Kyle D. Gustafson
Associate Professor
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Kyle D. Gustafson's research focuses on host-parasite interactions, particularly those involving trematodes and snails, as well as the evolutionary biology and phylogenetics of animal species. He has investigated the seasonal occurrence and prevalence of parasites such as Neoechinorhynchus emydis in freshwater snails and the species-specific variation of coccidia among snail populations. His work also extends to wildlife genomics, including the development of SNP panels for genotyping mountain lions to assess population connectivity and genomic diversity.
Gustafson has served as PI on a National Science Foundation (NSF) grant focused on the ecological and evolutionary drivers of snail-symbiont interrelationships. He also co-PI'd another NSF grant aiming to understand invasion and disease ecology and evolution through computational data education. His scholarship metrics include an h-index of 13, 37 total publications, and 502 total citations. He has collaborated with researchers at Arkansas State University, including Maria Bollinger, Taylor Michelle Fiedor, Samuel N. Messinides, and Taylor M. Fiedor.
Metrics
- h-index: 13
- Publications: 37
- Citations: 502
Selected Publications
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Uncoiling Host–Parasite Interrelationships: Bounded Snail‐Host Flexibility Amid Conserved Trematode Morphology (2026)
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Data from: Genomic diversity of cougars across Utah: Evidence for latitudinal differentiation in a continuous population (2026)
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Genomic diversity of cougars across Utah: evidence for latitudinal differentiation in a continuous population (2026)
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Amphibian Parasites Exhibit Idiosyncratic Relationships with Spatiotemporal Environmental and Host-Community Variation (2025)
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The Coccidia Species Pfeifferinella ellipsoides Exhibits Spatial and Species-Specific Variation in Prevalence among Freshwater Snails (2024)
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Observations on Turtle Acanthocephalan Abnormalities from Oklahoma, U.S.A. (2023)
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Seasonal Occurrence of Neoechinorhynchus emydis (Phylum: Acanthocephala) in the Freshwater Snail, Planorbella cf. P. trivolvis, from Oklahoma (2022)
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Development of a 95 SNP panel to individually genotype mountain lions (Puma concolor) for microfluidic and other genotyping platforms (2022)
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Multi‐population puma connectivity could restore genomic diversity to at‐risk coastal populations in California (2021)
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Development of a 95 SNP Panel To Individually Genotype Mountain Lions (Puma Concolor) For Microfluidic and Other Genotyping Platforms (2021)
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Broad-scale puma connectivity could restore genomic diversity to fine-scale coastal populations (2021)
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Functional connectivity in a continuously distributed, migratory species as revealed by landscape genomics (2021)
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Correction to: Novel hybrid finds a peri-urban niche: Allen’s Hummingbirds in southern California (2020)
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Minimum habitat thresholds required for conserving mountain lion genetic diversity (2020)
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Novel hybrid finds a peri-urban niche: Allen’s Hummingbirds in southern California (2020)
Federal Grants 2 $2,451,918 total
Understanding Invasion and Disease Ecology and Evolution through Computational Data Education
BRC-BIO: Uncoiling the ecological and evolutionary drivers of snail-symbiont interrelationships
Collaboration Network
Top Collaborators
- Multi‐population puma connectivity could restore genomic diversity to at‐risk coastal populations in California
- Functional connectivity in a continuously distributed, migratory species as revealed by landscape genomics
- Development of a 95 SNP panel to individually genotype mountain lions (Puma concolor) for microfluidic and other genotyping platforms
- Development of a 95 SNP Panel To Individually Genotype Mountain Lions (Puma Concolor) For Microfluidic and Other Genotyping Platforms
- Broad-scale puma connectivity could restore genomic diversity to fine-scale coastal populations
- Multi‐population puma connectivity could restore genomic diversity to at‐risk coastal populations in California
- Development of a 95 SNP panel to individually genotype mountain lions (Puma concolor) for microfluidic and other genotyping platforms
- Development of a 95 SNP Panel To Individually Genotype Mountain Lions (Puma Concolor) For Microfluidic and Other Genotyping Platforms
- Broad-scale puma connectivity could restore genomic diversity to fine-scale coastal populations
- Multi‐population puma connectivity could restore genomic diversity to at‐risk coastal populations in California
- Development of a 95 SNP panel to individually genotype mountain lions (Puma concolor) for microfluidic and other genotyping platforms
- Development of a 95 SNP Panel To Individually Genotype Mountain Lions (Puma Concolor) For Microfluidic and Other Genotyping Platforms
- Broad-scale puma connectivity could restore genomic diversity to fine-scale coastal populations
- Multi‐population puma connectivity could restore genomic diversity to at‐risk coastal populations in California
- Development of a 95 SNP panel to individually genotype mountain lions (Puma concolor) for microfluidic and other genotyping platforms
- Development of a 95 SNP Panel To Individually Genotype Mountain Lions (Puma Concolor) For Microfluidic and Other Genotyping Platforms
- Broad-scale puma connectivity could restore genomic diversity to fine-scale coastal populations
- Multi‐population puma connectivity could restore genomic diversity to at‐risk coastal populations in California
- Functional connectivity in a continuously distributed, migratory species as revealed by landscape genomics
- Broad-scale puma connectivity could restore genomic diversity to fine-scale coastal populations
- Multi‐population puma connectivity could restore genomic diversity to at‐risk coastal populations in California
- Functional connectivity in a continuously distributed, migratory species as revealed by landscape genomics
- Broad-scale puma connectivity could restore genomic diversity to fine-scale coastal populations
- Multi‐population puma connectivity could restore genomic diversity to at‐risk coastal populations in California
- Broad-scale puma connectivity could restore genomic diversity to fine-scale coastal populations
- Multi‐population puma connectivity could restore genomic diversity to at‐risk coastal populations in California
- Broad-scale puma connectivity could restore genomic diversity to fine-scale coastal populations
- Multi‐population puma connectivity could restore genomic diversity to at‐risk coastal populations in California
- Broad-scale puma connectivity could restore genomic diversity to fine-scale coastal populations
- Development of a 95 SNP panel to individually genotype mountain lions (Puma concolor) for microfluidic and other genotyping platforms
- Development of a 95 SNP Panel To Individually Genotype Mountain Lions (Puma Concolor) For Microfluidic and Other Genotyping Platforms
- Development of a 95 SNP panel to individually genotype mountain lions (Puma concolor) for microfluidic and other genotyping platforms
- Development of a 95 SNP Panel To Individually Genotype Mountain Lions (Puma Concolor) For Microfluidic and Other Genotyping Platforms
- Genomic diversity of cougars across Utah: evidence for latitudinal differentiation in a continuous population
- Data from: Genomic diversity of cougars across Utah: Evidence for latitudinal differentiation in a continuous population
- Genomic diversity of cougars across Utah: evidence for latitudinal differentiation in a continuous population
- Data from: Genomic diversity of cougars across Utah: Evidence for latitudinal differentiation in a continuous population
- Functional connectivity in a continuously distributed, migratory species as revealed by landscape genomics
- Functional connectivity in a continuously distributed, migratory species as revealed by landscape genomics
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