Samantha M Howe
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Assistant Professor of Microbiology
Also affiliated: Foshan University (2021); University of Arkansas System (2023)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Samantha M. Howe's research focuses on the study of microbial communities, particularly in livestock. Her work investigates the diversity, composition, and functional potential of bacteria and archaea within animal microbiomes, employing techniques such as culturomics and metagenomics. Howe has examined how factors like weaning impact gut dysfunction and archaeal community structure in pigs, and has explored nutritional interventions for these animals. Her publications also address the application of absolute bacterial quantification in microbiome studies and decision-making for biological questions, alongside the role of culturomics in understanding host-microbiota interactions. Howe collaborates with researchers at the University of Arkansas at Fayetteville, including Jiangchao Zhao, Kristopher A. Bottoms, Charles V. Maxwell, and Ziyu Liu, with whom she has co-authored multiple publications. Her scholarship includes 20 publications with an h-index of 9 and 294 citations.
Metrics
- h-index: 9
- Publications: 21
- Citations: 287
Positions
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Assistant Professor of Microbiology 2026–presentArkansas State University College of Veterinary Medicine ORCID
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Postdoctoral Scholar 2024–2026University of Arkansas at Fayetteville Department of Animal Science ORCID
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Graduate Research Assistant 2019–2024University of Arkansas at Fayetteville Department of Animal Science ORCID
Selected Publications
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Longitudinal mapping of microbiome and antibiotic resistance dynamics in the yellow-feathered broiler production chain (2026)
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Lactiplantibacillus plantarum promotes intestinal goblet cell differentiation via indole-3-lactic acid–AHR signaling in pigs (2026)
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204. Seasonality of Bovine Respiratory Disease (BRD) and Mitigation Techniques Used in Receiving Beef Cattle in the Last 10 Years: A Meta-analysis (2026)
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Longitudinal Modulation of the Gut Microbiome and Growth Performance by Phytochemicals as Antibiotic Alternatives in Swine Production (2026)
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233 Effect of fiber and stimbiotic on growth performance and the gut microbiome in pigs challenged with F18 enterotoxigenic Escherichia coli (ETEC) (2025)
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The sow vaginal and gut microbiota associated with longevity and reproductive performance (2025)
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Draft genome sequence of Ruoffia tabacinasalis isolated from a bovine nasal swab: a novel member of the bovine nasal microbiota (2024)
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Culturomics: A critical approach in studying the roles of human and animal microbiota (2024)
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Effect of bovine respiratory disease on the respiratory microbiome: a meta-analysis (2023)
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Metagenomic and Meta-Transcriptomic Analysis Reveal the Colonization and Expression Profile of Probiotic Strains in Humans and Animals (2023)
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Archaea: An under-estimated kingdom in livestock animals (2022)
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Weaning Time Affects the Archaeal Community Structure and Functional Potential in Pigs (2022)
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The diversity, composition, and metabolic pathways of archaea in pigs (2021)
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Current Applications of Absolute Bacterial Quantification in Microbiome Studies and Decision-Making Regarding Different Biological Questions (2021)
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Comprehensive Cultivation of the Swine Gut Microbiome Reveals High Bacterial Diversity and Guides Bacterial Isolation in Pigs (2021)
Collaboration Network
Top Collaborators
- Current Applications of Absolute Bacterial Quantification in Microbiome Studies and Decision-Making Regarding Different Biological Questions
- Weaning Induced Gut Dysfunction and Nutritional Interventions in Nursery Pigs: A Partial Review
- Comprehensive Cultivation of the Swine Gut Microbiome Reveals High Bacterial Diversity and Guides Bacterial Isolation in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- Archaea: An under-estimated kingdom in livestock animals
Showing 5 of 17 shared publications
- Current Applications of Absolute Bacterial Quantification in Microbiome Studies and Decision-Making Regarding Different Biological Questions
- Comprehensive Cultivation of the Swine Gut Microbiome Reveals High Bacterial Diversity and Guides Bacterial Isolation in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- Archaea: An under-estimated kingdom in livestock animals
- Metagenomic and Meta-Transcriptomic Analysis Reveal the Colonization and Expression Profile of Probiotic Strains in Humans and Animals
Showing 5 of 8 shared publications
- Weaning Induced Gut Dysfunction and Nutritional Interventions in Nursery Pigs: A Partial Review
- Comprehensive Cultivation of the Swine Gut Microbiome Reveals High Bacterial Diversity and Guides Bacterial Isolation in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- Weaning Time Affects the Archaeal Community Structure and Functional Potential in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
Showing 5 of 7 shared publications
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- Weaning Time Affects the Archaeal Community Structure and Functional Potential in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- The diversity, composition, and metabolic pathways of archaea in pigs
- Weaning Induced Gut Dysfunction and Nutritional Interventions in Nursery Pigs: A Partial Review
- Comprehensive Cultivation of the Swine Gut Microbiome Reveals High Bacterial Diversity and Guides Bacterial Isolation in Pigs
- The sow vaginal and gut microbiota associated with longevity and reproductive performance
- 233 Effect of fiber and stimbiotic on growth performance and the gut microbiome in pigs challenged with F18 enterotoxigenic Escherichia coli (ETEC)
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- Archaea: An under-estimated kingdom in livestock animals
- Metagenomic and Meta-Transcriptomic Analysis Reveal the Colonization and Expression Profile of Probiotic Strains in Humans and Animals
- Weaning Time Affects the Archaeal Community Structure and Functional Potential in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- The diversity, composition, and metabolic pathways of archaea in pigs
- Comprehensive Cultivation of the Swine Gut Microbiome Reveals High Bacterial Diversity and Guides Bacterial Isolation in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- The diversity, composition, and metabolic pathways of archaea in pigs
- Comprehensive Cultivation of the Swine Gut Microbiome Reveals High Bacterial Diversity and Guides Bacterial Isolation in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- Metagenomic and Meta-Transcriptomic Analysis Reveal the Colonization and Expression Profile of Probiotic Strains in Humans and Animals
- Comprehensive Cultivation of the Swine Gut Microbiome Reveals High Bacterial Diversity and Guides Bacterial Isolation in Pigs
- Archaea: An under-estimated kingdom in livestock animals
- Metagenomic and Meta-Transcriptomic Analysis Reveal the Colonization and Expression Profile of Probiotic Strains in Humans and Animals
- Comprehensive Cultivation of the Swine Gut Microbiome Reveals High Bacterial Diversity and Guides Bacterial Isolation in Pigs
- The sow vaginal and gut microbiota associated with longevity and reproductive performance
- 233 Effect of fiber and stimbiotic on growth performance and the gut microbiome in pigs challenged with F18 enterotoxigenic Escherichia coli (ETEC)
- Weaning Time Affects the Archaeal Community Structure and Functional Potential in Pigs
- Weaning Time Affects the Archaeal Community Structure and Functional Potential in Pigs
- The diversity, composition, and metabolic pathways of archaea in pigs
- Culturomics: A critical approach in studying the roles of human and animal microbiota
- The sow vaginal and gut microbiota associated with longevity and reproductive performance
- Lactiplantibacillus plantarum promotes intestinal goblet cell differentiation via indole-3-lactic acid–AHR signaling in pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
- The Diversity, Composition, and Metabolic Pathways of Archaea in Pigs
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