Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Emilio Soriano Chavez's research focuses on understanding genotype by environment interactions in crop yields, particularly in maize. He has contributed to work that explores global prediction competitions, demonstrating how various modeling strategies can effectively estimate maize yields. His research also extends to the study of microbial dynamics within plant environments, specifically investigating the rhizosphere in soybean-Fusarium interactions through multi-omics analysis. Additionally, Chavez has been involved in identifying genes related to essential functions in bacteria, such as Streptococcus mutans, by analyzing phenotypic profiles. His collaborators include Emily S. Bellis, Jason Causey, Brett Hale from Arkansas State University, and Jimmy DuVall from the University of Arkansas at Fayetteville.
Metrics
- h-index: 2
- Publications: 4
- Citations: 32
Selected Publications
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Identification of a putative RocS homolog through phenotypic profiling of uncharacterized essential genes in Streptococcus mutans (2026)
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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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Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates (2024)
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Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates (2024)
Collaboration Network
Top Collaborators
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
- Global genotype by environment prediction competition reveals that diverse modeling strategies can deliver satisfactory maize yield estimates
- Global Genotype by Environment Prediction Competition Reveals That Diverse Modeling Strategies Can Deliver Satisfactory Maize Yield Estimates
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