Ngoc T. Phan
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Also affiliated: University of Saskatchewan (1980–1991); Trung tâm Nghiên cứu ong và nuôi ong nhiệt đới (2026)
Formerly Arkansas Post Doctoral Fellow, University of Arkansas through 2023.
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Ngoc T. Phan's research focuses on the molecular mechanisms underlying physiological processes, with recent work investigating the role of glutathione S-transferases in honey bees. These studies explore how specific enzymes, such as omega glutathione S-transferases, contribute to chemical adaptation by mediating pesticide sequestration and providing antioxidant defense in *Apis mellifera*. Phan's scholarly output includes five publications with 37 citations and an h-index of 2. The researcher's recent activity indicates ongoing engagement in this field of study.
Metrics
- h-index: 11
- Publications: 23
- Citations: 239
Positions
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Post Doctoral Fellow 2022–2023University of Arkansas Division of Agriculture Entomology and Plant Pathology ORCID
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International Research Coordinator 2015–2022Vietnam National University of Agriculture Research Center for Tropical Bees and Beekeeping ORCID
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Ph.D. Candidate 2015–2021Pennsylvania State University Entomology ORCID
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Vietnam National University of Agriculture 2013–2015Research Center for Tropical Bees and Beekeeping ORCID
Selected Publications
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Structural and Functional Insights into a Honey Bee Omega-Class Glutathione S-Transferase Mediating Chemical Sequestration and Antioxidative Stress (2026)
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An omega glutathione S-transferase in Apis mellifera contributes to chemical adaptation through pesticide sequestration and antioxidant defense (2026)
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Toxicity Assessment of Four Commonly Used Insecticides to the Corn-Infesting Rice Weevil (Coleoptera: Curculionidae) (2024)
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Pesticide use in integrated pest and pollinator management framework to protect pollinator health (2024)
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Comparative toxicities of commonly used agricultural insecticides to four honey bee species (Hymenoptera: Apidae) in Vietnam (2024)
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Arthropod Diversity Varies with Distance from On-Farm Floral Enhancements at Small Spatial Scales (2024)
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Author Correction: Fungicide ingestion reduces net energy gain and microbiome diversity of the solitary mason bee (2024)
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Fungicide ingestion reduces net energy gain and microbiome diversity of the solitary mason bee (2024)
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Systemic pesticides in a solitary bee pollen food store affect larval development and increase pupal mortality (2024)
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Architecture and potential roles of a delta-class glutathione S-transferase in protecting honey bee from agrochemicals (2023)
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Agricultural pesticide regulatory environment for pollinator protection across geographical regions (2023)
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Contribution of the delta-class glutathione S-transferase to agrochemical adaptation in Apis mellifera (2023)
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Potential risk to pollinators from neonicotinoid applications to host trees for management of spotted lanternfly,Lycorma delicatula(Hemiptera: Fulgoridae) (2023)
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Management of Panonychus ulmi with Various Miticides and Insecticides and Their Toxicity to Predatory Mites Conserved for Biological Mite Control in Eastern U.S. Apple Orchards (2023)
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Biology, Genetic Diversity, and Conservation of Wild Bees in Tree Fruit Orchards (2022)
Collaboration Network
Top Collaborators
- Structural and Functional Insights into a Honey Bee Omega-Class Glutathione S-Transferase Mediating Chemical Sequestration and Antioxidative Stress
- An omega glutathione S-transferase in Apis mellifera contributes to chemical adaptation through pesticide sequestration and antioxidant defense
- Structural and Functional Insights into a Honey Bee Omega-Class Glutathione S-Transferase Mediating Chemical Sequestration and Antioxidative Stress
- An omega glutathione S-transferase in Apis mellifera contributes to chemical adaptation through pesticide sequestration and antioxidant defense
- Structural and Functional Insights into a Honey Bee Omega-Class Glutathione S-Transferase Mediating Chemical Sequestration and Antioxidative Stress
- An omega glutathione S-transferase in Apis mellifera contributes to chemical adaptation through pesticide sequestration and antioxidant defense
- Structural and Functional Insights into a Honey Bee Omega-Class Glutathione S-Transferase Mediating Chemical Sequestration and Antioxidative Stress
- An omega glutathione S-transferase in Apis mellifera contributes to chemical adaptation through pesticide sequestration and antioxidant defense
- Structural and Functional Insights into a Honey Bee Omega-Class Glutathione S-Transferase Mediating Chemical Sequestration and Antioxidative Stress
- An omega glutathione S-transferase in Apis mellifera contributes to chemical adaptation through pesticide sequestration and antioxidant defense
- An omega glutathione S-transferase in Apis mellifera contributes to chemical adaptation through pesticide sequestration and antioxidant defense
- Structural and Functional Insights into a Honey Bee Omega-Class Glutathione S-Transferase Mediating Chemical Sequestration and Antioxidative Stress
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