Mackenzie Hoogshagen
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Also affiliated: Emory University (2023–2026)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Mackenzie Hoogshagen's research investigates interactions between hosts, symbionts, and parasites, with a focus on monarch butterflies and social amoeba populations. Hoogshagen has published work exploring how milkweed cardenolides can protect monarch butterflies from parasites and how host diet and genetics influence parasite infection outcomes in these butterflies. Additionally, Hoogshagen's work examines the complexities of inferring symbiont function, specifically focusing on Paraburkholderia symbiont dynamics in social amoeba communities and their impact on the amoeba microbiota. This includes research into the ecological and evolutionary dynamics of chlamydiae endosymbionts within social amoeba host communities and the roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies.
Metrics
- h-index: 2
- Publications: 11
- Citations: 31
Selected Publications
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Ecological and evolutionary dynamics of chlamydiae endosymbionts in social amoeba host communities (2026)
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The roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies in social amoeba communities (2025)
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The roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies in social amoeba communities (2025)
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Complexities of Inferring Symbiont Function: Paraburkholderia Symbiont Dynamics in Social Amoeba Populations and Their Impacts on the Amoeba Microbiota (2022)
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The complexities of inferring symbiont function: Paraburkholderia symbiont dynamics in social amoeba populations and their impacts on the amoeba microbiota (2021)
Collaboration Network
Top Collaborators
- Complexities of Inferring Symbiont Function: Paraburkholderia Symbiont Dynamics in Social Amoeba Populations and Their Impacts on the Amoeba Microbiota
- The complexities of inferring symbiont function: Paraburkholderia symbiont dynamics in social amoeba populations and their impacts on the amoeba microbiota
- The roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies in social amoeba communities
- The roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies in social amoeba communities
- Complexities of Inferring Symbiont Function: Paraburkholderia Symbiont Dynamics in Social Amoeba Populations and Their Impacts on the Amoeba Microbiota
- The complexities of inferring symbiont function: Paraburkholderia symbiont dynamics in social amoeba populations and their impacts on the amoeba microbiota
- The roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies in social amoeba communities
- The roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies in social amoeba communities
- The roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies in social amoeba communities
- The roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies in social amoeba communities
- Ecological and evolutionary dynamics of chlamydiae endosymbionts in social amoeba host communities
- Complexities of Inferring Symbiont Function: Paraburkholderia Symbiont Dynamics in Social Amoeba Populations and Their Impacts on the Amoeba Microbiota
- The complexities of inferring symbiont function: Paraburkholderia symbiont dynamics in social amoeba populations and their impacts on the amoeba microbiota
- Complexities of Inferring Symbiont Function: Paraburkholderia Symbiont Dynamics in Social Amoeba Populations and Their Impacts on the Amoeba Microbiota
- The complexities of inferring symbiont function: Paraburkholderia symbiont dynamics in social amoeba populations and their impacts on the amoeba microbiota
- The roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies in social amoeba communities
- The roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies in social amoeba communities
- The roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies in social amoeba communities
- The roles of dispersal limitation and pre-adaptation in shaping Paraburkholderia endosymbiont frequencies in social amoeba communities
- Ecological and evolutionary dynamics of chlamydiae endosymbionts in social amoeba host communities
- Ecological and evolutionary dynamics of chlamydiae endosymbionts in social amoeba host communities
- Ecological and evolutionary dynamics of chlamydiae endosymbionts in social amoeba host communities
- Ecological and evolutionary dynamics of chlamydiae endosymbionts in social amoeba host communities
- Ecological and evolutionary dynamics of chlamydiae endosymbionts in social amoeba host communities
- Ecological and evolutionary dynamics of chlamydiae endosymbionts in social amoeba host communities
- Ecological and evolutionary dynamics of chlamydiae endosymbionts in social amoeba host communities
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