Raquel Torres
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Also affiliated: Arkansas Biosciences Institute (2013–2020)
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Raquel Torres's research has focused on the study of plant physiology and cultivation. Her work has investigated various aspects of plant growth and development, including responses to environmental conditions and potential applications in agriculture. Torres has explored methods for optimizing crop yields and understanding the intricate mechanisms that govern plant life.
Metrics
- h-index: 3
- Publications: 3
- Citations: 152
Selected Publications
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Characterization of the response to abiotic stresses of high ascorbate Arabidopsis lines using phenomic approaches (2020)
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Engineering Elevated Vitamin C in Plants to Improve their Nutritional Content, Growth, and Tolerance to Abiotic Stress (2014)
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Elevating vitamin C content via overexpression of myo-inositol oxygenase and l-gulono-1,4-lactone oxidase in Arabidopsis leads to enhanced biomass and tolerance to abiotic stresses (2013)
Collaboration Network
Top Collaborators
- Elevating vitamin C content via overexpression of myo-inositol oxygenase and l-gulono-1,4-lactone oxidase in Arabidopsis leads to enhanced biomass and tolerance to abiotic stresses
- Engineering Elevated Vitamin C in Plants to Improve their Nutritional Content, Growth, and Tolerance to Abiotic Stress
- Characterization of the response to abiotic stresses of high ascorbate Arabidopsis lines using phenomic approaches
- Elevating vitamin C content via overexpression of myo-inositol oxygenase and l-gulono-1,4-lactone oxidase in Arabidopsis leads to enhanced biomass and tolerance to abiotic stresses
- Engineering Elevated Vitamin C in Plants to Improve their Nutritional Content, Growth, and Tolerance to Abiotic Stress
- Elevating vitamin C content via overexpression of myo-inositol oxygenase and l-gulono-1,4-lactone oxidase in Arabidopsis leads to enhanced biomass and tolerance to abiotic stresses
- Elevating vitamin C content via overexpression of myo-inositol oxygenase and l-gulono-1,4-lactone oxidase in Arabidopsis leads to enhanced biomass and tolerance to abiotic stresses
- Elevating vitamin C content via overexpression of myo-inositol oxygenase and l-gulono-1,4-lactone oxidase in Arabidopsis leads to enhanced biomass and tolerance to abiotic stresses
- Elevating vitamin C content via overexpression of myo-inositol oxygenase and l-gulono-1,4-lactone oxidase in Arabidopsis leads to enhanced biomass and tolerance to abiotic stresses
- Elevating vitamin C content via overexpression of myo-inositol oxygenase and l-gulono-1,4-lactone oxidase in Arabidopsis leads to enhanced biomass and tolerance to abiotic stresses
- Elevating vitamin C content via overexpression of myo-inositol oxygenase and l-gulono-1,4-lactone oxidase in Arabidopsis leads to enhanced biomass and tolerance to abiotic stresses
- Elevating vitamin C content via overexpression of myo-inositol oxygenase and l-gulono-1,4-lactone oxidase in Arabidopsis leads to enhanced biomass and tolerance to abiotic stresses
- Characterization of the response to abiotic stresses of high ascorbate Arabidopsis lines using phenomic approaches
- Characterization of the response to abiotic stresses of high ascorbate Arabidopsis lines using phenomic approaches
- Characterization of the response to abiotic stresses of high ascorbate Arabidopsis lines using phenomic approaches
- Characterization of the response to abiotic stresses of high ascorbate Arabidopsis lines using phenomic approaches
- Characterization of the response to abiotic stresses of high ascorbate Arabidopsis lines using phenomic approaches
- Engineering Elevated Vitamin C in Plants to Improve their Nutritional Content, Growth, and Tolerance to Abiotic Stress
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