Brett M. Hale
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Graduate Research Assistant
Also affiliated: Arkansas State University System (2024); Corteva (United States) (2021); Arkansas Biosciences Institute (2020–2026)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Brett Hale's research interests encompass plant biology, focusing on soybean responses to environmental stressors and disease, as well as investigating microbial communities. Hale has studied the effects of nanoparticle applications, such as zinc oxide and selenium nanoparticles, on mitigating arsenic toxicity in soybean seedlings by regulating photosynthetic and antioxidant pathways. Further work has examined the interplay of these nanoparticles in enhancing arsenic tolerance through gene expression and transporter activity. Hale has also contributed to understanding plant disease resistance, specifically in resolving intergenotypic Striga resistance in sorghum and assessing the soybean– Phytophthora sojae pathosystem. Additionally, Hale has explored methods for analyzing poultry microbiota using 16S rRNA gene sequencing, raising questions about standardization protocols for this research area. Hale's scholarship metrics include an h-index of 10, with 32 total publications and 378 total citations. Hale has collaborated extensively with researchers at Arkansas State University, including Asela Wijeratne (13 shared publications), Emily S. Bellis (5 shared publications), Naina Rao (3 shared publications), and Callie Phipps (3 shared publications).
Metrics
- h-index: 9
- Publications: 33
- Citations: 321
Positions
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Head 2019–presentAgriGro Research and Development ORCID
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Graduate Research Assistant publications 2020–2026Arkansas State University Listing
Selected Publications
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Integrated Multi-Omics Analysis Provides Insights into the Rhizosphere Microbial Dynamics in Soybean– Fusarium virguliforme Interaction (2026)
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Cell Wall Dynamics in the Parasitic Plant (Striga) and Rice Pathosystem (2024)
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Fine-scale characterization of the soybean rhizosphere microbiome via synthetic long reads and avidity sequencing (2024)
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Correction: Hale et al. Differential Expression Profiling Reveals Stress-Induced Cell Fate Divergence in Soybean Microspores. Plants 2020, 9, 1510 (2024)
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Correction to: Soybean androgenesis II: non-gametophytic morphologies in isolated microspore culture (2024)
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Peer Review Report For: Evaluation of cytosine conversion methods for whole-genome DNA methylation profiling [version 1; peer review: 2 not approved] (2023)
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Peer Review Report For: Evaluation of cytosine conversion methods for whole-genome DNA methylation profiling [version 1; peer review: 2 not approved] (2023)
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Gene regulatory network inference in soybean upon infection by Phytophthora sojae (2023)
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Transcriptome atlas of Striga germination: Implications for managing an intractable parasitic plant (2023)
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Resolving intergenotypic Striga resistance in sorghum (2023)
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An updated assessment of the soybean– Phytophthora sojae pathosystem (2023)
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Evaluation of cytosine conversion methods for whole-genome DNA methylation profiling (2022)
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Resolving intergenotypic Striga resistance in sorghum (2022)
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A transcriptome atlas of Striga hermonthica germination (2022)
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Gene regulatory network inference in soybean upon infection by Phytophthora sojae (2022)
Collaboration Network
Top Collaborators
- Resolving intergenotypic Striga resistance in sorghum
- An updated assessment of the soybean– Phytophthora sojae pathosystem
- Differential Expression Profiling Reveals Stress-Induced Cell Fate Divergence in Soybean Microspores
- Gene regulatory network inference in soybean upon infection by Phytophthora sojae
- Fine-scale characterization of the soybean rhizosphere microbiome via synthetic long reads and avidity sequencing
Showing 5 of 13 shared publications
- Androgenesis-Based Doubled Haploidy: Past, Present, and Future Perspectives
- Differential Expression Profiling Reveals Stress-Induced Cell Fate Divergence in Soybean Microspores
- Soybean androgenesis I: identification of pyramidal stressors in anther cultures that sustain cell divisions and putative embryo formation from isolated microspore cultures
- Soybean androgenesis II: non-gametophytic morphologies in isolated microspore culture
- Gynoecium pubescence in soybean: a prevalent false-positive during in vitro androgenesis
Showing 5 of 7 shared publications
- Differential Expression Profiling Reveals Stress-Induced Cell Fate Divergence in Soybean Microspores
- Soybean androgenesis I: identification of pyramidal stressors in anther cultures that sustain cell divisions and putative embryo formation from isolated microspore cultures
- Soybean androgenesis II: non-gametophytic morphologies in isolated microspore culture
- Correction to: Soybean androgenesis II: non-gametophytic morphologies in isolated microspore culture
- Correction: Hale et al. Differential Expression Profiling Reveals Stress-Induced Cell Fate Divergence in Soybean Microspores. Plants 2020, 9, 1510
- Resolving intergenotypic Striga resistance in sorghum
- Transcriptome atlas of Striga germination: Implications for managing an intractable parasitic plant
- Cell Wall Dynamics in the Parasitic Plant (Striga) and Rice Pathosystem
- A transcriptome atlas of Striga hermonthica germination
- Resolving intergenotypic Striga resistance in sorghum
- Resolving intergenotypic Striga resistance in sorghum
- Transcriptome atlas of Striga germination: Implications for managing an intractable parasitic plant
- Cell Wall Dynamics in the Parasitic Plant (Striga) and Rice Pathosystem
- A transcriptome atlas of Striga hermonthica germination
- Resolving intergenotypic Striga resistance in sorghum
- Resolving intergenotypic Striga resistance in sorghum
- Transcriptome atlas of Striga germination: Implications for managing an intractable parasitic plant
- Cell Wall Dynamics in the Parasitic Plant (Striga) and Rice Pathosystem
- A transcriptome atlas of Striga hermonthica germination
- Resolving intergenotypic Striga resistance in sorghum
- Resolving intergenotypic Striga resistance in sorghum
- Transcriptome atlas of Striga germination: Implications for managing an intractable parasitic plant
- Cell Wall Dynamics in the Parasitic Plant (Striga) and Rice Pathosystem
- A transcriptome atlas of Striga hermonthica germination
- Resolving intergenotypic Striga resistance in sorghum
- Differential Expression Profiling Reveals Stress-Induced Cell Fate Divergence in Soybean Microspores
- Soybean androgenesis II: non-gametophytic morphologies in isolated microspore culture
- Correction to: Soybean androgenesis II: non-gametophytic morphologies in isolated microspore culture
- Correction: Hale et al. Differential Expression Profiling Reveals Stress-Induced Cell Fate Divergence in Soybean Microspores. Plants 2020, 9, 1510
- Resolving intergenotypic Striga resistance in sorghum
- Transcriptome atlas of Striga germination: Implications for managing an intractable parasitic plant
- A transcriptome atlas of Striga hermonthica germination
- Resolving intergenotypic Striga resistance in sorghum
- Evaluation of cytosine conversion methods for whole-genome DNA methylation profiling
- Peer Review Report For: Evaluation of cytosine conversion methods for whole-genome DNA methylation profiling [version 1; peer review: 2 not approved]
- Peer Review Report For: Evaluation of cytosine conversion methods for whole-genome DNA methylation profiling [version 1; peer review: 2 not approved]
- Soybean androgenesis II: non-gametophytic morphologies in isolated microspore culture
- Correction to: Soybean androgenesis II: non-gametophytic morphologies in isolated microspore culture
- Androgenesis-Based Doubled Haploidy: Past, Present, and Future Perspectives
- Gynoecium pubescence in soybean: a prevalent false-positive during in vitro androgenesis
- Androgenesis-Based Doubled Haploidy: Past, Present, and Future Perspectives
- Gynoecium pubescence in soybean: a prevalent false-positive during in vitro androgenesis
- Amelioration of AsV toxicity by concurrent application of ZnO-NPs and Se-NPs is associated with differential regulation of photosynthetic indexes, antioxidant pool and osmolytes content in soybean seedling
- Interplay of ZnONPs and/or SeNPs induces arsenic tolerance in soybean by regulation of antioxidants pool, WRKY genes, and expression of arsenic transporters
- Amelioration of AsV toxicity by concurrent application of ZnO-NPs and Se-NPs is associated with differential regulation of photosynthetic indexes, antioxidant pool and osmolytes content in soybean seedling
- Interplay of ZnONPs and/or SeNPs induces arsenic tolerance in soybean by regulation of antioxidants pool, WRKY genes, and expression of arsenic transporters
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