Adam M. Siepielski
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
Also affiliated: New Mexico State University (2002–2006); Dartmouth College (2009–2011); New England Biolabs (United States) (2011); University of Wyoming (2007–2009); Google (United States) (2016); Pennsylvania State University (2001); University of San Diego (2012–2016); University of Arkansas System (2017–2018); Wyoming Department of Education (2007)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Adam M. Siepielski's research investigates how ecological interactions and environmental changes influence species coexistence and population dynamics. His work often employs meta-analysis and biological modeling to understand complex biological systems. A significant portion of his funded research, supported by a $925,711 NSF grant as PI, focuses on how climate warming impacts trade-offs that mediate species coexistence.
His publications examine various ecological phenomena, including the role of parasitism in shaping selection and fitness variation, the impact of reproductive interactions on species coexistence, and the relationship between environmental factors and species-specific parasitism. Siepielski has also contributed to understanding mass mortality events in lakes and has explored the link between genome size and diatom abundance in polar oceans. His scholarship is recognized, as indicated by his h-index of 34 and over 4,700 citations, and he actively collaborates with researchers at the University of Arkansas at Fayetteville.
Metrics
- h-index: 34
- Publications: 118
- Citations: 4,828
Selected Publications
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Evidence consistent with local adaptation to predation shaping stabilizing effects underlying local coexistence (2026)
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Data for: Sex ratio shapes female response to sexual conflict in the wild (2026)
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Data for: Sex ratio shapes female response to sexual conflict in the wild (2026)
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Evidence consistent with local adaptation to predation shaping stabilizing effects underlying local coexistence (2026)
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Heritable variation drives rapid evolution of thermal performance curves in the protist Tetrahymena thermophila (2026)
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The reshaping of trade-offs under climate warming (2026)
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Predator Loss Amidst Heatwaves (2025)
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Predator Loss Amidst Heatwaves (2025)
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Cheating death: selection on digestive physiology overcomes expected growth costs of antipredator defences (2025)
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Sexual Conflict in Resident Species Can Facilitate Establishment of a Maladapted Invader (2025)
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Parasitism as a driver of host diversification (2025)
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A Systematic Review and Meta-Analysis of Chemical Sanitizer Efficacy Against Biofilms of Listeria monocytogenes, Salmonella enterica, and STEC on Food Processing Surfaces (2025)
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Predators drive selection for adaptive plasticity in prey defense behavior (2025)
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Is the local environment more important than within‐host interactions in determining coinfection? (2024)
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Diatom abundance in the polar oceans is predicted by genome size (2024)
Federal Grants 1 $925,711 total
Climate warming and the collapse of trade-offs mediating species coexistence
Collaboration Network
Top Collaborators
- Climate warming amplifies the frequency of fish mass mortality events across north temperate lakes
- Interactions between fitness components across the life cycle constrain competitor coexistence
- A common measure of prey immune function is not constrained by the cascading effects of predators
- Predator mass mortality events restructure food webs through trophic decoupling
- One House is a Home for Many: Temporal Partitioning of Vertebrates on an American Beaver Lodge
Showing 5 of 8 shared publications
- When Ecology Fails: How Reproductive Interactions Promote Species Coexistence
- Interactions between fitness components across the life cycle constrain competitor coexistence
- Meta‐analytical evidence for frequency‐dependent selection across the tree of life
- Environmental Conditions during Development Affect Sexual Selection through Trait-Fitness Relationships
- Insect Species Coexistence and Conservation Amidst Global Change
Showing 5 of 7 shared publications
- Parasitism shapes selection by drastically reducing host fitness and increasing host fitness variation
- Resetting our expectations for parasites and their effects on species interactions: a meta‐analysis
- A role for the local environment in driving species‐specific parasitism in a multi‐host parasite system
- A common measure of prey immune function is not constrained by the cascading effects of predators
- Is the local environment more important than within‐host interactions in determining coinfection?
Showing 5 of 6 shared publications
- Climate warming amplifies the frequency of fish mass mortality events across north temperate lakes
- Predator mass mortality events restructure food webs through trophic decoupling
- Predator mass mortality events restructure freshwater food webs via trophic decoupling
- Predator Loss Amidst Heatwaves
- Predator Loss Amidst Heatwaves
- Interactions between fitness components across the life cycle constrain competitor coexistence
- Insect Species Coexistence and Conservation Amidst Global Change
- Predators drive selection for adaptive plasticity in prey defense behavior
- Cheating death: selection on digestive physiology overcomes expected growth costs of antipredator defences
- Interactions between fitness components across the life cycle constrain competitor coexistence
- A common measure of prey immune function is not constrained by the cascading effects of predators
- Predators drive selection for adaptive plasticity in prey defense behavior
- Cheating death: selection on digestive physiology overcomes expected growth costs of antipredator defences
- Insect Species Coexistence and Conservation Amidst Global Change
- Predators drive selection for adaptive plasticity in prey defense behavior
- Cheating death: selection on digestive physiology overcomes expected growth costs of antipredator defences
- When Ecology Fails: How Reproductive Interactions Promote Species Coexistence
- Environmental Conditions during Development Affect Sexual Selection through Trait-Fitness Relationships
- Environmental variation shapes and links parasitism to sexual selection
- Is the local environment more important than within‐host interactions in determining coinfection?
- Insect Species Coexistence and Conservation Amidst Global Change
- Resetting our expectations for parasites and their effects on species interactions: a meta‐analysis
- Parasitism as a driver of host diversification
- Predator mass mortality events restructure food webs through trophic decoupling
- Rapid adaptive evolution of microbial thermal performance curves
- Predator Loss Amidst Heatwaves
- Predator Loss Amidst Heatwaves
- When Ecology Fails: How Reproductive Interactions Promote Species Coexistence
- When Ecology Fails: How Reproductive Interactions Promote Species Coexistence
- One House is a Home for Many: Temporal Partitioning of Vertebrates on an American Beaver Lodge
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