Research Bibliography
Found 17 results
Filters: Author is Hunter, Mark D. [Clear All Filters]
Elevated atmospheric concentrations of CO 2 increase endogenous immune function in a specialist herbivore. Journal of Animal Ecology. 907(3):628-640.
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2021. Unraveling the roles of genotype and environment in the expression of plant defense phenotypes. Ecology and Evolution. 1171560085(13):8542-8561.
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2021. Effects of diet and temperature on monarch butterfly wing morphology and flight ability. Journal of Insect Conservation. 47
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2020. Interspecific variation and elevated CO2 influence the relationship between plant chemical resistance and regrowth tolerance. Ecology and Evolution. 102615853(12):5416-5430.
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2020. Phytochemical changes in milkweed induced by elevated CO2 alter wing morphology but not toxin sequestration in monarch butterflies. Functional Ecology. 33269(32001):411-421.
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2019. Effects of soil nutrients on the sequestration of plant defence chemicals by the specialist insect herbivore, Danaus plexippus. Ecological Entomology.
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2014. Genetic variation in plant below-ground response to elevated CO2 and two herbivore species. Plant and Soil.
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2014. Genetic variation in plant volatile emission does not result in differential attraction of natural enemies in the field. Oecologia. 174:479-491.
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2014. Trophic stability of soil oribatid mites in the face of environmental change. Soil Biology and Biochemistry. 68:71-77.
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2014. Chronic nitrogen deposition alters the structure and function of detrital food webs in a northern hardwood ecosystem. Ecological Applications. 23:1311-1321.
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2013. A Genetically-Based Latitudinal Cline in the Emission of Herbivore-Induced Plant Volatile Organic Compounds. Journal of Chemical Ecology. 39:1101-1111.
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2013. Mycorrhizal abundance affects the expression of plant resistance traits and herbivore performance. Journal of Ecology. 101:1019-1029.
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2013. Plant defence theory re-examined: nonlinear expectations based on the costs and benefits of resource mutualisms. Journal of Ecology. 99:66-76.
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2011. Genetic variation in expression of defense phenotype may mediate evolutionary adaptation of Asclepias syriaca to elevated CO2. Global Change Biology. 17:1277-1288.
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2010. Isolation and characterization of microsatellite loci in the common milkweed, Asclepias syriaca (Apocynaceae). American Journal of Botany. 97:e37-e38.
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2010.