Jeff F. Pummill
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Co-Director High performance Computing Center
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Jeff F. Pummill's research focuses on genomic and molecular analyses of various organisms, including bacteria, scorpions, and chickens. He has investigated the genomes of bacterial species such as *Staphylococcus agnetis* and *Enterococcus cecorum*, particularly in the context of lameness and sepsis outbreaks in broiler chickens. His work also includes the complete mitochondrial genome sequencing of the scorpion *Centruroides vittatus* and genome assembly of a new *Mycoplasma* species found within this scorpion. Pummill has explored the genetic basis of reduced toxicity in *Centruroides vittatus* by examining the expression and production of its beta toxins. He has co-authored publications on phylogenomic analyses of *Staphylococcus* species and is a co-director of the High Performance Computing Center at the University of Arkansas at Fayetteville. His research network includes collaborators such as Douglas D. Rhoads and Adnan Alrubaye from the University of Arkansas at Fayetteville.
Metrics
- h-index: 5
- Publications: 12
- Citations: 103
Positions
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Co-Director High performance Computing Center 2005–presentUniversity of Arkansas Fayetteville Biological Sciences ORCID
Selected Publications
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Phylogenomic Analyses of Three Distinct Lineages Uniting Staphylococcus cohnii and Staphylococcus urealyticus from Diverse Hosts (2024)
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Phylogenomic Analyses of Three Distinct Lineages Uniting Staphylococcus cohnii and Staphylococcus Urealyticus from Diverse Hosts (2024)
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A robust genome assembly with transcriptomic data from the striped bark scorpion, Centruroides vittatus (2024)
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Infusing High-Performance Computing and Machine Learning in Mechanical Engineering Education (2024)
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Molecular Genomic Analyses of Enterococcus cecorum from Sepsis Outbreaks in Broilers (2024)
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Molecular genomic analyses of Enterococcus cecorum from sepsis outbreaks in broilers (2024)
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A robust genome and assembly with transcriptomic data from the striped scorpion, Centruroides vittatus (2023)
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Reduced Toxicity of Centruroides vittatus (Say, 1821) May Result from Lowered Sodium β Toxin Gene Expression and Toxin Protein Production (2021)
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Genome Analyses of a New Mycoplasma Species from the Scorpion Centruroides vittatus (2019)
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Genome Analyses of a New Mycoplasma Species From the scorpion Centruroides vittatus (2018)
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The complete mitochondrial genome of the scorpion Centruroides vittatus (Arachnida: Scorpiones) (2017)
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Genome Analysis of Staphylococcus agnetis, an Agent of Lameness in Broiler Chickens (2015)
Collaboration Network
Top Collaborators
- Genome Analysis of Staphylococcus agnetis, an Agent of Lameness in Broiler Chickens
- Molecular Genomic Analyses of Enterococcus cecorum from Sepsis Outbreaks in Broilers
- Reduced Toxicity of Centruroides vittatus (Say, 1821) May Result from Lowered Sodium β Toxin Gene Expression and Toxin Protein Production
- Genome Analyses of a New Mycoplasma Species from the Scorpion Centruroides vittatus
- The complete mitochondrial genome of the scorpion Centruroides vittatus (Arachnida: Scorpiones)
Showing 5 of 11 shared publications
- Reduced Toxicity of Centruroides vittatus (Say, 1821) May Result from Lowered Sodium β Toxin Gene Expression and Toxin Protein Production
- Genome Analyses of a New Mycoplasma Species from the Scorpion Centruroides vittatus
- The complete mitochondrial genome of the scorpion Centruroides vittatus (Arachnida: Scorpiones)
- A robust genome assembly with transcriptomic data from the striped bark scorpion, Centruroides vittatus
- A robust genome and assembly with transcriptomic data from the striped scorpion, Centruroides vittatus
Showing 5 of 6 shared publications
- Genome Analysis of Staphylococcus agnetis, an Agent of Lameness in Broiler Chickens
- Molecular Genomic Analyses of Enterococcus cecorum from Sepsis Outbreaks in Broilers
- Molecular genomic analyses of Enterococcus cecorum from sepsis outbreaks in broilers
- Phylogenomic Analyses of Three Distinct Lineages Uniting Staphylococcus cohnii and Staphylococcus Urealyticus from Diverse Hosts
- Phylogenomic Analyses of Three Distinct Lineages Uniting Staphylococcus cohnii and Staphylococcus urealyticus from Diverse Hosts
- Phylogenomic Analyses of Three Distinct Lineages Uniting Staphylococcus cohnii and Staphylococcus Urealyticus from Diverse Hosts
- Phylogenomic Analyses of Three Distinct Lineages Uniting Staphylococcus cohnii and Staphylococcus urealyticus from Diverse Hosts
- Phylogenomic Analyses of Three Distinct Lineages Uniting Staphylococcus cohnii and Staphylococcus Urealyticus from Diverse Hosts
- Phylogenomic Analyses of Three Distinct Lineages Uniting Staphylococcus cohnii and Staphylococcus urealyticus from Diverse Hosts
- Genome Analysis of Staphylococcus agnetis, an Agent of Lameness in Broiler Chickens
- Genome Analysis of Staphylococcus agnetis, an Agent of Lameness in Broiler Chickens
- Genome Analysis of Staphylococcus agnetis, an Agent of Lameness in Broiler Chickens
- Genome Analysis of Staphylococcus agnetis, an Agent of Lameness in Broiler Chickens
- Reduced Toxicity of Centruroides vittatus (Say, 1821) May Result from Lowered Sodium β Toxin Gene Expression and Toxin Protein Production
- Reduced Toxicity of Centruroides vittatus (Say, 1821) May Result from Lowered Sodium β Toxin Gene Expression and Toxin Protein Production
- Infusing High-Performance Computing and Machine Learning in Mechanical Engineering Education
- Infusing High-Performance Computing and Machine Learning in Mechanical Engineering Education
- Phylogenomic Analyses of Three Distinct Lineages Uniting Staphylococcus cohnii and Staphylococcus Urealyticus from Diverse Hosts
- Phylogenomic Analyses of Three Distinct Lineages Uniting Staphylococcus cohnii and Staphylococcus urealyticus from Diverse Hosts
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