Callie Phipps
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Also affiliated: Arkansas Biosciences Institute (2020–2024)
Research Areas
Biography and Research Information
OverviewAI-generated summary
Callie Phipps conducts research focused on plant physiology, specifically investigating cellular processes in soybean microspores during androgenesis. Her work examines non-gametophytic morphologies that arise in isolated microspore cultures. Phipps has published on differential gene expression profiles that reveal stress-induced cell fate divergence in soybean microspores. Her research has involved collaborations with Brett Hale, Naina Rao, Caroline Kelley, and Asela Wijeratne at Arkansas State University, with whom she shares multiple publications. Phipps's scholarly output includes four publications and has garnered 22 citations, contributing to her h-index of 2.
Metrics
- h-index: 2
- Publications: 4
- Citations: 23
Selected Publications
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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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Soybean androgenesis II: non-gametophytic morphologies in isolated microspore culture (2021)
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Differential Expression Profiling Reveals Stress-Induced Cell Fate Divergence in Soybean Microspores (2020)
Collaboration Network
Top Collaborators
- 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
- 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
- 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
- Differential Expression Profiling Reveals Stress-Induced Cell Fate Divergence in Soybean Microspores
- Correction: Hale et al. Differential Expression Profiling Reveals Stress-Induced Cell Fate Divergence in Soybean Microspores. Plants 2020, 9, 1510
- Soybean androgenesis II: non-gametophytic morphologies in isolated microspore culture
- Correction to: Soybean androgenesis II: non-gametophytic morphologies in isolated microspore culture
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