amaranthus palmeri with differential tolerance to glufosinate herbicide
- RNA-Seq transcriptome analysis of Amaranthus palmeri with differential tolerance to glufosinate herbicide
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