Miguel Gómez‐Llano
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Assistant professor
Also affiliated: Lund University (2018–2022); University of Manchester (2016–2018); Museo Nacional de Ciencias Naturales (2013); Karlstad University (2023–2026)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Miguel Gómez‐Llano, an assistant professor at the University of Arkansas at Fayetteville, studies the evolutionary and ecological factors that influence species adaptation and coexistence. His research examines how environmental changes, such as climate shifts, impact adaptive responses in populations. Gómez‐Llano investigates the role of reproductive interactions and sexual conflict in maintaining species diversity, particularly in contexts where species have similar ecological niches. His work also explores how male competition and sexual selection can be influenced by factors like parasite presence and local adaptation, affecting female fitness and population dynamics. He has published research on topics including phenotypic plasticity, frequency dependence, and sex differences in local adaptation. Gómez‐Llano's scholarly contributions are reflected in an h-index of 12, with 37 publications and over 520 citations.
Metrics
- h-index: 13
- Publications: 39
- Citations: 525
Positions
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Assistant professor 2023–presentKarlstad University Department of Environmental and Life Sciences ORCID
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Assistant professor publications 2020–2026University of Arkansas at Fayetteville ORCID
Selected Publications
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Evidence consistent with local adaptation to predation shaping stabilizing effects underlying local coexistence (2026)
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Male harm suppresses female fitness, affecting the dynamics of adaptation and evolutionary rescue (2023)
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Interactions between fitness components across the life cycle constrain competitor coexistence (2023)
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Environmental variation shapes and links parasitism to sexual selection (2023)
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Out of the tropics: Macroevolutionary size trends in an old insect order are shaped by temperature and predators (2022)
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Out of the tropics: Macroevolutionary size trends in an old insect order are shaped by temperature and predators (2022)
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Male harm suppresses female fitness to affect the dynamics of adaptation and evolutionary rescue (2022)
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Environmental Conditions during Development Affect Sexual Selection through Trait-Fitness Relationships (2021)
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When Ecology Fails: How Reproductive Interactions Promote Species Coexistence (2021)
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Sexual conflict promotes species coexistence through negative frequency dependence (2021)
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Insect Species Coexistence and Conservation Amidst Global Change (2021)
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The importance of pre- and postcopulatory sexual selection promoting adaptation to increasing temperatures (2020)
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Selection on phenotypic plasticity favors thermal canalization (2020)
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Selection on phenotypic plasticity favors thermal canalization (2020)
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Male-Male Competition Causes Parasite-Mediated Sexual Selection for Local Adaptation (2020)
Collaboration Network
Top Collaborators
- Selection on phenotypic plasticity favors thermal canalization
- Male-Male Competition Causes Parasite-Mediated Sexual Selection for Local Adaptation
- The importance of pre- and postcopulatory sexual selection promoting adaptation to increasing temperatures
- Out of the tropics: Macroevolutionary size trends in an old insect order are shaped by temperature and predators
- Selection on phenotypic plasticity favors thermal canalization
Showing 5 of 7 shared publications
- When Ecology Fails: How Reproductive Interactions Promote Species Coexistence
- Interactions between fitness components across the life cycle constrain competitor coexistence
- Environmental Conditions during Development Affect Sexual Selection through Trait-Fitness Relationships
- Insect Species Coexistence and Conservation Amidst Global Change
- Environmental variation shapes and links parasitism to sexual selection
Showing 5 of 6 shared publications
- Selection on phenotypic plasticity favors thermal canalization
- Out of the tropics: Macroevolutionary size trends in an old insect order are shaped by temperature and predators
- Selection on phenotypic plasticity favors thermal canalization
- Out of the tropics: Macroevolutionary size trends in an old insect order are shaped by temperature and predators
- 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
- Interactions between fitness components across the life cycle constrain competitor coexistence
- Insect Species Coexistence and Conservation Amidst Global Change
- Interactions between fitness components across the life cycle constrain competitor coexistence
- Insect Species Coexistence and Conservation Amidst Global Change
- Male harm suppresses female fitness, affecting the dynamics of adaptation and evolutionary rescue
- Male harm suppresses female fitness to affect the dynamics of adaptation and evolutionary rescue
- Male harm suppresses female fitness, affecting the dynamics of adaptation and evolutionary rescue
- Male harm suppresses female fitness to affect the dynamics of adaptation and evolutionary rescue
- Male harm suppresses female fitness, affecting the dynamics of adaptation and evolutionary rescue
- Male harm suppresses female fitness to affect the dynamics of adaptation and evolutionary rescue
- Male harm suppresses female fitness, affecting the dynamics of adaptation and evolutionary rescue
- Male harm suppresses female fitness to affect the dynamics of adaptation and evolutionary rescue
- Male-Male Competition Causes Parasite-Mediated Sexual Selection for Local Adaptation
- Insect Species Coexistence and Conservation Amidst Global Change
- Insect Species Coexistence and Conservation Amidst Global Change
- Sexual conflict promotes species coexistence through negative frequency dependence
- Sexual conflict promotes species coexistence through negative frequency dependence
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